CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Bone marrow-mesenchymal stem cell-derived extracellular vesicles affect proliferation and apoptosis of leukemia cells in vitro.
Bone marrow-mesenchymal stem cell-derived extracellular vesicles affect proliferation and apoptosis of leukemia cells in vitro.
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间充质干细胞(MSCs)因其多向分化潜能和分泌包括细胞外囊泡(EVs)在内的多种旁分泌因子的能力,被认为具有组织工程和细胞治疗的潜力。越来越多的证据表明,MSC来源的EVs(MSC-EVs)能够诱导组织损伤修复并调节免疫系统。
然而,它们在癌症发展中的作用仍不清楚。有报道提示,MSC-EVs对癌症是抑制作用还是促进作用取决于癌症类型。本研究探讨了MSC-EVs在体外对白血病细胞生长调节中的作用。通过使用10 kDa分子量截留(MWCO)滤膜超滤,从MSCs的条件培养基中收集EVs。分离的MSC-EVs由微囊泡和外泌体组成,通过囊泡大小和外泌体蛋白CD81和flotillin-1进行检测。在用MSC-EVs处理白血病细胞系NB4和K562后,检测了细胞增殖、细胞周期状态、凋亡和基因表达。观察到细胞增殖抑制和凋亡诱导。基因表达分析显示NB4和K562中凋亡相关基因的差异表达。MSC-EVs增加了BID和BAX的表达,降低了BCL2的表达,表明在NB4中诱导了内源性凋亡。相反,MSC-EVs在K562中增加了死亡受体基因TRAILR2以及细胞周期调节基因P21和CCNE2的表达。
总之,MSC-EVs部分诱导白血病细胞凋亡,因此可能具有开发白血病支持疗法的潜力。
Mesenchymal stem cells (MSCs) have been proposed to have potential for tissue engineering and cell therapy due to their multilineage differentiation potential and ability to secrete numerous paracrine factors, including extracellular vesicles (EVs). Increasing evidence has demonstrated that MSC-derived EVs (MSC-EVs) are able to induce the repair of tissue damage and regulate the immune system.
However, their role in cancer development is still unclear. Reports have suggested that whether MSC-EVs have an inhibitory or promoting effect on cancer is dependent on the type of cancer. In this study, the role of MSC-EVs in the regulation of leukemic cell growth in vitro was investigated. The EVs were collected from conditioned media of MSCs by ultrafiltration using a 10 kDa molecular weight cutoff (MWCO) filter. The isolated MSC-EVs were comprised of microvesicles and exosomes, as examined by the size of vesicles and exosomal proteins, CD81 and flotillin-1.
Cell proliferation, cell cycle status, apoptosis, and gene expression were examined in the leukemic cell lines NB4 and K562 after treatment with MSC-EVs. Suppression of cell proliferation and induction of apoptosis was observed. Gene expression analysis revealed differential expression of apoptotic-related genes in NB4 and K562.
MSC-EVs increased the expression of BID and BAX and decreased expression of BCL2, indicating the induction of intrinsic apoptosis in NB4. In contrast, MSC-EVs increased the expression of the death receptor gene TRAILR2 and cell cycle regulator genes P21 and CCNE2 in K562.
In conclusion, MSC-EVs partially induce leukemic cell apoptosis, and thus may have potential for the development of supportive therapies for leukemia.
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