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:Genetically Engineered Macrophages Co-Loaded with CD47 Inhibitors Synergistically Reconstruct Efferocytosis and Improve Cardiac Remodeling Post Myocardial Ischemia Reperfusion Injury.
Genetically Engineered Macrophages Co-Loaded with CD47 Inhibitors Synergistically Reconstruct Efferocytosis and Improve Cardiac Remodeling Post Myocardial Ischemia Reperfusion Injury.
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由巨噬细胞受体 MerTK(髓系-上皮-生殖酪氨酸激酶)介导的胞葬作用,是心肌缺血-再灌注(MI/R)损伤后心脏修复的重要贡献因素。
然而,驻留心脏巨噬细胞(主要效应细胞)的死亡、MerTK(主要效应受体)的失活,以及“别吃我”信号(刹车信号,如 CD47)的过表达,共同导致 MI/R 后心脏中胞葬作用受阻。迄今为止,针对上述单个障碍的治疗策略相对缺乏,更不用说其有效性还因同时存在的另外两个障碍而受到限制。
在此,受嵌合抗原受体巨噬细胞(CAR-Ms)在实体瘤中应用研究的启发,开发了一种基于基因修饰巨噬细胞的协同药物递送策略,能够以整合方式有效应对这三大障碍。该策略涉及外源性巨噬细胞过表达 CCR2(C-C 趋化因子受体 2 型)和抗切割 MerTK,以及表面点击连接脂质体 PEP-20(一种 CD47 拮抗剂)。在 MI/R 小鼠模型中,该协同策略在静脉注射后能够有效恢复心脏胞葬作用,从而减轻炎症反应,最终保护心脏功能。该疗法侧重于抑制炎症的启动并促进炎症的主动消退,为免疫调节治疗提供了新见解。
Efferocytosis, mediated by the macrophage receptor MerTK (myeloid-epithelial-reproductive tyrosine kinase), is a significant contributor to cardiac repair after myocardial ischemia-reperfusion (MI/R) injury.
However, the death of resident cardiac macrophages (main effector cells), inactivation of MerTK (main effector receptor), and overexpression of "do not eat me" signals (brake signals, such as CD47), collectively lead to the impediment of efferocytosis in the post-MI/R heart. To date, therapeutic strategies targeting individual above obstacles are relatively lacking, let alone their effectiveness being limited due to constraints from the other concurrent two.
Herein, inspired by the application research of chimeric antigen receptor macrophages (CAR-Ms) in solid tumors, a genetically modified macrophage-based synergistic drug delivery strategy that effectively challenging the three major barriers in an integrated manner is developed. This strategy involves the overexpression of exogenous macrophages with CCR2 (C-C chemokine receptor type 2) and cleavage-resistant MerTK, as well as surface clicking with liposomal PEP-20 (a CD47 antagonist).
In MI/R mice model, this synergistic strategy can effectively restore cardiac efferocytosis after intravenous injection, thereby alleviating the inflammatory response, ultimately preserving cardiac function. This therapy focuses on inhibiting the initiation and promoting active resolution of inflammation, providing new insights for immune-regulatory therapy.
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