CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting the tumor immune microenvironment in chordoma: From mechanistic insights to therapeutic breakthroughs.
Targeting the tumor immune microenvironment in chordoma: From mechanistic insights to therapeutic breakthroughs.
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脊索瘤是一种罕见的恶性骨肿瘤,以高局部复发率和对常规治疗的耐药性为特征。尽管免疫治疗已成为一条有前景的途径,但其临床疗效目前受到深度免疫抑制性肿瘤免疫微环境(TIME)的限制。本综述系统阐述了支撑脊索瘤独特“免疫排斥”表型的分子和细胞机制。在这种结构中,效应T细胞被致密的基质间隔从物理上与肿瘤细胞隔离,而这些间隔 paradoxically 作为髓系-T细胞相互作用的枢纽,而非简单的物理屏障。这种免疫排斥结构通过多种相互关联的机制 orchestrated。癌症相关成纤维细胞(CAFs),特别是炎症性和应激相关亚群,通过细胞外基质重塑构建物理屏障,同时分泌趋化因子(如CXCL12),将T细胞空间锚定在基质内。转化生长因子-β(TGF-)通路通过抑制细胞毒性T细胞功能和阻碍肿瘤浸润来强化这种排斥。在内在层面,脊索瘤表现出低肿瘤突变负荷和特定的基因组改变——最显著的是CDKN2A/B和PBRM1的缺失。
此外,尽管存在高染色体不稳定性(CIN),9p和10q的共现缺失使cGAS-STING通路沉默,从而损害抗原呈递和免疫细胞募集。微环境进一步由M2极化的肿瘤相关巨噬细胞和调节性T细胞主导,驱动效应T细胞耗竭。临床证据表明,免疫检查点抑制剂和靶向疫苗作为单一疗法的疗效有限,突显了免疫排斥表型和PD-L1蛋白表达稀缺是主要障碍。未来的治疗突破将需要合理的联合策略,包括针对新抗原(如B7-H3)的CAR-T 细胞疗法和过继性T细胞转移,旨在破坏基质屏障并利用全身性抗肿瘤免疫。
Chordoma is a rare, malignant bone tumor characterized by high local recurrence rates and resistance to conventional therapies. While immunotherapy has emerged as a promising avenue, its clinical efficacy is currently limited by a profoundly immunosuppressive tumor immune microenvironment (TIME). This review systematically elucidates the molecular and cellular mechanisms underpinning the distinct "immune-excluded" phenotype in chordoma. In this architecture, effector T cells are physically sequestered from tumor cells by dense stromal septa, which paradoxically function as hubs for myeloid-T cell interaction rather than simple physical barriers.
This immune-excluded architecture is orchestrated through multiple interconnected mechanisms. Cancer-associated fibroblasts (CAFs), particularly inflammatory and stress-related subpopulations, construct physical barriers via extracellular matrix remodeling while secreting chemokines (such as CXCL12) that spatially anchor T cells within the stroma.
The transforming growth factor-beta (TGF- ) pathway reinforces this exclusion by suppressing cytotoxic T cell function and impeding tumor infiltration. Intrinsically, chordoma exhibits a low tumor mutational burden and specific genomic alterations-most notably the loss of CDKN2A/B and PBRM1.
Furthermore, despite high chromosomal instability (CIN), co-occurring deletions of 9p and 10q silence the cGAS-STING pathway, thereby impairing antigen presentation and immune cell recruitment. The microenvironment is further dominated by M2-polarized tumor-associated macrophages and regulatory T cells, driving effector T cell exhaustion.
Clinical evidence indicates that immune checkpoint inhibitors and targeted vaccines yield limited efficacy as monotherapies, highlighting the immune-excluded phenotype and the scarcity of PD-L1 protein expression as primary obstacles. Future therapeutic breakthroughs will require rational combination strategies, including CAR-T cell therapies targeting novel antigens (e. g. , B7-H3) and adoptive T-cell transfer, designed to dismantle stromal barriers and exploit systemic anti-tumor immunity.
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