Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics
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Original Article|Updated:2022-02-22
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Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics
Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics
Chinese Journal of Integrative Medicine2022年28卷第2期 页码:130-137
Affiliations:
1.Department of Endocrinology, People's Hospital Affiliated to Fujian University of Traditional Chinese Medicine, Fuzhou (350004),China
2.Academy of Integrative Medicine, Fujian University of Traditional Chinese Medicine, Fuzhou (350122), China
Author bio:
Prof. HENG Xian-pei, E-mail: hengxianpei@hotmail.com
Funds:
the National Natural Science Foundation of China(81873213;81473550);the Natural Science Foundation of Fujian Province(2017J01213;2016J0146);the Innovation Fund of Medical Science of Fujian Province, China(2017-CX-42)
Xian-pei HENG, Zhi-ta WANG, Liang LI, 等. Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics[J]. Chinese Journal of Integrative Medicine, 2022,28(2):130-137.
Xian-pei HENG, Zhi-ta WANG, Liang LI, et al. Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics[J]. Chinese Journal of Integrative Medicine, 2022,28(2):130-137.
Xian-pei HENG, Zhi-ta WANG, Liang LI, 等. Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics[J]. Chinese Journal of Integrative Medicine, 2022,28(2):130-137. DOI: 10.1007/s11655-021-3337-2.
Xian-pei HENG, Zhi-ta WANG, Liang LI, et al. Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics[J]. Chinese Journal of Integrative Medicine, 2022,28(2):130-137. DOI: 10.1007/s11655-021-3337-2.
Mechanisms of Dangua Recipe in Improving Glycolipid Metabolic Disorders Based on Transcriptomics
To explore the mechanisms of Dangua Recipe (DGR) in improving glycolipid metabolism based on transcriptomics.
Methods:
2
Sprague-Dawley rats with normal glucose level were divided into 3 groups according to a random number table
including a conventional diet group (Group A)
a DGR group (Group B
high-calorie diet + 20.5 g DGR)
and a high-calorie fodder model group (Group C). After 12 weeks of intervention
the liver tissue of rats was taken. Gene sequence and transcriptional analysis were performed to identify the key genes related to glycolipid metabolism reflecting DGR efficacy
and then gene or protein validation of liver tissue were performed. Nicotinamide phosphoribosyl transferase (Nampt) and phosphoenolpyruvate carboxykinase (PEPCK) proteins in liver tissues were detected by enzyme linked immunosorbent assay
fatty acid synthase (FASN) protein was detected by Western blot
and fatty acid binding protein 5 (FABP5)-mRNA was detected by quantitative real-time polymerase chain reaction. Furthermore
the functional verification was performed on the diabetic model rats by Nampt blocker (GEN-617) injected in vivo. Hemoglobin A
1c
(HbA
1c
)
plasma total cholesterol and triglycerides were detected.
Results:
2
Totally
257 differentialdominant genes of Group A vs. Group C and 392 differential-dominant genes of Group B vs. Group C were found. Moreover
11 Gene Ontology molecular function terms and 7 Kyoto Encyclopedia of Genes and Genomes enrichment pathways owned by both Group A
vs
. Group C and Group C
vs
. Group B were confirmed. The liver tissue target validation showed that Nampt
FASN
PEPCK protein and FABP5-mRNA had the same changes consistent with transcriptome. The
in vivo
functional tests showed that GEN-617 increased body weight
HbA
1c
triglyceride and total cholesterol levels in the diabetic rats (
P
<
0.05 or
P
<
0.01); while all the above-mentioned levels (except triglyceride) were decreased significantly by GEN-617 combined with DGR intervention (
P
<
0.05 or
P
<
0.01).
Conclusion:
2
Nampt activation was one of the mechanisms about DGR regulating glycolipid metabolism.
关键词
Keywords
transcriptomicsDangua Recipeglycolipid metabolismNampttherapeutic targetChinese medicine
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