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基于自组装肽的纳米药物:分子设计、合成、功能化及靶向肿瘤生物成像与生物治疗

Self-Assembled Peptide-Based Nanodrugs: Molecular Design, Synthesis, Functionalization, and Targeted Tumor Bioimaging and Biotherapy.

作者信息

Luan Xin, Kong Hao, He Peng, Yang Guozheng, Zhu Danzhu, Guo Lei, Wei Gang

机构信息

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao, 266071, P. R. China.

Institute of Biomedical Engineering, College of Life Science, Qingdao University, Qingdao, 266071, P. R. China.

出版信息

Small. 2023 Jan;19(3):e2205787. doi: 10.1002/smll.202205787. Epub 2022 Nov 28.

Abstract

Functional nanomaterials as nanodrugs based on the self-assembly of inorganics, polymers, and biomolecules have showed wide applications in biomedicine and tissue engineering. Ascribing to the unique biological, chemical, and physical properties of peptide molecules, peptide is used as an excellent precursor material for the synthesis of functional nanodrugs for highly effective cancer therapy. Herein, recent progress on the design, synthesis, functional regulation, and cancer bioimaging and biotherapy of peptide-based nanodrugs is summarized. For this aim, first molecular design and controllable synthesis of peptide nanodrugs with 0D to 3D structures are presented, and then the functional customization strategies for peptide nanodrugs are presented. Then, the applications of peptide-based nanodrugs in bioimaging, chemotherapy, photothermal therapy (PTT), and photodynamic therapy (PDT) are demonstrated and discussed in detail. Furthermore, peptide-based drugs in preclinical, clinical trials, and approved are briefly described. Finally, the challenges and potential solutions are pointed out on addressing the questions of this promising research topic. This comprehensive review can guide the motif design and functional regulation of peptide nanomaterials for facile synthesis of nanodrugs, and further promote their practical applications for diagnostics and therapy of diseases.

摘要

基于无机物、聚合物和生物分子自组装的功能纳米材料作为纳米药物,已在生物医学和组织工程中展现出广泛应用。由于肽分子具有独特的生物学、化学和物理性质,肽被用作合成用于高效癌症治疗的功能纳米药物的优良前体材料。本文综述了基于肽的纳米药物在设计、合成、功能调控以及癌症生物成像和生物治疗方面的最新进展。为此,首先介绍了具有零维到三维结构的肽纳米药物的分子设计和可控合成,然后介绍了肽纳米药物的功能定制策略。接着,详细展示并讨论了基于肽的纳米药物在生物成像、化疗、光热疗法(PTT)和光动力疗法(PDT)中的应用。此外,还简要描述了处于临床前、临床试验阶段以及已获批的基于肽的药物。最后,针对这一有前景的研究课题所涉及的问题,指出了挑战及潜在解决方案。这一全面综述可为肽纳米材料的基序设计和功能调控提供指导,以便轻松合成纳米药物,并进一步推动其在疾病诊断和治疗中的实际应用。

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