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:Human Umbilical Cord Mesenchymal Stem Cells-derived Exosomal lncRNA FAM99B Represses Hepatocellular Carcinoma Cell Malignancy.
Human Umbilical Cord Mesenchymal Stem Cells-derived Exosomal lncRNA FAM99B Represses Hepatocellular Carcinoma Cell Malignancy.
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人脐带间充质干细胞(hucMSC)来源的外泌体(Exo)已被频繁研究用于疾病控制。本研究旨在探讨携带lncRNA家族序列相似性99成员B(Exo-lncRNA FAM99B)的hucMSC-Exo对肝细胞癌(HCC)细胞行为的影响。通过逆转录定量聚合酶链反应检测HCC细胞中lncRNA FAM99B的表达。使用western blotting定量外泌体标志物的蛋白水平。进行流式细胞术分析以检测hucMSC的表面标志物,并测量Exo-lncRNA FAM99B对HCC细胞周期进程和细胞凋亡的影响。使用纳米颗粒跟踪分析测量外泌体的粒径。
此外,使用甲基噻唑基四唑试验评估细胞活力,并进行Transwell试验以测量细胞迁移和侵袭。建立异种移植肿瘤模型以探讨Exo-lncRNA FAM99B在体内的作用。实验结果显示,lncRNA FAM99B在HCC细胞系中下调,根据生物信息学分析,FAM99B低水平与HCC患者较差的生存率相关。hucMSC被鉴定为形态良好,阳性表达CD105、CD29和CD44,阴性表达CD31、CD14和HLA-DR。外泌体标志物(Alix、CD63和TSG101)的高蛋白水平证实了HucMSC-Exo的存在。
重要的是,hucMSC-Exo能够进入HCC细胞,并对恶性细胞活动产生抑制作用。此外,Exo-lncRNA FAM99B的过表达增强了细胞周期阻滞和细胞凋亡,同时抑制了HCC中的细胞活力、迁移和侵袭。Exo-siRNA-FAM99B对HCC细胞进程发挥相反的作用。体内实验证实Exo-lncRNA FAM99B抑制HCC中的肿瘤发生。
总之,来源于hucMSC-Exo的lncRNA FAM99B抑制HCC中的恶性细胞表型和肿瘤发生,这可能为HCC治疗提供一种新的治疗策略。
Human umbilical cord mesenchymal stem cell (hucMSC)-derived exosomes (Exo) have been frequently investigated for disease control.
This study was designed to explore the effects of hucMSC-Exo carrying lncRNA family with sequence similarity 99-member B (Exo-lncRNA FAM99B) on hepatocellular carcinoma (HCC) cell behaviour. The expression of lncRNA FAM99B in HCC cells was measured by reverse-transcription quantitative polymerase chain reaction.
Protein levels of exosomal markers were quantified using western blotting. Flow cytometry analyses were performed to detect surface markers of hucMSCs and to measure the effects of Exo-lncRNA FAM99B on HCC cell cycle progression and cell apoptosis. Nanoparticle tracking analysis was used to measure the particle size of the exosomes.
Additionally, cell viability was evaluated using methyl thiazolyl tetrazolium assays, and Transwell assays were performed to measure cell migration and invasion. Xenograft tumor models were established to explore the role of Exo-lncRNA FAM99B in vivo. Experimental results revealed that lncRNA FAM99B was downregulated in HCC cell lines, and low level of FAM99B is associated with poor survival rates in patients with HCC according to bioinformatics analysis.
HucMSCs were identified in a good morphology with positively expressed CD105, CD29, and CD44 as well as negatively expressed CD31, CD14, and HLA-DR. High protein levels of exosomal markers (Alix, CD63 and TSG101) identified the existence of HucMSC-Exo.
Importantly, the hucMSCs-Exo could enter HCC cells and exerted a suppressive effect on malignant cell activities.
Moreover, overexpression of Exo-lncRNA FAM99B enhanced cell cycle arrest and cell apoptosis while suppressing cell viability, migration, and invasion in HCC. Exo-siRNA-FAM99B exerted the opposite effects on HCC cell process. In vivo experiments verified that Exo-lncRNA FAM99B inhibited tumorigenesis in HCC. In summary, lncRNA FAM99B derived from hucMSC-Exo inhibited malignant cellular phenotypes and tumorigenesis in HCC, which might provide a novel therapeutic strategy for HCC treatment.
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