工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Engineering TME-activated CD47-specific CAR macrophage via Arg1 promoter for safe and effective solid tumor immunotherapy.
Engineering TME-activated CD47-specific CAR macrophage via Arg1 promoter for safe and effective solid tumor immunotherapy.
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我们的研究结果证实,基于内在 Arg1 启动子重编程的 pArg1 CD47 CAR-Mφ的 TME 特异性激活机制,使 CAR-Mφ能够有效减轻红细胞毒性,同时实现安全的多剂量给药方案。这种类似特洛伊木马的 CAR-Mφ系统实现了肿瘤特异性激活,同时将全身毒性降至最低,为拓展 CAR-Mφ在实体瘤中的应用提供了一种新策略。
嵌合抗原受体巨噬细胞(CAR-Mφ)疗法在实体瘤中具有前景广阔的治疗潜力,但靶点兼容性和全身毒性方面仍存在挑战。
在本研究中,我们筛选了CAR-Mφ的CD47-scFv序列作为胞外结构。随后,我们构建了一种经典的CD47 CAR-Mφ,其整合了α1β1整合素介导的Fc-gamma受体I(FcγRI)信号组分的共刺激结构域。接着,我们通过精氨酸酶1(Arg1)启动子开发了一种肿瘤微环境(TME)响应型CAR巨噬细胞平台,以靶向CD47——一种在实体瘤中高表达但临床上面临挑战的免疫检查点。
我们发现,抗CD47-scFv介导的巨噬细胞在体内和体外均能有效杀伤肿瘤细胞。此外,通过整合α1β1整合素介导的FcγRI信号结构域,CD47 CAR-Mφ在体外对hCD47+4T1和SGC-7901细胞表现出更优越的抗肿瘤活性,这表明CD47 CAR-Mφ对实体瘤有效。随后,Arg1介导的活化pArg1 CD47 CAR-Mφ对靶癌细胞表现出强烈的细胞毒性。我们进一步证明了TME可控的CAR基因原位表达,并在体内诱导已建立肿瘤的显著消退。此外,TME依赖性激活的CD47 CAR Mφ降低了对红细胞的细胞毒性杀伤作用。
Chimeric antigen receptor macrophage (CAR-Mφ) therapy has promising therapeutic potential in solid tumors, yet challenges remain in target compatibility and systemic toxicity.
In this study, we screened the CD47-scFv sequence of CAR-Mφ as the extracellular structure. We then constructed a classical CD47 CAR-Mφ incorporated the costimulatory domain of the α1β1 integrin-mediated Fc-gamma receptor I (FcγRI) signaling component. Subsequently, we developed a tumor microenvironment (TME)-responsive CAR macrophage platform by the arginase 1 (Arg1) promoter to target CD47, a highly expressed but clinically challenging immune checkpoint in solid tumors.
We found that anti-CD47-scFv-mediated macrophages can effectively kill tumor cells both in vivo and in vitro. Furthermore, by integrating an α1β1 integrin-mediated FcγRI signaling domain, CD47 CAR-Mφ exhibited superior antitumor activity in hCD47+4T1 and SGC-7901 cells in vitro, which demonstrated that the CD47 CAR-Mφ was effective against solid tumors. Subsequently, Arg1-mediated activated pArg1 CD47 CAR-Mφ exhibited strong cytotoxicity against target cancer cells. We further demonstrated TME-controllable CAR gene expression in situ and induced a significant regression of established tumors in vivo. Besides, TME-dependent activation of CD47 CAR Mφ reduced the cytotoxic killing effect on erythrocytes.
Our findings confirmed that the TME-specific activation mechanism of pArg1 CD47 CAR-Mφ based on intrinsic Arg1 promoter reprogramming endowed CAR-Mφ to effectively mitigate erythrocyte toxicity while enabling safe multidose administration regimens. This Trojan horse-like CAR-Mφ system achieves tumor-specific activation while minimizing systemic toxicity, offering a novel strategy to expand CAR-Mφ applications for solid tumors.
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