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:Polymerization of L-Arginine into Nanomicelles for Immunometabolic Engineering of Adoptive Macrophages in Solid Tumor Therapy.
Polymerization of L-Arginine into Nanomicelles for Immunometabolic Engineering of Adoptive Macrophages in Solid Tumor Therapy.
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过继性细胞疗法的治疗效果高度依赖于输注细胞的状态和功能。然而,免疫抑制性肿瘤微环境(TME)内营养供应不足往往阻碍这些细胞充分发挥其对抗实体瘤的细胞毒性潜力。在此,我们提出了一种策略,将过继转移的巨噬细胞与由L-精氨酸基纳米胶束组成的细胞内营养储库相结合,以提供必需代谢物的可持续供应并优化营养匮乏TME中的细胞活性。此外,纳米胶束表面包覆了细菌外膜囊泡,使其具备免疫调节能力,可激活巨噬细胞向抗肿瘤表型转化并抵抗免疫抑制。我们发现,与给予等剂量未经免疫代谢调控的巨噬细胞相比,我们的方法显著增强了巨噬细胞的杀瘤潜力,诱导了强效免疫应答,并有效抑制了实体瘤生长。这项工作提供了一种在体内调控转移细胞行为的方法,为更好地释放过继性细胞疗法对抗实体瘤的潜力提供了一种有前景的策略。
The therapeutic efficacy of adoptive cell therapy is highly dependent on the status and function of the infused cells.
However, insufficient nutrient availability within the immunosuppressive tumor microenvironment (TME) often impedes these cells from fully exerting their cytotoxic potential against solid tumors.
Here, we present a strategy of integrating adoptively transferred macrophages with intracellular nutrient depots composed of L-arginine-based nanomicelles to provide a sustainable supply of essential metabolite and optimize the cellular activity in the nutrient-deprived TME. Also, the nanomicelles were coated with bacterial outer membrane vesicles to endow them with immunomodulatory capability, which could activate macrophages toward anti-tumor phenotypes and resist immune suppression.
We showed that our approach significantly strengthened the tumor-killing potential of macrophages, induced robust immune responses, and effectively inhibited solid tumor growth compared to the administration of an equal dose of macrophages without immunometabolic modulation. This work provides a method for orchestrating the behavior of transferred cells in vivo, offering a promising strategy to better unleash the potential of adoptive cell therapies against solid tumors.
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