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植物源硒纳米粒子的生物医学潜力:治疗和机制方面的综合评述。

Biomedical Potential of Plant-Based Selenium Nanoparticles: A Comprehensive Review on Therapeutic and Mechanistic Aspects.

机构信息

Department of Botany, PMAS Arid Agriculture University, Rawalpindi, Punjab 46300, Pakistan.

出版信息

Int J Nanomedicine. 2021 Jan 12;16:249-268. doi: 10.2147/IJN.S295053. eCollection 2021.

Abstract

Selenium nanoparticles (SeNPs) have advantages over other nanomaterials because of the promising role of selenium in the stabilization of the immune system and activation of the defense response. The use of SeNPs and their supplements not only have pharmacological significance but also boost and prepare the body's immune system to fight the pathogens. This review summarizes the recent progress in the biogenesis of plant-based SeNPs by using various plant species and the role of secondary metabolites on their biocompatible functioning. Phyto-synthesis of SeNPs results in the synthesis of nanomaterials of various, size, shape and biochemical nature and has advantages over other routine physical and chemical methods because of their biocompatibility, eco-friendly nature and in vivo actions. Unfortunately, the plant-based SeNPs failed to attain considerable attention in the pharmaceutical industry. However, a few studies were performed to explore the therapeutic potential of the SeNPs against various cancer cells, microbial pathogens, viral infections, hepatoprotective actions, diabetic management, and antioxidant approaches. Further, some of the selenium-based drug delivery systems are developed by engineering the SeNPs with the functional ligands to deliver drugs to the targeted sites. This review also provides up-to-date information on the mechanistic actions that the SeNPs adopt to achieve their designated tasks as it may help to develop precision medicine with customized treatment and healthcare for the ailing population.

摘要

硒纳米粒子(SeNPs)由于硒在稳定免疫系统和激活防御反应方面的有前景的作用,具有优于其他纳米材料的优势。使用 SeNPs 及其补充剂不仅具有药理学意义,而且还可以增强和准备身体的免疫系统以对抗病原体。本综述总结了利用各种植物物种生物合成基于植物的 SeNPs 的最新进展,以及次生代谢物对其生物相容性功能的作用。植物合成 SeNPs 导致各种大小、形状和生化性质的纳米材料的合成,并且由于其生物相容性、环保性质和体内作用,优于其他常规物理和化学方法。不幸的是,基于植物的 SeNPs 在制药行业未能引起相当大的关注。然而,已经进行了一些研究来探索 SeNPs 对各种癌细胞、微生物病原体、病毒感染、肝保护作用、糖尿病管理和抗氧化方法的治疗潜力。此外,一些基于硒的药物递送系统通过用功能配体工程化 SeNPs 来开发,以将药物递送到靶向部位。本综述还提供了有关 SeNPs 采用的机制作用的最新信息,因为这可能有助于开发针对特定患者的个性化治疗和医疗保健的精准医学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f808/7811472/ce741fdc9bb5/IJN-16-249-g0001.jpg

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