3 Works
Inonotus obliquus polysaccharide ameliorates dextran sulphate sodium induced colitis involving modulation of Th1/Th2 and Th17/Treg balance
Yi-Fang Chen, Jin-Juan Zheng, Chao Qu, Yao Xiao, Fang-Fang Li, Quan-Xin Jin, Hong-Hua Li, Fan-Ping Meng, Gui-Hua Jin & Dan Jin
Inflammatory bowel disease (IBD) is an intestinal chronic inflammatory disease, and is related to imbalance of CD4+T subsets. However, the current treatments of chronic colitis are not ideal and have potential side effects. Therefore, more effective and safer biologically active substances which are extracted from natural plants have been widely concerned. In this study, it was found that Inonotus obliquus polysaccharides (IOP), the main bioactive constituent of Inonotus obliquus, can alleviate dextran sodium sulfate-induced chronic...
Myotubularin related protein 7 is essential for the spermatogonial stem cell homeostasis via PI3K/AKT signaling
Dan Zhao, Cong Shen, Tingting Gao, Hong Li, Yueshuai Guo, Feng Li, Chenchen Liu, Yuanyuan Liu, Xia Chen, Xi Zhang, Yangyang Wu, Yi Yu, Meng Lin, Yan Yuan, Xiaofang Chen, Xiaoyan Huang, Shenmin Yang, Jun Yu, Jun Zhang & Bo Zheng
Myotubularin related protein 7 (MTMR7), a key member of the MTMR family, depicts phosphatase activity and is involved in myogenesis and tumor growth. We have previously identified MTMR7 in the proteomic profile of mouse spermatogonial stem cell (SSC) maturation and differentiation, implying that MTMR7 is associated with neonatal testicular development. In this study, to further explore the distribution and function of MTMR7 in mouse testis, we studied the effect of Mtmr7 knockdown on neonatal testicular...
Myotubularin related protein 7 is essential for the spermatogonial stem cell homeostasis via PI3K/AKT signaling
Dan Zhao, Cong Shen, Tingting Gao, Hong Li, Yueshuai Guo, Feng Li, Chenchen Liu, Yuanyuan Liu, Xia Chen, Xi Zhang, Yangyang Wu, Yi Yu, Meng Lin, Yan Yuan, Xiaofang Chen, Xiaoyan Huang, Shenmin Yang, Jun Yu, Jun Zhang & Bo Zheng
Myotubularin related protein 7 (MTMR7), a key member of the MTMR family, depicts phosphatase activity and is involved in myogenesis and tumor growth. We have previously identified MTMR7 in the proteomic profile of mouse spermatogonial stem cell (SSC) maturation and differentiation, implying that MTMR7 is associated with neonatal testicular development. In this study, to further explore the distribution and function of MTMR7 in mouse testis, we studied the effect of Mtmr7 knockdown on neonatal testicular...