Songshan Jiang
jiangssh@mail.sysu.edu.cn
Chinese, English
Guangdong
Sun Yat-Sen University
Life Sciences
  • 1992 - Bachelor's Degree: Huazhong University of Science and Technology
  • 2000 - PhD: Shanghai Brain Research Institute, Chinese Academy of Sciences
  • 2000-2002 - Postdoctoral Research: New York University School of Medicine
  • 2002-2006 - Postdoctoral Research: Harvard Medical School, Massachusetts General Hospital and Boston Children's Hospital
  • 2006 - Joined Sun Yat-sen University under the 'Hundred Talents Program'
  • 2000-2002 - New York University School of Medicine - Postdoctoral Researcher
  • 2002-2006 - Harvard Medical School, Massachusetts General Hospital and Boston Children's Hospital - Postdoctoral Researcher
  • 2006-present - Sun Yat-sen University - Associate Professor
Molecular Oncology: Mechanisms of Tumorigenesis
Neurobiology: Cloning and Pathogenic Mechanisms of Genes in Neurological Diseases
  • FTO inhibition enhances the anti-tumor affect of temozolomide by targeting MYC-miR-155/23a cluster-MXI1 feedback circuit in glioma., Xiao, L., Li, X., Mu, M., Zhou, J., Zhou, P., Xie, X. and Jiang, S., 2020
  • Inhibition of RUNX1 Promotes Cisplatin-induced Apoptosis in Ovarian Cancer Cells., Xiao, L., Peng, Z., Zhu, A., Xue, R., Lu, R., Mi, J., Xi, S., Chen, W. and Jiang, S., 2020
  • microRNA-137 downregulates MCL1 in ovarian cancer cells and mediates cisplatin-induced apoptosis., Chen, W., Du, J., Li, X., Zhi, Z. and Jiang, S., 2020
  • NF1 regulates apoptosis in ovarian cancer cells by targeting MCL1 via miR-142-5p., Su, J., Ruan, S., Dai, S., Mi, J., Chen, W. and Jiang, S., 2019
  • miR-142-5p enhances cisplatin-induced apoptosis in ovarian cancer cells by targeting multiple anti-apoptotic genes., Li, X., Chen, W., Jin, Y., Xue, R., Su, J., Mu, Z., Li, J. and Jiang, S., 2019
  • A TBX5 3'UTR variant increases the risk of congenital heart disease in the Han Chinese population., Wang, F., Liu, D., Zhang, R.R., Yu, L.W., Zhao, J.Y., Yang, X.Y., Jiang, S.S., Ma, D., Qiao, B., Zhang, F. et al., 2017
  • MicroRNA-146a-5p enhances cisplatininduced apoptosis in ovarian cancer cells by targeting multiple antiapoptotic genes., Li, X., Jin, Y., Mu, Z., Chen, W. and Jiang, S., 2017
  • microRNA-137 promotes apoptosis in ovarian cancer cells via the regulation of XIAP., Li, X., Chen, W., Zeng, W., Wan, C., Duan, S. and Jiang, S., 2017
  • miR-509-3p promotes cisplatin-induced apoptosis in ovarian cancer cells through the regulation of anti-apoptotic genes., Chen, W., Du, J., Li, X., Su, J., Huang, Y., Ding, N., Zhang, M. and Jiang, S., 2017
  • Rapamycin-Resistant mTOR Activity Is Required for Sensory Axon Regeneration Induced by a Conditioning Lesion., Chen, W., Lu, N., Ding, Y., Wang, Y., Chan, L.T., Wang, X., Gao, X., Jiang, S. and Liu, K., 2017
  • Promoting axon regeneration in the adult CNS by modulation of the melanopsin/GPCR signaling., Li, S., Yang, C., Zhang, L., Gao, X., Wang, X., Liu, W., Wang, Y., Jiang, S., Wong YH, Zhang Y, Liu K., 2016
  • MicroRNA-509-3p increases the sensitivity of epithelial ovarian cancer cells to cisplatin-induced apoptosis., Chen, W., Zeng, W., Li, X., Xiong, W., Zhang, M., Huang, Y., Zhou, L. and Jiang, S., 2016
  • MicroRNA-155 promotes apoptosis in SKOV3, A2780, and primary cultured ovarian cancer cells., Chen, W., Huang, L., Hao, C., Zeng, W., Luo, X., Li, X., Zhou, L., Jiang, S., Chen, Z., and He, Y., 2016
  • MDM4 regulation by the let-7 miRNA family in the DNA damage response of glioma cells., Xie, C., Chen, W., Zhang, M., Cai, Q., Xu, W., Li, X. and Jiang, S., 2015
  • Hsa-miR-27a is involved in the regulation of CYP3A4 expression in human livers from Chinese Han population., Shi, Y., Liu, Y., Wei, Z., Zhang, Y., Zhang, L., Jiang, S., Xiong, Y., Shen, L., He, L., Xing, Q. and Qin S., 2015
  • Mir-23a induces telomere dysfunction and cellular senescence by inhibiting TRF2 expression., Luo, Z., Feng, X., Wang, H., Xu, W., Zhao, Y., Ma, W., Jiang, S., Liu, D., Huang, J. and Songyang, Z., 2015
  • MicroRNA-509-3p increases the sensitivity of epithelial ovarian cancer cells to cisplatin-induced apoptosis., Chen, W., Zeng, W., Li, X., Xiong, W., Zhang, M., Huang, Y., Zhou, L. and Jiang, S., 2015
  • Genetic variants reducing MTR gene expression increase the risk of congenital heart disease in Han Chinese populations., Zhao, J.Y., Qiao, B., Duan, W.Y., Gong, X.H., Peng, Q.Q., Jiang, S.S., Lu, C.Q., Chen, Y.J., Shen, H.B., Huang, G.Y., Jin L. and Wang H.Y., 2014
  • The effect of microRNAs in the regulation of human CYP3A4: a systematic study using a mathematical model., Wei, Z., Jiang, S., Zhang, Y., Wang, X., Peng, X., Meng, C., Liu, Y., Wang, H., Guo, L., Qin, S., Zhang J., He L., Zhang L. and Xing Q., 2014
  • Large-scale screens of miRNA-mRNA interactions unveiled that the 3'UTR of a gene is targeted by multiple miRNAs., Zhou, P., Xu, W., Peng, X., Luo, Z., Xing, Q., Chen, X., Hou, C., Liang, W., Zhou, J., Wu, X., Songyang Z. and Jiang, S., 2013
  • MicroRNA-155 promotes glioma cell proliferation via the regulation of MXI1., Zhou, J., Wang, W., Gao, Z., Peng, X., Chen, X., Chen, W., Xu, W., Xu, H., Lin, M.C. and Jiang, S., 2013
  • miR-24-3p and miR-27a-3p promote cell proliferation in glioma cells via cooperative regulation of MXI1., Xu, W., Liu, M., Peng, X., Zhou, P., Zhou, J., Xu, K., Xu, H. and Jiang, S., 2013
  • MicroRNA-128 promotes cell-cell adhesion in U87 glioma cells via regulation of EphB2., Lin, L., Chen, X., Peng, X., Zhou, J., Kung, H.F., Lin, M.C. and Jiang, S., 2013
  • c-MYC-regulated miR-23a/24-2/27a cluster promotes mammary carcinoma cell invasion and hepatic metastasis by targeting Sprouty2., Li, X., Liu, X., Xu, W., Zhou, P., Gao, P., Jiang, S., Lobie, P.E. and Zhu, T., 2013
  • Loss of brain-enriched miR-124 microRNA enhances stem-like traits and invasiveness of glioma cells., Xia, H., Cheung, W.K., Ng, S.S., Jiang, X., Jiang, S., Sze, J., Leung, G.K., Lu, G., Chan, D.T., Bian, X.W. Kung H.F., Poon W.S. and Lin M.C., 2012
  • Identification of a novel marine fish virus, Singapore grouper iridovirus-encoded microRNAs expressed in grouper cells by Solexa sequencing., Yan, Y., Cui, H., Jiang, S., Huang, Y., Huang, X., Wei, S., Xu, W. and Qin, Q., 2011
  • Solubilization of pristine fullerene by the unfolding mechanism of bovine serum albumin for cytotoxic application., Wu, H., Lin, L., Wang, P., Jiang, S., Dai, Z. and Zou, X., 2011
  • Heparin impairs angiogenesis through inhibition of microRNA-10b., Shen, X., Fang, J., Lv, X., Pei, Z., Wang, Y., Jiang, S., and Ding, K., 2011
  • miR-200a-mediated downregulation of ZEB2 and CTNNB1 differentially inhibits nasopharyngeal carcinoma cell growth, migration and invasion., Xia, H., Ng, S.S., Jiang, S., Cheung, W.K., Sze, J., Bian, X.W., Kung, H.F. and Lin, M.C., 2010
  • miR-200a regulates epithelial-mesenchymal to stem-like transition via ZEB2 and beta-catenin signaling., Xia, H., Cheung, W.K., Sze, J., Lu, G., Jiang, S., Yao, H., Bian, X.W., Poon, W.S., Kung, H.F. and Lin, M.C., 2010
Tumorigenesis Molecular Oncology Cancer Genetics Biochemistry Neurobiology Gene Cloning Pathogenic Mechanisms Neurological Diseases Research

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