We previously showed that hydrogen sulfide(H2S)has a neuroprotective effect in the context of hypoxic ischemic brain injury in neonatal mice.However,the precise mechanism underlying the role of H2S in this situation r...We previously showed that hydrogen sulfide(H2S)has a neuroprotective effect in the context of hypoxic ischemic brain injury in neonatal mice.However,the precise mechanism underlying the role of H2S in this situation remains unclear.In this study,we used a neonatal mouse model of hypoxic ischemic brain injury and a lipopolysaccharide-stimulated BV2 cell model and found that treatment with L-cysteine,a H2S precursor,attenuated the cerebral infarction and cerebral atrophy induced by hypoxia and ischemia and increased the expression of miR-9-5p and cystathionineβsynthase(a major H2S synthetase in the brain)in the prefrontal cortex.We also found that an miR-9-5p inhibitor blocked the expression of cystathionineβsynthase in the prefrontal cortex in mice with brain injury caused by hypoxia and ischemia.Furthermore,miR-9-5p overexpression increased cystathionine-β-synthase and H2S expression in the injured prefrontal cortex of mice with hypoxic ischemic brain injury.L-cysteine decreased the expression of CXCL11,an miR-9-5p target gene,in the prefrontal cortex of the mouse model and in lipopolysaccharide-stimulated BV-2 cells and increased the levels of proinflammatory cytokines BNIP3,FSTL1,SOCS2 and SOCS5,while treatment with an miR-9-5p inhibitor reversed these changes.These findings suggest that H2S can reduce neuroinflammation in a neonatal mouse model of hypoxic ischemic brain injury through regulating the miR-9-5p/CXCL11 axis and restoringβ-synthase expression,thereby playing a role in reducing neuroinflammation in hypoxic ischemic brain injury.展开更多
Background:This study explores the relationship between endoplasmic reticulum(ER)stress and diabetes,particularly focusing on the impact of physical exercise on ER stress mechanisms and identifying potential therapeut...Background:This study explores the relationship between endoplasmic reticulum(ER)stress and diabetes,particularly focusing on the impact of physical exercise on ER stress mechanisms and identifying potential therapeutic drugs and targets for diabetes-related sepsis.The research also incorporates traditional physical therapy perspectives,emphasizing the genomic insights gained from exercise therapy in disease management and prevention.Methods:Gene analysis was conducted on the GSE168796 and GSE94717 datasets to identify ER stress-related genes.Gene interactions and immune cell correlations were mapped using GeneCard and STRING databases.A screening of 2,456 compounds from the TCMSP database was performed to identify potential therapeutic agents,with a focus on their docking potential.Techniques such as luciferase reporter gene assay and RNA interference were used to examine the interactions between microRNA-149-5p and MMP9.Results:The study identified 2,006 differentially expressed genes and 616 miRNAs.Key genes like MMP9,TNF-α,and IL1B were linked to an immunosuppressive state.Licorice glycoside E demonstrated high affinity for MMP9,suggesting its potential effectiveness in treating diabetes.The constructed miRNA network highlighted the regulatory roles of MMP9,IL1B,IFNG,and TNF-α.Experimental evidence confirmed the binding of microRNA-149-5p to MMP9,impacting apoptosis in diabetic cells.Conclusion:The findings highlight the regulatory role of microRNA-149-5p in managing MMP9,a crucial gene in diabetes pathophysiology.Licorice glycoside E emerges as a promising treatment option for diabetes,especially targeting MMP9 affected by ER stress.The study also underscores the significance of physical exercise in modulating ER stress pathways in diabetes management,bridging traditional physical therapy and modern scientific understanding.Our study has limitations.It focuses on the microRNA-149-5p-MMP9 network in sepsis,using cell-based methods without animal or clinical trials.Despite strong in vitro findings,in vivo studies are needed to confirm licorice glycoside E’s therapeutic potential and understand the microRNA-149-5p-MMP9 dynamics in real conditions.展开更多
目的:探讨长链非编码RNA TFAP2A-AS1对子宫内膜癌细胞增殖、侵袭和迁移的影响及机制。方法:选择50例子宫内膜癌组织和对应的癌旁组织。选取子宫内膜癌细胞株(RL95-2、HEC-1A、HHUA、HEC-1B及Ishikawa),子宫内膜上皮细胞hEEC。子宫内膜...目的:探讨长链非编码RNA TFAP2A-AS1对子宫内膜癌细胞增殖、侵袭和迁移的影响及机制。方法:选择50例子宫内膜癌组织和对应的癌旁组织。选取子宫内膜癌细胞株(RL95-2、HEC-1A、HHUA、HEC-1B及Ishikawa),子宫内膜上皮细胞hEEC。子宫内膜癌细胞株Ishikawa转染si-TFAP2A-AS1(si-TFAP2A-AS1组)、si-NC(si-NC组)、miR-9-5p mimics(miR-9-5p组)及miR-NC(miR-NC组);RL95-2细胞转染OE-TFAP2A-AS1(TFAP2A-AS1组)、Vector(Vector组)、sh-miR-9-5p(sh-miR-9-5p组)及sh-NC(sh-NC组)。CCK-8检测细胞增殖能力,Transwell检测细胞侵袭、迁移能力,双荧光素酶实验、pull down实验分析TFAP2A-AS1与miR-9-5p的靶向关系;miR-9-5p与ERK的靶向关系,实时荧光定量PCR(RT-qPCR)检测子宫内膜癌组织、癌旁组织、子宫内膜癌细胞及hEEC细胞TFAP2AAS1、miR-9-5p表达水平,Western blot检测细胞外调节蛋白激酶(ERK)、磷酸化ERK(p-ERK)水平。结果:子宫内膜癌组织中TFAP2A-AS1表达水平低于癌旁组织,miR-9-5p表达水平高于癌旁组织(P<0.05)。子宫内膜癌组织TFAP2A-AS1、miR-9-5p表达水平与分化程度、肿瘤直径、TNM分期及淋巴结转移有关。子宫内膜癌组织中TFAP2A-AS1、miR-9-5p表达水平呈负相关(r=-0.782,P=0.002)。与hEEC细胞比较,RL95-2、HEC-1A、HHUA、HEC-1B及Ishikawa细胞TFAP2A-AS1表达水平降低,miR-9-5p表达水平升高(P<0.05)。与si-NC组比较,si-TFAP2A-AS1组细胞48 h、72 h OD值,侵袭、迁移细胞数均升高(P<0.05);与Vector组比较,TFAP2A-AS1组细胞48 h、72 h OD值,侵袭、迁移细胞数均降低(P<0.05)。与miR-NC组比较,miR-9-5p组细胞48 h、72 h OD值,侵袭、迁移细胞数均升高(P<0.05);与sh-NC组比较,sh-miR-9-5p组细胞48 h、72 h OD值,侵袭、迁移细胞数均降低(P<0.05)。TFAP2A-AS1负性调控miR-9-5p、p-ERK表达水平,miR-9-5p可靶向调控ERK蛋白。结论:过表达TFAP2A-AS1通过靶向下调miR-9-5p,抑制ERK通路,最终抑制子宫内膜癌细胞恶性生物学行为。展开更多
目的:探讨血浆微小RNA-9-5p(microRNA-9-5p,miR-9-5p)表达水平预测奥氮平治疗精神分裂症疗效的价值。方法:纳入杭州市第七人民医院2021年6月至2023年6月收治的78例奥氮平单药治疗的精神分裂症患者为研究对象,连续观察4周,采用阳性与阴...目的:探讨血浆微小RNA-9-5p(microRNA-9-5p,miR-9-5p)表达水平预测奥氮平治疗精神分裂症疗效的价值。方法:纳入杭州市第七人民医院2021年6月至2023年6月收治的78例奥氮平单药治疗的精神分裂症患者为研究对象,连续观察4周,采用阳性与阴性症状量表(positive and negative syndrome scale,PANSS)评定疗效。采用实时荧光定量聚合酶链式反应法检测血浆miR-9-5p表达水平。结果:基线血浆miR-9-5p表达水平与PANSS量表阴性症状减分率、一般精神病理症状减分率及总减分率呈负相关(r=-0.248、-0.320、-0.360,P均<0.05),治疗后血浆miR-9-5p表达水平增加量与PANSS量表阳性症状减分率、阴性症状减分率、一般精神病理症状减分率及总减分率呈正相关(r=0.236、0.317、0.436、0.462,P均<0.05)。miR-9-5p基线表达水平预测奥氮平治疗精神分裂症疗效的曲线下面积(area under the curve,AUC)为0.7792(95%CI:0.6692~0.8892),灵敏度为63.33%,特异度为83.33%,miR-9-5p表达水平增加量预测奥氮平治疗精神分裂症疗效的AUC为0.8278(95%CI:0.7248~0.9308),灵敏度为79.17%,特异度为83.33%。生物信息学分析表明,miR-9-5p预测靶基因参与多种与神经系统功能密切相关的生物学过程,富集于ErbB信号通路、神经营养素信号通路、MAPK信号通路等通路。结论:血浆miR-9-5p表达水平一定程度上可以预测奥氮平治疗精神分裂症的临床疗效。展开更多
基金supported by the National Natural Science Foundation of China,Nos.82271327(to ZW),82072535(to ZW),81873768(to ZW),and 82001253(to TL).
文摘We previously showed that hydrogen sulfide(H2S)has a neuroprotective effect in the context of hypoxic ischemic brain injury in neonatal mice.However,the precise mechanism underlying the role of H2S in this situation remains unclear.In this study,we used a neonatal mouse model of hypoxic ischemic brain injury and a lipopolysaccharide-stimulated BV2 cell model and found that treatment with L-cysteine,a H2S precursor,attenuated the cerebral infarction and cerebral atrophy induced by hypoxia and ischemia and increased the expression of miR-9-5p and cystathionineβsynthase(a major H2S synthetase in the brain)in the prefrontal cortex.We also found that an miR-9-5p inhibitor blocked the expression of cystathionineβsynthase in the prefrontal cortex in mice with brain injury caused by hypoxia and ischemia.Furthermore,miR-9-5p overexpression increased cystathionine-β-synthase and H2S expression in the injured prefrontal cortex of mice with hypoxic ischemic brain injury.L-cysteine decreased the expression of CXCL11,an miR-9-5p target gene,in the prefrontal cortex of the mouse model and in lipopolysaccharide-stimulated BV-2 cells and increased the levels of proinflammatory cytokines BNIP3,FSTL1,SOCS2 and SOCS5,while treatment with an miR-9-5p inhibitor reversed these changes.These findings suggest that H2S can reduce neuroinflammation in a neonatal mouse model of hypoxic ischemic brain injury through regulating the miR-9-5p/CXCL11 axis and restoringβ-synthase expression,thereby playing a role in reducing neuroinflammation in hypoxic ischemic brain injury.
文摘Background:This study explores the relationship between endoplasmic reticulum(ER)stress and diabetes,particularly focusing on the impact of physical exercise on ER stress mechanisms and identifying potential therapeutic drugs and targets for diabetes-related sepsis.The research also incorporates traditional physical therapy perspectives,emphasizing the genomic insights gained from exercise therapy in disease management and prevention.Methods:Gene analysis was conducted on the GSE168796 and GSE94717 datasets to identify ER stress-related genes.Gene interactions and immune cell correlations were mapped using GeneCard and STRING databases.A screening of 2,456 compounds from the TCMSP database was performed to identify potential therapeutic agents,with a focus on their docking potential.Techniques such as luciferase reporter gene assay and RNA interference were used to examine the interactions between microRNA-149-5p and MMP9.Results:The study identified 2,006 differentially expressed genes and 616 miRNAs.Key genes like MMP9,TNF-α,and IL1B were linked to an immunosuppressive state.Licorice glycoside E demonstrated high affinity for MMP9,suggesting its potential effectiveness in treating diabetes.The constructed miRNA network highlighted the regulatory roles of MMP9,IL1B,IFNG,and TNF-α.Experimental evidence confirmed the binding of microRNA-149-5p to MMP9,impacting apoptosis in diabetic cells.Conclusion:The findings highlight the regulatory role of microRNA-149-5p in managing MMP9,a crucial gene in diabetes pathophysiology.Licorice glycoside E emerges as a promising treatment option for diabetes,especially targeting MMP9 affected by ER stress.The study also underscores the significance of physical exercise in modulating ER stress pathways in diabetes management,bridging traditional physical therapy and modern scientific understanding.Our study has limitations.It focuses on the microRNA-149-5p-MMP9 network in sepsis,using cell-based methods without animal or clinical trials.Despite strong in vitro findings,in vivo studies are needed to confirm licorice glycoside E’s therapeutic potential and understand the microRNA-149-5p-MMP9 dynamics in real conditions.
文摘目的:探讨长链非编码RNA TFAP2A-AS1对子宫内膜癌细胞增殖、侵袭和迁移的影响及机制。方法:选择50例子宫内膜癌组织和对应的癌旁组织。选取子宫内膜癌细胞株(RL95-2、HEC-1A、HHUA、HEC-1B及Ishikawa),子宫内膜上皮细胞hEEC。子宫内膜癌细胞株Ishikawa转染si-TFAP2A-AS1(si-TFAP2A-AS1组)、si-NC(si-NC组)、miR-9-5p mimics(miR-9-5p组)及miR-NC(miR-NC组);RL95-2细胞转染OE-TFAP2A-AS1(TFAP2A-AS1组)、Vector(Vector组)、sh-miR-9-5p(sh-miR-9-5p组)及sh-NC(sh-NC组)。CCK-8检测细胞增殖能力,Transwell检测细胞侵袭、迁移能力,双荧光素酶实验、pull down实验分析TFAP2A-AS1与miR-9-5p的靶向关系;miR-9-5p与ERK的靶向关系,实时荧光定量PCR(RT-qPCR)检测子宫内膜癌组织、癌旁组织、子宫内膜癌细胞及hEEC细胞TFAP2AAS1、miR-9-5p表达水平,Western blot检测细胞外调节蛋白激酶(ERK)、磷酸化ERK(p-ERK)水平。结果:子宫内膜癌组织中TFAP2A-AS1表达水平低于癌旁组织,miR-9-5p表达水平高于癌旁组织(P<0.05)。子宫内膜癌组织TFAP2A-AS1、miR-9-5p表达水平与分化程度、肿瘤直径、TNM分期及淋巴结转移有关。子宫内膜癌组织中TFAP2A-AS1、miR-9-5p表达水平呈负相关(r=-0.782,P=0.002)。与hEEC细胞比较,RL95-2、HEC-1A、HHUA、HEC-1B及Ishikawa细胞TFAP2A-AS1表达水平降低,miR-9-5p表达水平升高(P<0.05)。与si-NC组比较,si-TFAP2A-AS1组细胞48 h、72 h OD值,侵袭、迁移细胞数均升高(P<0.05);与Vector组比较,TFAP2A-AS1组细胞48 h、72 h OD值,侵袭、迁移细胞数均降低(P<0.05)。与miR-NC组比较,miR-9-5p组细胞48 h、72 h OD值,侵袭、迁移细胞数均升高(P<0.05);与sh-NC组比较,sh-miR-9-5p组细胞48 h、72 h OD值,侵袭、迁移细胞数均降低(P<0.05)。TFAP2A-AS1负性调控miR-9-5p、p-ERK表达水平,miR-9-5p可靶向调控ERK蛋白。结论:过表达TFAP2A-AS1通过靶向下调miR-9-5p,抑制ERK通路,最终抑制子宫内膜癌细胞恶性生物学行为。
文摘目的:探讨血浆微小RNA-9-5p(microRNA-9-5p,miR-9-5p)表达水平预测奥氮平治疗精神分裂症疗效的价值。方法:纳入杭州市第七人民医院2021年6月至2023年6月收治的78例奥氮平单药治疗的精神分裂症患者为研究对象,连续观察4周,采用阳性与阴性症状量表(positive and negative syndrome scale,PANSS)评定疗效。采用实时荧光定量聚合酶链式反应法检测血浆miR-9-5p表达水平。结果:基线血浆miR-9-5p表达水平与PANSS量表阴性症状减分率、一般精神病理症状减分率及总减分率呈负相关(r=-0.248、-0.320、-0.360,P均<0.05),治疗后血浆miR-9-5p表达水平增加量与PANSS量表阳性症状减分率、阴性症状减分率、一般精神病理症状减分率及总减分率呈正相关(r=0.236、0.317、0.436、0.462,P均<0.05)。miR-9-5p基线表达水平预测奥氮平治疗精神分裂症疗效的曲线下面积(area under the curve,AUC)为0.7792(95%CI:0.6692~0.8892),灵敏度为63.33%,特异度为83.33%,miR-9-5p表达水平增加量预测奥氮平治疗精神分裂症疗效的AUC为0.8278(95%CI:0.7248~0.9308),灵敏度为79.17%,特异度为83.33%。生物信息学分析表明,miR-9-5p预测靶基因参与多种与神经系统功能密切相关的生物学过程,富集于ErbB信号通路、神经营养素信号通路、MAPK信号通路等通路。结论:血浆miR-9-5p表达水平一定程度上可以预测奥氮平治疗精神分裂症的临床疗效。