...
首页> 外文期刊>Scientific reports. >α-Mangostin-encapsulated PLGA nanoparticles inhibit pancreatic carcinogenesis by targeting cancer stem cells in human, and transgenic (KrasG12D, and KrasG12D/tp53R270H) mice
【24h】

α-Mangostin-encapsulated PLGA nanoparticles inhibit pancreatic carcinogenesis by targeting cancer stem cells in human, and transgenic (KrasG12D, and KrasG12D/tp53R270H) mice

机译:α-血刀蛋白封装的PLGA纳米颗粒通过靶向人体和转基因(KRASG12D和KRASG12D / TP53R270H)小鼠靶向癌症干细胞抑制胰腺癌

获取原文
           

摘要

Activation of sonic hedgehog (Shh) in cancer stem cell (CSC) has been demonstrated with aggressiveness of pancreatic cancer. In order to enhance the biological activity of α-mangostin, we formulated mangostin-encapsulated PLGA nanoparticles (Mang-NPs) and examined the molecular mechanisms by which they inhibit human and KC mice (Pdx(Cre);LSL-Kras(G12D)) pancreatic CSC characteristics in vitro, and pancreatic carcinogenesis in KPC (Pdx(Cre);LSLKras(G12D);LSL-Trp53(R172H)) mice. Mang-NPs inhibited human and Kras(G12D) mice pancreatic CSC characteristics in vitro. Mang-NPs also inhibited EMT by up-regulating E-cadherin and inhibiting N-cadherin and transcription factors Slug, and pluripotency maintaining factors Nanog, c-Myc, and Oct4. Furthermore, Mang-NPs inhibited the components of Shh pathway and Gli targets. In vivo, Mang-NPs inhibited the progression of pancreatic intraneoplasia to pancreatic ductal adenocarcinoma and liver metastasis in KPC mice. The inhibitory effects of Mang-NPs on carcinogenesis in KPC mice were associated with downregulation of pluripotency maintaining factors (c-Myc, Nanog and Oct4), stem cell markers (CD24 and CD133), components of Shh pathway (Gli1, Gli2, Patched1/2, and Smoothened), Gli targets (Bcl-2, XIAP and Cyclin D1), and EMT markers and transcription factors (N-cadherin, Slug, Snail and Zeb1), and upregulation of E-cadherin. Overall, our data suggest that Mang-NPs can inhibit pancreatic cancer growth, development and metastasis by targeting Shh pathway.
机译:胰腺癌的侵蚀性证明了癌症干细胞(CSC)中Sonic Hedgehog(SHH)的激活。为了提高α-血刀蛋白的生物活性,我们配制了颅蛋白包封的PLGA纳米粒子(MANG-NPS),并检查了它们抑制人和KC小鼠的分子机制(PDX(CRE); LSL-KRAS(G12D))胰腺CSC特征在体外,KPC胰腺癌(PDX(CRE); LSLKRAS(G12D); LSL-TRP53(R172H))小鼠。 Mang-NPS在体外抑制人和KRA(G12D)胰腺CSC特性。 Mang-NPS还通过上调E-Cadherin并抑制N-Cadherin和转录因子Slug,以及多能性维持因子纳米,C-Myc和Oct4的EMT。此外,Mang-NPS抑制了SHH途径和GLI靶标的组分。体内,Mang-NPS在KPC小鼠中抑制胰腺癌胰腺癌胰腺癌腺癌和肝转移的进展。 Mang-NPS在KPC小鼠中癌发生的抑制作用与多能性维持因子(C-MYC,NANOG和OCT4),干细胞标志物(CD24和CD133),SHH途径组分(GLI1,GLI2,PAMPED1 / 2,和平滑的),GLI靶标(BCL-2,XIAP和Cyclin D1),以及EMT标记和转录因子(N-Cadherin,Slug,Snail和Zeb1),以及E-Cadherin的上调。总体而言,我们的数据表明,Mang-NPS可以通过靶向SHH途径来抑制胰腺癌生长,发育和转移。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号