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Total records found : 2
Simplified search suggestions : Eissa Manar
12020
article
Aquilaria species as potential anti-inflammatory agents–a review on in vitro and in vivo studies
Eissa, Manar A.
In the current review article, the studies conducted to investigate the anti-inflammatory activity of Aquilaria species are compiled and summarized. Since inflammation is the underlying cause of many diseases, the encounter of effective and safe biomedical anti-inflammatory compounds has become the focus of recent researches. Aquilaria species were known to possess a wide spectrum of pharmacological activities, among which anti-inflammatory activity has been reported in many in vitro and in vivo studies. Chromones, sesquiterpenoids, flavonoids, benzophenones and phorbol esters were the major anti-inflammatory compounds isolated from Aquilaria species. The objective of this review paper is to extend researches on the anti-inflammatory activity of different parts of Aquilaria species and support their future use in natural pharmaceutical preparations for the treatment of inflammation-associated conditions.   ..

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22021
article
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
Eissa Manar
Aquilaria malaccensis 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 Aquilaria malacensis leaf extract (ALEX-M) and potentiate its activity through nano-encapsulation. The extract-loaded nanocapsules were fabricated using water-in-oil-in-water (w/o/w) 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 in-vivo 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.....

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