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High or low temperature extraction, which is more conducive to Triphala against chronic pharyngitis? - 17/06/21

Doi : 10.1016/j.biopha.2021.111787 
Fei Ran a, 1 , Xue Han b, 1 , Xuan Deng a , Zhenfeng Wu c , Haozhou Huang a , Ming Qiu a , Jiao Song a , Xichuan Wei a , Dingkung Zhang a , Yu Wang d , Sanhu Fan e , Junzhi Lin f, ⁎ , Li Han a, ⁎
a State Key Laboratory of Southwest Chinese Medicine Resources, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China 
b School of Pharmacy, Chengdu Medical College, Chengdu 610500, China 
c State key Laboratory of Innovation Medicine and High Efficiency and Energy Saving Pharmaceutical Equipment, Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China 
d Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, China 
e Sanajon Pharmaceutical Group, Chengdu 610000, China 
f Central Laboratory, Hospital of Chengdu University of Traditional Chinese Medicine, Chengdu 610072, China 

⁎ Correspondence to: TCM Regulating Metabolic Diseases Key Laboratory of Sichuan Province, Hospital of Chengdu University of Traditional Chinese Medicine, No. 37 Road Shierqiao, Chengdu 610072, China. TCM Regulating Metabolic Diseases Key Laboratory of Sichuan Province, Hospital of Chengdu University of Traditional Chinese Medicine No. 37 Road Shierqiao Chengdu 610072 China ⁎⁎ Correspondence to: Chengdu University of Traditional Chinese Medicine, No. 1066 Avenue, Liutai, Chengdu 611137, China. Chengdu University of Traditional Chinese Medicine No. 1066 Avenue, Liutai Chengdu 611137 China

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Abstract

Objective

Explore the effects of high-temperature reflux extraction and low-temperature decompressing inner ebullition on Triphala 's chemical composition and anti-chronic pharyngitis activity.

Methods

The network pharmacology was used to analyze the material basis, targets and pathways of Triphala for chronic pharyngitis. HPLC were used to compare the fingerprint profile and content of components between the two extracts. The antioxidant and anti-chronic pharyngitis activities of the two extracts were compared by DPPH assay and ammonia induced chronic pharyngitis model in rats.

Results

The network pharmacology results showed that the active ingredients of Triphala for chronic pharyngitis are epigallocatechin-3-gallate, (+)-catechin, epicatechin, epicatechin gallate, (+)-gallocatechin, quercetin, luteolin, leucodelphinidin and other flavonoids; phenolic acids such as gallic acid and ellagic acid; alkaloids such as ellipticine, cheilanthifoline; hydrolyzed tannins such as corilagin and chebulic acid. The high-temperature reflux extract and the low-temperature decompressing inner ebullition extract have extremely significant differences in the fingerprint profile. Among them, the content of gallic acid, ellagic acid, chebulic acid, catechin, epicatechin, corilagin, quercetin, and epicatechin gallate in the reflux extract is 1.1–5.3 times as much as decompressing inner ebullition extract. The free radical scavenging ability of reflux extract is significantly stronger than that of decompression extract (p  <  0.01), and it has a repairing effect on pharyngeal mucosal damage (reducing keratinization or hyperplasia of mucosal epithelium, reducing inflammatory cell infiltration and bleeding), and reducing IL-1β (P<0.05), IL-6 (p<0.05), TNF-α overexpression ability is stronger than the decompressing inner ebullition extract.

Conclusions

gallic acid, ellagic acid, chebulic acid, catechin, epicatechin, corilagin and epicatechin gallate are the basic aglycones or oligomers of tannin. High temperature reflux extraction can significantly promote the occurrence of the hydrolysis of tannins and significantly increases the content of these components.Therefore, its anti-chronic pharyngitis activity is enhanced. It is suggested that high temperature reflux extraction should be used in the treatment of chronic pharyngitis.

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Graphical Abstract




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Highlights

•
Chronic pharyngitis (CP) is a prevalent health problem.
•
Triphala has significant therapeutic effect on chronic pharyngitis.
•
The extraction temperature has influence on the anti-chronic pharyngitis activity of Triphala .
•
High temperature promotes the hydrolysis of hydrolyzed tannins in Triphala to generate active compounds.

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Abbreviations : CP, WHO, GI, RE, DIE, SD, TCMSP, OB, DL, ADME, BATMAN-TCM, SEA, TTD, CTD, HPO, ROS, IC50, GO, BP, MF, CC, IL6, TNF, AKT1, STAT3

Keywords :  Triphala , Decompressing inner ebullition, Reflux extraction, Chronic pharyngitis


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