4.7 Article Retracted Publication

被撤回的出版物: Genistein inhibits stemness of SKOV3 cells induced by macrophages co-cultured with ovarian cancer stem-like cells through IL-8/STAT3 axis (Retracted article. See vol. 42, 2023)

出版社

BMC
DOI: 10.1186/s13046-018-1010-1

关键词

Ovarian cancer; Tumor associated macrophages; Ovarian cancer stem-like cells; Genistein; IL-8; STAT3 axis

类别

资金

  1. National Natural Science Foundation of China [81301894, 81302249]
  2. Guangzhou Science and Information Bureau Item of China [201300000151]
  3. Guangdong Province Department of Science and Technology of China [2014A020211028, 2014A020212609, 2012B031800271]
  4. scientific research project for Medical College of Bureau of Education of Guangzhou City [1201410508]
  5. High-Level Academic Talent Training Program of Guangzhou Medical University [[2017] 210, B185004083]

向作者/读者索取更多资源

BackgroundRecent studies showed that macrophages co-cultured with ovarian cancer stem-like cells (OCSLCs) induced SKOV3 cell stemness via IL-8/STAT3 signaling. Genistein (GEN) demonstrates chemopreventive activity in inflammation-associated cancers. The present study aimed to examine whether and if GEN inhibits the stemness of SKOV3 and OVCA-3R cells induced by co-culture of THP-1 macrophages and SKOV3-derived OCSLCs.MethodsThe co-culture was treated with or without different concentrations (10, 20, and 40mol/L) of GEN for 24h. Depletion or addition of IL-8 in Co-CM and knockdown or overexpression of STAT3 in THP-1 macrophages was performed to demonstrate the possible associated mechanisms. The combined effects of GEN and STAT3 knockdown were examined with the nude mouse modle by co-injection of SKOV3-derived OCSLCs with THP-1 macrophages.ResultsOur results showed that GEN down-regulated CD163 and p-STAT3 expression of THP-1 macrophage, decreased the levels of IL-10, increased the levels of IL-12 and nitric oxide (NO) in the conditioned medium, and reduced the clonogenic and sphere-forming capacities and the expression of CD133 and CD44 in SKOV3 cells induced by co-culture of THP-1 macrophages and OCSLCs in a dose-dependent manner. Moreover, depletion or addition of IL-8 enhanced or attenuated the effect of GEN. Additionally, knockdown or overepression of STAT3 in THP-1 macrophages potentiated or attenuated the inhibitory effects of GEN. Importantly, STAT3 overexpression retrieved the effects of IL-8 combined with GEN depletion on M2 polarization of THP-1 macrophages and stemness of SKOV3 cells induced by co-culture. The combination of GEN and STAT3 knockdown cooperatively inhibited the growth of tumors co-inoculated with OCSLCs/THP-1 macrophages in nude mice in vivo through blocking IL-8/STAT3 signaling.ConclusionsIn summary, our findings suggested that GEN can inhibit the increased M2 polarization of macrophages and stemness of ovarian cancer cells by co-culture of macrophages with OCSLCs through disrupting IL-8/STAT3 signaling axis. This assisted GEN to be as a potential chemotherapeutic agent in human ovarian cancer.

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