首页> 外文期刊>Molecular cancer therapeutics >Architectonics of phage-liposome nanowebs as optimized photosensitizer vehicles for photodynamic cancer therapy.
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Architectonics of phage-liposome nanowebs as optimized photosensitizer vehicles for photodynamic cancer therapy.

机译:噬菌体-脂质体纳米网的建筑学作为用于光动力癌症治疗的优化光敏剂载体。

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Filamentous M13 phage can be engineered to display cancer cell-targeting or tumor-homing peptides through phage display. It would be highly desirable if the tumor-targeting phage can also carry anticancer drugs to deliver them to the cancer cells. We studied the evolution of structures of the complexes between anionic filamentous M13 phage and cationic serum-stable liposomes that encapsulate the monomeric photosensitizer zinc naphthalocyanine. At specific phage-liposome ratios, multiple phage nanofibers and liposomes are interwoven into a "nanoweb." The chemical and biological properties of the phage-liposome nanoweb were evaluated for possible application in drug delivery. This study highlights the ability of phage-liposome nanowebs to serve as efficient carriers in the transport of photosensitizers to cancer cells.
机译:丝状M13噬菌体可以被工程化以通过噬菌体展示来展示靶向癌细胞或肿瘤归巢的肽。如果靶向肿瘤的噬菌体还可以携带抗癌药物以将其递送至癌细胞,则将是非常期望的。我们研究了包封单体光敏剂萘酞菁锌的阴离子丝状M13噬菌体与阳离子血清稳定脂质体之间复合物结构的演变。以特定的噬菌体-脂质体比例,将多个噬菌体纳米纤维和脂质体交织成“纳米网”。评估了噬菌体-脂质体纳米网的化学和生物学特性在药物递送中的可能应用。这项研究突出了噬菌体-脂质体纳米网在将光敏剂转运到癌细胞中作为有效载体的能力。

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