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Immunotherapy for Hepatoma Using a Dual-Function Vector with Both Immunostimulatory and Pim-3-Silencing Effects

机译:使用兼具免疫刺激和Pim-3沉默作用的双重功能载体对肝癌进行免疫治疗

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Tumorigenesis is an immortalization process in which the growth of normal cells is uncontrolled and programmed cell death is suppressed. Molecular biologic and immunologic studies have revealed that the aberrant expression of some proto-oncogenes boosts proliferation and inhibits apoptosis, which is vital for tumor development. The hypofunction of the host immune system also drives the development and metastasis of malignant tumors. Pim-3, amember of the Pim family, is aberrantly expressed in several cancers. Data suggest that Pim-3 inhibits apoptosis by phosphorylating the proapoptotic BH3-only protein Bad. Here, we constructed a dual-function small hairpin RNA(shRNA) vector containing an shRNA targeting Pim-3 and a TLR7-stimulating ssRNA. Stimulation with this bi-functional vector in vitro promoted significant apoptosis of Hepa1-6 cells by regulating the expression of apoptosis-related proteins and induced secretion of type I IFNs. Most importantly, this bi-functional vector more effectively inhibited subcutaneous Hepa1-6 cell growth than did single shRNA and ssRNA treatment in vivo. Natural killer (NK), CD4(+) T, and CD8(+) T cells and macrophages were required for effective tumor suppression, and CD4(+) T cells were shown to play a helper role in the activation of NK cells, possibly by regulating the secretion of Th1 or Th2 cytokines. This ssRNA-shRNA bi-functional vector may represent a promising approach for tumor therapy. (C) 2014 AACR.
机译:肿瘤发生是永生化过程,其中正常细胞的生长不受控制,程序性细胞死亡得到抑制。分子生物学和免疫学研究表明,某些原癌基因的异常表达可促进增殖并抑制细胞凋亡,这对于肿瘤的发展至关重要。宿主免疫系统的功能减退也驱动恶性肿瘤的发展和转移。 Pim-3是Pim家族的成员,在几种癌症中异常表达。数据表明,Pim-3通过使仅凋亡的BH3蛋白Bad磷酸化来抑制凋亡。在这里,我们构建了一个双功能小发夹RNA(shRNA)载体,其中包含靶向Pim-3的shRNA和刺激TLR7的ssRNA。通过调节这种凋亡相关蛋白的表达并诱导I型IFN的分泌,用这种双功能载体体外刺激可显着促进Hepa1-6细胞的凋亡。最重要的是,这种双功能载体比体内的单个shRNA和ssRNA处理更有效地抑制了皮下Hepa1-6细胞的生长。要有效抑制肿瘤,必须使用自然杀手(NK),CD4(+)T和CD8(+)T细胞和巨噬细胞,并且CD4(+)T细胞被证明在激活NK细胞中起辅助作用通过调节Th1或Th2细胞因子的分泌。该ssRNA-shRNA双功能载体可能代表了一种有前途的肿瘤治疗方法。 (C)2014 AACR。

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