Flavonoids contribute most to discriminating aged Guang Chenpi (Citrus reticulata ‘Chachi’) by spectrum‐effect relationship analysis between LC‐Q‐Orbitrap/MS fingerprint and ameliorating spleen deficiency activity

Author:

Sun Xiaoming1234ORCID,Deng Haidan5,Shan Baojun5,Shan Yunqi1,Huang Jiaying1,Feng Xinshu1,Tang Xiaomin2345,Ge Yuewei5,Liao Peiran2345,Yang Quan2345

Affiliation:

1. School of Pharmacy Guangdong Pharmaceutical University Guangzhou China

2. Key Laboratory of Production & Development of Cantonese Medicinal Materials State Administration of Traditional Chinese Medicine Guangzhou China

3. Guangdong Provincial Research Center on Good Agricultural Practice & Comprehensive Agricultural Development Engineering Technology of Cantonese Medicinal Materials Guangzhou China

4. Comprehensive Experimental Station of Guangzhou Chinese Material Medica, China Agriculture Research System (CARS‐21‐16) Guangzhou China

5. School of Traditional Chinese Medicine Guangdong Pharmaceutical University Guangzhou China

Abstract

AbstractTo further explore the mechanism of “the longer storage time, the better bioactivity” of aged Guang Chenpi, the dry pericarp of Citrus reticulata ‘Chachi’ (CRC), a series of activity assessments were performed on spleen deficiency mice. The constituents in CRC with different storage years were analyzed by LC‐Q‐Orbitrap/MS. A total of 53 compounds were identified, and CRC stored for more than 5 years showed higher flavonoid content, especially that of polymethoxyflavones. Anti‐spleen deficiency bioactivity analysis among various CRC with different storage years showed aged CRC (stored for more than 3 years) could significantly alleviate fatigue and depression behaviors much better, increase D‐xylose and gastrin secretion, and upregulate the expression of the linking protein occludin in the colon walls. Results from 16S rDNA sequencing showed that aged CRC could downregulate the abundance of Enterococcus, Gemmata, Citrobacter, Escherichia_Shigella, and Klebsiella, which were significantly overrepresented in the model group. Bacteroides, Muribaculum, Alloprevotella, Paraprevotella, Alistipes, Eisenbergiella, and Colidextribacter were downregulated in the model group but enriched in the CRC groups. At last, the spectrum‐effect relationship analysis indicated that flavonoids such as citrusin III, homoeriodictyol, hesperidin, nobiletin, and isosinensetin in aged CRC showed the highest correlation with better activity in ameliorating spleen deficiency by regulating gut microbiota. Flavonoids contribute most to discriminating aged CRC and could disclose the basis of “the longer storage time, the better bioactivity” of aged Guang Chenpi.

Publisher

Wiley

Subject

Food Science

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