CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Nanovesicles loaded with a TGF-β receptor 1 inhibitor overcome immune resistance to potentiate cancer immunotherapy.
Nanovesicles loaded with a TGF-β receptor 1 inhibitor overcome immune resistance to potentiate cancer immunotherapy.
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免疫排斥型肿瘤(IETs)由于内在和适应性免疫抵抗,对当前免疫治疗反应有限。本研究发现,抑制转化生长因子-β(TGF-β)受体1可缓解肿瘤纤维化,从而促进肿瘤浸润T淋巴细胞的募集。随后,构建了一种纳米囊泡,用于肿瘤特异性共递送TGF-β抑制剂(LY2157299,LY)和光敏剂焦脱镁叶绿酸a(PPa)。负载LY的纳米囊泡抑制肿瘤纤维化,促进T淋巴细胞向瘤内浸润。此外,与钆离子螯合的PPa能够进行荧光、光声和磁共振三模态成像引导的光动力治疗,在雌性小鼠的临床前癌症模型中诱导肿瘤细胞免疫原性死亡并激发抗肿瘤免疫。这些纳米囊泡进一步用含溴结构域蛋白4抑制剂(即JQ1)的亲脂性前药进行修饰,以消除肿瘤细胞的程序性死亡配体1表达并克服适应性免疫抵抗。本研究可能为基于纳米药物的IETs免疫治疗铺平道路。
The immune-excluded tumors (IETs) show limited response to current immunotherapy due to intrinsic and adaptive immune resistance. In this study, it is identified that inhibition of transforming growth factor-β (TGF-β) receptor 1 can relieve tumor fibrosis, thus facilitating the recruitment of tumor-infiltrating T lymphocytes.
Subsequently, a nanovesicle is constructed for tumor-specific co-delivery of a TGF-β inhibitor (LY2157299, LY) and the photosensitizer pyropheophorbide a (PPa). The LY-loaded nanovesicles suppress tumor fibrosis to promote intratumoral infiltration of T lymphocytes.
Furthermore, PPa chelated with gadolinium ion is capable of fluorescence, photoacoustic and magnetic resonance triple-modal imaging-guided photodynamic therapy, to induce immunogenic death of tumor cells and elicit antitumor immunity in preclinical cancer models in female mice. These nanovesicles are further armored with a lipophilic prodrug of the bromodomain-containing protein 4 inhibitor (i. e. , JQ1) to abolish programmed death ligand 1 expression of tumor cells and overcome adaptive immune resistance.
This study may pave the way for nanomedicine-based immunotherapy of the IETs.
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