Study on Anti-Constipation Effects of Hemerocallis citrina Baroni through a Novel Strategy of Network Pharmacology Screening.
Yuxuan LiangXiaoyi WeiRui RenXuebin ZhangXiyao TangJinglan YangXiaoqun WeiRiming HuangGary HardimanYuanming SunHong WangPublished in: International journal of molecular sciences (2023)
Daylily ( Hemerocallis citrina Baroni) is an edible plant widely distributed worldwide, especially in Asia. It has traditionally been considered a potential anti-constipation vegetable. This study aimed to investigate the anti-constipation effects of daylily from the perspective of gastro-intestinal transit, defecation parameters, short-chain organic acids, gut microbiome, transcriptomes and network pharmacology. The results show that dried daylily (DHC) intake accelerated the defecation frequency of mice, while it did not significantly alter the levels of short-chain organic acids in the cecum. The 16S rRNA sequencing showed that DHC elevated the abundance of Akkermansia , Bifidobacterium and Flavonifractor , while it reduced the level of pathogens (such as Helicobacter and Vibrio ). Furthermore, a transcriptomics analysis revealed 736 differentially expressed genes (DEGs) after DHC treatment, which are mainly enriched in the olfactory transduction pathway. The integration of transcriptomes and network pharmacology revealed seven overlapping targets ( Alb , Drd2 , Igf2 , Pon1 , Tshr , Mc2r and Nalcn ). A qPCR analysis further showed that DHC reduced the expression of Alb, Pon1 and Cnr1 in the colon of constipated mice. Our findings provide a novel insight into the anti-constipation effects of DHC.
Keyphrases
- single cell
- irritable bowel syndrome
- poor prognosis
- high fat diet induced
- binding protein
- metabolic syndrome
- escherichia coli
- type diabetes
- risk assessment
- signaling pathway
- climate change
- pi k akt
- cystic fibrosis
- long non coding rna
- weight loss
- skeletal muscle
- transcription factor
- combination therapy
- abdominal pain
- wastewater treatment
- insulin resistance
- genome wide analysis