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:Enhancing Adoptive Cell Therapy by T Cell Loading of SHP2 Inhibitor Nanocrystals before Infusion.
Enhancing Adoptive Cell Therapy by T Cell Loading of SHP2 Inhibitor Nanocrystals before Infusion.
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尽管过继性T细胞疗法在癌症治疗中已被广泛研究,但其应答仍然有限,主要原因是与细胞植入不良、肿瘤浸润和结合不足以及缺乏靶点相关的免疫功能障碍。
此外,治疗性T细胞的改造往往复杂且昂贵。在此,我们提出一种策略,将SHP099(一种变构SHP2抑制剂)负载于T细胞中,以增强T细胞的治疗效果。将SHP099远程负载到经三精氨酸基序修饰的脂质纳米颗粒中,导致SHP099在脂质囊泡内形成纳米晶体,并实现了高负载效率以及SHP099纳米晶体在T细胞内的延长滞留。负载SHP099的细胞能够持续抑制PD-1/PD-L1信号传导,并提高T细胞的细胞杀伤活性。
我们在小鼠模型中显示,具有肿瘤归巢能力的T细胞可携带该货物循环,与全身给药的脂质纳米颗粒相比,改善了其在肿瘤中的蓄积。在已建立的实体瘤模型中,过继转移的负载SHP099的T细胞通过有效抑制PD-1/PD-L1检查点信号,在所有接受治疗的小鼠中诱导了肿瘤完全清除,并产生了针对肿瘤再攻击的持久免疫记忆。
我们证明,T细胞疗法与SHP2抑制的联合是一种有前景的治疗策略,而该脂质纳米晶体平台可推广为一种有前景的用于T细胞负载免疫调节药物的方法。
Whereas adoptive T cell therapy has been extensively studied for cancer treatment, the response is still limited primarily due to immune dysfunction related to poor cell engraftment, tumor infiltration and engagement, and lack of a target.
In addition, the modification of therapeutic T cells often suffers from being complex and expensive.
Here, we present a strategy to load T cells with SHP099, an allosteric SHP2 inhibitor, to enhance the therapeutic efficacy of the T cells. Remote-loading of SHP099 into lipid nanoparticles decorated with triarginine motifs resulted in nanocrystal formation of SHP099 inside the lipid vesicles and allowed high loading efficiency and prolonged retention of SHP099 nanocrystals within T cells. Cell-loaded SHP099 enabled sustained inhibition of the PD-1/PD-L1 signaling and increased cytolytic activity of the T cells.
We show in a mouse model that tumor-homing T cells can circulate with the cargos, improving their tumor accumulation compared to systemically administered lipid nanoparticles. On an established solid tumor model, adoptively transferred SHP099 loaded T cells induced complete tumor eradication and durable immune memory against tumor rechallenging on all treated mice by effectively inhibiting the PD-1/PD-L1 checkpoint signal.
We demonstrate that the combination of T cell therapy with SHP2 inhibition is a promising therapeutic strategy, and the lipid nanocrystal platform could be generalized as a promising approach for T cell loading of immunomodulatory drugs.
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