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:Interleukin-4 Receptor Targeting Peptide Decorated Extracellular Vesicles as a Platform for In Vivo Drug Delivery to Thyroid Cancer.
我们的结果证明,IL4RPep-1 肽可作为 EVs 的靶向部分,用于表达 IL-4R 的未分化甲状腺肿瘤。
临床前研究已证明,间充质干细胞(MSC)来源的细胞外囊泡(EV)能够递送治疗药物。但由于缺乏在体内将药物特异性递送至肿瘤组织的能力,其应用受到限制。本研究提出使用靶向肽——IL-4受体结合肽(IL4RPep-1)——将静脉输注的EV特异性递送至甲状腺肿瘤。研究在体内异种移植瘤模型中分别给予对照肽(NSSSVDK)或IL4RPep-1-Flamma,并于给药后0至3小时使用活体成像系统进行荧光成像(FLI)。研究人员使用DOPE-NHS连接剂将DiD染料标记的EV与IL4RPep-1偶联,再经静脉给予小鼠;注射后0至24小时进行FLI,随后处死动物开展后续实验。研究确认了EV的形态与大小、EV标志物CD63和ALIX的存在,以及GM130和Cyto-C标志物的缺失。体内FLI显示,静脉注射IL4RPep-1-Flamma后90分钟,肿瘤部位出现蓄积,而NSSSVDK-Flamma未见蓄积。注射后2小时,IL4RPep-1-EV靶向到Cal-62肿瘤;NSSSVDK-EV在注射24小时后仍未能在肿瘤中检出。FLI定量分析显示,注射后2、3及24小时,MSC-EV在肿瘤中的蓄积均显著增加。离体成像和免疫荧光分析也证实了体内结果。研究结果表明,IL4RPep-1可作为靶向配体,引导EV递送至表达IL-4受体的甲状腺未分化癌肿瘤。
Mesenchymal stem cell (MSC)-derived extracellular vesicles (EVs) have been demonstrated to deliver therapeutic drugs in preclinical studies. However, their use is limited, as they lack the ability to specifically deliver drugs to tumor tissues in vivo. In the present study, we propose the use of a targeting peptide, IL-4R-binding peptide (IL4RPep-1), to specifically deliver intravenously (i.v.) infused EVs to thyroid tumors. In vivo, a xenograft tumor model was treated with either the control peptide (NSSSVDK) or IL4RPep-1-Flamma; mice were fluorescently imaged (FLI) using an in vivo imaging system at 0-3 h post-treatment. EVs (labeled with DiD dye) were conjugated with IL4RPep-1 through a DOPE-NHS linker and administered to mice intravenously. FLI was performed 0-24 h post-injection, and the animals were sacrificed for further experiments. The morphology and size of EVs, the presence of EV markers such as CD63 and ALIX, and the absence of the markers GM130 and Cyto-C were confirmed. In vivo, FLI indicated an accumulation of i.v. injected IL4RPep-1-Flamma at the tumor site 90 min post-injection. No accumulation of NSSSVDK-Flamma was detected. In vivo, IL4RPep-1-EVs targeted the Cal-62 tumor 2 h post-injection. NSSSVDK-EVs were not even detected in the tumor 24 h post-injection. The quantification of FLI showed a significant accumulation of MSC-EVs in the tumor 2 h, 3 h, and 24 h post-injection. Furthermore, ex vivo imaging and an IF analysis confirmed the in vivo findings. Our results demonstrate the use of the IL4RPep-1 peptide as a targeting moiety of EVs for IL-4R-expressing anaplastic thyroid tumors.
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