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2篇 您的检索式:作者名="Xuerui Yi"
    题名 作者 年代 出处 被引量
1Genetic mutations and molecular mechanisms of Fuchs endothelial corneal dystrophy显示文摘Background:Fuchs endothelial corneal dystrophy is a hereditary disease and the most frequent cause of corneal transplantation in the worldwide.Its main clinical signs are an accelerated decrease in the number of endothelial cells,thickening of Descemet’s membrane and formation of guttae in the extracellular matrix.The cornea’s ability to maintain stromal dehydration is impaired,causing painful epithelial bullae and loss of vision at the point when the amount of corneal endothelial cells cannot be compensated.At present,apart from corneal transplantation,there is no other effective treatment that prevents blindness.Main text:In this review,we first summarized the mutations of COL8A2,TCF4,TCF8,SLC4A11 and AGBL1 genes in Fuchs endothelial corneal dystrophy.The molecular mechanisms associated with Fuchs endothelial corneal dystrophy,such as endoplasmic reticulum stress and unfolded protein response pathway,oxidative stress,mitochondrial dysregulation pathway,apoptosis pathway,mitophagy,epithelial-mesenchymal transition pathway,RNA toxicity and repeat-associated non-ATG translation,and other pathogenesis,were then explored.Finally,we discussed several potential treatments related to the pathogenesis of Fuchs endothelial corneal dystrophy,which may be the focus of future research.Conclusions:The pathogenesis of Fuchs endothelial corneal dystrophy is very complicated.Currently,corneal transplantation is an important method in the treatment of Fuchs endothelial corneal dystrophy.It is necessary to continuously explore the pathogenesis of Fuchs endothelial corneal dystrophy and establish the scientific foundations for the development of next-generation corneal therapeutics.Xuerui Liu Tao Zheng Chuchu Zhao Yi Zhang Hanruo Liu Liyuan Wang Ping Liu 2021Eye and Vision2021,8,1:2
2Duality of Li_(2)CO_(3) in Solid-State Batteries显示文摘Solid-state batteries(SSBs)have been considered the most promising technology because of their superior energy density and safety.Among all the solid-state electrolytes(SEs),Li_(7) La_(3) Zr_(2) O_(12)(LLZO)with high ionic conductivity(3×10^(−4) S/cm)has been widely investigated.However,its large-scale production in ambient air faces a challenge.After air exposure,the generated Li_(2)CO_(3) layer deteriorates the ionic conductivity and interfacial wettability,thus greatly compromising the electrochemical performance of SSBs.Many works aim to eliminate this layer to recover the pristine LLZO surface.Unfor-tunately,few articles have emphasized the merits of Li_(2)CO_(3).In this review,we focus on the two-sidedness of Li_(2)CO_(3).We discuss the various characteristics of Li_(2)CO_(3) that can be used and recapitulate the strategies that utilize Li_(2)CO_(3).Insulating Li_(2)CO_(3) is no longer an obstacle but an opportunity for realizing intimate interfacial contact,high air stability,and outstand-ing electrochemical performance.This review aims to off er insightful guidelines for treating air-induced Li_(2)CO_(3) and lead to developing the enhanced air stability and electrochemical performance of LLZO.Xuerui Yi Yong Guo Siyuan Pan Yiqiao Wang Sijia Chi Shichao Wu Quan-Hong Yang 2023Transactions of Tianjin University2023,29,1:0
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