绿色合成金属和金属氧化物颗粒的抗炎特性和安全性:综述文章

Ream Nayal , Diana Mejjo , Mohammad Yaser Abajy
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引用次数: 0

摘要

非甾体抗炎药、糖皮质激素、氨基水杨酸盐和免疫抑制剂是当今最常用的抗炎药物,但它们都有相当大的副作用。纳米粒子(NPs),尤其是金属 NPs,在开发更安全的抗炎药物方面越来越有吸引力。由于传统的 NP 合成方法受到不环保化学品和高能耗的限制,替代性金属和金属氧化物 NPs 绿色合成方法(包括植物介导的合成)因其植物化学物质可减少金属前体并稳定生成的 NPs 而引起了研究人员的兴趣。这种方法环保、无毒、成本效益高。本综述旨在重点介绍有关不同植物介导的具有抗炎特性的金属和金属氧化物纳米粒子绿色合成的抗炎活性的研究,涵盖2017年以来的论文。根据研究结果,大多数测试的纳米粒子都是AgNPs。值得注意的是,很少有研究对这些纳米粒子的稳定性和安全性进行评估。值得注意的是,一些 NPs 比植物提取物本身和标准物质具有更强的抗炎活性。一些抗炎测试仅限于体外测试。显然,关于这些 NPs 的安全性问题及其活性剂量的确定还缺乏相关信息。因此,需要对这些金属和金属氧化物 NPs 进行进一步的体外和体内药理学和毒理学研究,以确定其药用用途并避免意外的不良后果。在确定最佳活性剂量后,还迫切需要测试这些 NPs 在各种剂型中的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Anti inflammatory properties and safety of green synthesized metal and metal oxide nanoparticles: A review article

Anti inflammatory properties and safety of green synthesized metal and metal oxide nanoparticles: A review article

NSAIDs, glucocorticoids, aminosalicylates, and immunosuppressants are nowadays the most commonly used anti-inflammatory medicines, although they have cosiderable side effects. Nanoparticles (NPs), notably metallic NPs, have gained appeal in the development of safer anti-inflammatory drugs. Because conventional NP synthesis methods are limited by environmentally unfriendly chemicals and high energy consumption, alternative green synthesis of metallic and metal oxide NPs, including plant-mediated synthesis, has piqued the interest of researchers due to phytochemicals that can reduce metal precursors and stabilize the generated NPs. This method is an eco-friendly, non-toxic, and cost-effective. This review aimed to highlight studies concerningthe anti-inflammatory activity of different plant-mediated green synthesis of metal and metal oxide nanoparticles with anti-inflammatory properties covering papers since 2017. According to the findings, the majority of the NPs tested were AgNPs. Noticeably, few investigations were conducted to assess the stability and safety of these NPs. Remarkably, someNPs exert more anti-inflammatory activity than plant extract itself and the standard. Some anti-inflammatory tests were limited to in vitro testing. Obviously, there is a lack of information regarding the safety issues of these NPs and the determination of their active doses. Thus, further invitro and invivo pharmacological and toxicological studiesare required for these metal and metal oxide NPs to identify medicinal uses and avoid unintended adverse consequences. It is also urgent to test the stability of these NPs in various dosage forms after determining the optimal active dose.

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