通过靶向肿瘤相关巨噬细胞的嵌合受体工程化溶瘤病毒重振内源性抗肿瘤免疫
Rejuvenating endogenous antitumor immunity via a chimeric receptor-engineered oncolytic virus targeting tumor-associated macrophages.
我们的研究结果定义了一个精准溶瘤平台,该平台能够解除TAM介导的免疫抑制,同时增强适应性免疫,为癌症免疫治疗提供了一条有前景的转化途径。
英文原题:A versatile self-amplifying mRNA system consolidates oncolytic virus benefits into a single flexible backbone for cancer therapy.
溶瘤病毒(OVs)代表了一种有前景的癌症免疫治疗手段;然而,其临床转化受到生产复杂性、生物安全问题、预存中和抗体以及病毒基因组工程限制的显著阻碍。
溶瘤病毒(OVs)是一种有前景的癌症免疫治疗手段;然而,其临床转化受到生产复杂性、生物安全问题、预存中和抗体以及病毒基因组工程限制的显著阻碍。在此,我们介绍基于自扩增mRNA的病毒样囊泡体内生成系统(SAMVIG),这是一种多功能的系统,能够在体内产生包膜病毒样囊泡(VLVs)。SAMVIG将甲病毒RNA复制子、治疗性有效载荷以及水疱性口炎病毒糖蛋白整合到单个通过脂质纳米颗粒递送的mRNA构建体中。该系统通过结合双重抗原呈递、免疫调节剂共表达以及VLV介导的细胞间传播,协调多层免疫激活,从而引发强效的先天免疫应答。该设计利用了mRNA技术的优势,并整合了类OV免疫刺激功能,同时绕过了传统OV的限制。编码肿瘤抗原的SAMVIG经局部和全身给药后,显著增强了TIL(肿瘤浸润淋巴细胞)的募集和激活,在皮下和转移性肿瘤模型中产生了强效的抗肿瘤疗效。SAMVIG的模块化结构便于无缝整合检查点抑制剂(例如程序性细胞死亡蛋白1 [PD-1]/程序性细胞死亡配体1 [PD-L1]抑制剂)和其他功能蛋白,从而大幅增强治疗效果,且无明显有效载荷长度限制。结合其在体内观察到的良好安全性特征,SAMVIG代表了一种多功能且可定制的免疫治疗系统,标志着溶瘤免疫治疗领域的范式转变。
Oncolytic viruses (OVs) represent a promising cancer immunotherapy modality; however, their clinical translation is significantly impeded by manufacturing complexities, biosafety concerns, pre-existing neutralizing antibodies, and viral genome engineering constraints. Here, we introduce Self-Amplifying mRNA-based Virus-like Vesicles In Vivo Generation (SAMVIG), a versatile system enabling in vivo production of enveloped virus-like vesicles (VLVs). SAMVIG integrates an alphavirus RNA replicon, therapeutic payloads, and vesicular stomatitis virus glycoprotein within a single mRNA construct delivered via lipid nanoparticles. The system orchestrates multi-layered immune activation by combining dual antigen presentation, immune modulator co-expression, and VLV-mediated intercellular spread to elicit potent innate immune responses. This design leverages the advantages of mRNA technology and consolidates OV-like immunostimulatory functions while bypassing traditional OV constraints. Local and systemic administration of SAMVIG encoding tumor antigens significantly enhanced tumor-infiltrating lymphocyte recruitment and activation, resulting in robust antitumor efficacy across subcutaneous and metastatic tumor models. The modular architecture of SAMVIG facilitated seamless integration of checkpoint inhibitors (e.g., programmed cell death protein 1 [PD-1]/programmed cell death ligand 1 [PD-L1] inhibitor) and other functional proteins to substantially enhance therapeutic efficacy, without apparent payload length limitations. Coupled with its favorable safety profile observed in vivo, SAMVIG represents a versatile and customizable immunotherapy system that marks a paradigm shift in the field of oncolytic immunotherapy.
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