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1.
Biomed Mater ; 19(5)2024 Jul 08.
Article de Anglais | MEDLINE | ID: mdl-38917815

RÉSUMÉ

The natural healing process of extraction socket and traditional socket plug material could not prevent buccal bone wall resorption and down growth of epithelium from the socket orifice. A multiphase bioactive socket plug (BP) is designed to overcome the natural healing process by maintaining the three-dimensional (3D) volume of extraction sockets, particularly in sockets with wall defects, and later provide sufficient alveolar bone volume for implant placement. The study aimed to fabricate and evaluate the physical, chemical, and biological performance of BPin vitro. The BP was fabricated through freeze-drying and layer-by-layer assembly, comprised of a base serving as a scaffold, a central portion for promoting bone regeneration, an upper buccal portion for maintaining alveolar socket dimension with a covering collagen membrane (Memb) on the top and upper buccal surface to prevent soft tissue infiltration. The BP as the experimental group and a pure collagen plug (CP) as the control group were investigated and compared. Radiograph, scanning electron microscopy, and energy-dispersive spectroscopy mapping confirmed that the four-part BP was successfully assembled and fabricated. Swelling rate analysis indicated that BP, CP, and Memb reached swelling equilibrium within 1 hour. BP exhibited a high remaining weight percentage in collagenase solution (68.81 ± 2.21% on day 90) and sustained calcium ion release, reaching the maximum 0.13 ± 0.04 mmol l-1on day 14. In biological assays, BP exhibited excellent cell proliferation (The OD value increased from 0.02 on day 1 to 0.23 on day 21.). The BP group exhibited higher alkaline phosphatase activity and osteocalcin content than the CP group within 21 days. Memb and BP exhibited outstanding barrier function, as evidenced by Hematoxylin and eosin staining. In summary, the multiphase bioactive socket plug represents a promising scaffold for alveolar ridge preservation application.


Sujet(s)
Collagène , Structures d'échafaudage tissulaires , Alvéole dentaire , Alvéole dentaire/chirurgie , Animaux , Collagène/composition chimique , Structures d'échafaudage tissulaires/composition chimique , Matériaux biocompatibles/composition chimique , Régénération osseuse/effets des médicaments et des substances chimiques , Processus alvéolaire , Prolifération cellulaire , Microscopie électronique à balayage , Humains , Test de matériaux , Reconstruction de crête alvéolaire/méthodes , Extraction dentaire , Ostéoblastes/cytologie , Substituts osseux/composition chimique , Substituts osseux/pharmacologie , Cicatrisation de plaie , Calcium/métabolisme , Calcium/composition chimique , Ostéocalcine/métabolisme
2.
Cancer Immunol Immunother ; 73(8): 137, 2024 Jun 04.
Article de Anglais | MEDLINE | ID: mdl-38833034

RÉSUMÉ

Tumor-infiltrating lymphocyte (TIL) deficiency is the most conspicuous obstacle to limit the cancer immunotherapy. Immune checkpoint inhibitors (ICIs), such as anti-PD-1 antibody, have achieved great success in clinical practice. However, due to the limitation of response rates of ICIs, some patients fail to benefit from monotherapy. Thus, novel combination therapy that could improve the response rates emerges as new strategies for cancer treatment. Here, we reported that the natural product rocaglamide (RocA) increased tumor-infiltrating T cells and promoted Th17 differentiation of CD4+ TILs. Despite RocA monotherapy upregulated PD-1 expression of TILs, which was considered as the consequence of T cell activation, combining RocA with anti-PD-1 antibody significantly downregulated the expression of PD-1 and promoted proliferation of TILs. Taken together, these findings demonstrated that RocA could fuel the T cell anti-tumor immunity and revealed the remarkable potential of RocA as a therapeutic candidate when combining with the ICIs.


Sujet(s)
Benzofuranes , Différenciation cellulaire , Inhibiteurs de points de contrôle immunitaires , Lymphocytes TIL , Récepteur-1 de mort cellulaire programmée , Inhibiteurs de points de contrôle immunitaires/pharmacologie , Inhibiteurs de points de contrôle immunitaires/usage thérapeutique , Lymphocytes TIL/immunologie , Lymphocytes TIL/effets des médicaments et des substances chimiques , Lymphocytes TIL/métabolisme , Souris , Animaux , Benzofuranes/pharmacologie , Benzofuranes/usage thérapeutique , Récepteur-1 de mort cellulaire programmée/antagonistes et inhibiteurs , Humains , Différenciation cellulaire/effets des médicaments et des substances chimiques , Tumeurs/immunologie , Tumeurs/traitement médicamenteux , Tumeurs/anatomopathologie , Résistance aux médicaments antinéoplasiques/effets des médicaments et des substances chimiques , Souris de lignée C57BL , Femelle , Lymphocytes T/immunologie , Lymphocytes T/effets des médicaments et des substances chimiques , Lymphocytes T/métabolisme , Lignée cellulaire tumorale
3.
Int J Med Sci ; 21(8): 1438-1446, 2024.
Article de Anglais | MEDLINE | ID: mdl-38903927

RÉSUMÉ

Background: Exploring potential biomarkers for predicting clinical outcomes and developing targeted therapies for acute myeloid leukemia (AML) is of utmost importance. This study aimed to investigate the expression pattern of the thioredoxin-interacting protein (TXNIP)/nucleotide-binding oligomerization domain (NOD)-like receptor protein 3 (NLRP3) pathway and its role in the prognosis of AML patients. Methods: In this study, we examined the prognostic value of TXNIP/NLRP3 pathway in AML patients using microarray data from Gene Expression Omnibus (GEO) and transcriptome data from the Cancer Genome Atlas (TCGA) to develop a prognostic model and validated the results by quantitative real-time PCR (qRT-PCR) in a validation cohort of 26 AML patients and 18 healthy individuals from Jinan University (JNU) database. Results: Analysis of the GSE13159 database revealed that TXNIP, interleukin 1 beta (IL1B) within the TXNIP/NLRP3 pathway were significantly upregulated and caspase1 (CASP1) was downregulated in AML patients (TXNIP, P = 0.031; IL1B, P = 0.042; CASP1, P = 0.038). Compared to high NLRP3 expression, AML patients with low NLRP3 expression had a longer overall survival (OS) in the GSE12417 dataset (P = 0.004). Moreover, both the training and validation results indicated that lower TXNIP, NLRP3, and IL1B expression were associated with favorable prognosis (GSE12417, P = 0.009; TCGA, P = 0.050; JNU, P = 0.026). According to the receiver operating characteristic curve analysis, this model demonstrated a sensitivity of 84% for predicting three-year survival. These data might provide novel predictors for AML outcome and direction for further investigation of the possibility of using TXNIP/NLRP3/IL1B genes in novel targeted therapies for AML.


Sujet(s)
Marqueurs biologiques tumoraux , Protéines de transport , Inflammasomes , Interleukine-1 bêta , Leucémie aigüe myéloïde , Protéine-3 de la famille des NLR contenant un domaine pyrine , Humains , Protéine-3 de la famille des NLR contenant un domaine pyrine/métabolisme , Protéine-3 de la famille des NLR contenant un domaine pyrine/génétique , Leucémie aigüe myéloïde/génétique , Leucémie aigüe myéloïde/métabolisme , Leucémie aigüe myéloïde/mortalité , Leucémie aigüe myéloïde/anatomopathologie , Protéines de transport/génétique , Protéines de transport/métabolisme , Femelle , Mâle , Pronostic , Marqueurs biologiques tumoraux/génétique , Marqueurs biologiques tumoraux/métabolisme , Adulte d'âge moyen , Interleukine-1 bêta/génétique , Interleukine-1 bêta/métabolisme , Inflammasomes/métabolisme , Inflammasomes/génétique , Transduction du signal/génétique , Adulte , Sujet âgé , Régulation de l'expression des gènes dans la leucémie , Thiorédoxines/génétique , Thiorédoxines/métabolisme
4.
J Biomed Sci ; 31(1): 62, 2024 Jun 11.
Article de Anglais | MEDLINE | ID: mdl-38862973

RÉSUMÉ

BACKGROUND: Ovarian carcinoma (OC) is a fatal malignancy, with most patients experiencing recurrence and resistance to chemotherapy. In contrast to hematogenous metastasizing tumors, ovarian cancer cells disseminate within the peritoneal cavity, especially the omentum. Previously, we reported omental crown-like structure (CLS) number is associated with poor prognosis of advanced-stage OC. CLS that have pathologic features of a dead or dying adipocyte was surrounded by several macrophages is well known a histologic hallmark for inflammatory adipose tissue. In this study, we attempted to clarify the interaction between metastatic ovarian cancer cells and omental CLS, and to formulate a therapeutic strategy for advanced-stage ovarian cancer. METHODS: A three-cell (including OC cells, adipocytes and macrophages) coculture model was established to mimic the omental tumor microenvironment (TME) of ovarian cancer. Caspase-1 activity, ATP and free fatty acids (FFA) levels were detected by commercial kits. An adipocyte organoid model was established to assess macrophages migration and infiltration. In vitro and in vivo experiments were performed for functional assays and therapeutic effect evaluations. Clinical OC tissue samples were collected for immunochemistry stain and statistics analysis. RESULTS: In three-cell coculture model, OC cells-derived IL-6 and IL-8 could induce the occurrence of pyroptosis in omental adipocytes. The pyroptotic adipocytes release ATP to increase macrophage infiltration, release FFA into TME, uptake by OC cells to increase chemoresistance. From OC tumor samples study, we demonstrated patients with high gasdermin D (GSDMD) expression in omental adipocytes is highly correlated with chemoresistance and poor outcome in advanced-stage OC. In animal model, by pyroptosis inhibitor, DSF, effectively retarded tumor growth and prolonged mice survival. CONCLUSIONS: Omental adipocyte pyroptosis may contribute the chemoresistance in advanced stage OC. Omental adipocytes could release FFA and ATP through the GSDMD-mediate pyroptosis to induce chemoresistance and macrophages infiltration resulting the poor prognosis in advanced-stage OC. Inhibition of adipocyte pyroptosis may be a potential therapeutic modality in advanced-stage OC with omentum metastasis.


Sujet(s)
Adipocytes , Résistance aux médicaments antinéoplasiques , Omentum , Tumeurs de l'ovaire , Pyroptose , Microenvironnement tumoral , Femelle , Tumeurs de l'ovaire/métabolisme , Tumeurs de l'ovaire/anatomopathologie , Omentum/métabolisme , Humains , Adipocytes/métabolisme , Souris , Animaux , Lignée cellulaire tumorale , Techniques de coculture
5.
Molecules ; 29(12)2024 Jun 16.
Article de Anglais | MEDLINE | ID: mdl-38930933

RÉSUMÉ

The rapid development of the battery industry has brought about a large amount of waste battery pollution. How to realize the high-value utilization of waste batteries is an urgent problem to be solved. Herein, cobalt and titanium compounds (LTCO) were firstly recovered from spent lithium-ion batteries (LIBs) using the carbon thermal reduction approach, and plasmonic attapulgite/Co(Ti)Ox (H-ATP/Co(Ti)Ox) nanocomposites were prepared by the microwave hydrothermal technique. H-ATP had a large specific surface area and enough active sites to capture CO2 molecules. The biochar not only reduced the spinel phase of waste LIBs into metal oxides including Co3O4 and TiO2 but also increased the separation and transmission of the carriers, thereby accelerating the adsorption and reduction of CO2. In addition, H-ATP/Co(Ti)Ox exhibited a localized surface plasmon resonance effect (LSPR) in the visible to near-infrared region and released high-energy hot electrons, enhancing the surface temperature of the catalyst and further improving the catalytic reduction of CO2 with a high CO yield of 14.7 µmol·g-1·h-1. The current work demonstrates the potential for CO2 reduction by taking advantage of natural mineral and spent batteries.

6.
Front Immunol ; 15: 1321126, 2024.
Article de Anglais | MEDLINE | ID: mdl-38711501

RÉSUMÉ

Introduction: γδ T cells recognize and exert cytotoxicity against tumor cells. They are also considered potential immune cells for immunotherapy. Our previous study revealed that the altered expression of immune checkpoint T-cell immunoreceptor with immunoglobulin and ITIM domain (TIGIT) on γδ T cells may result in immunosuppression and is possibly associated with a poor overall survival in acute myeloid leukemia (AML). However, whether γδ T-cell memory subsets are predominantly involved and whether they have a relationship with clinical outcomes in patients with AML under the age of 65 remain unclear. Methods: In this study, we developed a multicolor flow cytometry-based assay to monitor the frequency and distribution of γδ T-cell subsets, including central memory γδ T cells (TCM γδ), effector memory γδ T cells (TEM γδ), and TEM expressing CD45RA (TEMRA γδ), in peripheral blood from 30 young (≤65 years old) patients with newly diagnosed non-acute promyelocytic leukemia (also known as M3) AML (AMLy-DN), 14 young patients with AML in complete remission (AMLy-CR), and 30 healthy individuals (HIs). Results: Compared with HIs, patients with AMLy-DN exhibited a significantly higher differentiation of γδ T cells, which was characterized by decreased TCM γδ cells and increased TEMRA γδ cells. A generally higher TIGIT expression was observed in γδ T cells and relative subsets in patients with AMLy-DN, which was partially recovered in patients with AMLy-CR. Furthermore, 17 paired bone marrow from patients with AMLy-DN contained higher percentages of γδ and TIGIT+ γδ T cells and a lower percentage of TCM γδ T cells. Multivariate logistic regression analyses revealed the association of high percentage of TIGIT+ TCM γδ T cells with an increased risk of poor induction chemotherapy response. Conclusions: In this study, we investigated the distribution of γδ T cells and their memory subsets in patients with non-M3 AML and suggested TIGIT+ TCM γδ T cells as potential predictive markers of induction chemotherapy response.


Sujet(s)
Récepteur lymphocytaire T antigène, gamma-delta , Récepteurs immunologiques , Humains , Récepteurs immunologiques/métabolisme , Mâle , Femelle , Adulte , Adulte d'âge moyen , Pronostic , Récepteur lymphocytaire T antigène, gamma-delta/métabolisme , Jeune adulte , Sujet âgé , Cellules T mémoire/immunologie , Cellules T mémoire/métabolisme , Sous-populations de lymphocytes T/immunologie , Sous-populations de lymphocytes T/métabolisme , Leucémie aigüe myéloïde/immunologie , Leucémie aigüe myéloïde/thérapie , Leucémie aigüe myéloïde/diagnostic , Mémoire immunologique , Leucémie aiguë promyélocytaire/immunologie , Leucémie aiguë promyélocytaire/diagnostic , Leucémie aiguë promyélocytaire/mortalité , Immunophénotypage
7.
BMC Med Genomics ; 17(1): 141, 2024 May 23.
Article de Anglais | MEDLINE | ID: mdl-38783263

RÉSUMÉ

BACKGROUND: The mechanism of mitochondria-related genes (MRGs) in childhood allergic asthma (CAS) was unclear. The aim of this study was to find new biomarkers related to MRGs in CAS. METHODS: This research utilized two CAS-related datasets (GSE40888 and GSE40732) and extracted 40 MRGs from the MitoCarta3.0 Database. Initially, differential expression analysis was performed on CAS and control samples in the GSE40888 dataset to obtain the differentially expressed genes (DEGs). Differentially expressed MRGs (DE-MRGs) were obtained by overlapping the DEGs and MRGs. Protein protein interactions (PPI) network of DE-MRGs was created and the top 10 genes in the degree ranking of Maximal Clique Centrality (MCC) algorithm were defined as feature genes. Hub genes were obtained from the intersection genes from the Least absolute shrinkage and selection operator (LASSO) and EXtreme Gradient Boosting (XGBoost) algorithms. Additionally, the expression validation was conducted, functional enrichment analysis, immune infiltration analysis were finished, and transcription factors (TFs)-miRNA-mRNA regulatory network was constructed. RESULTS: A total of 1505 DEGs were obtained from the GSE40888, and 44 DE-MRGs were obtained. A PPI network based on these 44 DE-MRGs was created and revealed strong interactions between ADCK5 and MFN1, BNIP3 and NBR1. Four hub genes (NDUFAF7, MTIF3, MRPS26, and NDUFAF1) were obtained by taking the intersection of genes from the LASSO and XGBoost algorithms based on 10 signature genes which obtained from PPI. In addition, hub genes-based alignment diagram showed good diagnostic performance. The results of Gene Set Enrichment Analysis (GSEA) suggested that hub genes were closely related to mismatch repair. The B cells naive cells were significantly expressed between CAS and control groups, and MTIF3 was most strongly negatively correlated with B cells naive. In addition, the expression of MTIF3 and MRPS26 may have influenced the inflammatory response in CAS patients by affecting mitochondria-related functions. The quantitative real-time polymerase chain reaction (qRT‒PCR) results showed that four hub genes were all down-regulated in the CAS samples. CONCLUSION: NDUFAF7, MTIF3, MRPS26, and NDUFAF1 were identified as an MRGs-related biomarkers in CAS, which provides some reference for further research on CAS.


Sujet(s)
Asthme , Marqueurs biologiques , Mitochondries , Cartes d'interactions protéiques , Humains , Asthme/génétique , Enfant , Marqueurs biologiques/métabolisme , Mitochondries/génétique , Mitochondries/métabolisme , Réseaux de régulation génique , Analyse de profil d'expression de gènes , microARN/génétique , Facteurs de transcription/génétique , Facteurs de transcription/métabolisme , Protéines mitochondriales/génétique , ARN messager/génétique , ARN messager/métabolisme
8.
World J Hepatol ; 16(5): 688-702, 2024 May 27.
Article de Anglais | MEDLINE | ID: mdl-38818294

RÉSUMÉ

Non-alcoholic fatty liver disease (NAFLD) encompasses a spectrum of liver disorders of varying severity, ultimately leading to fibrosis. This spectrum primarily consists of NAFL and non-alcoholic steatohepatitis. The pathogenesis of NAFLD is closely associated with disturbances in the gut microbiota and impairment of the intestinal barrier. Non-gut commensal flora, particularly bacteria, play a pivotal role in the progression of NAFLD. Notably, Porphyromonas gingivalis, a principal bacterium involved in periodontitis, is known to facilitate lipid accumulation, augment immune responses, and induce insulin resistance, thereby exacerbating fibrosis in cases of periodontitis-associated NAFLD. The influence of oral microbiota on NAFLD via the "oral-gut-liver" axis is gaining recognition, offering a novel perspective for NAFLD management through microbial imbalance correction. This review endeavors to encapsulate the intricate roles of oral bacteria in NAFLD and explore underlying mechanisms, emphasizing microbial control strategies as a viable therapeutic avenue for NAFLD.

10.
Free Radic Biol Med ; 219: 153-162, 2024 Jul.
Article de Anglais | MEDLINE | ID: mdl-38657753

RÉSUMÉ

The anemia of inflammation (AI) is characterized by the presence of inflammation and abnormal elevation of hepcidin. Accumulating evidence has proved that Rocaglamide (RocA) was involved in inflammation regulation. Nevertheless, the role of RocA in AI, especially in iron metabolism, has not been investigated, and its underlying mechanism remains elusive. Here, we demonstrated that RocA dramatically suppressed the elevation of hepcidin and ferritin in LPS-treated mice cell line RAW264.7 and peritoneal macrophages. In vivo study showed that RocA can restrain the depletion of serum iron (SI) and transferrin (Tf) saturation caused by LPS. Further investigation showed that RocA suppressed the upregulation of hepcidin mRNA and downregulation of Fpn1 protein expression in the spleen and liver of LPS-treated mice. Mechanistically, this effect was attributed to RocA's ability to inhibit the IL-6/STAT3 pathway, resulting in the suppression of hepcidin mRNA and subsequent increase in Fpn1 and TfR1 expression in LPS-treated macrophages. Moreover, RocA inhibited the elevation of the cellular labile iron pool (LIP) and reactive oxygen species (ROS) induced by LPS in RAW264.7 cells. These findings reveal a pivotal mechanism underlying the roles of RocA in modulating iron homeostasis and also provide a candidate natural product on alleviating AI.


Sujet(s)
Benzofuranes , Hepcidines , Homéostasie , Interleukine-6 , Fer , Animaux , Souris , Anémie/métabolisme , Anémie/génétique , Anémie/traitement médicamenteux , Anémie/anatomopathologie , Transporteurs de cations/génétique , Transporteurs de cations/métabolisme , Ferritines/métabolisme , Ferritines/génétique , Régulation de l'expression des gènes/effets des médicaments et des substances chimiques , Hepcidines/effets des médicaments et des substances chimiques , Hepcidines/génétique , Hepcidines/métabolisme , Homéostasie/effets des médicaments et des substances chimiques , Inflammation/métabolisme , Inflammation/génétique , Inflammation/anatomopathologie , Interleukine-6/métabolisme , Interleukine-6/génétique , Fer/métabolisme , Lipopolysaccharides/pharmacologie , Foie/métabolisme , Foie/anatomopathologie , Macrophages/métabolisme , Macrophages/effets des médicaments et des substances chimiques , Cellules RAW 264.7 , Espèces réactives de l'oxygène/métabolisme , Récepteurs à la transferrine/métabolisme , Récepteurs à la transferrine/génétique , Transduction du signal/effets des médicaments et des substances chimiques , Facteur de transcription STAT-3/métabolisme , Facteur de transcription STAT-3/génétique , Benzofuranes/pharmacologie
11.
Talanta ; 274: 125999, 2024 Jul 01.
Article de Anglais | MEDLINE | ID: mdl-38583327

RÉSUMÉ

The construction of efficient methods for highly sensitive and rapid detection of disease markers is essential for the early diagnosis of serious diseases. In this paper, taking advantage of the UiO-66-NH2 signal molecule in combination with a waste-free entropy-driven DNA machine, a novel homogeneous electrochemical ratiometric platform is developed to detect MircoRNA (miRNA). Metal-organic framework materials (UiO-66-NH2 MOF) and ferrocene were utilized as electrochemical signal tags and reference probes, respectively. The target-initiated waste-free three-dimensional (3D) entropy-driven DNA nanomachine is activated in the presence of miRNA, resulting in DNA-labeled-UiO-66-NH2 falling off from the electrode, leading to a decrease in the signal of UiO-66-NH2 at 0.83V. Our strategy can mitigate false positive responses induced by the DNA probes immobilized on electrodes in traditional distance-dependent signal adjustment ratiometric strategies. The proposed ratiometric platform demonstrates superior sensitivity (a detection limit of 9.8 fM), simplified operation, high selectivity, and high repeatability. The ratiometric biosensor is also applied to detect miRNA content in spiked serum samples.


Sujet(s)
Techniques de biocapteur , Techniques électrochimiques , Entropie , Réseaux organométalliques , microARN , microARN/sang , microARN/analyse , Techniques de biocapteur/méthodes , Techniques électrochimiques/méthodes , Humains , Réseaux organométalliques/composition chimique , ADN/composition chimique , Limite de détection , Électrodes , Sondes d'ADN/composition chimique , Sondes d'ADN/génétique , Composés du fer II/composition chimique , Métallocènes/composition chimique
12.
Phytomedicine ; 128: 155333, 2024 Jun.
Article de Anglais | MEDLINE | ID: mdl-38518633

RÉSUMÉ

BACKGROUND: Targeting long non-coding RNAs (LncRNAs) is a novel and promising approach in cancer therapy. In our previous study, we investigated the effects of ailanthone (aila), the main active compound derived from the stem barks of Ailanthus altissima (Mill.) Swingle, on the growth of non-small cell lung cancer (NSCLC) cells. Although we observed significant inhibition of NSCLC cell growth of aila, the underlying mechanisms involving LncRNAs, specifically LncRNA growth arrest specific 5 (GAS5), remain largely unknown. METHODS: To further explore the impact of aila on NSCLC, we performed a series of experiments. Firstly, we confirmed the inhibitory effect of aila on NSCLC cell growth using multiple assays, including MTT, wound healing, transwell assay, as well as subcutaneous and metastasis tumor mice models in vivo. Next, we utilized cDNA microarray and RT-QPCR to identify GAS5 as the primary target of aila. To verify the importance of GAS5 in aila-induced tumor inhibition, we manipulated GAS5 expression levels by constructing GAS5 over-expression and knockdown NSCLC cell lines. Furthermore, we investigated the upstream and downstream signaling pathways of GAS5 through western blot and RT-QPCR analysis. RESULTS: Our results showed that aila effectively increased GAS5 expression, as determined by microarray analysis. We also observed that aila significantly enhanced GAS5 expression in a dose- and time-dependent manner across various NSCLC cell lines. Notably, over-expression of GAS5 led to a significant suppression of NSCLC cell tumor growth; while aila had minimal inhibitory effect on GAS5-knockdown NSCLC cells. Additionally, we discovered that aila inhibited ULK1 and autophagy, and this inhibition was reversed by GAS5 knockdown. Moreover, we found that aila up-regulated GAS5 expression by suppressing UPF1-mediated nonsense-mediated mRNA decay (NMD). CONCLUSION: In summary, our findings suggest that aila promotes GAS5 expression by inhibiting UPF1-mediated NMD, leading to the repression of ULK1-mediated autophagy and subsequent inhibitory effects on NSCLC cells. These results indicate that aila is a potent enhancer of GAS5 and holds promising potential for application in NSCLC therapy. However, our research is currently focused only on NSCLC. It remains to be determined whether aila can also inhibit the growth of other types of tumors through the UPF1/GAS5/ULK1 signaling pathway. In future studies, we can further investigate the mechanisms by which aila suppresses other types of tumors and potentially broaden the scope of its application in cancer therapy.


Sujet(s)
Carcinome pulmonaire non à petites cellules , Tumeurs du poumon , ARN long non codant , Transduction du signal , Carcinome pulmonaire non à petites cellules/traitement médicamenteux , ARN long non codant/génétique , Humains , Animaux , Tumeurs du poumon/traitement médicamenteux , Transduction du signal/effets des médicaments et des substances chimiques , Lignée cellulaire tumorale , Prolifération cellulaire/effets des médicaments et des substances chimiques , Souris , Souris nude , Protéines et peptides de signalisation intracellulaire/métabolisme , Protéines et peptides de signalisation intracellulaire/génétique , Transactivateurs/génétique , Transactivateurs/métabolisme , Ailanthus/composition chimique , Antinéoplasiques d'origine végétale/pharmacologie , Souris de lignée BALB C , Quassinoïdes/pharmacologie , RNA helicases/métabolisme
13.
Chemistry ; 30(27): e202304118, 2024 May 14.
Article de Anglais | MEDLINE | ID: mdl-38433408

RÉSUMÉ

New chiral ligands could be obtained by introducing proline moieties and imidazoline moieties to binaphthyl skeletons. The chiral ligands exhibited balanced rigidity and flexibility which could allow the change of the conformations during the reactions on one hand, and could provide sufficient asymmetric induction on the other. The proline moiety could act as a linker connecting the binaphthyl skeletons and the imidazoline moieties as well as a coordinating group for the central metal, and the electronic and steric properties of the imidazoline groups could be carefully fine-tuned by the use of different substituents. In the presence of Cu(II) catalyst bearing such chiral ligands, aza-Friedel-Crafts reaction of 1-naphthols and electron-rich phenols with isatin-derived ketimines provided the desired products with good to excellent yields and up to 99 % ee. The reactions showed good scalability, and excellent ee could still be obtained when the reaction was carried out in gram-scale.

14.
J Leukoc Biol ; 2024 Mar 08.
Article de Anglais | MEDLINE | ID: mdl-38456763

RÉSUMÉ

Immune evasion by cancer cells poses a significant challenge for natural killer (NK) cell-based immunotherapy. Pyroptosis, a newly discovered form of programmed cell death, has shown great potential for enhancing the antitumor immunity of NK cells. Consequently, targeting pyroptosis has become an attractive strategy for boosting NK cell activity against cancer. In this study, various assays were conducted, including NK cell cytotoxicity assays, flow cytometry, xenograft tumor models, real-time PCR, and ELISA to assess NK cell-mediated cell killing, as well as gene and protein expressions. The results indicated that Euphohelioscopin A (Eupho-A), a potential pyroptosis activator, enhances NK cell-mediated lysis of tumor cells, resulting in inhibiting tumor growth that could be reversed by NK cell depletion. Furthermore, we found that Eupho-A significantly enhanced IFN-γ production in NK cells and synergistically up-regulated GSDME with IFN-γ in cancer cells. Eupho-A also increased the cleavage of GSDME, promoting GZMB-induced pyroptosis, which could be reversed by GSDME knockdown and IFN-γ blockade. Overall, the findings suggested that Eupho-A enhanced NK cell-mediated killing of cancer cells by triggering pyroptosis, making Eupho-A a promising pyroptosis activator with great potential for using in NK cell-based cancer immunotherapy.

15.
J Mech Behav Biomed Mater ; 153: 106500, 2024 May.
Article de Anglais | MEDLINE | ID: mdl-38484429

RÉSUMÉ

One strategy to correct alveolar bone defects is use of bioactive bone substitutes to maintain the structure of defect site and facilitate cells and vessels' ingrowth. This study aimed to fabricate and characterize the freeze-dried bone regeneration scaffolds composed of polymeric Type I collagen, nano Beta-tricalcium phosphate (ß-TCP), and gelatin. The stable structures of scaffolds were obtained by thermal crosslinking and EDC/NHS ((1-ethyl-3-(3-dimethylaminopropyl) carbodiimide)/(N-hydroxysuccinimide)) chemical crosslinking processes. Subsequently, the physicochemical and biological properties of the scaffolds were characterized and assessed. The results indicated the bioactive composite scaffolds containing 10% and 20% (w/v) nano ß-TCP exhibited suitable porosity (84.45 ± 25.43 nm, and 94.51 ± 14.69 nm respectively), a rapid swelling property (reaching the maximum swelling rate at 1 h), excellent degradation resistance (residual mass percentage of scaffolds higher than 80% on day 90 in PBS and Type I collagenase solution respectively), and sustained calcium release capabilities. Moreover, they displayed outstanding biological properties, including superior cell viability, cell adhesion, and cell proliferation. Additionally, the scaffolds containing 10% and 20% (w/v) nano ß-TCP could promote the osteogenic differentiation of MC3T3-E1. Therefore, the bioactive composite scaffolds containing 10% and 20% (w/v) nano ß-TCP could be further studied for being used to treat alveolar bone defects in vivo.


Sujet(s)
Gélatine , Ostéogenèse , Gélatine/pharmacologie , Structures d'échafaudage tissulaires/composition chimique , Régénération osseuse , Collagène/composition chimique , Phosphates de calcium/pharmacologie , Phosphates de calcium/composition chimique , Polymères , Ingénierie tissulaire/méthodes
16.
Anal Chim Acta ; 1299: 342432, 2024 Apr 22.
Article de Anglais | MEDLINE | ID: mdl-38499419

RÉSUMÉ

Efficient detection of cancer-related nucleic acids is pivotal for early cancer diagnosis. This study introduces a target induced three-dimensional DNA biomimetic networks (B-3D Net)-based ratiometric fluorescence platform using manganese dioxide nanosheets (MnO2 NS)/o-phenylenediamine in combination with hybridization chain reaction to detect cancer-related genes (p53 gene). The incorporation of multiple signals within the B-3D networks can significantly enhance catalytic activity and amplify the output signals, enabling a high sensitivity. Compared with traditional ratio fluorescence platforms, there is no demand to synthesize fluorescent nanoprobes due to the in-situ formation of fluorescence species, which is simple and cost-effective. The corresponding assay demonstrated exceptional sensitivity (with a detection limit as low as 2 fM), selectivity, reproducibility, and accuracy, which mitigates disturbances caused by instrument errors, an inaccurate probe count, and the microenvironment. Furthermore, the ease and straightforwardness of discerning changes in fluorescent brightness and colour by the naked eye are evident. Using the relevant software, a linear relationship between fluorescent images using a smartphone and target concentration was obtained. Hence, the novel ratiometric sensing system will demonstrate new opportunities on determination of target DNA samples in complex biological environments.


Sujet(s)
Tumeurs , Oxydes , Composés du manganèse , Colorants fluorescents , Reproductibilité des résultats , Biomimétique , ADN/génétique , Limite de détection
17.
Environ Pollut ; 348: 123768, 2024 May 01.
Article de Anglais | MEDLINE | ID: mdl-38493868

RÉSUMÉ

In this research, a sustainable substrate, termed green and long-lasting substrate (GLS), featuring a blend of emulsified substrate (ES) and modified rice husk ash (m-RHA) was devised. The primary objective was to facilitate the bioremediation of groundwater contaminated with trichloroethylene (TCE) using innovative GLS for slow carbon release and pH control. The GLS was concocted by homogenizing a mixture of soybean oil, surfactants (Simple Green™ and soya lecithin), and m-RHA, ensuring a gradual release of carbon sources. The hydrothermal synthesis was applied for the production of m-RHA production. The analyses demonstrate that m-RHA were uniform sphere-shape granules with diameters in micro-scale ranges. Results from the microcosm study show that approximately 83% of TCE could be removed (initial TCE concentration = 7.6 mg/L) with GLS supplement after 60 days of operation. Compared to other substrates without RHA addition, higher TCE removal efficiency was obtained, and higher Dehalococcoides sp. (DHC) population and hydA gene (hydrogen-producing gene) copy number were also detected in microcosms with GLS addition. Higher hydrogen concentrations enhanced the DHC growth, which corresponded to the increased DHC populations. The addition of the GLS could provide alkalinity at the initial stage to neutralize the acidified groundwater caused by the produced organic acids after substrate biodegradation, which was advantageous to DHC growth and TCE dechlorination. The addition of m-RHA reached an increased TCE removal efficiency, which was due to the fact that the m-RHA had the zeolite-like structure with a higher surface area and lower granular diameter, and thus, it resulted in a more effective initial adsorption effect. Therefore, a significant amount of TCE could be adsorbed onto the surface of m-RHA, which caused a rapid TCE removal through adsorption. The carbon substrates released from m-RHA could then enhance the subsequent dechlorination. The developed GLS is an environmentally-friendly and green substrate.


Sujet(s)
Nappe phréatique , Trichloroéthylène , Polluants chimiques de l'eau , Trichloroéthylène/métabolisme , Dépollution biologique de l'environnement , Carbone , Polluants chimiques de l'eau/analyse , Nappe phréatique/composition chimique , Hydrogène , Concentration en ions d'hydrogène
18.
J Formos Med Assoc ; 2024 Feb 08.
Article de Anglais | MEDLINE | ID: mdl-38336508

RÉSUMÉ

BACKGROUND: /Purpose: Acute appendicitis (AA) stands as the most prevalent cause of acute abdominal pain among children. The potential for morbidity escalates significantly when uncomplicated appendicitis (UA) progresses to complicated appendicitis (CA), which can encompass gangrenous, necrotic, or perforated appendicitis. Consequently, establishing an early and accurate diagnosis of AA, and effectively differentiating CA from UA, becomes paramount. This study explores the diagnostic utility of various blood biomarkers for distinguishing CA from UA in pediatric patients. METHODS: We conducted a retrospective review of medical records pertaining to pediatric patients who underwent surgery for AA. Patients were categorized as either having UA or CA based on histopathological examination of the appendix. The data collected and analyzed included demographic information, white blood cell (WBC) count, neutrophil proportion, lymphocyte proportion, neutrophil-to-lymphocyte ratio (NLR), monocyte-to-lymphocyte ratio (MLR), platelet-to-lymphocyte ratio (PLR), and C-reactive protein (CRP) levels upon admission. RESULTS: Among the 192 pediatric patients who underwent surgery for AA, 150 were diagnosed with UA, while 42 were diagnosed with CA. The CA group exhibited significantly higher neutrophil proportions, NLRs, PLRs, and CRP levels, alongside lower lymphocyte proportions (all p < 0.01) compared to the UA group. Receiver operating characteristic (ROC) curve analysis disclosed that CRP exhibited the highest specificity, sensitivity, and positive and negative predictive values for predicting CA. CONCLUSION: CRP emerges as a valuable biomarker for differentiating complicated appendicitis from uncomplicated appendicitis.

19.
J Hazard Mater ; 466: 133662, 2024 Mar 15.
Article de Anglais | MEDLINE | ID: mdl-38309171

RÉSUMÉ

Discarding PET plastic (dPET) causes serious environmental pollution and enormous fossil resources waste. Processing techniques have mainly focused on the conversion of dPET into monomers, with minimal reports highlighting their transformation into high-value materials. This work intends to transform dPET into a high-performance material with potential alternative value in harsh production environments. The soft and hard segments of the thermoplastic polyester elastomeric (TPEE) molecular structure are reacted and cross-linked with dPET using a facile one-pot process, and two main polymers, (C8H4O4)n and ((C16H18O4)0.76·(C4H8O)0.24)n are generated after the reaction. Through chemical reactions between TPEE and dPET, new characteristic products and chemical bond-crossing structures are formed, while the resulting product particles or multiple TPEE particles are anchored by the high viscosity of dPET, which endows the material with superior tensile strength (34.21 MPa) and impact resistance. The glass transition temperature (Tg) of the material implies that neither the molecular chain nor the chain segments can move, while only the atoms or groups composing the molecule vibrate at their equilibrium positions. The development of this new treatment method may contribute to the reduction of environmental pollution and the improvement of the high-value conversion and utilization of dPET.

20.
Science ; 383(6681): 413-421, 2024 Jan 26.
Article de Anglais | MEDLINE | ID: mdl-38271512

RÉSUMÉ

Age-associated B cells (ABCs) accumulate during infection, aging, and autoimmunity, contributing to lupus pathogenesis. In this study, we screened for transcription factors driving ABC formation and found that zinc finger E-box binding homeobox 2 (ZEB2) is required for human and mouse ABC differentiation in vitro. ABCs are reduced in ZEB2 haploinsufficient individuals and in mice lacking Zeb2 in B cells. In mice with toll-like receptor 7 (TLR7)-driven lupus, ZEB2 is essential for ABC formation and autoimmune pathology. ZEB2 binds to +20-kb myocyte enhancer factor 2b (Mef2b)'s intronic enhancer, repressing MEF2B-mediated germinal center B cell differentiation and promoting ABC formation. ZEB2 also targets genes important for ABC specification and function, including Itgax. ZEB2-driven ABC differentiation requires JAK-STAT (Janus kinase-signal transducer and activator of transcription), and treatment with JAK1/3 inhibitor reduces ABC accumulation in autoimmune mice and patients. Thus, ZEB2 emerges as a driver of B cell autoimmunity.


Sujet(s)
Auto-immunité , Lymphocytes B , Différenciation cellulaire , Régulation de l'expression des gènes , Lupus érythémateux disséminé , Facteur de transcription Zeb2 , Animaux , Humains , Souris , Auto-immunité/génétique , Lymphocytes B/cytologie , Lymphocytes B/métabolisme , Différenciation cellulaire/génétique , Lignage cellulaire/génétique , Lupus érythémateux disséminé/génétique , Lupus érythémateux disséminé/immunologie , Facteurs de transcription MEF2/génétique , Facteurs de transcription MEF2/métabolisme , Facteur de transcription Zeb2/génétique , Facteur de transcription Zeb2/métabolisme , Haploinsuffisance , Vieillissement/immunologie , Modèles animaux de maladie humaine , Femelle
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