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.
我们的工作确立了CD81作为连接放射抵抗与免疫逃逸的关键桥梁,其通过维持GBM中CD274的丰度发挥作用,并突显CD81作为优化放射免疫治疗的有前景的治疗靶点。
英文原题:Ginkgolide A improves the pleiotropic function and reinforces the neuroprotective effects by mesenchymal stem cell-derived exosomes in 6-OHDA-induced cell model of Parkinson's disease.
帕金森病(PD)是一种常见疾病,由中脑多巴胺(mDA)神经元丢失和多巴胺分泌减少所致。
帕金森病(PD)是一种常见疾病,归因于中脑多巴胺能(mDA)神经元丧失和多巴胺分泌减少。目前PD治疗方案包括脑深部电刺激,但其仅能轻微延缓疾病进展,且不能改善神经元细胞死亡。本研究考察银杏内酯A(GA)能否增强华通胶来源间充质干细胞(WJMSC),用于PD体外模型治疗。采用MTT实验及与神经母细胞瘤细胞系的Transwell共培养实验评估后发现,GA增强WJMSC的自我更新、增殖及细胞归巢能力。GA预处理的WJMSC在共培养实验中可逆转6-羟基多巴胺(6-OHDA)诱导的细胞死亡。此外,MTT、流式细胞术和TUNEL实验均显示,分离自GA预处理WJMSC的外泌体可显著挽救6-OHDA诱导的细胞死亡。蛋白质印迹显示,接受GA-WJMSC外泌体处理后,凋亡相关蛋白水平降低,线粒体功能障碍进一步改善。我们还通过免疫荧光染色和免疫印迹证实,GA-WJMSC来源外泌体可恢复自噬。最后,采用α-突触核蛋白重组蛋白进行实验,发现与对照相比,GA-WJMSC来源外泌体可减少α-突触核蛋白聚集。结果提示,GA可能成为增强PD干细胞和外泌体疗法的候选药物。
Parkinson's disease (PD) is a common disorder attributed to the loss of midbrain dopamine (mDA) neurons and reduced dopamine secretion. Currently, the treatment regimes for PD comprise deep brain stimulations, however, it attenuates the PD progression marginally and does not improve neuronal cell death. We investigated the function of Ginkgolide A (GA) to reinforce Wharton's Jelly-derived mesenchymal stem cells (WJMSCs) for treating the in vitro model of PD. GA enhanced the self-renewal, proliferation, and cell homing function of WJMSCs as assessed by MTT and transwell co-culture assay with a neuroblastoma cell line. GA pre-treated WJMSCs can restore 6-hydroxydopamine (6-OHDA)-induced cell death in a co-culture assay. Furthermore, exosomes isolated from GA pre-treated WJMSCs significantly rescued 6-OHDA-induced cell death as determined by MTT assay, flow cytometry, and TUNEL assay. Western blotting showed that apoptosis-related proteins were decreased following GA-WJMSCs exosomal treatment which further improved mitochondrial dysfunction. We further demonstrated that exosomes isolated from GA-WJMSCs could restore autophagy using immunofluorescence staining and immunoblotting assay. Finally, we used the alpha-synuclein recombinant protein and found that exosomes derived from GA-WJMSCs led to the reduced aggregation of alpha-synuclein compared to that in control. Our results suggested that GA could be a potential candidate for strengthening stem cell and exosome therapy for PD.
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