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Therapeutic Potential of FGF21 in Alzheimer’s Disease
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作者 Anbang Sun Benke Xu +4 位作者 Xianwang Wang Lian Liu Yun He Zongwen Wang yuncai chen 《Yangtze Medicine》 2018年第1期1-17,共17页
Alzheimer’s disease (AD) is the most common form of dementia which mostly affects persons younger than 65 years old. Mounting findings showed that amyloid-&beta;(A&beta;) peptides, oxidative stress, neuroinfl... Alzheimer’s disease (AD) is the most common form of dementia which mostly affects persons younger than 65 years old. Mounting findings showed that amyloid-&beta;(A&beta;) peptides, oxidative stress, neuroinflammation and insulin resistance may play central role in the pathogenesis of AD. There are very many methods to slow it through affecting these aforementioned factors. However, more efficient prevention of the progression of AD is still ambiguous. Fibroblast growth factor 21 (FGF21) is an endocrine hormone that is expressed by several organs. It increases insulin sensitivity and regulates lipid metabolism and energy homeostasis. Emerging evidence demonstrates that FGF21 has potential effects in the brain involving metabolic regulation, neuroprotection and cognition. Hence, we hypothesize that FGF21 may be a protective factor in AD by attenuating Aβ generation, inflammation, oxidative stress, and insulin resistance. Our hypothesis will shed new light on the understanding of pathogenesis of AD and help to find a new way to prevent the genesis and progress of AD. 展开更多
关键词 FGF21 Alzheimer’ Disease Amyloid-β (Aβ) OXIDATIVE Stress Inflamma-tion INSULIN Resistance
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Alkali and alkaline ions co-substitution of P2 sodium layered oxides for sodium ion batteries
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作者 yuncai chen Maolin Yang +8 位作者 Liangtao Yang Ziwei chen Huiyun Li Haw Jiunn Woo Shang-Sen Chi Yinguo Xiao Jun Wang Chaoyang Wang Yonghong Deng 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2023年第5期13-21,共9页
Alkali and alkaline ion substitutions enhance the electrochemical properties of P2 sodium layered oxide,while the effect on electrochemical property enhancement of alkali and alkaline ions co-substitution is still unc... Alkali and alkaline ion substitutions enhance the electrochemical properties of P2 sodium layered oxide,while the effect on electrochemical property enhancement of alkali and alkaline ions co-substitution is still unclear.In this work,the structural and electrochemical properties of the Li alkali and Mg alkaline ions co-substituted P2 layered oxide Na_(0.67)(Li_(0.5)Mg_(0.5))_(0.1)(Ni_(0.33)Mn_(0.67))_(0.9)O_(2)are investigated in detail.Compared to the pristine and single-ion substituted materials,the co-substituted material shows an enhanced cycling performance with a reversible ca-pacity of 127 mAh/g and a capacity retention of 75%over 100 cycles at 0.5C.Galvanostatic intermittent titration technique(GITT)and cyclic voltammetry(CV)results show that the Li and Mg synergistically improve the ion diffusion.Moreover,the structure stability is also improved by the Li and Mg co-substitution that is clarified by operando X-ray diffraction(XRD)measurements.These results explain the origin of the enhanced electrochemical properties of the Li/Mg co-substituted P2 layered oxides for sodium ion batteries. 展开更多
关键词 Sodium ions batteries Sodium layered oxides Alkali and alkaline elements co-substitution Neutron diffraction Structural evolution
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