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天然产物的纳米载体的发展。

The development of nanocarriers for natural products.

机构信息

The Key Laboratory of Microcosmic Syndrome Differentiation, Yunnan University of Chinese Medicine, Kunming, Yunnan, China.

Yunnan Key Laboratory of Integrated Traditional Chinese and Western Medicine for Chronic Disease in Prevention and Treatment, Yunnan University of Chinese Medicine, Kunming, Yunnan, China.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2024 May-Jun;16(3):e1967. doi: 10.1002/wnan.1967.

Abstract

Natural bioactive compounds from plants exhibit substantial pharmacological potency and therapeutic value. However, the development of most plant bioactive compounds is hindered by low solubility and instability. Conventional pharmaceutical forms, such as tablets and capsules, only partially overcome these limitations, restricting their efficacy. With the recent development of nanotechnology, nanocarriers can enhance the bioavailability, stability, and precise intracellular transport of plant bioactive compounds. Researchers are increasingly integrating nanocarrier-based drug delivery systems (NDDS) into the development of natural plant compounds with significant success. Moreover, natural products benefit from nanotechnological enhancement and contribute to the innovation and optimization of nanocarriers via self-assembly, grafting modifications, and biomimetic designs. This review aims to elucidate the collaborative and reciprocal advancement achieved by integrating nanocarriers with botanical products, such as bioactive compounds, polysaccharides, proteins, and extracellular vesicles. This review underscores the salient challenges in nanomedicine, encompassing long-term safety evaluations of nanomedicine formulations, precise targeting mechanisms, biodistribution complexities, and hurdles in clinical translation. Further, this study provides new perspectives to leverage nanotechnology in promoting the development and optimization of natural plant products for nanomedical applications and guiding the progression of NDDS toward enhanced efficiency, precision, and safety. This article is categorized under: Therapeutic Approaches and Drug Discovery > Emerging Technologies Nanotechnology Approaches to Biology > Nanoscale Systems in Biology.

摘要

天然生物活性化合物具有显著的药理活性和治疗价值。然而,大多数植物生物活性化合物的开发受到溶解度和稳定性低的限制。传统的药物剂型,如片剂和胶囊,只能部分克服这些限制,限制了它们的疗效。随着纳米技术的最新发展,纳米载体可以提高植物生物活性化合物的生物利用度、稳定性和精确的细胞内运输。研究人员越来越多地将基于纳米载体的药物传递系统(NDDS)整合到具有显著成功的天然植物化合物的开发中。此外,天然产物受益于纳米技术的增强,并通过自组装、接枝修饰和仿生设计为纳米载体的创新和优化做出贡献。这篇综述旨在阐明将纳米载体与植物产品(如生物活性化合物、多糖、蛋白质和细胞外囊泡)结合时所取得的协同和互惠进展。这篇综述强调了纳米医学中的突出挑战,包括纳米医学配方的长期安全性评估、精确的靶向机制、生物分布复杂性以及临床转化的障碍。此外,本研究提供了新的视角,利用纳米技术促进天然植物产品的开发和优化,用于纳米医学应用,并指导 NDDS 向提高效率、精度和安全性的方向发展。本文属于以下类别: 治疗方法和药物发现 > 新兴技术 生物学中的纳米技术方法 > 生物学中的纳米尺度系统。

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