为肝细胞癌武装 GPC3 CAR-T 细胞:多少才足够,下一步是什么?
Armouring GPC3 CAR T cells for hepatocellular carcinoma: how much is enough and what comes next?
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Homologous-magnetic dual-targeted metal-organic framework to improve the Anti-hepatocellular carcinoma efficacy of PD-1 inhibitor.
Homologous-magnetic dual-targeted metal-organic framework to improve the Anti-hepatocellular carcinoma efficacy of PD-1 inhibitor.
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TIL(肿瘤浸润淋巴细胞)(TILs)的丰度不足和活性低下是PD-1抑制剂在肝细胞癌(HCC)治疗中疗效不佳的两个重要原因。丹参酮II A(TSA)和黄芪甲苷IV(As)联合给药可分别通过正常化肿瘤血管和降低免疫抑制因子水平来上调TILs的丰度和活性。为增强PD-1抗体的疗效,建立了一种具有同源肿瘤细胞膜(Hm)涂层的磁性金属有机框架(MOF)(Hm@TSA/As-MOF),用于将TSA和As共递送至HCC微环境中。Hm@TSA/As-MOF是一种球形纳米颗粒,具有16.13 wt%的高总载药量。Hm@TSA/As-MOF的Hm涂层和磁响应性提供了同源-磁性双靶向能力,使Hm@TSA/As-MOF能够抵消腹水肿瘤细胞带来的干扰并增强对实体瘤靶向的精确性。Hm涂层还使Hm@TSA/As-MOF能够逃逸巨噬细胞的免疫清除。HCC微环境可加速Hm@TSA/As-MOF中TSA和As的释放,从而上调TILs的丰度和活性以协同PD-1抗体抗HCC。
本研究提出了一种提高PD-1抑制剂治疗HCC疗效的纳米平台,为临床抗肿瘤免疫治疗提供了新途径。
The insufficient abundance and weak activity of tumour-infiltrating lymphocytes (TILs) are two important reasons for the poor efficacy of PD-1 inhibitors in hepatocellular carcinoma (HCC) treatment. The combined administration of tanshinone II A (TSA) and astragaloside IV (As) can up-regulate the abundance and activity of TILs by normalising tumour blood vessels and reducing the levels of immunosuppressive factors respectively. For enhancing the efficacy of PD-1 antibody, a magnetic metal-organic framework (MOF) with a homologous tumour cell membrane (Hm) coating (Hm@TSA/As-MOF) is established to co-deliver TSA&As into the HCC microenvironment.
Hm@TSA/As-MOF is a spherical nanoparticle and has a high total drug-loading capacity of 16. 13 wt%. The Hm coating and magnetic responsiveness of Hm@TSA/As-MOF provide a homologous-magnetic dual-targeting, which enable Hm@TSA/As-MOF to counteract the interference posed by ascites tumour cells and enhance the precision of targeting solid tumours.
Hm coating also enable Hm@TSA/As-MOF to evade immune clearance by macrophages. The release of TSA&As from Hm@TSA/As-MOF can be accelerated by HCC microenvironment, thereby up-regulating the abundance and activity of TILs to synergistic PD-1 antibody against HCC.
This study presents a nanoplatform to improve the efficacy of PD-1 inhibitors in HCC, providing a novel approach for anti-tumour immunotherapy in clinical practice.
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