Aging is an inevitable physiological process,often accompanied by age-related bone loss and subsequent bone-related diseases that pose serious health risks.Research on skeletal diseases caused by aging in humans is ch...Aging is an inevitable physiological process,often accompanied by age-related bone loss and subsequent bone-related diseases that pose serious health risks.Research on skeletal diseases caused by aging in humans is challenging due to lengthy study durations,difficulties in sampling,regional variability,and substantial investment.Consequently,mice are preferred for such studies due to their similar motor system structure and function to humans,ease of handling and care,low cost,and short generation time.In this review,we present a comprehensive overview of the characteristics,limitations,applicability,bone phenotypes,and treatment methods in naturally aging mice and prematurely aging mouse models(including SAMP6,POLG mutant,LMNA,SIRT6,ZMPSTE24,TFAM,ERCC1,WERNER,and KL/KL-deficient mice).We also summarize the molecular mechanisms of these aging mouse models,including cellular DNA damage response,senescence-related secretory phenotype,telomere shortening,oxidative stress,bone marrow mesenchymal stem cell(BMSC)abnormalities,and mitochondrial dysfunction.Overall,this review aims to enhance our understanding of the pathogenesis of aging-related bone diseases.展开更多
目的探讨高热量饮食和年龄对载脂蛋白E基因敲除(ApoE^(-/-))小鼠脑功能的影响。方法选取8月龄成年ApoE^(-/-)小鼠和18月龄老年ApoE^(-/-)小鼠共20只,随机分为正常饮食成年组、正常饮食老年组、高热量饮食成年组、高热量饮食老年组,每组...目的探讨高热量饮食和年龄对载脂蛋白E基因敲除(ApoE^(-/-))小鼠脑功能的影响。方法选取8月龄成年ApoE^(-/-)小鼠和18月龄老年ApoE^(-/-)小鼠共20只,随机分为正常饮食成年组、正常饮食老年组、高热量饮食成年组、高热量饮食老年组,每组5只。正常饮食成年组、正常饮食老年组小鼠喂食实验室标准饲料,高热量饮食成年组、高热量饮食老年组小鼠喂食高脂饲料,干预8周。用体质量监测和葡萄糖耐量实验测试小鼠体质量、血糖变化,核磁共振波谱检测海马和下丘脑N-乙酰天冬氨酸(NAA)、胆碱(Cho)含量,Y迷宫和旷场实验检测认知功能,Western blot检测脑组织突触体相关蛋白25(SNAP-25)、突触素(synaptophysin)、突触后致密蛋白95(PSD-95)、诱导型一氧化氮合酶(iNOS)、白细胞介素1β(IL-1β)表达。结果与正常饮食成年组比较,高热量饮食成年组海马NAA、下丘脑Cho和NAA、自发交替率、SNAP-25、synaptophysin、PSD-95表达降低,差异有统计学意义(P<0.05,P<0.01),iNOS、IL-1β表达升高,差异有统计学意义(P<0.01);与正常饮食成年组比较,正常饮食老年组海马NAA、下丘脑Cho、SNAP-25、synaptophysin、PSD-95表达降低(P<0.05,P<0.01),iNOS、IL-1β表达升高(P<0.01);与正常饮食老年组比较,高热量饮食老年组海马和下丘脑Cho和NAA、中心路程/总路程、SNAP-25、synaptophysin、PSD-95表达降低(P<0.05,P<0.01),iNOS、IL-1β表达升高(P<0.01);与高热量饮食成年组比较,高热量饮食老年组海马NAA、中心路程/总路程、平均速度、synaptophysin表达降低(P<0.05,P<0.01),iNOS、IL-1β表达升高(1.61±0.10 vs 1.35±0.13,2.04±0.08 vs 1.54±0.11,P<0.05,P<0.01)。结论高热量饮食导致ApoE^(-/-)小鼠代谢障碍和神经炎症,抑制突触蛋白表达引起认知功能障碍;长期高热量饮食和年龄增加促进ApoE^(-/-)小鼠脑功能衰退。展开更多
目的:利用成簇规律性间隔短回文重复序列(clustered regularly interspaced short palindromic repeat,CRISPR)相关蛋白9(CRISP associated protein 9,Cas9)技术构建微小核糖核酸-551b(miR-551b)基因敲除小鼠模型。方法:选择健康C57BL/6...目的:利用成簇规律性间隔短回文重复序列(clustered regularly interspaced short palindromic repeat,CRISPR)相关蛋白9(CRISP associated protein 9,Cas9)技术构建微小核糖核酸-551b(miR-551b)基因敲除小鼠模型。方法:选择健康C57BL/6J小鼠,针对miR-551b外显子1区域,设计导向RNA(guide RNA,gRNA),构建Cas9载体质粒,将体外转录的Cas9 RNA及gRNA显微注射入小鼠的受精卵并体外培养。将培养合格的胚胎移植到代孕小鼠的输卵管中,待小鼠生育后得到F0代小鼠,使用基因测序确定基因敲除情况,与野生型小鼠繁育后,得到F1代杂合小鼠,F1代小鼠经自交繁育获得F2代小鼠,F3代小鼠由F2代纯合小鼠自交获得,采用电泳鉴定小鼠基因型,RT-PCR检测F3代小鼠组织miR-551b的表达。结果:利用CRISPR/Cas9技术构建模型小鼠得到F0代小鼠,通过测序筛选出缺失目标序列的F0代杂合子小鼠。与WT小鼠繁育后,琼脂糖凝胶电泳及测序筛选出F1代杂合小鼠,同样的方法鉴定并获得F2、F3代基因敲除小鼠,获取F3代纯合小鼠的心脏及下腔静脉样本,RT-PCR结果证实F3代纯合小鼠miR551b表达明显低于WT小鼠(P<0.05),成功敲除miR-551b基因。结论:通过CRISPR-Cas9技术成功构建miR⁃155基因敲除小鼠模型并稳定遗传,为进一步研究提供了有利条件。展开更多
Abstract Objectives To investigate the tissue specificity of reactive oxygen species (ROS) damage to mitochondrial DNA (mtDNA) and to determine whether cochlear mtDNA is a sensitive target for ROS damage. Methods 10...Abstract Objectives To investigate the tissue specificity of reactive oxygen species (ROS) damage to mitochondrial DNA (mtDNA) and to determine whether cochlear mtDNA is a sensitive target for ROS damage. Methods 10 Cu/ZnSOD gene (Cu/Zn superoxide dismutase gene, Sod1) knockout mice and 16 wild-type mice were analyzed by nested polymerase chain reaction (PCR).Results Three deletions were detected in various tissues of Sod1 knockout mice. MtDNA3867bp and mtDNA3726bp deletions were the most visible, and mtDNA4236bp deletion was barely detected in these tissues. There were obvious differences in the ratio of deleted mtDNA/total mtDNA in different tissue. Deleted mtDNA was most abundant in the liver and kidney and less in cochlea, heart and brain. The lowest was in spleen and skin. The ratio in various tissues was 3-20 times in Sod1 knockout mice over wild-type mice. In cochlea, the ratio was about 15. Conclusions Without the protection of Sod1, ROS can lead to mtDNA deletions in various tissues with significant tissue specificity. Cochlear mtDNA is a sensitive target for ROS damage.展开更多
基金National Natural Science Foundation of China(82272608)2021 Capacity Building of Shanghai Universities(21010503600)Shanghai Key Lab of Human Performance(Shanghai University of Sport)(11DZ2261100)。
文摘Aging is an inevitable physiological process,often accompanied by age-related bone loss and subsequent bone-related diseases that pose serious health risks.Research on skeletal diseases caused by aging in humans is challenging due to lengthy study durations,difficulties in sampling,regional variability,and substantial investment.Consequently,mice are preferred for such studies due to their similar motor system structure and function to humans,ease of handling and care,low cost,and short generation time.In this review,we present a comprehensive overview of the characteristics,limitations,applicability,bone phenotypes,and treatment methods in naturally aging mice and prematurely aging mouse models(including SAMP6,POLG mutant,LMNA,SIRT6,ZMPSTE24,TFAM,ERCC1,WERNER,and KL/KL-deficient mice).We also summarize the molecular mechanisms of these aging mouse models,including cellular DNA damage response,senescence-related secretory phenotype,telomere shortening,oxidative stress,bone marrow mesenchymal stem cell(BMSC)abnormalities,and mitochondrial dysfunction.Overall,this review aims to enhance our understanding of the pathogenesis of aging-related bone diseases.
文摘目的探讨高热量饮食和年龄对载脂蛋白E基因敲除(ApoE^(-/-))小鼠脑功能的影响。方法选取8月龄成年ApoE^(-/-)小鼠和18月龄老年ApoE^(-/-)小鼠共20只,随机分为正常饮食成年组、正常饮食老年组、高热量饮食成年组、高热量饮食老年组,每组5只。正常饮食成年组、正常饮食老年组小鼠喂食实验室标准饲料,高热量饮食成年组、高热量饮食老年组小鼠喂食高脂饲料,干预8周。用体质量监测和葡萄糖耐量实验测试小鼠体质量、血糖变化,核磁共振波谱检测海马和下丘脑N-乙酰天冬氨酸(NAA)、胆碱(Cho)含量,Y迷宫和旷场实验检测认知功能,Western blot检测脑组织突触体相关蛋白25(SNAP-25)、突触素(synaptophysin)、突触后致密蛋白95(PSD-95)、诱导型一氧化氮合酶(iNOS)、白细胞介素1β(IL-1β)表达。结果与正常饮食成年组比较,高热量饮食成年组海马NAA、下丘脑Cho和NAA、自发交替率、SNAP-25、synaptophysin、PSD-95表达降低,差异有统计学意义(P<0.05,P<0.01),iNOS、IL-1β表达升高,差异有统计学意义(P<0.01);与正常饮食成年组比较,正常饮食老年组海马NAA、下丘脑Cho、SNAP-25、synaptophysin、PSD-95表达降低(P<0.05,P<0.01),iNOS、IL-1β表达升高(P<0.01);与正常饮食老年组比较,高热量饮食老年组海马和下丘脑Cho和NAA、中心路程/总路程、SNAP-25、synaptophysin、PSD-95表达降低(P<0.05,P<0.01),iNOS、IL-1β表达升高(P<0.01);与高热量饮食成年组比较,高热量饮食老年组海马NAA、中心路程/总路程、平均速度、synaptophysin表达降低(P<0.05,P<0.01),iNOS、IL-1β表达升高(1.61±0.10 vs 1.35±0.13,2.04±0.08 vs 1.54±0.11,P<0.05,P<0.01)。结论高热量饮食导致ApoE^(-/-)小鼠代谢障碍和神经炎症,抑制突触蛋白表达引起认知功能障碍;长期高热量饮食和年龄增加促进ApoE^(-/-)小鼠脑功能衰退。
基金NationalOutstandingYouthSciencesFoundation (No 3972 5 0 2 6)andPostdoctoralSciencesFoundationofChina (No 2 0 0 0 2 3)
文摘Abstract Objectives To investigate the tissue specificity of reactive oxygen species (ROS) damage to mitochondrial DNA (mtDNA) and to determine whether cochlear mtDNA is a sensitive target for ROS damage. Methods 10 Cu/ZnSOD gene (Cu/Zn superoxide dismutase gene, Sod1) knockout mice and 16 wild-type mice were analyzed by nested polymerase chain reaction (PCR).Results Three deletions were detected in various tissues of Sod1 knockout mice. MtDNA3867bp and mtDNA3726bp deletions were the most visible, and mtDNA4236bp deletion was barely detected in these tissues. There were obvious differences in the ratio of deleted mtDNA/total mtDNA in different tissue. Deleted mtDNA was most abundant in the liver and kidney and less in cochlea, heart and brain. The lowest was in spleen and skin. The ratio in various tissues was 3-20 times in Sod1 knockout mice over wild-type mice. In cochlea, the ratio was about 15. Conclusions Without the protection of Sod1, ROS can lead to mtDNA deletions in various tissues with significant tissue specificity. Cochlear mtDNA is a sensitive target for ROS damage.