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:uPAR-directed immunotherapies in solid tumors: current advances and future perspectives.
uPAR-directed immunotherapies in solid tumors: current advances and future perspectives.
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在癌症中,尿激酶型纤溶酶原激活物受体(uPAR)表达升高是公认的不良预后因素,与肿瘤侵袭增强、转移播散、细胞增殖以及对常规治疗的耐药性相关。uPAR 的基因敲除或沉默已被证明可在体外和体内损害多种促肿瘤功能,凸显了其在肿瘤发生、进展和转移演化中的关键作用。这些发现不仅确立了 uPAR 作为临床相关预后生物标志物,也使其成为有吸引力的治疗靶点。除了在恶性细胞上表达外,uPAR 在肿瘤微环境(TME)中大量表达,包括积极支持肿瘤进展和免疫逃逸的基质成分和免疫抑制细胞群体。
In cancer, elevated expression of the urokinase-type plasminogen activator receptor (uPAR) is a well-established adverse prognostic factor associated with enhanced tumor invasion, metastatic dissemination, cellular proliferation, and resistance to conventional therapies. Genetic ablation or silencing of uPAR has been shown to impair multiple protumorigenic functions both in vitro and in vivo , underscoring its pivotal role in tumor initiation, progression, and metastatic evolution.
These findings establish uPAR not only as a clinically relevant prognostic biomarker but also as an attractive therapeutic target. Beyond its expression on malignant cells, uPAR is abundantly expressed within the tumor microenvironment (TME), including stromal components and immunosuppressive cell populations that actively support tumor progression and immune evasion.
Notably, uPAR is highly expressed in several solid tumors characterized by TP53 and RAS pathway alterations. These tumors exhibit a progenitor-like phenotype sustained by a senescence-associated, uPAR-positive stromal niche, further highlighting the contribution of uPAR to tumor plasticity and therapeutic resistance. Collectively, these observations provide a strong biological rationale for the development of uPAR-directed immunotherapeutic strategies aimed at simultaneously targeting tumor cells and the supportive TME.
Such approaches may be particularly effective in aggressive and treatment-refractory malignancies, including glioblastoma, non-small cell lung cancer, and ovarian cancer. This review summarizes the current understanding of the biological role of uPAR in solid tumors and discusses the rationale for its therapeutic targeting.
Furthermore, it provides a comprehensive overview of the principal uPAR-directed immunotherapeutic strategies currently under investigation, including chimeric antigen receptor (CAR) T-cell therapies, multi-epitope vaccines, monoclonal antibodies, and radioligand-based approaches. Collectively, these emerging modalities position uPAR as a versatile and broadly applicable immunotherapeutic target with the potential to address several of the major challenges associated with the treatment of solid tumors.
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