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Vinegar-processed Curcuma phaeocaulis promotes anti-angiogenic activity and reduces toxicity in zebrafish and rat models

Authors :
Lei Wang
Zongping Zhu
Yenchit Techadamrongsin
Rui Li
Jia-Li Yu
Tianhui Gao
Boonjai Limsila
Wan Liao
Jiao Chen
Chaomei Fu
Yi Chen
Source :
Pharmaceutical Biology, Vol 59, Iss 1, Pp 410-417 (2021), Pharmaceutical Biology, article-version (VoR) Version of Record
Publication Year :
2021
Publisher :
Informa UK Limited, 2021.

Abstract

Context Processing with vinegar could enhance the efficacy and reduce the toxicity of Curcuma phaeocaulis Valeton. (Zingiberaceae), a Chinese herbal medicine with anti-inflammatory and antitumor activities. Objective This study investigated the vinegar processing effects by evaluating anti-angiogenic effect and toxicity of C. phaeocaulis through zebrafish and rat models. Materials and methods Zebrafish embryos (AB and FLk-GFP strain) were applied to evaluate toxicity, cardiotoxicity and anti-angiogenic activity of volatile oil, and water decoction of the raw and vinegar-processed C. phaeocaulis. Meanwhile, a blood stasis syndrome rat model was applied to study the toxicity by measuring the ovarian and uterine coefficient. Results Curcuma phaeocaulis volatile oil and its vinegar-processed products in zebrafish had an LC50 of 67.315 and 95.755 μg/mL, respectively. Curcuma phaeocaulis water decoction and its vinegar-processed products had an LC50 of 161.440 and 206.239 μg/mL, respectively. The toxicity of vinegar-processed products was significantly lower than the raw, and the development characteristic of zebrafish embryos at different times confirmed these results. The volatile oil of vinegar-processed products could inhibit the growth of intersegmental blood vessels at the dose of 20 μg/mL, while the raw materials did not exhibit such effect at the same concentration. The rat experiment also confirmed that the volatile oil could reduce toxicity of ovarian and uterine. Discussion and conclusions The study indicated that processing using vinegar could decrease toxicity and increase anti-angiogenic activity of C. phaeocaulis, which could be applied for clinical treatment. Further in-depth study on the synergism and detoxification mechanism of vinegar processing technology is needed.

Details

ISSN :
17445116 and 13880209
Volume :
59
Database :
OpenAIRE
Journal :
Pharmaceutical Biology
Accession number :
edsair.doi.dedup.....0edb774ba12094089f5230c96c367631