目的探讨LncRNA-MAFG-AS1在结直肠癌中的表达及临床意义。方法选取我院行手术切除的结直肠癌组织及对应的癌旁正常组织各80例,应用定量即时聚合酶链锁反应(quantitative real time polymerase chain reaction,qRT-PCR)检测结直肠癌组织...目的探讨LncRNA-MAFG-AS1在结直肠癌中的表达及临床意义。方法选取我院行手术切除的结直肠癌组织及对应的癌旁正常组织各80例,应用定量即时聚合酶链锁反应(quantitative real time polymerase chain reaction,qRT-PCR)检测结直肠癌组织及癌旁正常组织中LncRNA-MAFG-AS1的表达水平,并分析其与结直肠癌临床病理特征之间的关系,所有患者随访截止日期到2019年12月31日,应用Kaplan-Meier(K-M)法进行生存分析,采用Cox回归模型分析结直肠癌预后的危险因素。结果结直肠癌组织中LncRNA-MAFG-AS1相对表达量为2.398±0.214,高于癌旁正常组织的1.032±0.132,差异有统计学意义(P<0.05)。当患者TNM分期更高、中高分化及存在淋巴结转移和远期转移时,LncRNA-MAFG-AS1过表达(P<0.05)。K-M生存分析显示高表达患者无进展生存时间(progression-free survival,PFS)为(20.36±3.21)个月,低表达患者为(29.71±4.23)个月;高表达患者的总生存时间(overall survival,OS)为(38.69±6.24)个月,低高表达患者为(54.26±5.14)个月;两组患者的PFS和OS差异有统计学意义(P<0.05)。Cox多因素回归分析显示,TNM分期更高、中高分化及存在淋巴结转移、远期转移以及LncRNA-MAFG-AS1高表达是影响结直肠癌预后的独立危险因素。结论LncRNA-MAFG-AS1在结直肠癌组织中呈高表达,且与结直肠癌患者分化程度、TNM分期、淋巴结和远期转移有关,是影响结直肠癌患者预后的独立风险因素。展开更多
Ischemia–reperfusion injury is a common pathophysiological mechanism in retinal degeneration.PANoptosis is a newly defined integral form of regulated cell death that combines the key features of pyroptosis,apoptosis,...Ischemia–reperfusion injury is a common pathophysiological mechanism in retinal degeneration.PANoptosis is a newly defined integral form of regulated cell death that combines the key features of pyroptosis,apoptosis,and necroptosis.Oligomerization of mitochondrial voltage-dependent anion channel 1 is an important pathological event in regulating cell death in retinal ischemia–reperfusion injury.However,its role in PANoptosis remains largely unknown.In this study,we demonstrated that voltage-dependent anion channel 1 oligomerization-mediated mitochondrial dysfunction was associated with PANoptosis in retinal ischemia–reperfusion injury.Inhibition of voltage-dependent anion channel 1 oligomerization suppressed mitochondrial dysfunction and PANoptosis in retinal cells subjected to ischemia–reperfusion injury.Mechanistically,mitochondria-derived reactive oxygen species played a central role in the voltagedependent anion channel 1-mediated regulation of PANoptosis by promoting PANoptosome assembly.Moreover,inhibiting voltage-dependent anion channel 1 oligomerization protected against PANoptosis in the retinas of rats subjected to ischemia–reperfusion injury.Overall,our findings reveal the critical role of voltage-dependent anion channel 1 oligomerization in regulating PANoptosis in retinal ischemia–reperfusion injury,highlighting voltage-dependent anion channel 1 as a promising therapeutic target.展开更多
文摘目的探讨LncRNA-MAFG-AS1在结直肠癌中的表达及临床意义。方法选取我院行手术切除的结直肠癌组织及对应的癌旁正常组织各80例,应用定量即时聚合酶链锁反应(quantitative real time polymerase chain reaction,qRT-PCR)检测结直肠癌组织及癌旁正常组织中LncRNA-MAFG-AS1的表达水平,并分析其与结直肠癌临床病理特征之间的关系,所有患者随访截止日期到2019年12月31日,应用Kaplan-Meier(K-M)法进行生存分析,采用Cox回归模型分析结直肠癌预后的危险因素。结果结直肠癌组织中LncRNA-MAFG-AS1相对表达量为2.398±0.214,高于癌旁正常组织的1.032±0.132,差异有统计学意义(P<0.05)。当患者TNM分期更高、中高分化及存在淋巴结转移和远期转移时,LncRNA-MAFG-AS1过表达(P<0.05)。K-M生存分析显示高表达患者无进展生存时间(progression-free survival,PFS)为(20.36±3.21)个月,低表达患者为(29.71±4.23)个月;高表达患者的总生存时间(overall survival,OS)为(38.69±6.24)个月,低高表达患者为(54.26±5.14)个月;两组患者的PFS和OS差异有统计学意义(P<0.05)。Cox多因素回归分析显示,TNM分期更高、中高分化及存在淋巴结转移、远期转移以及LncRNA-MAFG-AS1高表达是影响结直肠癌预后的独立危险因素。结论LncRNA-MAFG-AS1在结直肠癌组织中呈高表达,且与结直肠癌患者分化程度、TNM分期、淋巴结和远期转移有关,是影响结直肠癌患者预后的独立风险因素。
基金supported by the National Natural Science Foundation of China,Nos.82172196(to KX),82372507(to KX)the Natural Science Foundation of Hunan Province,China,No.2023JJ40804(to QZ)the Key Laboratory of Emergency and Trauma(Hainan Medical University)of the Ministry of Education,China,No.KLET-202210(to QZ)。
文摘Ischemia–reperfusion injury is a common pathophysiological mechanism in retinal degeneration.PANoptosis is a newly defined integral form of regulated cell death that combines the key features of pyroptosis,apoptosis,and necroptosis.Oligomerization of mitochondrial voltage-dependent anion channel 1 is an important pathological event in regulating cell death in retinal ischemia–reperfusion injury.However,its role in PANoptosis remains largely unknown.In this study,we demonstrated that voltage-dependent anion channel 1 oligomerization-mediated mitochondrial dysfunction was associated with PANoptosis in retinal ischemia–reperfusion injury.Inhibition of voltage-dependent anion channel 1 oligomerization suppressed mitochondrial dysfunction and PANoptosis in retinal cells subjected to ischemia–reperfusion injury.Mechanistically,mitochondria-derived reactive oxygen species played a central role in the voltagedependent anion channel 1-mediated regulation of PANoptosis by promoting PANoptosome assembly.Moreover,inhibiting voltage-dependent anion channel 1 oligomerization protected against PANoptosis in the retinas of rats subjected to ischemia–reperfusion injury.Overall,our findings reveal the critical role of voltage-dependent anion channel 1 oligomerization in regulating PANoptosis in retinal ischemia–reperfusion injury,highlighting voltage-dependent anion channel 1 as a promising therapeutic target.