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多功能植物病毒纳米颗粒:癌症治疗的新兴策略。

Multifunctional plant virus nanoparticles: An emerging strategy for therapy of cancer.

机构信息

Department of Tissue Engineering and Biomaterials, School of Advanced Medical Sciences and Technologies, Hamadan University of Medical Sciences, Hamadan, Iran.

Dental Implants Research Center, Hamadan University of Medical Sciences, Hamadan, Iran.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2023 Nov-Dec;15(6):e1872. doi: 10.1002/wnan.1872. Epub 2022 Nov 30.

Abstract

Cancer therapy requires sophisticated treatment strategies to obtain the highest success. Nanotechnology is enabling, revolutionizing, and multidisciplinary concepts to improve conventional cancer treatment modalities. Nanomaterials have a central role in this scenario, explaining why various nanomaterials are currently being developed for cancer therapy. Viral nanoparticles (VNPs) have shown promising performance in cancer therapy due to their unique features. VNPs possess morphological homogeneity, ease of functionalization, biocompatibility, biodegradability, water solubility, and high absorption efficiency that are beneficial for cancer therapy applications. In the current review paper, we highlight state-of-the-art properties and potentials of plant viruses, strategies for multifunctional plant VNPs formulations, potential applications and challenges in VNPs-based cancer therapy, and finally practical solutions to bring potential cancer therapy one step closer to real applications. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease Nanotechnology Approaches to Biology > Nanoscale Systems in Biology Biology-Inspired Nanomaterials > Protein and Virus-Based Structures.

摘要

癌症治疗需要复杂的治疗策略才能获得最高的成功率。纳米技术正在实现、彻底改变和多学科的概念,以改善传统的癌症治疗方法。纳米材料在这种情况下起着核心作用,这也解释了为什么目前正在开发各种纳米材料用于癌症治疗。由于其独特的特性,病毒纳米颗粒 (VNPs) 在癌症治疗中显示出有前途的性能。VNPs 具有形态均匀性、易于功能化、生物相容性、生物降解性、水溶性和高吸收效率,有利于癌症治疗应用。在目前的综述论文中,我们强调了植物病毒的最新特性和潜力、多功能植物 VNPs 制剂的策略、VNPs 基癌症治疗的潜在应用和挑战,以及最后将潜在癌症治疗推向实际应用的实用解决方案。本文属于以下类别: 治疗方法和药物发现 > 肿瘤疾病的纳米医学 纳米技术在生物学中的应用 > 生物纳米系统 基于蛋白质和病毒的结构 > 生物学启发的纳米材料。

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