Suchergebnisse - Xie, Zhongyu
- Treffer 1 - 20 von 45
- Zur nächsten Seite
-
1
A Novel Complex Networks Clustering Algorithm Based on the Core Influence of Nodes von Tong, Chao, Niu, Jianwei, Dai, Bin, Xie, Zhongyu
Veröffentlicht 2014Text -
2
Treatment of reactive arthritis with biological agents: a review von Zeng, Huiqiong, Luo, Baiwei, Zhang, Yue, Xie, Zhongyu, Ye, Zhizhong
Veröffentlicht 2020Text -
3
-
4
LncRNA and mRNA Expression Profiles in Methylprednisolone Stimulated Neural Stem Cells von Tang, Yong, Xie, Zhongyu, Ma, Mengjun, Duan, Kaidi, Li, Yuxi, Ye, Jichao
Veröffentlicht 2021Text -
5
-
6
-
7
Association between growth differentiation factor 5 rs143383 genetic polymorphism and the risk of knee osteoarthritis among Caucasian but not Asian: a meta-analysis von Peng, Lei, Jin, Song, Lu, Jiping, Ouyang, Chao, Guo, Jiang, Xie, Zhongyu, Shen, Huiyong, Wang, Peng
Veröffentlicht 2020Text -
8
Lysine Succinylation and Lysine Malonylation in Histones von Xie, Zhongyu, Dai, Junbiao, Dai, Lunzhi, Tan, Minjia, Cheng, Zhongyi, Wu, Yeming, Boeke, Jef D., Zhao, Yingming
Veröffentlicht 2012Text -
9
All-Trans Retinoic Acid Improves the Effects of Bone Marrow-Derived Mesenchymal Stem Cells on the Treatment of Ankylosing Spondylitis: An In Vitro Study von Li, Deng, Wang, Peng, Li, Yuxi, Xie, Zhongyu, Wang, Le, Su, Hongjun, Deng, Wen, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2015Text -
10
Increased BMPR1A Expression Enhances the Adipogenic Differentiation of Mesenchymal Stem Cells in Patients with Ankylosing Spondylitis von Liu, Zhenhua, Wang, Peng, Cen, Shuizhong, Gao, Liangbin, Xie, Zhongyu, Wu, Xiaohua, Su, Hongjun, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2019Text -
11
Whole-Genome Expression Analysis and Signal Pathway Screening of Synovium-Derived Mesenchymal Stromal Cells in Rheumatoid Arthritis von Hou, Jingyi, Ouyang, Yi, Deng, Haiquan, Chen, Zhong, Song, Bin, Xie, Zhongyu, Wang, Peng, Li, Jinteng, Li, Weiping, Yang, Rui
Veröffentlicht 2016Text -
12
The long noncoding RNA GAS5 negatively regulates the adipogenic differentiation of MSCs by modulating the miR-18a/CTGF axis as a ceRNA von Li, Ming, Xie, Zhongyu, Wang, Peng, Li, Jinteng, Liu, Wenjie, Tang, Su’an, Liu, Zhenhua, Wu, Xiaohua, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2018Text -
13
CCR9 initiates epithelial–mesenchymal transition by activating Wnt/β-catenin pathways to promote osteosarcoma metastasis von Kong, Haoran, Yu, Wenhui, Chen, Zhuning, Li, Haonan, Ye, Guiwen, Hong, Jiacong, Xie, Zhongyu, Chen, Keng, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2021Text -
14
Correction to: CCR9 initiates epithelial–mesenchymal transition by activating Wnt/β-catenin pathways to promote osteosarcoma metastasis von Kong, Haoran, Yu, Wenhui, Chen, Zhuning, Li, Haonan, Ye, Guiwen, Hong, Jiacong, Xie, Zhongyu, Chen, Keng, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2022Text -
15
Evaluation of the neural function of nonhuman primates with spinal cord injury using an evoked potential-based scoring system von Ye, Jichao, Ma, Mengjun, Xie, Zhongyu, Wang, Peng, Tang, Yong, Huang, Lin, Chen, Keng, Gao, Liangbin, Wu, Yanfeng, Shen, Huiyong, Zeng, Yuanshan
Veröffentlicht 2016Text -
16
SMAD‐specific E3 ubiquitin ligase 2 promotes angiogenesis by facilitating PTX3 degradation in MSCs from patients with ankylosing spondylitis von Ma, Mengjun, Yang, Wen, Cai, Zhaopeng, Wang, Peng, Li, Hongyu, Mi, Rujia, Jiang, Yuhang, Xie, Zhongyu, Sui, Pengfei, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2021Text -
17
Identification of Lysine Succinylation Substrates and the Succinylation Regulatory Enzyme CobB in Escherichia coli von Colak, Gozde, Xie, Zhongyu, Zhu, Anita Y., Dai, Lunzhi, Lu, Zhike, Zhang, Yi, Wan, Xuelian, Chen, Yue, Cha, Yoon H., Lin, Hening, Zhao, Yingming, Tan, Minjia
Veröffentlicht 2013Text -
18
Whole Genome Expression Profiling and Signal Pathway Screening of MSCs in Ankylosing Spondylitis von Li, Yuxi, Wang, Peng, Xie, Zhongyu, Huang, Lin, Yang, Rui, Gao, Liangbin, Tang, Yong, Zhang, Xin, Ye, Jichao, Chen, Keng, Cai, Zhaopeng, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2014Text -
19
Autophagy Improves the Immunosuppression of CD4(+) T Cells by Mesenchymal Stem Cells Through Transforming Growth Factor-β1 von Gao, Liangbin, Cen, Shuizhong, Wang, Peng, Xie, Zhongyu, Liu, Zhenhua, Deng, Wen, Su, Hongjun, Wu, Xiaohua, Wang, Shan, Li, Jinteng, Ouyang, Yi, Wu, Yanfeng, Shen, Huiyong
Veröffentlicht 2016Text -
20
Autophagy enhances mesenchymal stem cell-mediated CD4(+) T cell migration and differentiation through CXCL8 and TGF-β1 von Cen, Shuizhong, Wang, Peng, Xie, Zhongyu, Yang, Rui, Li, Jinteng, Liu, Zhenhua, Wang, Shan, Wu, Xiaohua, Liu, Wenjie, Li, Ming, Tang, Su’an, Shen, Huiyong, Wu, Yanfeng
Veröffentlicht 2019Text