用于癌症靶向和药物递送的仿生纳米颗粒

Sahil Malhotra
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摘要

细胞膜工程纳米颗粒(NPs)在抗癌药物递送方面显示出巨大的潜力。原则上,任何类型的细胞的细胞膜都可以被加工成纯化的细胞膜,这些细胞膜可以自组装形成稳定和高鲁棒性的纳米囊泡。这些纳米囊泡保留了宿主细胞的脂质双层结构,并且在自上而下的方法中保留了许多表面生物标志物和蛋白质。有趣的是,纳米囊泡表现出长血浆循环和明显的肿瘤特异性结合,这在很大程度上表明了它们的仿生特性。许多开创性的研究已经证明了它们能够封装不同化学复杂性的不同化疗药物和光敏剂,并以触发方式释放它们。此外,新的NPs系统已被开发用于癌症免疫治疗。本文综述了细胞膜源性纳米囊泡在不同形式的癌症治疗中的一些重要研究和应用,以及它们作为个性化纳米药物的发展潜力。
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Biomimetic Nanoparticles for Cancer Targeting and Drug Delivery
0Cellular membrane engineered nanoparticles (NPs) have shown immense potential for anti-cancer drug delivery applications. In principle, cell membrane of any type of cells can be processed to obtain purified cellular membrane which can self-assemble to form stable and highly robust nanovesicles. These nanovesicles retain lipid-bilayer architecture of host’s cells and much of the surface biomarkers and proteins are conserved during top-down approach. Interestingly, nanovesicles have exhibited long plasma circulation and appreciable tumour specific binding, which is largely suggestive of their biomimetic properties. Many pioneer studies have demonstrated their ability to encapsulate different chemotherapeutic agents and photosensitizers of varied chemical complexities, and releasing them in a triggered fashion. Additionally, the novel NPs system has been developed for cancer immunotherapy. The review discusses some of the important research and applications of cellular membrane derived nanovesicles for different forms of cancer therapy and their potential to be developed as personalized nanomedicine.
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