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首页> 外文期刊>ACS applied materials & interfaces >Light/pH-Triggered Biomimetic Red Blood Cell Membranes Camouflaged Small Molecular Drug Assemblies for Imaging-Guided Combinational Chemo-Photothermal Therapy
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Light/pH-Triggered Biomimetic Red Blood Cell Membranes Camouflaged Small Molecular Drug Assemblies for Imaging-Guided Combinational Chemo-Photothermal Therapy

机译:光/ pH-触发的仿生红细胞膜伪装小分子药物组合用于成像引导的组合化学化疗 - 光热疗法

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摘要

Nanoparticles camouflaged by red blood cell (RBC) membranes have attracted considerable attention owing to reservation of structure of membrane and surface proteins, endowing prominent cell-specific function including biocompatibility, prolonged circulation lifetime, and reduced reticular endothelial system (RES) uptake ability. Considering the drawbacks of carrier-free nanomedicine including the serious drug burst release, poor stability, and lack of immune escape function, herein we developed and fabricated a novel RBC membranes biomimetic combinational therapeutic system by enveloping the small molecular drug coassemblies of 10-hydroxycamptothecin (10-HCPT) and indocyanine green (ICG) in the RBC membranes for prolonged circulation, controlled drug release, and synergistic chemo-photothermal therapy (PTT). The self-reorganized RBC5@ICG-HCPT nanoparticles (NPs) exhibited a diameter of similar to 450 nm with core-shell structure, high drug payload (similar to 92 wt %), and reduced RES uptake function. Taking advantage of the stealth functionality of RBC membranes, RBC5@ICG-HCPT NPs remarkably enhanced the accumulation at the tumor sites by passive targeting followed by cellular endocytosis. Upon the stimuli of near-infrared laser followed by acidic stimulation, RBCs@ICG-HCPT NPs showed exceptional instability by heat-mediated membrane disruption and pH change, thereby triggering the rapid disassembly and accelerated drug release. Consequently, compared with individual treatment, RBCs@ICG-HCPT NPs under dual-stimuli accomplished highly efficient apoptosis in cancer cells and remarkable ablation of tumors by chemo-PTT. This biomimetic nanoplatform based on carrier-free, small molecular drug coassemblies integrating imaging capacity as a promising theranostic system provides potential for cancer diagnosis and combinational therapy.
机译:由于红色血细胞(RBC)膜伪装的纳米粒子由于膜和表面蛋白的结构预留,赋予了突出的细胞特异性功能,包括生物相容性,延长的循环寿命和减少的网状内皮系统(RES)摄取能力。考虑到包括严重药物破裂释放,稳定性差和免疫逃逸功能的缺陷纳米杂种的缺点,在本文中,我们通过包围10-羟基清除素蛋白的小分子药物共存( RBC膜中的10-HCPT)和吲哚菁绿(ICG)延长循环,受控药物释放和协同化学光热疗法(PTT)。自重组的RBC5 @ ICG-HCPT纳米颗粒(NPS)表现出类似于450nm的直径,具有核壳结构,高药物有效载荷(类似于92wt%)和降低的res摄取功能。利用RBC膜的隐形功能,RBC5 @ ICG-HCPT NP通过被动靶向显着增强了肿瘤部位的积累,然后是细胞内吞作用。在近红外激光的刺激后,酸性刺激后,RBCS @ ICG-HCPT NP通过热介导的膜破坏和pH变化显示出优异的不稳定性,从而引发快速拆卸和加速的药物释放。因此,与个体治疗相比,RBCS @ ICG-HCPT NPS在双刺激下完成了癌细胞中的高效凋亡,并通过化学-PTT显着消融肿瘤。这种基于无载载体的小分子药物共组合的仿真纳米纳米纳米片,其作为有前途的治疗系统将成像能力集成为癌症诊断和组合治疗的潜力。

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