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1.
Nat Prod Res ; : 1-8, 2024 Jun 02.
Article de Anglais | MEDLINE | ID: mdl-38824429

RÉSUMÉ

Three new phenylpropanoids, namely (7'R,8'R) guaiacylglycerol 4'-O-ß-D-[6″-O-(4-O-ß-D-glucopyranosyl)-p-hydroxyl-benzoyl]-glucopyranoside (1), (7 R,8R) guaiacylglycerol 8-O-1'-(2',6'-dimethoxy-4'-O-ß-D-glucopyranosyl)-benzene (2), (7'R,8'R) guaiacylglycerol 4'-O-ß-D-[6″-O-3,5-dimethoxy-4-hydroxylbenzoyl]-gluco-pyranoside (3), along with one known phenylpropanoid (4) were isolated from the ethanol extract of Phyllostachys nigra var. henonis fresh culm. The structures of all compounds were determined by analysis of UV, 1D NMR, 2D NMR, HR-ESI-MS and CD data. All compounds were evaluated for their DPPH radical scavenging activity. Compound 2 (IC50 54.9 µM) and 3 (IC50 77.2 µM) exhibited moderate antioxidant activity compared with two positive control compounds L-ascorbic acid (IC50 15.5 µM) and 2,6-ditertbutyl-4-methyl phenol (IC50 19.1 µM).

2.
Adv Healthc Mater ; 13(18): e2304439, 2024 Jul.
Article de Anglais | MEDLINE | ID: mdl-38486060

RÉSUMÉ

Hepatocellular carcinoma (HCC) hematogenous dissemination is a leading cause of HCC-related deaths. The inflammatory facilitates this process by promoting the adhesion and invasion of tumor cells in the circulatory system. But the contribution of hemodynamics to this process remains poorly understood due to the lack of a suitable vascular flow model for investigation. This study develops a vascular flow model to examine the impact of hemodynamics on endothelial inflammation-mediated HCC metastasis. This work finds the increasing shear stress will reduce the recruitment of HCC cells by disturbing adhesion forces between endothelium and HCC cells. However, this reduction will be restored by the inflammation. When applying high FSS (4-6 dyn cm-2) to the inflammatory endothelium, there will be a 4.8-fold increase in HCC cell adhesions compared to normal condition. Nevertheless, the increase fold of cell adhesions is inapparent, around 1.5-fold, with low and medium FSS. This effect can be attributed to the FSS-induced upregulation of ICAM-1 and VCAM-1 of the inflammatory endothelium, which serve to strengthen cell binding forces. These findings indicate that hemodynamics plays a key role in HCC metastasis during endothelial inflammation by regulating the expression of adhesion-related factors.


Sujet(s)
Carcinome hépatocellulaire , Hémodynamique , Inflammation , Tumeurs du foie , Tumeurs du foie/anatomopathologie , Tumeurs du foie/métabolisme , Humains , Carcinome hépatocellulaire/anatomopathologie , Carcinome hépatocellulaire/métabolisme , Inflammation/anatomopathologie , Inflammation/métabolisme , Métastase tumorale , Adhérence cellulaire , Molécule-1 d'adhérence intercellulaire/métabolisme , Endothélium vasculaire/anatomopathologie , Endothélium vasculaire/métabolisme , Molécule-1 d'adhérence des cellules vasculaires/métabolisme , Cellules endothéliales de la veine ombilicale humaine/métabolisme , Lignée cellulaire tumorale , Biomimétique/méthodes
3.
Sichuan Da Xue Xue Bao Yi Xue Ban ; 55(1): 6-12, 2024 Jan 20.
Article de Chinois | MEDLINE | ID: mdl-38322525

RÉSUMÉ

Hepatocellular carcinoma (HCC) is one of the leading causes of cancer-related deaths in the world. Due to the insidious onset and rapid progression and a lack of effective treatments, the prognosis of patients with HCC is extremely poor, with the average 5-year survival rate being less than 10%. The tumor microenvironment (TME), the internal environment in which HCC develops, can regulate the oncogenesis, development, invasion, and metastasis of HCC. During the process of cancer progression, HCC cells can regulate the biological behaviors of tumor cells, cancer-associated fibroblasts, cancer-associated immune cells, and other cells in the TME by releasing exosomes containing specific signals, thereby promoting cancer progression. However, the exact molecular mechanisms and the roles of exosomes in the specific cellular regulation of these processes are not fully understood. Herein, we summarized the TME components of HCC, the sources and the biological traits of exosomes in the TME, and the impact of mechanical factors on exosomes. In addition, special attention was given to the discussion of the effects of HCC-exosomes on different types of cells in the microenvironment. There are still many difficulties to be overcome before exosomes can be applied as carriers in clinical cancer treatment. First of all, the homogeneity of exosomes is difficult to ensure. Secondly, exosomes are mainly administered through subcutaneous injection. Although this method is simple and easy to implement, the absorption efficiency is not ideal. Thirdly, exosome extraction methods are limited in number and inefficient, making it difficult to prepare exosomes in large quantities. It is important to ensure that exosomes are used in sufficient quantities to trigger an effective tumor immune response, especially for exosome-mediated tumor immunotherapy. With the improvement in identification, isolation, and purification technology, exosomes are expected to be successfully used in the clinical diagnosis of early-stage HCC and the clinical treatment of liver cancer.


Sujet(s)
Carcinome hépatocellulaire , Exosomes , Tumeurs du foie , Humains , Carcinome hépatocellulaire/anatomopathologie , Tumeurs du foie/anatomopathologie , Microenvironnement tumoral , Communication cellulaire
4.
Chinese Journal of Analytical Chemistry ; (12): 72-79,中插14-中插37, 2024.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-1017631

RÉSUMÉ

Human exhaled breath has great application prospects,e.g.,monitoring pharmacokinetics,disease diagnosis,due to its advantages such as non-invasive and high-frequency sampling.Breath samples can be collected from the oral and nasal cavity.However,the oral and nasal environment affect the chemical composition of breath sample.Therefore,the investigation on the chemical composition of mouth-exhaled breath and nose-exhaled breath is crucial for selection of appropriate sampling strategy for individual studies.In this work,secondary electrospray ionization-high resolution mass spectrometry(SESI-HRMS)was applied to analysis of respiratory metabolomics in real time.A quantitative analysis approach was established for 9 kinds of volatile organic compounds(VOCs)e.g.2-butanone,2-pentanone,ethyl acetate,methyl methacrylate,toluene,styrene,mesitylene,isoprene and limonene.The limit of detection was 2.3?240.8 ng/m3.The intra-day(n=6)and inter-day(n=18)relative standard deviations were 0.6%?4.6%and 4.3%?12.2%,respectively.Nine healthy subjects were recruited to investigate the chemical composition of mouth-exhaled and nose-exhaled breath.The results showed the good performance in quantitative analysis of 9 VOCs in breath air.It was found that the number of unique component(m/z)detected in mouth-exhaled breath(167)was 2.2 times greater than that detected in nose-exhaled breath(76),which might result from the complex environment in oral cavity.The signal intensity of commun component(163)was significantly different between mouth-exhaled breath and nose-exhaled breath.Additionally,the elemental composition analysis showed that the proportion of polar compounds detected in nose-exhaled breath was higher than that in mouth-exhaled breath.This study demonstrated that there was significant differences in the chemical composition between mouth-exhaled and nose-exhaled breath,which provided a theoretical basis for selection of exhalation mode.

5.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-1019584

RÉSUMÉ

Objective To summarize the clinical and pathological characteristics of Langerhans cell histiocytosis(LCH)involving thyroid gland.Methods We reviewed 5 cases of histologically confirmed LCH with thyroid gland involvement in Huashan Hospital,Fudan University from Jun 2017 to Nov 2022 and analyzed their clinicopathological features.Results There were 1 male and 4 females aged from 29 to 54 years,with a median age of 31 years.Ultrasound showed hypoechoic nodules of thyroid.Morphologically,there were a large number of Langerhans cells,which contained abundant eosinophilic cytoplasm.The nucleus was oval,or had deeply grooved nuclei,which was like coffee beans.The nucleolus was not obvious,accompanied by a variable number of lymphocytes and eosinophils infiltration.The lesional cells were positive for CD1α,S100,Langerin,and Ki67 proliferation index was more than 15%,of which the highest was 70%.The tested 4 cases were all BRAF V600E and MAP2K1 gene mutation negative.Conclusion Cases limited to the thyroid were exceedingly rare.Most cases occurred in patients with multifocal disease.The clinical manifestations were painless enlargement of the thyroid gland.Surgical resection was a common treatment.Pathological manifestations included a large number of Langerhans cells and eosinophils diffused with the destruction of normal thyroid follicular structures.There was a characteristic of low mutation rates in BRAF V600E and MAP2K1 genes.

6.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-1019591

RÉSUMÉ

Inflammatory pseudotumor-like follicular dendritic cell sarcoma(IPT-like FDCS)is a very rare malignant tumor that is considered to be associated with Epstein-Barr virus.Two patients in this report were generally healthy,and the spleen tumor was found during physical examination.After completing the examination,laparoscopic total splenectomy was performed,and the pathological result showed IPT-like FDCS.Postoperative chemoradiotherapy was not performed in either case.The disease has no characteristic clinical manifestations,and imaging overlaps with sarcoma.Microscopic manifestation showed CD21,CD23 and EBER positive spindle tumor cells in the inflammatory background with matted arrangement.Due to the interwoven distribution of tumor cells and lymphocytes,diagnosis is difficult.In this article,we report this two cases with literature review and summarize their clinical and pathological features to improve diagnostic cognition.

7.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-1039123

RÉSUMÉ

Polycystin-2 (also known as PC2, TRPP2, PKD2) is a major contributor to the underlying etiology of autosomal dominant polycystic kidney disease (ADPKD), which is the most prevalent monogenic kidney disease in the world. As a transient receptor potential (TRP) channel protein, PC2 exhibits cation-permeable, Ca2+-dependent channel properties, and plays a crucial role in maintaining normal Ca2+ signaling in systemic physiology, particularly in ADPKD chronic kidney disease. Structurally, PC2 protein consists of six transmembrane structural domains (S1-S6), a polycystin-specific “tetragonal opening for polycystins” (TOP) domain located between the S1 and S2 transmembrane structures, and cytoplasmic N- and C-termini. Although the cytoplasmic N-terminus and C-terminus of PC2 may not be significant in the gating of PC2 channels, there is still much protein structural information that needs to be thoroughly investigated, including the regulation of channel function and the assembly of homotetrameric ion channels. This is further supported by the presence of human disease-associated mutation sites on the PC2 structure. Moreover, PC2 synthesized in the endoplasmic reticulum is enriched in specific subcellular localization via membrane transport and can assemble itself into homotetrameric ion channels, as well as form heterotrimeric receptor-ion channel complexes with other proteins. These complexes are involved in a wide range of physiological functions, including the regulation of mechanosensation, cell polarity, cell proliferation, and apoptosis. In particular, PC2 assembles with chaperone proteins to form polycystic protein complexes that affect Ca2+ transport in cell membranes, cilia, endoplasmic reticulum, and mitochondria, and are involved in activating cell fate-related signaling pathways, particularly cell differentiation, proliferation, survival, and apoptosis, and more recently, autophagy. This leads to a shift of cystic cells from a normal uptake, quiescent state to a pathologically secreted, proliferative state. In conclusion, the complex structural and functional roles of PC2 highlight its critical importance in the pathogenesis of ADPKD, making it a promising target for therapeutic intervention.

8.
Genes Dis ; 10(2): 583-595, 2023 Mar.
Article de Anglais | MEDLINE | ID: mdl-37223522

RÉSUMÉ

Atherosclerosis is a chronic inflammatory disease, occurring preferentially in bifurcation, branching, and bending of blood vessels exposed to disturbed flow. Disturbed flow in atheroprone areas activates elevated proteases, degrading elastin lamellae and collagenous matrix, resulting in endothelial dysfunction and vascular remodeling. As a mediator for extracellular matrix protein degradation, cathepsin K (CTSK) was directly regulated by hemodynamics and contributed to atherosclerosis. The mechanism of CTSK responding to disturbed flow and contributing to disturbed flow-induced atherosclerosis is unclear. In this study, the partial carotid ligation model of mice and in vitro disturbed shear stress model were constructed to explore the contribution and potential mechanism of CTSK in atherosclerosis. Our results indicated that CTSK elevated in the disturbed flow area in vivo and in vitro along with endothelial inflammation and atherogenesis. Additionally, the expression of integrin αvß3 was upregulated in these atheroprone areas. We found that inhibition of the integrin αvß3-cytoskeleton pathway could significantly block the activation of NF-κB and the expression of CTSK. Collectively, our findings unraveled that disturbed flow induces increased CTSK expression, and contributes to endothelial inflammation and vascular remodeling, leading to atherogenesis eventually. This study is helpful to provide new enlightenment for the therapy of atherosclerosis.

9.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-1008643

RÉSUMÉ

The potential anti-stroke active components in Taohong Siwu Decoction(THSWD) were identified by target cell trapping coupled with ultra-high performance liquid chromatography-quadrupole-time of flight mass spectrometry(UPLC-Q-TOF-MS). The underlying mechanism of active components in THSWD in the treatment of ischemic stroke(IS) was explored by network pharmacology, molecular docking, and experimental validation. The UPLC-Q-TOF-MS technology combined with the UNIFI data analysis platform was used to analyze the composition of the cellular fragmentation fluid after co-incubation of THSWD with target cells. The targets of potential active components and IS were collected by network pharmacology, and the common targets underwent protein-protein interaction(PPI), Gene Ontology(GO), and Kyoto Encyclopedia of Genes and Genomes(KEGG) signaling pathway enrichment analyses. The target cell trapping component-core target-signaling pathway network was constructed, and the active components were molecularly docked to the top targets in the PPI network, followed by pharmacodynamic validation in vitro. Fifteen active components were identified in the target cellular fragmentation fluid, including bicyclic monoterpenes, cyanoglycosides, flavonols, quinoid chalcones, phenylpropanoids, and tannins. As revealed by the analysis of network pharmacology, THSWD presumably regulated PI3K-AKT, FoxO, MAPK, Jak-STAT, VEGF, HIF-1, and other signaling pathways to affect inflammatory cascade reaction, angiogenesis, oxidative stress, pyroptosis, apoptosis, and other pathological processes via paeoniflorin, butylphthalide, dehydrated safflower yellow B, 3,4-dicaffeoylquinic acid, amygdalin, paeoniflorin, and ligusticolactone. Molecular docking and in vitro pharmacodynamic validation revealed that the target cell trapping active components could promote neovascularization in rat brain microvascular endothelial cells(rBMECs) in the oxygen-glucose deprivation/reoxygenation(OGD/R) model. The application of target cell trapping coupled with UPLC-Q-TOF-MS technology can rapidly screen out the potential active components in THSWD. The active components of THSWD can be predicted to intervene in the pathogenesis of IS through network pharmacology, and molecular docking combined with experimental validation can further clarify the efficacy, thus providing a theoretical basis for research ideas on the pharmacodynamic substance basis of traditional Chinese medicine compounds.


Sujet(s)
Animaux , Rats , Accident vasculaire cérébral ischémique/traitement médicamenteux , Simulation de docking moléculaire , Pharmacologie des réseaux , Cellules endothéliales , Phosphatidylinositol 3-kinases , Médicaments issus de plantes chinoises/pharmacologie
10.
Acta Physiologica Sinica ; (6): 130-136, 2023.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-970113

RÉSUMÉ

The alteration of pulmonary artery pressure is an important physiological indicator to reflect the organism's adaptation to acclimatization or the pathological injury in response to high-altitude hypoxic environment. The effects of hypoxic stress at different altitudes for different time on pulmonary artery pressure are different. There are many factors involved in the changes of pulmonary artery pressure, such as the contraction of pulmonary arterial smooth muscle, hemodynamic changes, abnormal regulation of vascular activity and abnormal changes of cardiopulmonary function. Understanding of the regulatory factors of pulmonary artery pressure in hypoxic environment is crucial in clarifying the relevant mechanisms of hypoxic adaptation, acclimatization, prevention, diagnosis, treatment and prognosis of acute and chronic high-altitude diseases. In recent years, great progress has been made in the study regarding the factors affecting pulmonary artery pressure in response to high-altitude hypoxic stress. In this review, we discuss the regulatory factors and intervention measures of pulmonary arterial hypertension induced by hypoxia from the aspects of hemodynamics of circulatory system, vasoactive state and changes of cardiopulmonary function.


Sujet(s)
Humains , Altitude , Pression artérielle , Acclimatation , Hypoxie , Muscles lisses
11.
Chinese Journal of Pediatrics ; (12): 626-630, 2023.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-985920

RÉSUMÉ

Objective: To evaluate the value of nasal nitric oxide (nNO) measurement as a diagnostic tool for Chinese patients with primary ciliary dyskinesia (PCD). Methods: This study is a retrospective study. The patients were recruited from those who were admitted to the respiratory Department of Respiratory Medicine, Children's Hospital of Fudan University from March 2018 to September 2022. Children with PCD were included as the PCD group, and children with situs inversus or ambiguus, cystic fibrosis (CF), bronchiectasis, chronic suppurative lung disease and asthma were included as the PCD symptom-similar group. Children who visited the Department of Child health Care and urology in the same hospital from December 2022 to January 2023 were selected as nNO normal control group. nNO was measured during plateau exhalation against resistance in three groups. Mann-Whitney U test was used to analyze the nNO data. The receiver operating characteristic of nNO value for the diagnosis of PCD was plotted and, the area under the curve and Youden index was calculated to find the best cut-off value. Results: nNO was measured in 40 patients with PCD group, 75 PCD symptom-similar group (including 23 cases of situs inversus or ambiguus, 8 cases of CF, 26 cases of bronchiectasis or chronic suppurative lung disease, 18 cases of asthma), and 55 nNO normal controls group. The age of the three groups was respectively 9.7 (6.7,13.4), 9.3 (7.0,13.0) and 9.9 (7.3,13.0) years old. nNO values were significantly lower in children with PCD than in PCD symptom-similar group and nNO normal controls (12 (9,19) vs. 182 (121,222), 209 (165,261) nl/min, U=143.00, 2.00, both P<0.001). In the PCD symptom-similar group, situs inversus or ambiguus, CF, bronchiectasis or chronic suppurative lung disease and asthma were significantly higher than children with PCD (185 (123,218), 97 (52, 132), 154 (31, 202), 266 (202,414) vs. 12 (9,19) nl/min,U=1.00, 9.00, 133.00, 0, all P<0.001). A cut-off value of 84 nl/min could provide the best sensitivity (0.98) and specificity (0.92) with an area under the curve of 0.97 (95%CI 0.95-1.00, P<0.001). Conclusions: nNO value can draw a distinction between patients with PCD and others. A cut-off value of 84 nl/min is recommended for children with PCD.


Sujet(s)
Humains , Enfant , Adolescent , Monoxyde d'azote , Études rétrospectives , Mucoviscidose , Dilatation des bronches/diagnostic , Asthme/diagnostic , Hôpitaux pédiatriques , Troubles de la motilité ciliaire/diagnostic
12.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-986888

RÉSUMÉ

OBJECTIVE@#To analyze the cement flow in the abutment margin-crown platform switching structure by using the three-dimensional finite element analysis, in order to prove that whether the abutment margin-crown platform switching structure can reduce the inflow depth of cement in the implantation adhesive retention.@*METHODS@#By using ANSYS 19.0 software, two models were created, including the one with regular margin and crown (Model one, the traditional group), and the other one with abutment margin-crown platform switching structure (Model two, the platform switching group). Both abutments of the two models were wrapped by gingiva, and the depth of the abutment margins was 1.5 mm submucosal. Two-way fluid structure coupling calculations were produced in two models by using ANSYS 19.0 software. In the two models, the same amount of cement were put between the inner side of the crowns and the abutments. The process of cementing the crown to the abutment was simulated when the crown was 0.6 mm above the abutment. The crown was falling at a constant speed in the whole process spending 0.1 s. Then we observed the cement flow outside the crowns at the time of 0.025 s, 0.05 s, 0.075 s, 0.1 s, and measured the depth of cement over the margins at the time of 0.1 s.@*RESULTS@#At the time of 0 s, 0.025 s, 0.05 s, the cements in the two models were all above the abutment margins. At the time of 0.075 s, in Model one, the gingiva was squeezed by the cement and became deformed, and then a gap was formed between the gingiva and the abutment into which the cement started to flow. In Model two, because of the narrow neck of the crown, the cement flowed out from the gingival as it was pressed by the upward counterforce from the gingival and the abutment margin. At the time of 0.1 s, in Model one, the cement continued to flow deep inside with the gravity force and pressure, and the depth of the cement over the margin was 1 mm. In Model two, the cement continued to flow out from the gingival at the time of 0.075 s, and the depth of the cement over the margin was 0 mm.@*CONCLUSION@#When the abutment was wrapped by the gingiva, the inflow depth of cement in the implantation adhesive retention can be reduced in the abutment margin-crown platform switching structure.


Sujet(s)
Analyse des éléments finis , Cimentation/méthodes , Gencive , Couronnes , Piliers dentaires , Ciments dentaires , Analyse du stress dentaire
13.
China Medical Equipment ; (12): 77-81, 2023.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-1026407

RÉSUMÉ

Objective:To explore the application of magnetic resonance(MR)quantitative analysis technique of fat in analyzing the relationships between liver fat fraction(LFF)and pancreatic fat fraction(PFF)and the severity of nonalcoholic fatty liver disease(NAFLD),and between them and liver function.Methods:A total of 185 patients who received MR whole-liver mDIXON sequence scan were selected,and their LFF and PFF were measured.They were divided into NAFLD group(160 cases)and control group(25 cases)according to the fat fraction(FF)of liver.The body mass index(BMI),alanine aminotransferase(ALT),triglycerides(TG),fasting blood glucose(FBG),low-density lipoprotein(LDL-c),high-density lipoprotein(HDL-c),LFF and PFF between two groups were compared.Spearman analysis method was adopted to analyze the correlation between LFF and various indicators,and between PFF and various indicators.Logistic regression analysis was used to analyze the influencing factors of NAFLD severity.Results:In 160 patients of NAFLD group,72 cases were mild degree(LFF WAS 5.1%-14.0%),and 76 cases were moderate degree(LFF was 14.1%-28.0%),and 12 cases were severe degree(LFF>28.0%).There were significant differences in LFF,PFF and BMI between NAFLD group and control group(tLFF=17.259,tPFF=9.058,tBMI=7.430,P<0.05),and the differences of ALT,TG,FBG,LDL-c and HDL-c between two groups also were significant(t=6.591,t=3.957,t=3.267,t=2.112,t=-3.727,P<0.05),respectively.There were significant differences in LFF,PFF,BMI,ALT,TG,FBG,LDL-c and HDL-c among mild group,moderate group and severe group of patients(F=21.944,F=16.391,F=5.872,F=30.240,F=3.984,F=3.863,F=3.398,F=1.214,P<0.05),respectively.BMI,ALT,TG and FBG appeared positive correlation with LFF and PFF of NAFLD patients(r=0.31,r=0.52,r=0.33,r=0.35,r=0.30,r=0.36,r=0.27,r=0.29,P<0.05),and HDL-c appeared negative correlation with them(r=-0.16,r=-0.3,P<0.05),respectively.Multivariate Logistic regression analysis showed that HDL-c was an independent protective factor of the severity of NAFLD(OR=0.004,P<0.05),and LFF,PFF,BMI,ALT,TG,LDL were independent risk factors of the severity of NAFLD(OR=2.252,OR=1.988,OR=1.404,OR=1.196,OR=1.025,OR=5.150,P<0.05),respectively.Conclusion:LFF and PFF are closely related to the severity of NAFLD and the indicators of liver function,and the increases of LFF and PFF are independent risk factors of the aggravation of NAFLD.The MR quantitative analyses of LFF and PFF values have a certain guiding significance in clinical monitoring for NAFLD severity and liver function.

14.
Nat Biotechnol ; 40(9): 1370-1377, 2022 09.
Article de Anglais | MEDLINE | ID: mdl-35788567

RÉSUMÉ

The usefulness of live attenuated virus vaccines has been limited by suboptimal immunogenicity, safety concerns or cumbersome manufacturing processes and techniques. Here we describe the generation of a live attenuated influenza A virus vaccine using proteolysis-targeting chimeric (PROTAC) technology to degrade viral proteins via the endogenous ubiquitin-proteasome system of host cells. We engineered the genome of influenza A viruses in stable cell lines engineered for virus production to introduce a conditionally removable proteasome-targeting domain, generating fully infective PROTAC viruses that were live attenuated by the host protein degradation machinery upon infection. In mouse and ferret models, PROTAC viruses were highly attenuated and able to elicit robust and broad humoral, mucosal and cellular immunity against homologous and heterologous virus challenges. PROTAC-mediated attenuation of viruses may be broadly applicable for generating live attenuated vaccines.


Sujet(s)
Vaccins antigrippaux , Grippe humaine , Infections à Orthomyxoviridae , Animaux , Furets , Humains , Vaccins antigrippaux/génétique , Grippe humaine/prévention et contrôle , Souris , Infections à Orthomyxoviridae/prévention et contrôle , Proteasome endopeptidase complex , Protéolyse , Vaccins atténués/génétique
15.
Front Biosci (Landmark Ed) ; 27(3): 104, 2022 03 17.
Article de Anglais | MEDLINE | ID: mdl-35345336

RÉSUMÉ

BACKGROUND: Cancer-associated fibroblasts (CAFs) are of considerable importance in tumor progression by interacting with the tumor microenvironment. However, the hidden mechanism explaining how tumor cells interact with CAFs in the tumor mechanical microenvironment remains largely unknown. METHODS: We highlighted exosomes as the mediator modulating the interaction between liver cancer cells and CAFs under mechanical conditions. The normal hepatic stellate cells LX2 were exposed to the medium or exosomes from the HepG2 cells with or without fluid shear stress subjection, and the CAFs activation markers were checked. To further explore the potential role of PI3K, which is active in liver fibrosis, the PI3K inhibitor was used. RESULTS: The specific markers of CAFs, FAP, and α-SMA, increased in LX2 with subjection to the fluid shear stress-induced exosomes from HepG2 cells. In turn, the enriched IGF2 in the exosomes activated the IGF2-PI3K signaling pathway in LX2 cells. CONCLUSIONS: These findings reveal that fluid shear stress-induced liver cancer cells possess a stronger capacity to convert normal fibroblasts to CAFs than statically cultured liver cancer cells, and tumor-derived exosomes mediated the intercellular cross-talk between liver cancer cells and fibroblasts.


Sujet(s)
Fibroblastes associés au cancer , Exosomes , Fibroblastes , Tumeurs du foie , Contrainte mécanique , Fibroblastes associés au cancer/métabolisme , Lignée cellulaire tumorale , Prolifération cellulaire , Exosomes/métabolisme , Fibroblastes/métabolisme , Humains , Facteur de croissance IGF-II/métabolisme , Tumeurs du foie/métabolisme , Phosphatidylinositol 3-kinases/métabolisme , Microenvironnement tumoral
16.
J Infect Prev ; 23(1): 20-24, 2022 Jan.
Article de Anglais | MEDLINE | ID: mdl-35126677

RÉSUMÉ

BACKGROUND: Powered Air-Purifying Respirator (PAPR) was widely used in Sengkang General Hospital (SKH) during the SARS-CoV-2 outbreak. Ensuring a sustained supply of clean and reusable PAPR masks for frontline medical team is an immediate challenge. The Central Sterile Supplies Unit (CSSU) adopts existing disinfection methods and technology for the reprocessing of reusable personal protective equipment (PPE) such as PAPR masks and goggles. OBJECTIVE: To determine an effective disinfecting method for protective devices used in the course of treating SARS-CoV2-positive patients. METHOD: A comparison on surface disinfection and modified thermal disinfection outcome was conducted on 30 PAPR masks through detecting the presence of adenosine triphosphate (ATP) by swab following both disinfecting methods. RESULTS: The modified thermal cycles emerged as the recommended disinfection method. DISCUSSION: The outcome of this study has enhanced understanding on the risk imposed on frontline healthcare personnel who perform surface disinfecting on masks for reuse during the work shift. Leveraging on the current expertise from existing instrument logistics, CSSU takes charge of the processing and stock management of SKH's PAPR masks. An additional workflow is needed to establish reprocessing methods for other reusable PPEs such as face shields or overalls.

17.
Front Cell Dev Biol ; 10: 825622, 2022.
Article de Anglais | MEDLINE | ID: mdl-35127686

RÉSUMÉ

Vascular calcification (VC) is linked to an increased risk of heart disease, stroke, and atherosclerotic plaque rupture. It is a cell-active process regulated by vascular cells rather than pure passive calcium (Ca) deposition. In recent years, extracellular vesicles (EVs) have attracted extensive attention because of their essential role in the process of VC. Matrix vesicles (MVs), one type of EVs, are especially critical in extracellular matrix mineralization and the early stages of the development of VC. Vascular smooth muscle cells (VSMCs) have the potential to undergo phenotypic transformation and to serve as a nucleation site for hydroxyapatite crystals upon extracellular stimulation. However, it is not clear what underlying mechanism that MVs drive the VSMCs phenotype switching and to result in calcification. This article aims to review the detailed role of MVs in the progression of VC and compare the difference with other major drivers of calcification, including aging, uremia, mechanical stress, oxidative stress, and inflammation. We will also bring attention to the novel findings in the isolation and characterization of MVs, and the therapeutic application of MVs in VC.

18.
Chinese Pharmacological Bulletin ; (12): 360-366, 2022.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-1014134

RÉSUMÉ

Aim To preliminarily investigate the effect of brusatol(BRU), the monomer components fromChinese medicines on H1299 cells and its mechanisms.Methods CCK-8 and EdU staining experiment were used to detect the effect of BRU on cell prolifera-tion.Clone formation experiment was performed to measure the effect of drugs on cell clone formation.Hoechst33258 staining experiment and flow cytometry were employed to observe the cell apoptosis.Western blot assay was used to detect the protein expression levels of Bcl-xL, Bax, Bcl-2, cleaved-caspase-3, caspase-3, Gadd45α, PI3K, p-PI3K, Akt, p-Akt and NF-κB-p65.Results CCK-8 assay revealed that the inhibitory effect of H1299 cells gradually increased with the rising of BRU concentration and action time.Compared with control group, the EdU incorporation rate of the BRU treatment group decreased significantly.Treated with different concentrations of BRU for 24 h, the clone formation rate was significantly reduced in a concentration-dependent manner.Hoechst33258 experiment and flow cytometry showed that BRU could induce apoptosis in H1299 cell nucleus and increase its apoptotic rate.Western blot results revealed that BRU could significantly up-regulate the protein levels of Bax, cleaved-caspase-3, Gadd45α, and significantly down-regulate the expression of Bcl-xL, Bcl-2, caspase-3.In addition, BRU could significantly decrease the expression level of p-PI3K, p-Akt, NF-κB-p65 in cell nucleus.Conclusions BRU can inhibit the proliferation and induce apoptosis of H1299 cells in a concentration and time-dependent manner.The mechanism may be related to the inhibition of PI3K/Akt signaling pathway and the nuclear shuttle of NF-κB-p65.

19.
Cancer Research and Clinic ; (6): 154-157, 2022.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-934647

RÉSUMÉ

γ-synuclein (SNCG) has been extensively studied for its specific overexpression in various malignant neoplasms. Recently, SNCG has been found to be involved in multiple signaling pathways, including estrogen, AKT-mTOR, mitogen-activated protein kinase (MAPK) and microtubule regulation. SNCG has also been found to be related to the proliferation, invasion, migration and chemotherapy drug resistance of neoplasms. Therefore, SNCG is expected to be the key target of anti-tumor and improving the sensitivity of tumor cells to chemotherapeutic drugs.

20.
Chinese Journal of Pathology ; (12): 407-412, 2022.
Article de Chinois | WPRIM (Pacifique Occidental) | ID: wpr-935554

RÉSUMÉ

Objective: To investigate immunohistochemical patterns of CXorf67 and H3K27me3 proteins in central nervous system germ cell tumors (GCTs) and to assess their values in both diagnosis and differential diagnosis. Methods: A total of 370 cases of central nervous system GCTs were collected from 2013 to 2020 at Huashan Hospital of Fudan University, Shanghai, China. The expression of CXorf67, H3K27me3 and commonly-used GCT markers including OCT4, PLAP, CD117, D2-40, and CD30 by immunohistochemistry (EnVision method) was examined in different subtypes of central nervous system GCTs. The sensitivity and specificity of each marker were compared by contingency table and area under receiver operating characteristic (ROC) curve. Results: Of the 370 cases there were 282 males and 88 females with a mean age of 19 years and a median age of 17 years (range, 2-57 years). Among the GCTs with germinoma, the proportions of male patients and the patients with GCT located in sellar region were both higher than those of GCTs without germinoma (P<0.05), respectively. CXorf67 was present in the nuclei of germinoma and normal germ cells, but not in other subtypes of GCT. H3K27me3 was negative in germinoma, but positive in the nuclei of surrounding normal cells and GCTs other than germinoma. In the 283 GCTs with germinoma components, the expression rate of CXorf67 was 90.5% (256/283), but no cases were positive for H3K27me3. There was also an inverse correlation between them (r2=-0.831, P<0.01). The expression rates of PLAP, OCT4, CD117 and D2-40 were 81.2% (231/283), 89.4% (253/283), 73.9% (209/283) and 88.3% (250/283), respectively. In 63 mixed GCTs with germinoma components, the expression rate of CXorf67 was 84.1% (53/63), while all cases were negative for H3K27me3. The expression rates of PLAP, OCT4, CD117 and D2-40 were 79.4% (50/63), 79.4% (50/63), 66.7% (42/63) and 87.3% (55/63), respectively. The 6 markers with largest area under ROC curve in ranking order were H3K27me3, CXorf67, D2-40, OCT4, PLAP and CD117 (P<0.05). Conclusions: CXorf67 and H3K27me3 have high sensitivity and high specificity in diagnosing germinoma. There is a significant inverse correlation between them. Therefore, they can both be used as new specific immunohistochemical markers for the diagnosis of GCTs.


Sujet(s)
Adolescent , Adulte , Enfant , Enfant d'âge préscolaire , Femelle , Humains , Mâle , Adulte d'âge moyen , Jeune adulte , Tumeurs du cerveau/anatomopathologie , Système nerveux central/anatomopathologie , Tumeurs du système nerveux central/métabolisme , Chine , Germinome/anatomopathologie , Histone , Tumeurs embryonnaires et germinales/diagnostic , Protéines oncogènes , Facteurs de transcription/métabolisme
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