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Formulation, characterization, and evaluation of curcumin-loaded ginger-derived nanovesicles for anti-colitis activity.

Shengjie Huang, Min Zhang, Xiaoge Li, Jierong Pei, Zhirong Zhou et al.
Other Journal of pharmaceutical analysis 2024 29 次引用
PubMed DOI
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Study Design

研究类型
Other
研究人群
DSS-induced UC mouse model
干预措施
Formulation, characterization, and evaluation of curcumin-loaded ginger-derived nanovesicles for anti-colitis activity. GDNV:CUR ratio 1:1
对照组
Free curcumin and GDNV alone
主要结局
Anti-colitis activity in DSS-induced UC mice
效应方向
Positive
偏倚风险
Unclear

Abstract

Plant-derived nanovesicles have gained attention given their similarity to mammalian exosomes and advantages such as low cost, sustainability, and tissue targeting. Thus, they hold promise for disease treatment and drug delivery. In this study, we proposed a time-efficient method, PEG 8000 combined with sucrose density gradient centrifugation to prepare ginger-derived nanovesicles (GDNVs). Subsequently, curcumin (CUR) was loaded onto GDNV by ultrasonic incubation. The optimum conditions for ginger-derived nanovesicles loaded with curcumin (CG) were ultrasound time of 3 min, a carrier-to-drug ratio (GDNV:CUR) of 1:1. The study achieved a high loading capacity (94.027% ± 0.094%) and encapsulation efficiency (89.300% ± 0.344%). Finally, the drugs' in vivo distribution and anti-colitis activity were investigated in mice. CG was primarily distributed in the colon after oral administration. Compared to CUR and GDNV, CG was superior in improving disease activity, colon length, liver and spleen coefficients, myeloperoxidase activity, and biochemical factor levels in ulcerative colitis (UC) mice. In addition, CG plays a protective role against UC by modulating serum metabolite levels and gut flora. In summary, our study demonstrated that GDNV can be used for CUR delivery with enhanced therapeutic potential.

简要概述

It is demonstrated that GDNV can be used for CUR delivery with enhanced therapeutic potential and plays a protective role against UC by modulating serum metabolite levels and gut flora.

Used In Evidence Reviews

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