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:Optimizing Adoptive Cell Therapy for Solid Tumors via Epigenetic Regulation of T-cell Destiny.
Optimizing Adoptive Cell Therapy for Solid Tumors via Epigenetic Regulation of T-cell Destiny.
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过继性细胞疗法(ACT)作为一种有前景的癌症治疗方法已经出现,但其在实体瘤中的应用面临肿瘤浸润不足和细胞功能障碍等挑战。据报道,组蛋白乙酰化在恢复肿瘤组织内T细胞功能方面发挥关键作用。在前期研究基础上,开发了一种新策略,即将G3C12和vorinostat(SAHA)两种药物共载入PLGA微球中形成G3C12+SAHA@PLGA,用于瘤内注射。G3C12肽通过调节IFN-γ的结合状态增强过继性T细胞向肿瘤部位的募集。而SAHA作为一种组蛋白去乙酰化酶抑制剂,可促进浸润T细胞的记忆表型并防止其向耗竭状态转变。这种协同策略有效增强了ACT在“冷”肿瘤模型(4T1)或“热”肿瘤模型(CT26)中的疗效。这些发现凸显了将表观遗传调控与募集信号相结合作为增强ACT治疗实体瘤疗效手段的潜力。
Adoptive cell therapy (ACT) emerged as a promising approach for cancer treatment, yet its application in solid tumors faced challenges such as inadequate tumor infiltration and cellular dysfunction. Histone acetylation is reported to play a crucial role in restoring T-cell function within tumor tissues. Building upon previous research, a novel strategy involving the co-loading of two drugs, G3C12 and vorinostat (SAHA), into PLGA microspheres to form G3C12+SAHA@PLGA is developed for intratumoral injection.
The G3C12 peptide enhances adoptive T-cell recruitment to the tumor site by modulating the binding state of IFN-γ. While SAHA, a histone deacetylase inhibitor, promotes memory phenotypes of infiltrating T-cells and prevents their transition to an exhausted state. This synergistic approach effectively augmentes the efficacy of ACT in the "cold" tumor model (4T1) or the "hot" tumor model (CT26).
These findings highlight the potential of combining epigenetic regulation with recruitment signaling as a means to enhance the therapeutic impact of ACT in treating solid tumors.
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