4.3 Article

Effects of STAT3 Inhibitor BP-1-102 on The Proliferation, Invasiveness, Apoptosis and Neurosphere Formation of Glioma Cells in Vitro

期刊

CELL BIOCHEMISTRY AND BIOPHYSICS
卷 80, 期 4, 页码 723-735

出版社

HUMANA PRESS INC
DOI: 10.1007/s12013-022-01088-y

关键词

Glioma; STAT3; BP-1-102; Invasion; Apoptosis; Proliferation

资金

  1. National Natural Science Foundation of China [81402073]
  2. Jiangsu Province Universities [17KJB310016]
  3. Natural Science Foundation of Jiangsu Province [BK20130218]
  4. China Postdoctoral Science Foundation [2014M551663]
  5. Xuzhou key research and development project [KC21201]
  6. Foundation of Jiangsu Province Six Talents Peak [JY-061]

向作者/读者索取更多资源

This study demonstrates that BP-1-102 can inhibit the proliferation, invasion, and migration abilities of glioma cells, induce cell apoptosis, and reduce neurosphere formation. These effects are achieved through the reduction of STAT3 phosphorylation and its nuclear translocation by BP-1-102.
Malignant glioma, especially glioblastoma (GBM), has historically been associated with a low survival rate. The hyperactivation of STAT3 played a key role in GBM initiation and resistance to therapy; thus, there is an urgent requirement for novel STAT3 inhibitors. BP-1-102 was recently reported as a biochemical inhibitor of STAT3, but its roles and mechanism in biological behavior of glioma cells were still unclear. In this study, the effects of BP-1-102 on proliferation, apoptosis, invasion and neurosphere formation of glioma cell were investigated. Our results indicated that BP-1-102 inhibited the proliferation of U251 and A172 cells, and their IC50 values were 10.51 and 8.534 mu M, respectively. Furthermore, BP-1-102 inhibited the invasion and migration abilities of U251 and A172 cells by decreasing the expression of matrix metallopeptidase 9, and induced glioma cell apoptosis by decreasing the expression of B-cell lymphoma-2. BP-1-102 also inhibited the formation of neurosphere. Mechanically, BP-1-102 reduced the phosphorylation of STAT3 and the p-STAT3's nuclear translocation in glioma cells. Thus, this study herein provided a potential drug for glioma therapy.

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