RENEWAL

作品数:248被引量:279H指数:9
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相关作者:贾积身乔保民张元林张楠李勇更多>>
相关机构:清华大学东南大学西安外国语大学昆明理工大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划北京市自然科学基金国家高技术研究发展计划更多>>
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Cell proliferation during hair cell regeneration induced by Math1 in vestibular epithelia in vitro
《Neural Regeneration Research》2018年第3期497-501,共5页Yi-bo Huang Rui Ma Juan-mei Yang Zhao Han Ning Cong Zhen Gao Dongdong Ren Jing Wang Fang-lu Chi 
supported by the National Natural Science Foundation of China(NSFC);grant No.81420108010,81271084 to FLC,81370022,81570920,81000413 to DR,81200740 to JMY,81200738 to NC,81371093 to ZH,81400460 to ZG,81200739 to JW;973 Program,grant No.2011CB504500 and 2011CB504506;The Innovation Project of Shanghai Municipal Science and Technology Commission,grant No.11411952300 to FLC;the Training Program of the Excellent Young Talents of the Shanghai Municipal Health System,grant No.XYQ2013084 to DR
Hair cell regeneration is the fundamental method of correcting hearing loss and balance disorders caused by hair cell damage or loss. How to promote hair cell regeneration is a hot focus in current research. In mammal...
关键词:erve regeneration cell proliferation cell division MATH1 hair cells hair cell renewal supporting cell differentiation vestibular cells neural regeneration 
Somatostatin receptor type 2 contributes to the self-renewal of murine embryonic stem cells被引量:1
《Acta Pharmacologica Sinica》2014年第8期1023-1030,共8页Xin-xiu XU Li-hong ZHANG Xin XIE 
This project was supported by grants from the Chinese Acad- emy of Sciences (XDA01040301), the National Natural Science Foundation of China (No 31371511), Ministry of Science and Technology of China (No 2013ZX09507001, 2012ZX09301001- 005), and Shanghai Commission of Science and Technology (No 12XD1402100).
Aim: The roles of G-protein coupled receptors (GPCRs) in stem cell biology remain unclear. In this study, we aimed to identify GPCRs that might contribute to the self-renewal of mouse embryonic stem cells (mESCs)...
关键词:stem cell mouse embryonic stem cell GPCR somatostatin receptor type 2 SELF-RENEWAL STAT3 leukemia inhibitory factor OCTREOTIDE seglitide 
Water renewal time of the Yellow River mainstream based on reservoir action
《Journal of Geographical Sciences》2013年第1期113-122,共10页JIANG Xiaohui LIU Changming 
National Key Basic Research Development of China (973 Program), No.2011CB40330305
This note analyzes the change in water renewal time characteristics based on res- ervoir action and then establishes calculation models for the water renewal time in the Yellow River mainstream. The results indicate t...
关键词:water renewal time reservoir action Yellow River 
Fine-tune of intrinsic ERK activity by extrinsic BMP signaling in mouse embryonic stem cells被引量:2
《Protein & Cell》2012年第6期401-404,共4页Zhongwei Li Ye-Guang Chen 
supported by grants from the State Key Development Program for Basic Research of China(973 Program)(Grant Nos.2010CB833706 and 2011CB943803);the National Natural Science Foundation of China(Grant Nos.30930050 and 30921004).
Embryonic stem(ES)cells hold great promise in regen-erative medicine and it is an urgent task to understand the underlying molecular mechanisms that control ES cell fate choice between self-renewal and differentiation...
关键词:BMP RENEWAL INTRINSIC 
Renewal and preliminary study of expressed sequence tags database on human fetal liver aged 22 wk of gestation
《Chinese Science Bulletin》2008年第20期3204-3210,共7页CHEN TingGui WU SongFeng ZHOU GangQiao ZHU YunPing HE FuChu 
the National High Technology Research and Development Program of China (Grant Nos. 2006AA02A312, 2006AA02Z334);National Basic Research Program of China (Grant No. 2006CB910803, 2006CB910706);National Natural Science Foundation of China (Grant No. 30621063);Beijing Municipal Key Project (Grant No. H030330280590)
With the developments of international human transcriptome data and our ESTs of human fetal liver aged 22 weeks (wk) of gestation (HFL22w), the former research must be renewed. In this work, the EST data were firstly ...
关键词:怀孕期 胎儿 肝脏 表达序列 基因存在论 分级聚类 
Identification of two distinct transactivation domains in the pluripotency sustaining factor nanog被引量:23
《Cell Research》2003年第6期499-502,共4页GUANGJinPAN DUANQINGPEI 
supported in part by the Tsinghua University BaiRen Scholar Program,NSFC 30270287;the 973 Project--2001CB5101 from The Ministry of Science and Technology of China.
Nanog is a newly identified homeodomain gene that functions to sustain the pluripotency of embryonic stem cells.However,the molecular mechanism through which nanog regulates stem cell pluripotency remains unknown.Mous...
关键词:NANOG PLURIPOTENCY stem cells self renewal transactivation domain HOMEOPROTEIN HOMEODOMAIN 
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