BACKGROUND Diabetic intracerebral hemorrhage(ICH)is a serious complication of diabetes.The role and mechanism of bone marrow mesenchymal stem cell(BMSC)-derived exosomes(BMSC-exo)in neuroinflammation post-ICH in patie...BACKGROUND Diabetic intracerebral hemorrhage(ICH)is a serious complication of diabetes.The role and mechanism of bone marrow mesenchymal stem cell(BMSC)-derived exosomes(BMSC-exo)in neuroinflammation post-ICH in patients with diabetes are unknown.In this study,we investigated the regulation of BMSC-exo on hyperglycemia-induced neuroinflammation.AIM To study the mechanism of BMSC-exo on nerve function damage after diabetes complicated with cerebral hemorrhage.METHODS BMSC-exo were isolated from mouse BMSC media.This was followed by transfection with microRNA-129-5p(miR-129-5p).BMSC-exo or miR-129-5poverexpressing BMSC-exo were intravitreally injected into a diabetes mouse model with ICH for in vivo analyses and were cocultured with high glucoseaffected BV2 cells for in vitro analyses.The dual luciferase test and RNA immunoprecipitation test verified the targeted binding relationship between miR-129-5p and high-mobility group box 1(HMGB1).Quantitative polymerase chain reaction,western blotting,and enzyme-linked immunosorbent assay were conducted to assess the levels of some inflammation factors,such as HMGB1,interleukin 6,interleukin 1β,toll-like receptor 4,and tumor necrosis factorα.Brain water content,neural function deficit score,and Evans blue were used to measure the neural function of mice.RESULTS Our findings indicated that BMSC-exo can promote neuroinflammation and functional recovery.MicroRNA chip analysis of BMSC-exo identified miR-129-5p as the specific microRNA with a protective role in neuroinflammation.Overexpression of miR-129-5p in BMSC-exo reduced the inflammatory response and neurological impairment in comorbid diabetes and ICH cases.Furthermore,we found that miR-129-5p had a targeted binding relationship with HMGB1 mRNA.CONCLUSION We demonstrated that BMSC-exo can reduce the inflammatory response after ICH with diabetes,thereby improving the neurological function of the brain.展开更多
MADS-box转录因子广泛存在于植物中,在生长发育和次生代谢过程中发挥重要作用。为探究MADS-box转录因子家族在辣椒素不同积累时期的表达情况。利用辣椒素不同积累时期转录组数据,鉴定辣椒MADS-box转录因子家族成员,并进行亚细胞定位、...MADS-box转录因子广泛存在于植物中,在生长发育和次生代谢过程中发挥重要作用。为探究MADS-box转录因子家族在辣椒素不同积累时期的表达情况。利用辣椒素不同积累时期转录组数据,鉴定辣椒MADS-box转录因子家族成员,并进行亚细胞定位、保守基序、系统进化树和染色体定位分析,对其功能进行初步分析。结果表明,在辣椒转录组数据中共鉴定出95个MADS-box转录因子;含有105~395个氨基酸;分子质量为11.55~44.46 ku;理论等电点为5.16~10.01;主要在细胞核表达,均含有MADS保守结构域,系统发育分析表明,MADS蛋白可分为8个亚家族。有73条CaMADS家族成员定位到12条染色体上。差异表达的MADS-box基因有26个,其中6个基因在C1 vs C2时期上调,在C2 vs C3时期下调。基于KEGG富集和蛋白互作预测到CaMADS13可能参与辣椒中木质素的合成。CaMADS24可能参与辣椒素和木质素合成前体香豆酰辅酶A的合成。利用生物信息学分析,鉴定了辣椒MADS-box家族转录因子,为深入研究辣椒素次生代谢中的分子调控机制提供理论基础。展开更多
基金Supported by the National Natural Science Foundation of China,No.81900743Heilongjiang Province Outstanding Young Medical Talents Training Grant Project,China,No.HYD2020YQ0007.
文摘BACKGROUND Diabetic intracerebral hemorrhage(ICH)is a serious complication of diabetes.The role and mechanism of bone marrow mesenchymal stem cell(BMSC)-derived exosomes(BMSC-exo)in neuroinflammation post-ICH in patients with diabetes are unknown.In this study,we investigated the regulation of BMSC-exo on hyperglycemia-induced neuroinflammation.AIM To study the mechanism of BMSC-exo on nerve function damage after diabetes complicated with cerebral hemorrhage.METHODS BMSC-exo were isolated from mouse BMSC media.This was followed by transfection with microRNA-129-5p(miR-129-5p).BMSC-exo or miR-129-5poverexpressing BMSC-exo were intravitreally injected into a diabetes mouse model with ICH for in vivo analyses and were cocultured with high glucoseaffected BV2 cells for in vitro analyses.The dual luciferase test and RNA immunoprecipitation test verified the targeted binding relationship between miR-129-5p and high-mobility group box 1(HMGB1).Quantitative polymerase chain reaction,western blotting,and enzyme-linked immunosorbent assay were conducted to assess the levels of some inflammation factors,such as HMGB1,interleukin 6,interleukin 1β,toll-like receptor 4,and tumor necrosis factorα.Brain water content,neural function deficit score,and Evans blue were used to measure the neural function of mice.RESULTS Our findings indicated that BMSC-exo can promote neuroinflammation and functional recovery.MicroRNA chip analysis of BMSC-exo identified miR-129-5p as the specific microRNA with a protective role in neuroinflammation.Overexpression of miR-129-5p in BMSC-exo reduced the inflammatory response and neurological impairment in comorbid diabetes and ICH cases.Furthermore,we found that miR-129-5p had a targeted binding relationship with HMGB1 mRNA.CONCLUSION We demonstrated that BMSC-exo can reduce the inflammatory response after ICH with diabetes,thereby improving the neurological function of the brain.
文摘MADS-box转录因子广泛存在于植物中,在生长发育和次生代谢过程中发挥重要作用。为探究MADS-box转录因子家族在辣椒素不同积累时期的表达情况。利用辣椒素不同积累时期转录组数据,鉴定辣椒MADS-box转录因子家族成员,并进行亚细胞定位、保守基序、系统进化树和染色体定位分析,对其功能进行初步分析。结果表明,在辣椒转录组数据中共鉴定出95个MADS-box转录因子;含有105~395个氨基酸;分子质量为11.55~44.46 ku;理论等电点为5.16~10.01;主要在细胞核表达,均含有MADS保守结构域,系统发育分析表明,MADS蛋白可分为8个亚家族。有73条CaMADS家族成员定位到12条染色体上。差异表达的MADS-box基因有26个,其中6个基因在C1 vs C2时期上调,在C2 vs C3时期下调。基于KEGG富集和蛋白互作预测到CaMADS13可能参与辣椒中木质素的合成。CaMADS24可能参与辣椒素和木质素合成前体香豆酰辅酶A的合成。利用生物信息学分析,鉴定了辣椒MADS-box家族转录因子,为深入研究辣椒素次生代谢中的分子调控机制提供理论基础。