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自组装蛋白在抗癌纳米药物设计中的应用。

Self-Assembling Proteins for Design of Anticancer Nanodrugs.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Chem Asian J. 2020 May 4;15(9):1405-1419. doi: 10.1002/asia.202000135. Epub 2020 Mar 31.

Abstract

Inspired by the diverse protein-based structures and materials in organisms, proteins have been expected as promising biological components for constructing nanomaterials toward various applications. In numerous studies protein-based nanomaterials have been constructed with the merits of abundant bioactivity and good biocompatibility. However, self-assembly of proteins as a dominant approach in constructing anticancer nanodrugs has not been reviewed. Here, we provide a comprehensive account of the role of protein self-assembly in fabrication, regulation, and application of anticancer nanodrugs. The supramolecular strategies, building blocks, and molecular interactions of protein self-assembly as well as the properties, functions, and applications of the resulting nanodrugs are discussed. The applications in chemotherapy, radiotherapy, photodynamic therapy, photothermal therapy, gene therapy, and combination therapy are included. Especially, manipulation of molecular interactions for realizing cancer-specific response and cancer theranostics are emphasized. By expounding the impact of molecular interactions on therapeutic activity, rational design of highly efficient protein-based nanodrugs for precision anticancer therapy can be envisioned. Also, the challenges and perspectives in constructing nanodrugs based on protein self-assembly are presented to advance clinical translation of protein-based nanodrugs and next-generation nanomedicine.

摘要

受生物体内多样化的蛋白质结构和材料的启发,蛋白质有望成为构建各种应用纳米材料的有前途的生物成分。在许多研究中,基于蛋白质的纳米材料已经通过丰富的生物活性和良好的生物相容性得到了构建。然而,蛋白质自组装作为构建抗癌纳米药物的主要方法尚未得到综述。在这里,我们全面阐述了蛋白质自组装在抗癌纳米药物制备、调控和应用中的作用。讨论了蛋白质自组装的超分子策略、构建基块和分子相互作用以及所得纳米药物的性质、功能和应用。包括化疗、放疗、光动力疗法、光热疗法、基因治疗和联合治疗的应用。特别强调了通过操纵分子相互作用实现癌症特异性反应和癌症治疗的重要性。通过阐述分子相互作用对治疗活性的影响,可以设想用于精确抗癌治疗的高效基于蛋白质的纳米药物的合理设计。还提出了基于蛋白质自组装构建纳米药物所面临的挑战和展望,以推进基于蛋白质的纳米药物和下一代纳米医学的临床转化。

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