免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor-targeted delivery of CXCL10 by mesenchymal stromal cells potentiates adoptive T cell therapy to treat solid tumors.
Tumor-targeted delivery of CXCL10 by mesenchymal stromal cells potentiates adoptive T cell therapy to treat solid tumors.
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有限的T细胞浸润进入实体瘤仍然是成功癌症免疫治疗的主要障碍之一,特别是对于过继性细胞治疗(ACT)。尽管趋化因子CXCL10能够招募T细胞,但其直接治疗应用受到药代动力学差、全身泄漏以及无法建立有效细胞迁移所需的稳定浓度梯度的限制。为了克服这些挑战,我们对间充质基质细胞(MSCs)进行了工程化改造,使其共表达NAD(P)H醌氧化还原酶1(NQO1)以增强存活能力,并表达CXCL10-Fc融合蛋白以实现趋化因子的持续递送(NIP-MSCs)。工程化MSCs通过改善氧化还原稳态表现出对肿瘤微环境条件的耐受性,从而在体内增强了持久性并持续产生IP10-Fc。关键的是,肿瘤靶向递送CXCL10-Fc建立了强效的趋化梯度,且全身泄漏极少,显著增加了内源性和过继转移的T细胞向肿瘤部位的招募。在同系小鼠模型中,NIP-MSC治疗通过增强CD8+ T细胞浸润显著抑制了肿瘤生长。在黑色素瘤模型中与ACT联合使用时,与常规方法相比,NIP-MSCs实现了更优的肿瘤控制并显著延长了生存期。这项工作验证了NIP-MSCs作为一种有前景的平台,能够克服T细胞排斥并增强实体瘤免疫治疗的疗效。
Limited T cell infiltration into solid tumors remains one of the major obstacles to successful cancer immunotherapy, particularly for adoptive cell therapy (ACT). Although the chemokine CXCL10 recruits T cells, its direct therapeutic application is hampered by poor pharmacokinetics, systemic leakage, and failure to establish stable concentration gradients required for effective cell migration. To overcome these challenges, we engineered mesenchymal stromal cells (MSCs) to co-express NAD(P)H quinone oxidoreductase 1 (NQO1) for enhanced survival and CXCL10-Fc fusion protein for sustained chemokine delivery (NIP-MSCs). The engineered MSCs exhibited resilience to tumor microenvironment conditions through improved redox homeostasis, resulting in enhanced persistence and sustained IP10-Fc production in vivo.
Crucially, tumor-targeted delivery of CXCL10-Fc established potent chemotactic gradients with minimal systemic leakage, dramatically increasing both endogenous and adoptively transferred T cell recruitment to tumor site. In syngeneic mouse models, NIP-MSC treatment significantly suppressed tumor growth through enhanced CD8 + T cell infiltration.
When combined with ACT in melanoma models, NIP-MSCs resulted in superior tumor control and significantly prolonged survival compared to conventional approaches. This work validates NIP-MSCs as a promising platform to overcome T cell exclusion and potentiate immunotherapy efficacy in solid tumors.
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