Literature DB >> 29890481

Study on the stability control strategy of Triphala solution based on the balance of physical stability and chemical stabilities.

Hao-Zhou Huang1, Sheng-Yu Zhao1, Xiu-Mei Ke2, Jun-Zhi Lin3, Shu-Sen Huang4, Run-Chun Xu1, Hong-Yan Ma1, Yi Zhang5, Li Han6, Ding-Kun Zhang7.   

Abstract

Triphala is a well-known prescription in Indian Ayurveda and TCM medicine for its great effect on gingivitis and hyperlipidemia. However, its solution is unstable for the containing of excessive polyphenol, leading to the production of sediment in the short term and the decrease of efficacy. Based on the analysis of sediment formation, a novel control strategy is proposed. To conduct the analysis, the sediment formation was recorded for a consecutive five days. The changes in the composition of the supernatant and the sediment were studied by the HPLC profile analysis. The main components of the sediment were identified as corilagin, ellagic acid and gallic acid, and the amount of ellagic acid sediment increased with the storage time. Then, with a series of pH status adjustments of the Triphala solution, the physical and chemical stabilities were acquired by Turbiscan and HPLC respectively. The results showed that as the pH value increased, so did the physical stability, but the particle size and TSI of the association decreased. While the fingerprint of chemical profile similarity decreased, so did the chemical stability. Combining physical and chemical stability parameters, an equilibrium point was found out. When the pH value was adjusted to 5.0, both the physical and chemical stabilities were better: the verification test showed that the sedimentation inhibition rates on the 3rd, 5th,10th and15th days were 41%, 55%, 41%, and 23%, respectively. This manuscript provided a new control strategy that will pique pharmaceutical and food development engineers' interest and trigger research ideas controlling the quality of decoction.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Chemical stability; Control strategy; Ellagic acid; Physical stability; Sediment; Triphala

Mesh:

Substances:

Year:  2018        PMID: 29890481     DOI: 10.1016/j.jpba.2018.06.008

Source DB:  PubMed          Journal:  J Pharm Biomed Anal        ISSN: 0731-7085            Impact factor:   3.935


  7 in total

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