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:CpG ODN Activates TLR9 and Upregulates TLR3 via the p38 MAPK-ATF3 Signaling Axis to Synergistically Enhance Dendritic Cell Vaccine Efficacy.
CpG ODN Activates TLR9 and Upregulates TLR3 via the p38 MAPK-ATF3 Signaling Axis to Synergistically Enhance Dendritic Cell Vaccine Efficacy.
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Toll样受体9(TLR9)和Toll样受体3(TLR3)在树突状细胞(DCs)中广泛表达,是免疫系统中关键的模式识别受体(PRRs)。它们的主要功能是特异性识别病原体相关分子模式(PAMPs):TLR9识别主要存在于细菌和病毒DNA中的未甲基化CpG基序,而TLR3识别病毒双链RNA(dsRNA),这是一种与病毒复制相关的分子标志。它们的特异性激动剂[CpG ODN(一种TLR9激动剂)和poly(I:C)(一种TLR3激动剂)]能够有效激活DCs并增强免疫激活相关分子的表达。
在本研究中,通过建立小鼠原代树突状细胞模型和荷胶质瘤小鼠模型,并采用转录组测序等技术,我们发现CpG ODN和poly(I:C)联合刺激显著增强了DCs的抗肿瘤功能:体外实验中,联合刺激的DCs表现出抗肿瘤相关表面标志物上调、迁移能力增强以及对CD8+ T细胞更有效的激活;体内实验中,负载肿瘤裂解物抗原并经该联合方案刺激的DC疫苗显著延缓了荷瘤小鼠胶质瘤的进展。
进一步研究发现,这种增强效应的潜在机制可能涉及TLR9激活通过p38 MAPK-ATF3信号轴促进TLR3上调。因此,我们设计了一种序贯刺激方案(先CpG ODN后poly(I:C)),其抗胶质瘤效果优于简单的联合刺激。
本研究为增强DC疫苗的免疫效力提供了新策略,对推动DC疫苗的临床转化具有潜在意义。
Toll-like receptor 9 (TLR9) and Toll-like receptor 3 (TLR3), which are widely expressed in dendritic cells (DCs), function as key pattern recognition receptors (PRRs) in the immune system. Their primary roles involve specifically detecting pathogen-associated molecular patterns (PAMPs): TLR9 recognizes unmethylated CpG motifs predominantly found in bacterial and viral DNA, while TLR3 identifies viral double-stranded RNA (dsRNA), a molecular signature associated with viral replication. Their specific agonists [CpG ODN (a TLR9 agonist) and poly(I:C) (a TLR3 agonist)] can effectively activate DCs and enhance the expression of immune activation-related molecules.
In this study, by establishing a mouse primary dendritic cell model and a glioma-bearing mouse model, and employing techniques such as transcriptome sequencing, we found that combined stimulation with CpG ODN and poly(I:C) significantly enhanced the anti-tumor function of DCs: in vitro, DCs subjected to combined stimulation showed upregulation of anti-tumor-related surface markers, enhanced migratory capacity, and a more effective activation of CD8 + T cells; in vivo, a DC vaccine loaded with tumor lysate antigen and stimulated with this combined regimen significantly delayed the progression of glioma in tumor-bearing mice.
Further investigation revealed that the underlying mechanism for this enhanced effect may involve TLR9 activation promoting TLR3 upregulation through the p38 MAPK-ATF3 signaling axis. Consequently, we designed a sequential stimulation protocol (first CpG ODN then poly(I:C)), which demonstrated a stronger anti-glioma effect compared to simple combined stimulation.
This study provides a new strategy for enhancing the immune efficacy of DC vaccines and has potential significance for promoting the clinical translation of DC vaccines.
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