BACKGROUND:Adeno-associated virus(AAV)gene therapy has been proven to be reliable and safe for the treatment of osteoarthritis in recent years.However,given the complexity of osteoarthritis pathogenesis,single gene ma...BACKGROUND:Adeno-associated virus(AAV)gene therapy has been proven to be reliable and safe for the treatment of osteoarthritis in recent years.However,given the complexity of osteoarthritis pathogenesis,single gene manipulation for the treatment of osteoarthritis may not produce satisfactory results.Previous studies have shown that nuclear factorκB could promote the inflammatory pathway in osteoarthritic chondrocytes,and bone morphogenetic protein 4(BMP4)could promote cartilage regeneration.OBJECTIVE:To test whether combined application of AAV-p65shRNA and AAV-BMP4 will yield the synergistic effect on chondrocytes regeneration and osteoarthritis treatment.METHODS:Viral particles containing AAV-p65-shRNA and AAV-BMP4 were prepared.Their efficacy in inhibiting inflammation in chondrocytes and promoting chondrogenesis was assessed in vitro and in vivo by transfecting AAV-p65-shRNA or AAV-BMP4 into cells.The experiments were divided into five groups:PBS group;osteoarthritis group;AAV-BMP4 group;AAV-p65shRNA group;and BMP4-p65shRNA 1:1 group.Samples were collected at 4,12,and 24 weeks postoperatively.Tissue staining,including safranin O and Alcian blue,was applied after collecting articular tissue.Then,the optimal ratio between the two types of transfected viral particles was further investigated to improve the chondrogenic potential of mixed cells in vivo.RESULTS AND CONCLUSION:The combined application of AAV-p65shRNA and AAV-BMP4 together showed a synergistic effect on cartilage regeneration and osteoarthritis treatment.Mixed cells transfected with AAV-p65shRNA and AAV-BMP4 at a 1:1 ratio produced the most extracellular matrix synthesis(P<0.05).In vivo results also revealed that the combination of the two viruses had the highest regenerative potential for osteoarthritic cartilage(P<0.05).In the present study,we also discovered that the combined therapy had the maximum effect when the two viruses were administered in equal proportions.Decreasing either p65shRNA or BMP4 transfected cells resulted in less collagen II synthesis.This implies that inhibiting inflammation by p65shRNA and promoting regeneration by BMP4 are equally important for osteoarthritis treatment.These findings provide a new strategy for the treatment of early osteoarthritis by simultaneously inhibiting cartilage inflammation and promoting cartilage repair.展开更多
Tumor protein p53 (TP53) mediates DNA repair and cell proliferation in growing cells. The TP53 gene is a tumor suppressor that regulates the expression of target genes in response to multiple cellular stress factors. ...Tumor protein p53 (TP53) mediates DNA repair and cell proliferation in growing cells. The TP53 gene is a tumor suppressor that regulates the expression of target genes in response to multiple cellular stress factors. Key target genes are involved in crucial cellular events such as DNA repair, cell cycle regulation, apoptosis, metabolism, and senescence. TP53 genetic variants and the activity of the wild-type p53 protein (WT-p53) have been linked to a wide range of tumorigenesis. Various genetic and epigenetic alterations, including germline and somatic mutations, loss of heterozygosity, and DNA methylation, can alter TP53 activity, potentially resulting in cancer initiation and progression. This study was designed to screen three reported mutations in the DNA-binding domain of the p53 protein in breast cancer, to evaluate the relative susceptibility and risk associated with breast cancer in the local population. Genomic DNA was isolated from 30 breast tumor tissues along with controls. Tetra and Tri ARMS PCR were performed to detect mutations in the TP53 coding region. For SNPs c.637C>T and c.733C>T, all analyzed cases were homozygous for the wild-type allele ‘C,’ while for SNP c.745A>G, all cases were homozygous for the wild-type allele ‘A.’ These results indicate no relevance of these three SNPs to cancer progression in our study cohort. Additionally, the findings from whole exon sequencing will help to predict more precise outcomes and assess the importance of TP53 gene mutations in breast cancer patients.展开更多
TP53 is a tumor suppressor gene that is mutated in most cancer types and has been extensively studied in cancer research.p53 plays a critical role in regulating the expression of target genes and is involved in key pr...TP53 is a tumor suppressor gene that is mutated in most cancer types and has been extensively studied in cancer research.p53 plays a critical role in regulating the expression of target genes and is involved in key processes such as apoptosis,cell cycle regulation,and genomic stability,earning it the title“guardian of the genome.”Numerous studies have demonstrated p53’s influence on and regulation of autophagy,ferroptosis,the tumor microenvironment,and cell metabolism,all of which contribute to tumor suppression.Alterations in p53,specifically mutant p53(mutp53),not only impair its tumor-suppressing functions but also enhance oncogenic characteristics.Recent data indicate that mutp53 is strongly associated with poor prognosis and advanced cancers,making it an ideal target for the development of novel cancer therapies.This review summarizes the post-translational modifications of p53,the mechanisms of mutp53 accumulation,and its gain-of-function,based on previous findings.Additionally,this review discusses its impact on metabolic homeostasis,ferroptosis,genomic instability,the tumor microenvironment,and cancer stem cells,and highlights recent advancements in mutp53 research.展开更多
Objective: To detect the expression of hMSH2, hMLH1 and p53 in gastric epithelial cells with and without Helicobactcr pylori (H. pylori) infection and investigate the relationship between H. pylori infection and th...Objective: To detect the expression of hMSH2, hMLH1 and p53 in gastric epithelial cells with and without Helicobactcr pylori (H. pylori) infection and investigate the relationship between H. pylori infection and these genes in gastric carcinogenesis. Methods: H. pylori infection was detected by rapid urease tests. Expression of hMSH2, hMLHland p53 in gastric cancer (GC) tissue, its adjacent mucosa, gastritic mucosa and normal mucosa was assessed by immunohistochemistry SP method. Results: Positive expression rate of hMSH2 in GC tissue (62.7%) was higher than those in adjacent mucosa (29.4%), gastritic mucosa (32.4%) and normal mucosa (30.0%) (P〈0.001). Positive rate of hMSH2 in poorly differentiated adenocarcinoma (76.4%) was higher than those in other carcinomas (54.3%, 53.1%) (P〈0.05). Positive expression rate of hMLH1 in GC tissue (64.3%) mucosa (82.4%) and normal mucosa (80.0%) was lower than those in adjacent mucosa (84.4%), gastritic (P〈0.01). Positive rate of hMLH1 in mucoid carcinoma (43.7%) was lower than those in other carcinomas (78.2%, 64.7%) (P〈0.01). Positive expression rate of p53 in GC tissue (51.9%) was higher than those in adjacent mucosa (3.1%), gastritic mucosa (0.0%) and normal mucosa (0.0%) (P〈0.001). Positive rate of p53 in well differentiated adenocarcinoma (32.6%) was lower than those in other carcinomas (58.8%, 68.7%) (P〈0.01). Positive rates of hMSH2 and hMLH1 in GC with H. pylori infection were lower than those without the infection, respectively (P〈0.05). Positive rate of p53 in GC with H. pylori infection (61.4%) was higher than that without the infection (40.6%) (P〈0.05). Conclusion: Gastric carcinogenesis may be associated with abnormal expression of hMSH2, hMLH1 and p53; H. pylori infection affecting expression of these genes may be one of its carcinogenic mechanisms.展开更多
An alcohol dehydrogenase (ADH)-coexisted solidstate electrochemiluminescence (ECL) biosensor for sensitive detection of the p53 gene was developed. The electrode modified by multiwalled carbon nanotubes, Ru(bpy...An alcohol dehydrogenase (ADH)-coexisted solidstate electrochemiluminescence (ECL) biosensor for sensitive detection of the p53 gene was developed. The electrode modified by multiwalled carbon nanotubes, Ru(bpy)]2+3 and polypyrrole ( MWNTs-Ru (bpy) ]2+3 -PPy ) was prepared to adsorb the ssDNA by electrostatic interactions. Then, the ssDNA recognized the gold nanoparticles (AuNPs)-labeled p53 gene and produced the AuNPs-dsDNA electrode with the AuNPs layer. The AuNPs layer adsorbed the ADH molecules for producing the ECL signal. Thus, the biosensor was based on coupling enzyme substrate reaction with solid-state ECL detection, and it displayed good sensitivity and specificity. The detection limit of the wild type p53 sequence (wtp53) is as low as 0. 1 pmol/L and the discrimination is up to 57. 1% between the wtp53 and the muted type p53 sequence (mtp53). The amenability of this method to the analyses of p53 from normal and cancer cell lysates is demonstrated. The signal of wtp53 in the MGC-803 gastric cancer cell lysates turns out to be about 61.8% that of the wtp53 in the GES-1 normal gastric mucosal cell lysates, and the concentration of the wtp53 is found to decrease about 59 times. The method is highly complementary to enzyme-linked immunosorbent assay (ELISA), and it holds promise for the diagnosis and management of cancer.展开更多
文摘BACKGROUND:Adeno-associated virus(AAV)gene therapy has been proven to be reliable and safe for the treatment of osteoarthritis in recent years.However,given the complexity of osteoarthritis pathogenesis,single gene manipulation for the treatment of osteoarthritis may not produce satisfactory results.Previous studies have shown that nuclear factorκB could promote the inflammatory pathway in osteoarthritic chondrocytes,and bone morphogenetic protein 4(BMP4)could promote cartilage regeneration.OBJECTIVE:To test whether combined application of AAV-p65shRNA and AAV-BMP4 will yield the synergistic effect on chondrocytes regeneration and osteoarthritis treatment.METHODS:Viral particles containing AAV-p65-shRNA and AAV-BMP4 were prepared.Their efficacy in inhibiting inflammation in chondrocytes and promoting chondrogenesis was assessed in vitro and in vivo by transfecting AAV-p65-shRNA or AAV-BMP4 into cells.The experiments were divided into five groups:PBS group;osteoarthritis group;AAV-BMP4 group;AAV-p65shRNA group;and BMP4-p65shRNA 1:1 group.Samples were collected at 4,12,and 24 weeks postoperatively.Tissue staining,including safranin O and Alcian blue,was applied after collecting articular tissue.Then,the optimal ratio between the two types of transfected viral particles was further investigated to improve the chondrogenic potential of mixed cells in vivo.RESULTS AND CONCLUSION:The combined application of AAV-p65shRNA and AAV-BMP4 together showed a synergistic effect on cartilage regeneration and osteoarthritis treatment.Mixed cells transfected with AAV-p65shRNA and AAV-BMP4 at a 1:1 ratio produced the most extracellular matrix synthesis(P<0.05).In vivo results also revealed that the combination of the two viruses had the highest regenerative potential for osteoarthritic cartilage(P<0.05).In the present study,we also discovered that the combined therapy had the maximum effect when the two viruses were administered in equal proportions.Decreasing either p65shRNA or BMP4 transfected cells resulted in less collagen II synthesis.This implies that inhibiting inflammation by p65shRNA and promoting regeneration by BMP4 are equally important for osteoarthritis treatment.These findings provide a new strategy for the treatment of early osteoarthritis by simultaneously inhibiting cartilage inflammation and promoting cartilage repair.
文摘Tumor protein p53 (TP53) mediates DNA repair and cell proliferation in growing cells. The TP53 gene is a tumor suppressor that regulates the expression of target genes in response to multiple cellular stress factors. Key target genes are involved in crucial cellular events such as DNA repair, cell cycle regulation, apoptosis, metabolism, and senescence. TP53 genetic variants and the activity of the wild-type p53 protein (WT-p53) have been linked to a wide range of tumorigenesis. Various genetic and epigenetic alterations, including germline and somatic mutations, loss of heterozygosity, and DNA methylation, can alter TP53 activity, potentially resulting in cancer initiation and progression. This study was designed to screen three reported mutations in the DNA-binding domain of the p53 protein in breast cancer, to evaluate the relative susceptibility and risk associated with breast cancer in the local population. Genomic DNA was isolated from 30 breast tumor tissues along with controls. Tetra and Tri ARMS PCR were performed to detect mutations in the TP53 coding region. For SNPs c.637C>T and c.733C>T, all analyzed cases were homozygous for the wild-type allele ‘C,’ while for SNP c.745A>G, all cases were homozygous for the wild-type allele ‘A.’ These results indicate no relevance of these three SNPs to cancer progression in our study cohort. Additionally, the findings from whole exon sequencing will help to predict more precise outcomes and assess the importance of TP53 gene mutations in breast cancer patients.
文摘TP53 is a tumor suppressor gene that is mutated in most cancer types and has been extensively studied in cancer research.p53 plays a critical role in regulating the expression of target genes and is involved in key processes such as apoptosis,cell cycle regulation,and genomic stability,earning it the title“guardian of the genome.”Numerous studies have demonstrated p53’s influence on and regulation of autophagy,ferroptosis,the tumor microenvironment,and cell metabolism,all of which contribute to tumor suppression.Alterations in p53,specifically mutant p53(mutp53),not only impair its tumor-suppressing functions but also enhance oncogenic characteristics.Recent data indicate that mutp53 is strongly associated with poor prognosis and advanced cancers,making it an ideal target for the development of novel cancer therapies.This review summarizes the post-translational modifications of p53,the mechanisms of mutp53 accumulation,and its gain-of-function,based on previous findings.Additionally,this review discusses its impact on metabolic homeostasis,ferroptosis,genomic instability,the tumor microenvironment,and cancer stem cells,and highlights recent advancements in mutp53 research.
文摘Objective: To detect the expression of hMSH2, hMLH1 and p53 in gastric epithelial cells with and without Helicobactcr pylori (H. pylori) infection and investigate the relationship between H. pylori infection and these genes in gastric carcinogenesis. Methods: H. pylori infection was detected by rapid urease tests. Expression of hMSH2, hMLHland p53 in gastric cancer (GC) tissue, its adjacent mucosa, gastritic mucosa and normal mucosa was assessed by immunohistochemistry SP method. Results: Positive expression rate of hMSH2 in GC tissue (62.7%) was higher than those in adjacent mucosa (29.4%), gastritic mucosa (32.4%) and normal mucosa (30.0%) (P〈0.001). Positive rate of hMSH2 in poorly differentiated adenocarcinoma (76.4%) was higher than those in other carcinomas (54.3%, 53.1%) (P〈0.05). Positive expression rate of hMLH1 in GC tissue (64.3%) mucosa (82.4%) and normal mucosa (80.0%) was lower than those in adjacent mucosa (84.4%), gastritic (P〈0.01). Positive rate of hMLH1 in mucoid carcinoma (43.7%) was lower than those in other carcinomas (78.2%, 64.7%) (P〈0.01). Positive expression rate of p53 in GC tissue (51.9%) was higher than those in adjacent mucosa (3.1%), gastritic mucosa (0.0%) and normal mucosa (0.0%) (P〈0.001). Positive rate of p53 in well differentiated adenocarcinoma (32.6%) was lower than those in other carcinomas (58.8%, 68.7%) (P〈0.01). Positive rates of hMSH2 and hMLH1 in GC with H. pylori infection were lower than those without the infection, respectively (P〈0.05). Positive rate of p53 in GC with H. pylori infection (61.4%) was higher than that without the infection (40.6%) (P〈0.05). Conclusion: Gastric carcinogenesis may be associated with abnormal expression of hMSH2, hMLH1 and p53; H. pylori infection affecting expression of these genes may be one of its carcinogenic mechanisms.
基金The National Basic Research Program of China(973 Program)(No.2010CB732404,2011CB933404)the National Natural Science Foundation of China(No.81172697,81170492,81001244)+1 种基金the Specialized Research Fund for the Doctoral Program of Higher Education(No.20110092120055)the Foundation of the State Key Laboratory of Bioelectronics of Southeast University
文摘An alcohol dehydrogenase (ADH)-coexisted solidstate electrochemiluminescence (ECL) biosensor for sensitive detection of the p53 gene was developed. The electrode modified by multiwalled carbon nanotubes, Ru(bpy)]2+3 and polypyrrole ( MWNTs-Ru (bpy) ]2+3 -PPy ) was prepared to adsorb the ssDNA by electrostatic interactions. Then, the ssDNA recognized the gold nanoparticles (AuNPs)-labeled p53 gene and produced the AuNPs-dsDNA electrode with the AuNPs layer. The AuNPs layer adsorbed the ADH molecules for producing the ECL signal. Thus, the biosensor was based on coupling enzyme substrate reaction with solid-state ECL detection, and it displayed good sensitivity and specificity. The detection limit of the wild type p53 sequence (wtp53) is as low as 0. 1 pmol/L and the discrimination is up to 57. 1% between the wtp53 and the muted type p53 sequence (mtp53). The amenability of this method to the analyses of p53 from normal and cancer cell lysates is demonstrated. The signal of wtp53 in the MGC-803 gastric cancer cell lysates turns out to be about 61.8% that of the wtp53 in the GES-1 normal gastric mucosal cell lysates, and the concentration of the wtp53 is found to decrease about 59 times. The method is highly complementary to enzyme-linked immunosorbent assay (ELISA), and it holds promise for the diagnosis and management of cancer.