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Lactobacillus plantarum AR113 attenuates liver injury in D-galactose-induced aging mice via the inhibition of oxidative stress and endoplasmic reticulum stress
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作者 Yongjun Xia Yujie Gong +8 位作者 Xiangna Lin Yijin Yang Xin Song Guangqiang Wang Zhiqiang Xiong yangyang qian Zhuan Liao Hui Zhang Lianzhong Ai 《Food Science and Human Wellness》 SCIE CSCD 2024年第2期885-897,共13页
Probiotics could effectively eliminate excess reactive oxygen species(ROS)generated during aging or lipid metabolism disorders,but their mechanism is unclear.The major purpose of this study was to investigate the mech... Probiotics could effectively eliminate excess reactive oxygen species(ROS)generated during aging or lipid metabolism disorders,but their mechanism is unclear.The major purpose of this study was to investigate the mechanism of Lactiplantibacillus plantarun AR113 alleviating oxidative stress injury in the D-galactose induced aging mice.The result showed that pretreatment with L.plantarun AR113 significantly relieving H_(2)O_(2)induced cytotoxicity in HepG2 cells by maintain cell membrane integrity and increasing antioxidant enzyme activities.In D-galactose induced aging mice,L.plantarun AR113 could significantly attenuate liver damage and inflammatory infiltration by promoting endogenous glutathione(GSH)synthesis and activating the Nrf2/Keap1 signaling pathway in mice,and increasing the expression of regulated phaseⅡdetoxification enzymes and antioxidant enzymes.Further analysis shown that gavage of L.plantarun AR113 could significantly reduce the expression of G protein-coupled receptor 78(GPR78)and C/EBP homologous protein(CHOP)proteins,and promote the restoration of endoplasmic reticulum(ER)homeostasis,thereby activating cell anti-apoptotic pathways.These results were also confirmed in H_(2)O_(2)-treated HepG2 experiments.It indicated that L.plantarun AR113 could inhibit D-galactose-induced liver injury through dual inhibition of ER stress and oxidative stress.L.plantarun AR113 have good application potential in anti-aging and alleviating metabolic disorders. 展开更多
关键词 Lactiplantibacillus plantarun AR113 HEPG2 D-GALACTOSE Oxidative stress ER stress
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酶响应性线形-树枝状嵌段共聚物的合成、性能及应用
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作者 宝利军 危俊吾 +3 位作者 钱杨杨 王雨佳 宋文杰 毕韵梅 《化学进展》 SCIE CAS CSCD 北大核心 2022年第8期1723-1733,共11页
酶响应性线形-树枝状嵌段共聚物(LDBCs)能对内源性酶产生特异性响应,与只能对外源性刺激信号(如温度、光等)产生响应的聚合物相比,酶响应性LDBCs具有高选择性和更好的生物相容性,作为生物医用材料更适合在人体内使用。通过变换LDBCs的... 酶响应性线形-树枝状嵌段共聚物(LDBCs)能对内源性酶产生特异性响应,与只能对外源性刺激信号(如温度、光等)产生响应的聚合物相比,酶响应性LDBCs具有高选择性和更好的生物相容性,作为生物医用材料更适合在人体内使用。通过变换LDBCs的酶响应基团、线形链和树枝化基元,可调控酶响应性两亲LDBCs的自组装和酶响应性解组装性能。由于其独特的酶响应性能和优良的生物相容性,在药物递送和生物医学影像等方面有广阔的应用前景。本文总结归纳了酶响应性LDBCs的合成方法、LDBCs的结构(如线形链长度和结构、树枝化基元的疏水性)对其自组装性能和酶响应性能的影响以及应用,并对酶响应性LDBCs的发展方向进行了展望. 展开更多
关键词 酶响应 线形-树枝状嵌段共聚物 合成方法 结构与性能 药物载体
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