金属纳米粒子的生物合成及其在抗炎药物治疗中的作用。

Q3 Pharmacology, Toxicology and Pharmaceutics
Meena Kurup, Mohan Kumar, Sambathkumar Ramanathan, Margret Chandira Rajappa
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引用次数: 0

摘要

背景:纳米科学和纳米技术不断开发出性能卓越的新型纳米材料,使其在医药应用中大放异彩。目前,致力于开发新型纳米药物、工业化学品和抗原的科研人员对金属纳米粒子的生物相容性越来越感兴趣。目的:以下综述讨论了金属生物共轭(银、金、氧化锌、二氧化钛和硒)纳米粒子的抗炎机制。目前的研究重点是纳米粒子制造技术和炎症反应:在 Scopus、Embase、Cochrane 和 PubMed 等多个数据库中进行了全面搜索。使用的检索词包括阿尔茨海默病、作用机制、神经炎症、肥大细胞对压力和神经炎症的反应。研究包括所有以英文发表的出版物:绿色合成纳米粒子能抑制 NF-B 和环氧化酶-2 通路,阻止促炎细胞因子的产生,并具有清除 ROS 的机制。此外,还简要讨论了具有抗炎特性(如稳定性和特异性靶向性)的金属纳米粒子:目前的研究重点是用作抗炎药物分子的金属纳米粒子,尽管纳米粒子在各个领域(医学、化学工程和农业)都有应用。纳米颗粒的表面积与体积比很大,这有助于它们穿透细胞膜,而且由于其牢固的配体结合能力,纳米颗粒已被用于炎症性病症的医学治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Biogenetic Synthesis of Metallic Nanoparticles and the Role they Play in the Anti-inflammatory Drug Treatment.

Background: Nanoscience and nanotechnology have resulted in the continuous development of new nanomaterials with remarkable properties that make them appealing for pharmaceutical applications. The biocompatibility of metallic nanoparticles is of increasing interest for research scientists currently working towards developing novel nano-based medicines, industrial chemicals, and antigens. There is also a particular interest in using them to counter mutations that up-regulate inflammation enhancers to produce a range of inflammation-related pathologies.

Aim: The following review discusses the anti-inflammatory mechanisms of metallic bioconjugated (silver, gold, zinc oxide, titanium dioxide, and selenium) nanoparticles. The current study focuses on nanoparticle manufacturing technologies and the inflammatory response.

Methodology: A thorough search was conducted in several databases, including Scopus, Embase, Cochrane, and PubMed. The search terms used included: Alzheimer's disease, mechanism of action, neuroinflammation, the reaction of Mast cells to stress and neuroinflammation. The study included all publications published in English.

Results: Green-synthesised nanoparticles can suppress the NF-B and cyclooxygenase-2 pathways, preventing the production of proinflammatory cytokines and ROS scavenging mechanisms. Metallic nanoparticles with anti-inflammatory properties, such as stability and specific targeting, have been briefly discussed.

Conclusion: The current research focuses on metallic nanoparticles employed as anti-inflammatory medication molecules, although nanoparticles have applications in various areas (medicine, chemical engineering, and agriculture). Nanoparticles have a large surface-to-volume ratio, which can help them to penetrate cell membranes, and because of their solid ligand-binding capabilities, nanoparticles have been used in the medical treatment of inflammatory pathologies.

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来源期刊
Current drug discovery technologies
Current drug discovery technologies Pharmacology, Toxicology and Pharmaceutics-Drug Discovery
CiteScore
3.70
自引率
0.00%
发文量
48
期刊介绍: Due to the plethora of new approaches being used in modern drug discovery by the pharmaceutical industry, Current Drug Discovery Technologies has been established to provide comprehensive overviews of all the major modern techniques and technologies used in drug design and discovery. The journal is the forum for publishing both original research papers and reviews describing novel approaches and cutting edge technologies used in all stages of drug discovery. The journal addresses the multidimensional challenges of drug discovery science including integration issues of the drug discovery process.
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