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个人简介
My laboratory focuses on the molecular processes underlying excitation-contraction coupling, integration /modulation of Ca2+ signaling in vivo, as well as the roles and mechanisms of Ca2+ homeostasis disturbance-caused diseases. Current studies seek to understand the role of the specific sarcoplasmic/endoplasmic reticular calcium release channels, the sarcolemmal ion channels and their regulatory proteins in cellular excitation-contraction coupling. A major goal of the laboratory is to understand the processes of intercellular communication and the generation of spontaneous Ca2+ signal activity and the mechanisms of Ca2+ signaling disturbance causing diseases related.
Projects in the laboratory include the study of the molecular mechanism of the Ca2+ signaling disturbance, the development and progress of related diseases induced by intracellular Ca2+ homeostasis disturbance, identification of genes encoding channel regulatory proteins and relating signaling molecules involved in muscle biology and determination of the extent to which these genes are altered in specific disease processes, and the development of genetically encoded sensors of cell signaling.
An additional effort in the laboratory is to combine molecular design, electrophysiology and advanced optical imaging technologies to advance the understanding of path- physiological processes, destination, functions, integration with host tissues /organs of implanted ESC derived cells for treatment of injured organ function.
Projects in the laboratory include the study of the molecular mechanism of the Ca2+ signaling disturbance, the development and progress of related diseases induced by intracellular Ca2+ homeostasis disturbance, identification of genes encoding channel regulatory proteins and relating signaling molecules involved in muscle biology and determination of the extent to which these genes are altered in specific disease processes, and the development of genetically encoded sensors of cell signaling.
An additional effort in the laboratory is to combine molecular design, electrophysiology and advanced optical imaging technologies to advance the understanding of path- physiological processes, destination, functions, integration with host tissues /organs of implanted ESC derived cells for treatment of injured organ function.
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Qun Liu,Shaole Song, Lei Song,Youkun Bi,Keqi Zhu,Xinlong Qiao,Huiwen Wang, Chao Gao,Hong Cai,Guangju Ji
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