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1.
Einstein (Säo Paulo) ; 22: eRW0552, 2024. graf
Article in English | LILACS-Express | LILACS | ID: biblio-1534332

ABSTRACT

ABSTRACT Introduction Triple-negative breast cancer is an aggressive subtype of breast cancer characterized by the absence of estrogen receptor, progesterone receptor, and human epidermal growth factor receptor 2 expression. This phenotype renders triple-negative breast cancer cells refractory to conventional therapies, resulting in poor clinical outcomes and an urgent need for novel therapeutic approaches. Recent studies have implicated dysregulation of the Notch receptor signaling pathway in the development and progression of triple-negative breast cancer. Objective This study aimed to conduct a comprehensive literature review to identify potential therapeutic targets of the Notch pathway. Our analysis focused on the upstream and downstream components of this pathway to identify potential therapeutic targets. Results Modulating the Notch signaling pathway may represent a promising therapeutic strategy to treat triple-negative breast cancer. Several potential therapeutic targets within this pathway are in the early stages of development, including upstream (such as Notch ligands) and downstream (including specific molecules involved in triple-negative breast cancer growth). These targets represent potential avenues for therapeutic intervention in triple-negative breast cancer. Comments Additional research specifically addressing issues related to toxicity and improving drug delivery methods is critical for the successful translation of these potential therapeutic targets into effective treatments for patients with triple-negative breast cancer.

2.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 169-177, 2024.
Article in Chinese | WPRIM | ID: wpr-1006509

ABSTRACT

Objective@#To investigate the effects of electrochemically dealloying of Ti6Al4V abutments on human gingival fibroblasts (HGFs) and to provide experimental evidence for surface modification of implant abutments.@*Methods@#The samples were divided into an NC group (negative control, no other treatment on a smooth surface), an NM-1 group (nanomesh-1, electrochemical dealloying treatment in 1 mol/L NaOH 1 h on 2 V voltage), and an NM-2 group (nanomesh-2, electrochemical dealloying treatment in 5 mol/L NaOH 1 h on 2 V voltage). The surface morphologies of the samples and the adhesion of HGFs on the sample surfaces were observed with scanning electron microscopy (SEM). The surface hydrophilicities of the samples were measured with a contact angle measuring instrument. The proliferation of HGFs on the different samples were evaluated with CCK-8, and the expression of adhesion-related genes, including collagen Ⅰ (COL1A1), collagen Ⅲ (COL3A1), fibronectin 1 (FN1), focal adhesion kinase (FAK), vinculin (VCL), integrin α2 (ITGA2), and integrin β1 (ITGB1), on the different samples was measured with qRT-PCR. The expression of vinculin on the surfaces of HGFs was observed via confocal laser scanning microscopy (CLSM) after immunofluorescent staining. Collagen fiber secretion and syntheses of HGFs from different samples were evaluated via Sirius red staining.@*Results@#SEM revealed the formation of ordered and uniform three-dimensional mesh structures on the surfaces of the NM-1 and NM-2 groups, with grid diameters of approximately 30 nm for the NM-1 group and approximately 150 nm for the NM-2 group. Compared with that of the NC group, the water contact angles of the NM-1 group and NM-2 groups were significantly lower (P<0.000 1). Cell proliferation in the NM-1 group was significantly greater than that in the NC group (P<0.01). Moreover, there was no significant difference in the water contact angles or cell proliferation between the NM-1 group and the NM-2 group. SEM revealed that HGFs were adhered well to the surfaces of all samples, while the HGFs in the NM-1 and NM-2 groups showed more extended areas, longer morphologies, and more developed pseudopodia than did those in the NC group after 24 h. qRT-PCR revealed that the expression levels of the adhesion-related genes COL1A1, COL3A1, FN1, FAK and VCL in the NM-1 group were significantly greater than those in the NC and NM-2 groups (P<0.01). The expression of vinculin protein in the NM-1 group was the highest, and the number of focal adhesions was greatest in the NM-1 group (P<0.01). The results of Sirius red staining showed that the NM-1 group had the highest secretion and syntheses of collagen fibers (P<0.000 1).@*Conclusion@#The three-dimensional nanomechanical structure of Ti6Al4V modified by electrochemical dealloying promoted the adhesion, proliferation, collagen fiber secretion and syntheses of HGFs, and electrochemical dealloying of Ti6Al4V with a grid diameter of approximately 30 nm obviously promoted HGF formation.

3.
Salud UNINORTE ; 39(1)abr. 2023.
Article in Spanish | LILACS-Express | LILACS | ID: biblio-1536832

ABSTRACT

El agrandamiento gingival asociado al tratamiento de ortodoncia (AGTO) es el crecimiento no controlado de la encía. Aquí reportamos dos casos clínicos de pacientes masculinos sistèmicamente sanos con AGTO generalizado, con asociación a la biopelícula dental y sin esta. En ambos pacientes se identificó un tejido epitelial hiperplásico con abundantes células positivas para Ki-67 y tejido conectivo rico en fibras de colágeno distribuidas aleatoriamente. Futuros estudios serán útiles para dilucidar las diferencias fisiopatológicas del AGTO con relación con el biofilm dental y sin esta.


Orthodontic treatment-induce gingival overgrowth (OTGO) is uncontrolled growth of the gingiva. Here, we report two clinical cases of systemically healthy male patients with generalized GH undergoing orthodontic treatment, with and without association with dental biofilm. In both patients, hyperplastic epithelial tissue was identified with abundant Ki-67 positive cells and connective tissue rich in randomly distributed collagen fibers. Future studies will be useful to elucidate the pathophysiological differences of OTGO with and without relation to dental biofilm.

4.
J. oral res. (Impresa) ; 12(1): 86-99, abr. 4, 2023. ilus
Article in English | LILACS | ID: biblio-1512278

ABSTRACT

Objective: The objective of this study was to investigate the morphology, proliferation, and differentiation of gingival mesenchymal stem cells (GMSCs) irradiated with a 970 nm Diode Laser (LLLT). It is essential to validate the efficacy of treatment, optimize irradiation conditions and guarantee the safety and quality of stem cells for future use in dental applications. Materials and Methods: GMSCs were cultured in standard conditions and irradiated with a Diode laser (970 nm, 0.5W) with an energy density of 9J/cm2. Cell proliferation was assessed with the WST-1 proliferation kit. GMSCs were differentiated into chondrogenic and osteogenic lineages. Cell morphology was performed with Hematoxylin/eosin staining, and quantitative nuclear analysis was done. Cell viability was monitored with trypan blue testing. Results: GMSCs subjected to irradiation demonstrated a significant increase in proliferation at 72 hours compared to the non-irradiated controls (p=0.027). This indicates that the 970 nm diode laser has a stimulatory effect on the proliferation of GMSCs. LLLT-stimulated GMSCs exhibited the ability to differentiate into chondrogenic and osteogenic lineages. A substantial decrease in cell viability was observed 24 hours after irradiation (p=0.024). However, after 48 hours, the cell viability recovered without any significant differences. This indicates that there might be a temporary negative impact on cell viability immediately following irradiation, but the cells were able to recover and regain their viability over time. Conclusions: This study support that irradiation with a 970 nm diode laser could stimulate the proliferation of GMSCs, maintain their ability to differentiate into chondrogenic and osteogenic lineages, and has minimal impact on the mor- phological characteristics of the cells. These results support the potential use of NIR Lasers in combination with GMSCs as a promising strategy for dental treatments.


Objetivo: El objetivo de este estudio fue investigar la morfología, proliferación y diferenciación de las células madre mesenquimatosas (GMSC) irradiadas con un láser de diodo de 970 nm (LLLT). Es fundamental validar la eficacia del tratamiento, optimizar las condiciones de irradiación y garantizar la seguridad y calidad de las células madre para su uso futuro en aplicaciones dentales.Materiales y Métodos: Las GMSC se cultivaron en condiciones estándar y se irradiaron con un láser de diodo (970 nm, 0,5 W) con una densidad de energía de 9 J/cm2. La proliferación celular se evaluó con el kit de proliferación WST-1. Las GMSC se diferenciaron en linajes condrogénicos y osteogénicos. La morfología celular se realizó con tinción de hematoxilina/eosina y se realizó un análisis nuclear cuantitativo. La viabilidad celular se controló con prueba de azul de tripano. Resultados: Las GMSC sometidas a irradiación demostraron un aumento significativo en la proliferación a las 72 horas en comparación con los controles no irradiados (p=0,027). Esto indica que el láser de diodo de 970 nm tiene un efecto estimulante sobre la proliferación de GMSC. Las GMSC estimuladas con LLLT exhibieron la capacidad de diferenciarse en linajes condrogénicos y osteogénicos. Se observó una disminución sustancial de la viabilidad celular 24 horas después de la irradiación (p=0,024). Sin embargo, después de 48 horas, la viabilidad celular se recuperó sin diferencias significativas. Esto indica que podría haber un impacto negativo temporal en la viabilidad de las células inmediatamente después de la irradiación, pero las células pudieron recuperarse y recuperar su viabilidad con el tiempo. Conclusión: En conclusión, este estudio respalda que la irradiación con un láser de diodo de 970 nm podría estimular la proliferación de GMSC, mantener su capacidad para diferenciarse en linajes condrogénicos y osteogénicos y tiene un impacto mínimo en las características morfológicas de las células. Estos resultados respaldan el uso potencial de láseres NIR en combinación con GMSC como una estrategia prometedora para tratamientos dentales.


Subject(s)
Humans , Low-Level Light Therapy , Cell Proliferation/radiation effects , Lasers, Semiconductor , Mesenchymal Stem Cells/radiation effects , In Vitro Techniques , Gingiva/radiation effects
5.
Natal; s.n; 17 mar. 2023. 126 p. ilus.
Thesis in Portuguese | LILACS, BBO | ID: biblio-1532217

ABSTRACT

Introdução: Os cistos e tumores odontogênicos são lesões que apresentam comportamento biológico heterogêneo e patogênese ainda não totalmente esclarecida. A Yes-associated protein (YAP) atua como um regulador transcricional de genes envolvidos na proliferação celular e na apoptose, participando da ativação de vias associadas ao crescimento cístico e à progressão neoplásica. Objetivo: Analisar a expressão imuno-histoquímica da proteína YAP e correlacioná-la com marcadores envolvidos na proliferação celular e na apoptose em lesões odontogênicas epiteliais benignas. Metodologia: A amostra consistiu de 95 casos de lesões odontogênicas - 25 cistos dentígeros (CDs), 30 CO não sindrômicos (COs), 30 AMB convencionais (AMB-Cs) e 10 AMB unicísticos (AMB-Us) -, além de 10 espécimes de folículo dentários (FD). Foi realizada coleta dos dados clinico-demográficos dos casos, bem como análise morfológica para melhor caracterização da amostra. Os cortes histológicos foram submetidos à técnica imuno-histoquímica através da utilização dos anticorpos YAP, ciclina D1, Ki-67 e Bcl-2, e a análise da expressão destes foi realizada quali-quantitativamente, mediante metodologia adaptada. Os dados coletados seguiram para análise descritiva e estatística (p ≤ 0,05). Resultados: Houve discreta predileção por mulheres (n = 55; 57,6%) e por indivíduos na faixa etária dos 21 aos 40 anos (n = 50; 47,6%), sendo a região posterior de mandíbula mais afetada (64%). A análise da imunoexpressão de YAP revelou maiores níveis de expressão em COs, especialmente nas camadas basal e parabasal, seguido dos AMB-Us e AMB-Cs, que demonstraram moderada imunorreatividade, predominantemente nas células periféricas. Além disso, houve diferenças significativas quanto à imunoexpressão de YAP entre os grupos analisados, com existência de correlações positivas e estatisticamente significativas entre YAP e ciclina D1 em CDs e AMB-Us, e entre YAP e Ki-67 em AMB-Us (p < 0,05). Todavia, entre a imunoexpressão YAP e Bcl-2, foi verificada ausência de correlação estatisticamente significativa. Conclusões: A YAP pode exercer influência sobre a proliferação celular do epitélio de cistos e tumores odontogênicos, auxiliando, assim, na progressão das diferentes lesões odontogênicas (AU).


Background: Odontogenic cysts and tumors present heterogeneous biological behavior, and their etiopathogenesis is not fully understood yet. Yes-associated protein (YAP) acts as a transcriptional regulator of genes involved in cell proliferation and apoptosis, activating pathways associated with cystic growth and neoplastic progression. Objective: To analyze the immunohistochemical expression of YAP protein and correlate it with markers involved in cell proliferation and apoptosis in benign epithelial odontogenic lesions. Methods: The sample consisted of 95 cases of odontogenic lesions - 25 dentigerous cysts (DCs), 30 non-syndromic odontogenic keratocyst (OKCs), 30 conventional AMB (C-AMBs), and 10 unicystic AMB (UAMBs) -, in addition to 10 specimens of dental follicles (DF). Clinicodemographic data collection was carried out, as well as morphological analysis for better characterization of the sample. The histological sections were submitted to the immunohistochemical technique using YAP, cyclin D1, Ki-67, and Bcl-2 antibodies, and their immunoexpression analysis was performed qualitatively and quantitatively, through an adapted methodology. The collected data were submitted for descriptive and statistical analysis (p ≤ 0.05). Results: There was a slight predilection for women (n = 55; 57.6%) and individuals aged between 21 and 40 years (n = 50; 47.6%), with the posterior region of the mandible as the most affected site (64%). Analysis of YAP immunoexpression revealed higher expression levels in OKCs, especially in the basal and parabasal layers, followed by U-AMBs and C-AMBs, which showed moderate immunoreactivity, predominantly in peripheral cells. In addition, there were significant differences in YAP immunoexpression between the analyzed groups, with positive and statistically significant correlations between YAP and cyclin D1 in DCs and U-AMBs, and between YAP and Ki-67 in U-AMBs (p < 0.05). However, between YAP and Bcl-2 immunoexpression, there was no statistically significant correlation. Conclusions: YAP may influence on the cell proliferation of odontogenic cysts and tumors epithelium, thus helping with the progression of the different odontogenic lesions (AU) .


Subject(s)
Cell Proliferation , YAP-Signaling Proteins/metabolism , Transcriptional Coactivator with PDZ-Binding Motif Proteins/metabolism , Dentigerous Cyst/pathology , Biomarkers, Tumor , Medical Records , Retrospective Studies , Data Interpretation, Statistical , Apoptosis , Odontogenic Cyst, Calcifying/pathology , Statistics, Nonparametric , Inhibitor of Differentiation Proteins , Observational Study , Morphological and Microscopic Findings
6.
An. bras. dermatol ; 98(1): 26-35, Jan.-Feb. 2023. graf
Article in English | LILACS-Express | LILACS | ID: biblio-1429619

ABSTRACT

Abstract Background Hypertrophic scar (HS), a fibroproliferative disorder caused by aberrant wound healing following skin injuries such as burns, lacerations and surgery, is characterized by invasive proliferation of fibroblasts and excessive extracellular matrix (ECM) accumulation. The dysregulation of autophagy is the pathological basis of HS formation. Previously, angiopoietin-2 (ANGPT2) was found to be overexpressed in HS fibroblasts (HSFs) compared with normal skin fibroblasts. However, whether ANGPT2 participates in the process of HS formation and the potential molecular mechanisms are not clear. Objective This study is intended to figure out the role of ANGPT2 and ANGPT2-mediated autophagy during the development of HS. Methods RT-qPCR was used to detect ANGPT2 expression in HS tissues and HSFs. HSFs were transfected with sh-ANGPT2 to knock down ANGPT2 expression and then treated with MHT1485, the mTOR agonist. The effects of sh-ANGPT2 or MHT1485 on the proliferation, migration, autophagy and ECM accumulation of HSFs were evaluated by CCK-8 assay, Transwell assay and western blotting. The expression of PI3K/Akt/mTOR pathway-related molecules (p-PI3K, p-Akt and p-mTOR) was assessed by western blotting. Results ANGPT2 expression was markedly upregulated in HS tissues and HSFs. ANGPT2 knockdown decreased the expression of p-PI3K, p-Akt and p-mTOR. ANGPT2 knockdown activated autophagy and inhibited the proliferation, migration, and ECM accumulation of HSFs. Additionally, the treatment of MHT1485, the mTOR agonist, on ANGPT2-downregulated HSFs, partially reversed the influence of ANGPT2 knockdown on HSFs. Study limitations The study lacks the establishment of more stable in vivo animal models of HS for investigating the effects of ANGPT2 on HS formation in experimental animals. Conclusions ANGPT2 downregulation represses growth, migration, and ECM accumulation of HSFs via autophagy activation by suppressing the PI3K/Akt/mTOR pathway. Our study provides a novel potential therapeutic target for HS.

7.
Acta cir. bras ; 38: e380923, 2023. graf, ilus
Article in English | LILACS, VETINDEX | ID: biblio-1429538

ABSTRACT

Purpose: To investigate the role and mechanism of ß1,3-N-acetylglucosaminyltransferase-3 gene (B3GNT3) in esophageal cancer (ESCA). Methods: The starBase database was used to evaluate the expression of B3GNT3. B3GNT3 function was measured using KYSE-30 and KYSE-410 cells of esophageal squamous cell carcinoma (ESCC) cell lines. The mRNA levels were detected by quantitative real-time polymerase chain reaction (qRT-PCR). Cell counting kit-8, clone formation assay and transwell assay were used to detect the changes of proliferation, invasion and migration. Results: B3GNT3 expression was higher in ESCA tissues than in normal tissues. The overall survival rate of ESCA patients with high B3GNT3 expression was lower than that of ESCA patients with low B3GNT3 expression. In vitro functional experiments showed that the proliferation ability, migration and invasion ability of KYSE-30 and KYSE-410 cells with B3GNT3 interference were lower than those of the control, and the overexpression of B3GNT3 had the opposite effect. After silencing B3GNT3 expression in ESCC cell lines, the growth of both cell lines was inhibited and the invasiveness was decreased. Knockdown of B3GNT3 reduced the growth rate and Ki-67 expression level. Conclusion: B3GNT3, as an oncogene, may promote the growth, invasion and migration of ESCC cell.


Subject(s)
Oncogenes , N-Acetylglucosaminyltransferases/analysis , Cell Migration Assays , Transcriptome , Esophageal Squamous Cell Carcinoma , Esophageal Neoplasms/physiopathology
8.
Chinese Journal of Postgraduates of Medicine ; (36): 763-768, 2023.
Article in Chinese | WPRIM | ID: wpr-991094

ABSTRACT

Objective:To explore the mechanism of bone morphogenetic protein 2 (BMP-2) regulating pulmonary vascular remodeling in pulmonary hypertension (PH).Methods:Pulmonary artery smooth muscle cells (PASMC) groups: control group, PH group, PH+BMP-2 group, PH+BMP-2+ small interfering BMP receptor(si-BMPR)-Ⅰa group, PH+BMP-2+ si-BMPR-Ⅰb group, PH+BMP -2+si-BMPR-Ⅱ group. In vitro PH model was induced by hypoxia. The three BMP-2 receptors were silenced by the transfection of si-BMPR-Ⅰa, si-BMPR-Ⅰb and si-BMPR-Ⅱ plasmids, respectively. Cell proliferation and apoptosis in each group were detected, transient receptor potential ion channel C1/6 (TRPC1/6), p21 mRNA and protein levels, and intracellular Ca 2+ concentration were detected. Results:The intracellular Ca 2+ concentration in the PH group was higher than that in the control group: (785.15 ± 44.26) nmol/L vs. (224.15 ± 15.87) nmol/L, the and apoptosis rate was lower than that in the control group: (3.15 ± 0.22)% vs. (7.31 ± 0.45)%, there were statistical differences ( P<0.05). The intracellular Ca 2+ concentration in the PH+BMP-2 group was (297.64 ± 21.46) nmol/L, and was lower than that in the PH group, and apoptosis rate was (6.88 ± 0.75)%, and was higher than that in the PH group, there were statistical differences ( P<0.05). The intracellular Ca 2+ concentration in the PH+BMP-2+si-BMPR-Ⅰa group, PH+BMP-2+ si-BMPR-Ⅰb group, PH+BMP -2+si-BMPR-Ⅱ group was (412.31 ± 29.57), (384.34 ± 30.66), (695.23 ± 39.85) nmol/L, and was higher than that in the PH+BMP-2 group, and apoptosis rate was (4.10 ± 0.27)%, (4.26 ± 0.28)%, (3.33 ± 0.24)%, and was lower than that in the PH+BMP-2 group, there were statistical differences ( P<0.05). The intracellular Ca 2+ concentration in the PH+BMP -2+si-BMPR-Ⅱ group was higher than that in the PH+BMP-2+si-BMPR-Ⅰa group and PH+BMP-2+ si-BMPR-Ⅰb group, the apoptosis rate was lower than that in the PH+BMP-2+si-BMPR-Ⅰa group and PH+BMP-2+ si-BMPR-Ⅰb group, there were statistical differences ( P<0.05). Conclusions:BMP-2 mainly inhibits the expression of TRPC1/6 by interacting with the receptor BMPR-Ⅱ, inhibits the influx of Ca 2+ and promotes the expression of p21, thereby inhibiting the proliferation of PASMC and promoting apoptosis, participating in pulmonary vascular remodeling in PH.

9.
Chinese Journal of Digestive Surgery ; (12): 636-641, 2023.
Article in Chinese | WPRIM | ID: wpr-990684

ABSTRACT

Objective:To investigate the effects of orlistat on the viability of human gall-bladder cancer (GBC) cells.Methods:The experimental study was conducted. The human GBC NOZ cells with high expression of FSAN was screened out through in vitro cultivating human GBC-SD, SGC-996 and NOZ cells. The cell proliferation assay, clone formation assay and protein detection experiment were used to analysis of the effects of orlistat on the viability of human GBC cells. Cell grouping: NOZ cells cultured with medium were set as the control group, cultured with medium + 10 μmol/L orlistat were set as the low-dose orlistat group, cultured with medium + 100 μmol/L orlistat were set as the high-dose orlistat group, respectively. Observation indicators: (1) expression of FASN protein in human GBC cells; (2) effects of orlistat on the proliferation of human GBC NOZ cells; (3) effects of orlistat on apoptosis of human GBC NOZ cells. Measurement data with normal distribution were represented as Mean± SD, the ANOVA test was used for comparison between groups and the least significant difference method was used for pairwise comparison. Results:(1) Expression of FASN protein in human GBC cells. Results of western blot showed that the relative expression of FASN protein in human GBC NOZ, GBC-SD and SGC-996 cells was 0.57±0.06, 0.12±0.04 and 0.10±0.02, respectively, showing a significant difference among them ( F=115.67, P<0.05). There were significant differences between the NOZ cells and the GBC-SD or the SGC-996 cells ( P<0.05), and there was no significant difference between the GBC-SD cells and the SGC-996 cells ( P>0.05). (2) Effects of orlistat on the proliferation of human GBC NOZ cells. ① Results of cell proliferation assay showed that the absorbance value of NOZ cells was 2.34±0.12, 1.57±0.08 and 1.07±0.13 in the control group, low-dose orlistat group and high-dose orlistat group, respectively, showing a significant difference among them ( F=205.88, P<0.05). ② Results of clone formation assay showed that the number of NOZ cells clones was 257±23, 153±11 and 83±11 in the control group, low-dose orlistat group and high-dose orlistat group, respectively, showing a significant difference among them ( F=92.64, P<0.05). ③Results of western blot showed that the relative expression of Cyclin-D1 protein of NOZ cells was 2.31±0.10, 1.52±0.05 and 1.23±0.11 in the control group, low-dose orlistat group and high-dose orlistat group, respectively, showing a significant difference among them ( F=120.73, P<0.05). The relative expression of CDK-4 protein of NOZ cells was 1.58±0.04, 1.21±0.02 and 1.19±0.04 in the control group, low-dose orlistat group and high-dose orlistat group, respectively, showing a signifi-cant difference among them ( F=110.45, P<0.05). (3) Effects of orlistat on apoptosis of human GBC NOZ cells. Results of western blot showed that the relative expression of Bcl-2 protein of NOZ cells was 1.07±0.03, 0.36±0.03 and 0.15±0.02 in the control group, low-dose orlistat group and high-dose orlistat group, respectively, showing a significant difference among them ( F=1 242.93, P<0.05). The relative expression of Bax protein of NOZ cells was 0.51±0.03, 0.38±0.05 and 1.38±0.04 in the control group, low-dose orlistat group and high-dose orlistat group, respectively, showing a signifi-cant difference among them ( F=583.51, P<0.05). Conclusion:Orlistat can inhibit the growth of human GBC NOZ cells and promote their apoptosis.

10.
Chinese Journal of Endocrine Surgery ; (6): 170-173, 2023.
Article in Chinese | WPRIM | ID: wpr-989919

ABSTRACT

Objective:To investigate the differences between the expression levels of ribosomal protein L32 (RPL32) in human breast cancer tissue and normal breast tissue and the effects on the proliferation of breast cancer cells.Methods:Paraffin samples of breast cancer tissues and adjacent tissues (more than 3 cm from the tumor margin) were collected from 56 breast cancer patients in the Department of Thyroid and Breast Surgery of the First People's Hospital of Shangqiu City from July 2020 to May 2022. The expression of RPL32 in 56 breast cancer patients and their corresponding paracancer tissues was detected by immunohistochemistry. MCF7 cells were divided into experimental group (ribosomal protein L32, RPL32) and control group (negative control, NC). MCF7 cells in experimental group were transfected with RPL32-siRNA vector, while MCF7 cells in control group were transfected with scramble siRNA vector. RPL32 mRNA content in each group was detected by RT-PCR. The expressions of RPL32 and P53 in the experimental group and control group were detected by western blot. The proliferative ability of cells in each group was detected by CCK8 assay. The clonogenesis ability of each group of cells was detected by clone formation experiment.Results:The positive rate of RPL32 in breast cancer patients was 8.93% (5/56), and the expression rate of RPL32 in paracancer tissues was 78.57% (44/56). The expression rate of RPL32 in breast cancer patients was significantly higher than that in paracancer tissues, with statistical significance ( P=0.007). After transfection with siRNA vector, the mRNA content of RPL32 in MCF7 cells of experimental group and control group decreased, and the protein expression level of RPL32 was 1.09±0.21 and 0.40±0.11, respectively. The expression levels of P53 protein were 1.24±0.32 and 0.37±0.09, respectively. The absorbance of CCK8 at 120 h was 1.11±0.24 and 2.19±0.28, respectively, and the proliferation ability of MCF7 cells in the experimental group was significantly decreased ( P=0.043). The results of clone formation experiment showed that the cell clone formation rate of the experimental group and the control group was (21.11±3.46) % and (58.75±4.29) %, respectively, and the cell clone formation of the experimental group was decreased ( P=0.026) . Conclusions:The expression of RPL32 is significantly increased in breast cancer, which may be related to the malignant degree of breast cancer. Inhibition of RPL32 expression in breast cancer cells affects its proliferation ability.

11.
International Journal of Traditional Chinese Medicine ; (6): 1119-1126, 2023.
Article in Chinese | WPRIM | ID: wpr-989764

ABSTRACT

Objective:To study the effects of Zuogui Pills on the expressions of miR-133b-3p and RhoA in osteoclasts of postmenopausal osteoporosis rats; To discuss its potential mechanism.Methods:SD female rats were randomly divided into normal group, model group, sham-operation group, and Zuogui Pills group using a random number table method, with 6 rats in each group. The model group and Zuogui Pills group were treated with oophorectomy to construct a rat model of osteoporosis. Zuogui Pills group was orally administered with Zuogui Pills decoction at a concentration of 10 g/kg for 12 consecutive weeks. Colorimetric method was used to measure the serum calcium and phosphorus levels of rats, and ELISA method was used to detect ALP levels. Bone density meter was used to measure the bone density of the femurs of rats in each group. The osteoclast of each group were cultured, and the expressions of RANKL and RUNX2 protein were detected by Western blot. MiRNA sequencing and differential expression analysis were performed on bone tissues of rats. Osteoclasts were treated with miR-133b-3p mimic and its negative control. The cell proliferation activity of osteoclasts was detected by cell counting kit-8 (CCK-8). The osteoclast differentiation activity was detected by the tartrate-resistant acid phosphatase staining. The dual-luciferase reporter assay was used to detect the relationship between miR-133b-3p and RhoA. The "rescue" experiment of miR-133b-3p mimic and RhoA co-expression were used to study the molecular regulatory mechanism of Zuogui Pills on osteoclast activity.Results:Compared with the model group, the bone mineral density of Zuogui Pills group significantly increased ( P<0.05, P<0.01), the levels of calcium and phosphorus in serum increased, the level of alkaline phosphatase ALP decreased ( P<0.05), the expression of RANKL protein decreased, and the expression of RUNX2 protein increased. Sequencing results showed that rno-miR-133b-3p was down-regulated in osteoclasts of postmenopausa osteoporosis rats treated with Zuogui Pills with the maximum difference ( P<0.01). Q-PCR results showed that the expression of miR-133b-3p in osteoclasts of Zuogui Pills group was significantly lower than that of the model group. The upregulation of miR-133b-3p could significantly promote the cell proliferation and differentiation of osteoclasts. RhoA overexpression could reverse the excessive proliferation and differentiation of osteoclasts caused by miR-133b-3p overexpression. Conclusions:RhoA is the target gene regulated by miR-133b-3p. Zuogui Pills can inhibit the activity of osteoclasts by regulating miR-133b-3p/RhoA axis, relieving the symptoms of osteoporosis.

12.
Journal of International Oncology ; (12): 202-207, 2023.
Article in Chinese | WPRIM | ID: wpr-989544

ABSTRACT

Objective:To investigate the regulatory effect of long non-coding RNA (lncRNA) FTX on gastric cancer cell proliferation through miR-22-3p/NOD-like receptor protein 3 (NLRP3) inflammasome pathway.Methods:The gastric cancer cell line NCI-N87 were divided into blank control group, si-FTX-NC group, si-FTX group, si-FTX+miR-22-3p inhibitor-NC group and si-FTX+miR-22-3p inhibitor group. Quantitative real-time fluorescent PCR was performed to analyze the expression levels of lncRNA FTX and miR-22-3p, clone formation assay was performed to analyze the proliferation ability of NCI-N87 cells, western blotting was performed to analyze the expressions of NLRP3 inflammasome pathway proteins, and dual-luciferase reporter assay was performed to analyze the targeting relationship between lncRNA FTX and miR-22-3p.Results:The relative expressions of lncRNA FTX in the blank control group, si-FTX-NC group, si-FTX group, si-FTX+miR-22-3p inhibitor-NC group and si-FTX+miR-22-3p inhibitor group were 1.03±0.09, 1.01±0.15, 0.42±0.08, 0.45±0.06 and 0.46±0.13 respectively, with a statistically significant difference ( F=52.19, P<0.001). The relative expressions of miR-22-3p were 1.04±0.12, 0.97±0.08, 2.26±0.15, 2.23±0.13 and 1.15±0.11 respectively, with a statistically significant difference ( F=178.53, P<0.001). Compared with the blank control group and si-FTX-NC group, the relative expressions of lncRNA FTX in the si-FTX group, si-FTX+miR-22-3p inhibitor-NC group and si-FTX+miR-22-3p inhibitor group decreased (all P<0.001). Compared with the blank control group, si-FTX-NC group and si-FTX+miR-22-3p inhibitor group, the relative expressions of miR-22-3p in the si-FTX group and si-FTX+miR-22-3p inhibitor-NC group increased (all P<0.001). The clones of the five groups were 115.50±7.25, 112.33±8.46, 54.83±5.17, 56.17±6.32 and 85.67±9.43, with a statistically significant difference ( F=91.67, P<0.001). The levels of NLRP3 protein in the five groups were 1.84±0.17, 1.86±0.12, 0.95±0.09, 0.97±0.11 and 1.28±0.19, with a statistically significant difference ( F=60.62, P<0.001). Compared with the blank control group and si-FTX-NC group, the number of clones and the level of NLRP3 protein of the si-FTX group, si-FTX+miR-22-3p inhibitor-NC group and si-FTX+miR-22-3p inhibitor group decreased (all P<0.05). Compared with the si-FTX+miR-22-3p inhibitor group, the number of clones and the level of NLRP3 protein in the si-FTX group and si-FTX+miR-22-3p inhibitor-NC group decreased (all P<0.05). The dual-luciferase reporter assay found that miR-22-3p was the target gene of lncRNA FTX. Conclusion:Silencing the expression of lncRNA FTX can inhibit the proliferation of gastric cancer cells, and the mechanism may be related to the regulation of lncRNA FTX on the miR-22-3p/NLRP3 inflammasome pathway.

13.
International Journal of Surgery ; (12): 396-400,F2, 2023.
Article in Chinese | WPRIM | ID: wpr-989470

ABSTRACT

Objective:To explore the effect of miR-1249-5p on the proliferation, metastasis and cell cycle of PC-3 cell in prostate cancer.Methods:The relationship between the expression level of miR-1249-5p and the overall survival of prostate cancer patients was analyzed using OncoMir Cancer Database (OMCD). The human prostate cancer cell line PC-3 was divided into two groups: miR-1249-5p group and negative control group. Mediated by Lipofectamine 2000, miR-1249-5p mimics liposome complex or negative miRNA liposome complex were transfected into PC-3 cell at logarithmic growth stage. Real-time quantitative polymerase chain reaction (RT-qPCR) was used to detect the expression of miR-1249-5p in PC-3 cell of two groups. Colony formation assay was used to detect the changes of the proliferation ability of PC-3 cell in the two groups. Transwell experiment was used to detect the changes of PC-3 cell invasion in the two groups, and the cell cycle changes of the two groups of PC-3 were detected by flow cytometry. The miRNA prediction software miRGator was used to predict the target gene of miR-1249-5p. RT-qPCR and Western blotting were used to detect the target gene expression of miR-1249-5p. Measurement data were expressed as mean±standard deviation ( ± s), and t-test was used for comparison between two groups. Results:Compared with prostate cancer patients with low miR-1249-5p expression, prostate cancer patients with higher miR-1249-5p expression had longer overall survival, and the difference was statistically significant ( P<0.01). The expression level of miR-1249-5p in the miR-1249-5p group (10.74±1.19) was significantly higher than that of the negative control group (1.56±0.27), the difference was statistically significant ( P<0.01). The number of colonies formed in the miR-1249-5p group (35.86±6.94) was significantly less than that in the negative control group (88.94±11.66), and the difference was statistically significant ( P<0.01). The number of transmembrane cells [(25.01±6.83)/high power field of view] in the miR-1249-5p group was significantly less than that of the negative control group [(82.76±8.35)/high power field of view], and the difference was statistically significant ( P<0.01). The proportion of cells in the G 0-G 1 phase in the miR-1249-5p group [(50.79±6.61)%] was significantly higher than that in the negative control group [(27.09±2.30)%], the difference was statistically significant ( P<0.01), and PC-3 cell were inhibited in the G 0-G 1 phase. Neural precursor cell expressed developmentally down-regulated 9 ( NEDD9) may be the target gene of miR-1249-5p. Compared with the negative control group, the NEDD9 gene expression in the miR-1249-5p group was significantly lower than that of the negative control group, the difference was statistically significant ( P<0.01). Conclusion:miR-1249-5p can inhibit the proliferation, metastasis and cell cycle of PC-3 cell in prostate cancer, which may be achieved by negatively regulating the expression of proto-oncogene NEDD9.

14.
International Journal of Surgery ; (12): 270-275,F4, 2023.
Article in Chinese | WPRIM | ID: wpr-989445

ABSTRACT

Objective:To study the expression of microRNA (miRNA)-4783-3p in liver cancer tissue and its effect on the proliferation and migration of liver cancer Huh-7 cells.Methods:The cBioPortal database was used to analyze the expression of miR-4783-3p in liver cancer tissues and adjacent tissues. In strict accordance with the instructions of Lipofectamine? 2000 transfection kit, miR-4783-3p overexpression mimics or overexpression control mimics were transfected into Huh-7 cells respectively, namely overexpression group and control group. The proliferation of Huh-7 cells was analyzed by CCK-8 assay, and the migration of Huh-7 cells was analyzed by cell scratch method. The targeting relationship between miR-4783-3p and insulin-like growth factor binding protein 2 ( IGFBP2) mRNA was detected by dual-luciferase reporter gene assay. RT-qPCR was used to detect the expression of IGFBP2 mRNA. Western-blotting was used to detect the expression of IGFBP2 protein and EGFR-STAT3 molecular pathway proteins. Results:The expression of miR-4783-3p in liver cancer tissues was significantly lower than that in adjacent tissues ( P<0.01). Compared with the control group, the proliferation ability of Huh-7 cells in the overexpression group was significantly decreased ( P<0.05). The scratch healing rates of Huh-7 cells in the control group and the overexpression group were (67.71±9.04)% and (29.58±10.51)%, respectively, and the scratch healing rate in the overexpression group was significantly lower ( P<0.01). miR-4783-3p targeted and bound to IGFBP2 mRNA ( P<0.01). The expression of IGFBP2 mRNA in the control and overexpression groups was 5.76±1.44 and 0.99±0.47, respectively, and miR-4783-3p negatively regulated the expression of IGFBP2 mRNA ( P<0.01). Compared with the control group, the expressions of IGFBP2 protein and EGFR-STAT3 molecular pathway protein were decreased in the overexpression group. Conclusions:miR-4783-3p is lowly expressed in liver cancer tissues. miR-4783-3p can attenuate the proliferation and invasion ability of liver cancer Huh-7 cells by inducing the low expression of IGFBP2 gene.

15.
International Journal of Surgery ; (12): 246-251,F3, 2023.
Article in Chinese | WPRIM | ID: wpr-989441

ABSTRACT

Objective:To investigate the effect of lncRNA AC132217.4 on the proliferation and invasion of liver cancer MHCC97-H cells and its molecular mechanism.Methods:The TCGA database was used to analyze the differential expression of AC132217.4 in liver cancer tissue and adjacent tissue, and to analyze the relationship between the expression level of AC132217.4 and the overall survival of liver cancer patients. Transfection of pcDNA-AC132217.4 plasmid into MHCC97-H cells was defined as AC132217.4 group, transfection of pcDNA plasmid into MHCC97-H cells was defined as negative control (NC) group, respectively. The proliferation and invasion ability of MHCC97-H cells were detected by MTT method and Matrigel invasion assay. The binding site between AC132217.4 and miR-18a-5p was analyzed by starBase v2.0 software and dual luciferase reporter gene assay. Real-time quantitative PCR (RT-qPCR) detected the differential expression of miR-18a-5p in the two groups of MHCC97-H cells. The expression of epithelial-mesenchymal transition protein was detected by Western-blotting. Measurement data with normal distribution were expressed as mean±standard deviation ( ± s), and t-test was used for comparison between the two groups. Results:Compared with adjacent tissues, the expression of AC132217.4 was down-regulated in liver cancer tissues ( P<0.01). Compared with liver cancer patients with low expression of AC132217.4, the overall survival of liver cancer patients with high AC132217.4 expression was longer ( P<0.05). The pcDNA-AC132217.4 plasmid significantly inhibited the proliferation of MHCC97-H cells ( P<0.05). The number of invasive cells in the NC group and AC132217.4 group were (131.30±12.55) and (37.45±7.77), respectively. The pcDNA-AC132217.4 plasmid significantly inhibited the invasive ability of MHCC97-H cells ( t=6.36, P<0.01). AC132217.4 directly complemented miR-18a-5p ( P<0.01). The expression of miR-18a-5p in MHCC97-H cells in AC132217.4 group (1.04±0.30) was significantly lower than that in NC group (6.13±0.75) ( t=6.27, P<0.01). Compared with the NC group, the expressions of epithelial phenotype proteins Cytokeratin and Claudin-1 in MHCC97-H cells in AC132217.4 group were up-regulated, while the expressions of mesenchymal phenotype proteins Vimentin, Slug and Snail were down-regulated. Conclusions:The expression of AC132217.4 is low in liver cancer tissue, and it is related to the overall survival of liver cancer patients. AC132217.4 might inhibit the proliferation and invasion of liver cancer MHCC97-H cells by sponge miR-18a-5p.

16.
International Journal of Biomedical Engineering ; (6): 264-269, 2023.
Article in Chinese | WPRIM | ID: wpr-989349

ABSTRACT

The matrix metalloproteinases family (MMPs) are proteins related to tumor formation and metastasis that have attracted the attention of scholars in recent years. Tumor cells can secrete MMPs during malignant transformation, and the expression of MMPs in different malignant tumors is diverse, and different members of MMPs do not have exactly the same biological properties. Matrix metalloproteinase-19 (MMP-19) is a new member of MMPs whose secretion increases rapidly during the malignant transformation of cells and is released into the extracellular space to participate in biological processes such as proliferation, adhesion, invasion, migration, and angiogenesis of tumor cells. In this paper, the progress of research on the biological properties of MMP-19 in tumors was reviewed to provide a theoretical basis for exploring the development of tumors, especially for studying the invasion and metastasis of tumor cells.

17.
International Journal of Biomedical Engineering ; (6): 116-121, 2023.
Article in Chinese | WPRIM | ID: wpr-989325

ABSTRACT

Objective:To investigate the effects of cytoplasmic fragile X mental retardation protein 1 binding protein 2 (CYFIP2) overexpression on the biological functions and Wnt/β-catenin signaling pathways of bladder cancer T24 cells.Methods:The control group was T24 cells transfected with the empty pcDNA3 vector, and the overexpression group was T24 cells transfected with the CYFIP2 overexpression vector. The expression of CYFIP2 mRNA and protein was detected by reverse transcriptase, quantitative polymerase chain reaction, and Western Blot. The effect of CYFIP2 overexpression on T24 cell proliferation was detected by CCK-8. The effect of CYFIP2 overexpression on T24 cell migration and invasion was detected by Transwell. The effects of CYFIP2 overexpression on Wnt/β-catenin signaling pathway in T24 cells were detected by Western Blot.Results:Compared with the control group, the expression levels of CYFIP2 mRNA and protein were increased in the overexpression group (all P < 0.001), and the cell proliferation, migration, and invasion abilities were reduced (all P < 0.01). β-catenin, c-Myc, and Cyclin D1 protein expression were down-regulated in CYFIP2 overexpressed T24 cells (all P < 0.05), while the protein levels of p-β-catenin were increased ( P < 0.05). Conclusions:CYFIP2 overexpression can inhibit T24 cell proliferation, migration, and invasion, and its possible molecular mechanism is related to the inhibition of Wnt/β-catenin signaling pathway.

18.
International Journal of Biomedical Engineering ; (6): 110-115, 2023.
Article in Chinese | WPRIM | ID: wpr-989324

ABSTRACT

Objective:To investigate the effect of kaempferol on proliferation, migration, and invasion of cervical cancer SiHa cells by regulating circFBXW7.Methods:SiHa cells were treated with kaempferol at low, medium, and high doses (15, 30, and 60 μmol/L) for 24 h. Untreated SiHa cells were used as the control group. CCK-8 was used to detect the effect of kaempferol on the proliferation of SiHa cells. Transwell was used to detect the effect of kaempferol on the migration and invasion of SiHa cells. Real-time fluorescence quantitative polymerase chain reaction was used to detect the expression of circFBXW7 in SiHa cells. pcDNA and pcDNA-circFBXW7 were transfected into SiHa cells, respectively, and si-NC and si-circFBXW7 were transfected into SiHa cells after adding 60 μmol/L kaempferol treatment for 24 h. The effects of circFBXW7 and its knockdown, circFBXW7, on the proliferation, migration, and invasion of SiHa cells were investigated, and the effects of E-cadherin and N-cadherin protein expression levels were detected by Western Blot. Results:Compared with the control group, the cell value-added, migration, and invasion abilities of the low, medium, and high dose groups were decreased (all P < 0.05) and were dose-related, and the expression of circFBXW7 was increased ( P < 0.05). After transfection with pcDNA-circFBXW7, the expression of circFBXW7 increased ( P < 0.05), while promoting the proliferation, cell migration, and invasion of kaempferol on SiHa cells (all P < 0.05). After transfection with si-circFBXW7, the expression of circFBXW7 decreased ( P < 0.05), while inhibiting the proliferation, cell migration, and invasion of kaempferol on SiHa cells (all P < 0.05). That indicated that the transfection of si-circFBXW7 could attenuate the inhibitory effects of kaempferol on the above oncogenic phenotypes of SiHa cells. Compared with the control group, E-cadherin expression was upregulated, and N-cadherin expression was downregulated in the low, medium, and high dose groups (all P < 0.05) in a dose-related manner. After transfection of pcDNA-circFBXW7 with SiHa cells, the expression of E-cadherin was increased, and the expression of N-cadherin was decreased (all P < 0.05). After transfection of si-circFBXW7 with SiHa cells, the expression of E-cadherin decreased, and the expression of N-cadherin increased (all P < 0.05). Conclusions:Kaempferol can reduce the proliferation, migration, and invasion abilities of SiHa cells by promoting circFBXW7 expression.

19.
Journal of Sun Yat-sen University(Medical Sciences) ; (6): 816-822, 2023.
Article in Chinese | WPRIM | ID: wpr-988728

ABSTRACT

ObjectiveTo analyze the expression of Lactate dehydrogenase A(LDHA) in both renal cell carcinoma (RCC) tissue and RCC cell lines, and to investigate the impact of LDHA expression on the progression of RCC. MethodsFrom June 2018 to June 2022, totally 52 cases of RCC tissue samples and 49 cases of para-cancerous tissue samples were collected through surgical procedures from our hospital. LDHA expression was detected using immunohistochemistry (IHC). The expression levels of LDHA in vitro were also detected in the normal human proximal tubule epithelial cell line HK-2 and renal cell carcinoma cell lines A498, Caki-2, ACHN, and 786-O by using qRT-PCR and Western blot. A recombinant plasmid carrying LDHA-shRNA was constructed and then transfected into 786-O cells to down-regulate the expression of LDHA. Tumor proliferative capacity was monitored using CCK-8 assay, clonal formation assay and EdU assessments. Additionally, cell glycolytic activity was assessed through glucose uptake assay, lactate secretion assay, and ECAR analysis. ResultsIHC analysis revealed significantly higher expression of LDHA in RCC tissue compared to adjacent tissues(P<0.05). Furthermore, RCC tissues with higher TNM stage exhibited greater expression of LDHA than those with lower TNM stage (P<0.05). The results of qRT-PCR and Western blot demonstrated that the expression of LDHA in each RCC cell line was significantly higher than that in HK-2(P<0.05). After blocking the expression of LDHA in 786-O, there was a significant down-regulation of cell proliferation and glycolysis capacity (P<0.05). ConclusionsThe expression of LDHA in RCC tissue and RCC cell lines is significantly overexpressed compared with normal one, particularly in those with higher TNM stage. Knockdown of the expression of LDHA significantly suppresses cell proliferation and aerobic glycolysis capacity in 786-O.

20.
Journal of Sun Yat-sen University(Medical Sciences) ; (6): 792-800, 2023.
Article in Chinese | WPRIM | ID: wpr-988725

ABSTRACT

ObjectiveTo investigate the effect of LncRNA GAPLINC on the cell proliferation of RA-FLSs. MethodsRA-FLSs were cultured from synovial specimens. The expression of LncRNA GAPLINC in RA-FLSs and trauma-FLSs groups was detected by qRCR. GAPLINC suppression was transfected by siRNA and the inhibition efficiency was detected by qRCR. Flow cytometry was adopted to determine the change of cell growth and cell cycle distribution. 【ResμLts】 The expression of LncRNA GAPLINC was significantly higher in RA-FLSs than that of the trauma-FLSs (P<0.05).Transfection of GAPLINC-siRNA significantly decreased the expression of LncRNA GAPLINC. GAPLINC silence in RA-FLSs revealed significant inhibition in cell proliferation which was showed by the reduced cell number in S phase(P<0.05). Moreover, flow cytometry assay showed GAPIINC-siRNA treatment group had an accumμLation of cells in the G0/G1 phase and decreased RA-FLSs in the S and G2/M phase(P<0.05). After GAPLINC knockdown, mRNA and protein levels of Cyclin D1 and PCNA, which were positively correlated with proliferative phenotype, were decreased (P<0.05), while p21, which was negatively correlated with proliferative phenotype, was up-regμLated (P<0.05). ConclusionsThe mRNA expression of GAPLINC was higher in RA-FLSs compared with trauma-FLSs ,which was statistically significant(P<0.05). The silence of LncRNA GAPLINC coμLd significantly inhibit RA-FLSs cell growth and suppress the cell cycle transformation, which suggests that GAPLINC may play a role in the regμLation of proliferation of RA-FLSs, leading to synovial hyperplasia and contributing to RA progression.

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