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植物来源的外泌体在治疗性纳米医学中的应用,为精准医学铺平道路。

Plant-derived exosomes in therapeutic nanomedicine, paving the path toward precision medicine.

机构信息

Department of Pharmacy and Institutes for Systems Genetics, Center for High Altitude Medicine, Frontiers Science Center for Disease-related Molecular Network, West China Hospital, Sichuan University, Chengdu, Sichuan, 610041, China; West China Tianfu Hospital, Sichuan University, Chengdu, Sichuan, 610218, China.

Department of Pharmaceutics and Pharmaceutical Technology, L.M College of Pharmacy, Ahmedabad 380009, Gujrat, India.

出版信息

Phytomedicine. 2024 Dec;135:156087. doi: 10.1016/j.phymed.2024.156087. Epub 2024 Sep 26.

Abstract

BACKGROUND

Plant-derived exosomes (PDEs), are nanoscale vesicles secreted by multivesicular bodies, play pivotal roles in critical biological processes, including gene regulation, cell communication, and immune defense against pathogens. Recognized for their potential health-promoting properties, PDEs are emerging as innovative components in functional nutrition, poised to enhance dietary health benefits.

PURPOSE

To describe the efficacy of PDEs in nanoform and their application as precision therapy in many disorders.

STUDY DESIGN

The design of this review was carried out in PICO format using randomized clinical trials and research articles based on in vivo and in vitro studies.

METHODS

All the relevant clinical and research studies conducted on plant-derived nanovesicle application and efficacy were included, as retrieved from PubMed and Cochrane, after using specific search terms. This review was performed to determine PDEs' efficacy as nanomedicine and precision therapy. Sub-group analysis and primary data were included to determine the relationship with PDEs.

RESULT

PDEs are extracted from plant materials using sophisticated techniques like precipitation, size exclusion, immunoaffinity capture, and ultracentrifugation, encapsulating vital molecules such as lipids, proteins, and predominantly microRNAs. Although their nutritional impact may be minimal in small quantities, the broader application of PDEs in biomedicine, particularly as vehicles for drug delivery, underscores their significance. They offer a promising strategy to improve the bioavailability and efficacy of therapeutic agents carrying nano-bioactive substances that exhibit anti-inflammatory, antioxidant, cardioprotective, and anti-cancer activities.

CONCLUSION

PDEs enhance the therapeutic potency of plant-derived phytochemicals, supporting their use in disease prevention and therapy. This comprehensive review explores the multifaceted aspects of PDEs, including their isolation methods, biochemical composition, health implications, and potential to advance medical and nutritional interventions.

摘要

背景

植物来源的外泌体(PDEs)是由多泡体分泌的纳米级囊泡,在包括基因调控、细胞通讯和免疫防御病原体在内的关键生物学过程中发挥关键作用。由于其具有潜在的促进健康的特性,PDEs 作为功能性营养的创新成分而出现,有望增强饮食的健康益处。

目的

描述 PDEs 在纳米形式下的功效及其在许多疾病中的精准治疗应用。

研究设计

本综述的设计采用 PICO 格式,使用随机临床试验和基于体内和体外研究的研究文章。

方法

所有关于植物源性纳米囊泡应用和功效的相关临床和研究均包括在内,这些研究是从 PubMed 和 Cochrane 中检索到的,使用了特定的搜索词。本综述旨在确定 PDEs 作为纳米医学和精准治疗的功效。包括亚组分析和原始数据,以确定与 PDEs 的关系。

结果

PDEs 是使用沉淀、尺寸排阻、免疫亲和捕获和超速离心等复杂技术从植物材料中提取出来的,封装了重要的分子,如脂质、蛋白质和主要的 microRNAs。虽然它们的营养影响在少量时可能微不足道,但 PDEs 在生物医学中的更广泛应用,特别是作为药物递送的载体,凸显了它们的重要性。它们提供了一种有前途的策略,可以提高携带纳米生物活性物质的治疗剂的生物利用度和功效,这些物质具有抗炎、抗氧化、心脏保护和抗癌活性。

结论

PDEs 增强了植物来源的植物化学物质的治疗效力,支持将其用于疾病预防和治疗。本综述全面探讨了 PDEs 的多方面,包括它们的分离方法、生化组成、健康影响以及在医学和营养干预方面的潜在应用。

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