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:Cell-Surface PCNA Is Co-Expressed with Biomarkers of Stemness and Immunosuppression in Glioblastoma.
Cell-Surface PCNA Is Co-Expressed with Biomarkers of Stemness and Immunosuppression in Glioblastoma.
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我们利用流式细胞术、成像流式细胞术和细胞表面Western blot来鉴定GBM细胞系(LN-229、LN-18)和原代患者来源肿瘤标本中csPCNA的表达。随后,我们采用流式细胞术研究csPCNA与GBM干细胞其他生物标志物(CD44、CD49f)以及GBM免疫抑制标志物(PD-L1、TGFβRII)的关联共表达。
我们阐明了LN-229、LN-18和原代GBM患者细胞表达csPCNA。我们发现csPCNA在原代患者来源的GBM标本上与CD44、CD49f、PD-L1和TGFβRII共表达。
我们发现csPCNA在GBM中表达,并与干细胞和免疫抑制生物标志物共表达,这表明csPCNA可能是GBM干性和免疫抑制的一种潜在有用的临床病理生物标志物。
Background/Objectives : Glioblastoma (GBM) is a lethal form of primary brain tumor. There has been minimal improvement in overall GBM survival in recent years. To increase survival in patients with GBM, it is important to study novel GBM molecular antigens to form the basis of better diagnostics, prognostic measures, and therapeutic advancements.
Our goal is to find more robust GBM-specific antigenic biomarkers to eventually improve GBM outcomes.
Here, we initiated an investigation into cell-surface PCNA (csPCNA), a potential GBM biomarker and antigenic target. Methods : We utilized flow cytometry, imaging flow cytometry, and cell-surface Western blot to identify the expression of csPCNA on GBM cell lines (LN-229, LN-18) and a primary patient-derived tumor specimen.
We then employed flow cytometry to study the associative co-expression of csPCNA with other biomarkers of GBM stem cells (CD44, CD49f) and GBM immunosuppression (PD-L1, TGFβRII). Results : We elucidated that LN-229, LN-18, and the primary GBM patient cells express csPCNA.
We found that csPCNA is co-expressed with CD44, CD49f, PD-L1, and TGFβRII on the primary patient-derived GBM specimen. Conclusions : Our findings that csPCNA is expressed in GBM and is co-expressed with stem cell and immunosuppressive biomarkers indicate that csPCNA may be a potentially useful clinical-pathological biomarker for GBM stemness and immunosuppression.
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