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沉香提取物负载纳米胶囊的制备与表征及其对 RAW 264.7 细胞和斑马鱼胚胎的毒性和抗炎活性评价。

Fabrication and characterization of Agarwood extract-loaded nanocapsules and evaluation of their toxicity and anti-inflammatory activity on RAW 264.7 cells and in zebrafish embryos.

机构信息

International Institute for Halal Research and Training (INHART), International Islamic University Malaysia (IIUM), Kuala Lumpur, Malaysia.

Center for Drug Research and Development (CDRD), The British University in Egypt (BUE), Cairo, Egypt.

出版信息

Drug Deliv. 2021 Dec;28(1):2618-2633. doi: 10.1080/10717544.2021.2012307.

Abstract

has been traditionally used to treat several medical disorders including inflammation. However, the traditional claims of this plant as an anti-inflammatory agent has not been substantially evaluated using modern scientific techniques. The main objective of this study was to evaluate the anti-inflammatory effect of leaf extract (ALEX-M) and potentiate its activity through nano-encapsulation. The extract-loaded nanocapsules were fabricated using water-in-oil-in-water () emulsion method and characterized via multiple techniques including DLS, TEM, FTIR, and TGA. The toxicity and the anti-inflammatory activity of ALEX-M and the extract-loaded nanocapsules (ALEX-M-PNCs) were evaluated in-vitro on RAW 264.7 macrophages and on zebrafish embryos. The nanocapsules demonstrated spherical shape with mean particle diameter of 167.13 ± 1.24 nm, narrow size distribution (PDI = 0.29 ± 0.01), and high encapsulation efficiency (87.36 ± 1.81%). ALEX-M demonstrated high viability at high concentrations in RAW 264.7 cells and zebrafish embryos, however, ALEX-M-PNCs showed relatively higher cytotoxicity. Both free and nanoencapsulated extract expressed anti-inflammatory effects through significant reduction of the pro-inflammatory mediator nitric oxide (NO) production in LPS/IFNγ-stimulated RAW 264.7 macrophages and zebrafish embryos in a concentration-dependent manner. The findings highlight that ALEX-M can be recognized as a potential anti-inflammatory agent, and its anti-inflammatory activity can be potentiated by nano-encapsulation. Further studies are warranted toward investigation of the mechanistic and immunomodulatory roles of ALEX-M.

摘要

已被传统用于治疗多种医学疾病,包括炎症。然而,该植物作为抗炎剂的传统说法尚未通过现代科学技术进行实质性评估。本研究的主要目的是评估 叶提取物 (ALEX-M) 的抗炎作用,并通过纳米封装来增强其活性。使用油包水包水 () 乳液法制备负载提取物的纳米胶囊,并通过多种技术进行表征,包括 DLS、TEM、FTIR 和 TGA。在 RAW 264.7 巨噬细胞和斑马鱼胚胎上体外评价 ALEX-M 和负载提取物的纳米胶囊 (ALEX-M-PNCs) 的毒性和抗炎活性。纳米胶囊表现出球形,平均粒径为 167.13±1.24nm,粒径分布较窄 (PDI = 0.29±0.01),包封效率高 (87.36±1.81%)。ALEX-M 在 RAW 264.7 细胞和斑马鱼胚胎中高浓度时表现出高存活率,然而,ALEX-M-PNCs 表现出相对较高的细胞毒性。游离和纳米封装的提取物均通过 LPS/IFNγ 刺激的 RAW 264.7 巨噬细胞和斑马鱼胚胎中促炎介质一氧化氮 (NO) 产生的显著减少表现出抗炎作用,呈浓度依赖性。研究结果表明,ALEX-M 可被认为是一种有潜力的抗炎剂,其抗炎活性可以通过纳米封装来增强。需要进一步研究以探讨 ALEX-M 的作用机制和免疫调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d33/8676596/94774e567ca2/IDRD_A_2012307_F0001_C.jpg

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