# Chlorogenic acid improves glucose tolerance, lipid metabolism, inflammation and microbiota composition in diabetic db/db mice

**Authors:** Yongwang Yan, Qing Li, Ling Shen, Kangxiao Guo, Xu Zhou

PMC · DOI: 10.3389/fendo.2022.1042044 · Frontiers in Endocrinology · 2022-11-17

## TL;DR

Chlorogenic acid improves diabetes symptoms in mice by enhancing glucose control, lipid metabolism, and gut microbiota.

## Contribution

This study demonstrates that chlorogenic acid improves hepatic lipid metabolism and gut microbiota in diabetic mice.

## Key findings

- Chlorogenic acid reduced body weight and improved glucose tolerance and insulin resistance in diabetic mice.
- Chlorogenic acid altered gene expression related to lipid metabolism and inflammation in the liver.
- Chlorogenic acid improved gut microbiota diversity and abundance of specific bacterial genera.

## Abstract

Chronic and acute chlorogenic acid (CGA) can improve glucose tolerance (GT) and insulin sensitivity (IS). However, whether acute administration of CGA has beneficial effects on hepatic lipid metabolism and cecal microbiota composition remains unclear.

In the current study, diabetic db/db mice were administered CGA or metformin, and db/m mice were used as controls to explore the effects of CGA on hepatic lipid metabolism, including fatty acid oxidation and transportation and triglyceride (TG) lipolysis and synthesis. Moreover, alterations in the inflammatory response and oxidative stress in the liver and gut microbe composition were evaluated.

The results showed that CGA decreased body weight and improved glucose tolerance and insulin resistance, and these effects were similar to those of metformin. CGA decreased hepatic lipid content by increasing the expression of CPT1a (carnitine palmitoyltransferase 1a), ACOX1 (Acyl-CoA oxidase 1), ATGL (adipose triglyceride lipase), and HSL (hormone-sensitive lipase) and decreasing that of MGAT1 (monoacylglycerol O-acyltransferase 1), DGAT1 (diacylglycerol O-acyltransferase), DGAT2, CD36, and FATP4 (fatty acid transport protein 4). Additionally, CGA restored the expression of inflammatory genes, including TNF-α (tumor necrosis factor-alpha), IL-1β (interleukin-1beta), IL-6, and IL-10, and genes encoding antioxidant enzymes, including SOD1 (superoxide dismutases 1), SOD2 (superoxide dismutases 2), and GPX1 (glutathione peroxidase 1). Furthermore, CGA improved the bacterial alpha and beta diversity in the cecum. Moreover, CGA recovered the abundance of the phylum Bacteroidetes and the genera Lactobacillus, Blautia, and Enterococcus.

CGA can improve the antidiabetic effects, and microbes may critically mediate these beneficial effects.

## Linked entities

- **Genes:** CPT1A (carnitine palmitoyltransferase 1A) [NCBI Gene 1374], ACOX1 (acyl-CoA oxidase 1) [NCBI Gene 51], PNPLA2 (patatin like domain 2, triacylglycerol lipase) [NCBI Gene 57104], LIPE (lipase E, hormone sensitive type) [NCBI Gene 3991], MGAT1 (alpha-1,3-mannosyl-glycoprotein 2-beta-N-acetylglucosaminyltransferase) [NCBI Gene 4245], DGAT1 (diacylglycerol O-acyltransferase 1) [NCBI Gene 8694], DGAT2 (diacylglycerol O-acyltransferase 2) [NCBI Gene 84649], CD36 (CD36 molecule (CD36 blood group)) [NCBI Gene 948], SLC27A4 (solute carrier family 27 member 4) [NCBI Gene 10999], TNF (tumor necrosis factor) [NCBI Gene 7124], IL1B (interleukin 1 beta) [NCBI Gene 3553], IL6 (interleukin 6) [NCBI Gene 3569], IL10 (interleukin 10) [NCBI Gene 3586], SOD1 (superoxide dismutase 1) [NCBI Gene 6647], SOD2 (superoxide dismutase 2) [NCBI Gene 6648], GPX1 (glutathione peroxidase 1) [NCBI Gene 2876]
- **Chemicals:** chlorogenic acid (PubChem CID 1794427), metformin (PubChem CID 4091)
- **Diseases:** diabetes (MONDO:0005015)
- **Species:** Mus musculus (taxon 10090)

## Full-text entities

- **Genes:** Lipe (lipase E, hormone sensitive type) [NCBI Gene 16890] {aka 4933403G17Rik, HSL, REH}, Prkaa2 (protein kinase AMP-activated catalytic subunit alpha 2) [NCBI Gene 78975] {aka Ampk, Ampka2}, Cpt1a (carnitine palmitoyltransferase 1a, liver) [NCBI Gene 12894] {aka C730027G07, CPTI, Cpt1}, Lipe (lipase E, hormone sensitive type) [NCBI Gene 25330] {aka HSL, REH}, Il1b (interleukin 1 beta) [NCBI Gene 16176] {aka IL-1beta, Il-1b}, Il6 (interleukin 6) [NCBI Gene 16193] {aka Il-6}, Slc27a4 (solute carrier family 27 (fatty acid transporter), member 4) [NCBI Gene 26569] {aka ACSVL4, FATP4}, Gpt (glutamic pyruvic transaminase, soluble) [NCBI Gene 76282] {aka 1300007J06Rik, 2310022B03Rik, ALT, ALT1, Gpt-1, Gpt1}, Slc17a5 (solute carrier family 17 (anion/sugar transporter), member 5) [NCBI Gene 235504] {aka 4631416G20Rik, 4732491M05, AST, ISSD, NSD, SD}, Acox1 (acyl-Coenzyme A oxidase 1, palmitoyl) [NCBI Gene 11430] {aka AOX, Acox, D130055E20Rik, Paox}, Pnpla2 (patatin-like phospholipase domain containing 2) [NCBI Gene 66853] {aka 0610039C21Rik, 1110001C14Rik, Atgl, TTS-2.2}, Mogat1 (monoacylglycerol O-acyltransferase 1) [NCBI Gene 68393] {aka 0610030A14Rik, 1110064N14Rik, Dgat2l, Dgat2l1, MGAT1, WI1-2612I11.1}, Il10 (interleukin 10) [NCBI Gene 16153] {aka CSIF, If2a, Il-10}, Gpx1 (glutathione peroxidase 1) [NCBI Gene 14775] {aka CGPx, GPx-1, GSHPx-1, Gpx}, Dnase1 (deoxyribonuclease I) [NCBI Gene 13419] {aka DNaseI, Dnl1}, Dgat2 (diacylglycerol O-acyltransferase 2) [NCBI Gene 67800] {aka 0610010B06Rik, ARAT, DGAT-2}, Sod2 (superoxide dismutase 2, mitochondrial) [NCBI Gene 20656] {aka MnSOD, Sod-2}, Sod1 (superoxide dismutase 1, soluble) [NCBI Gene 20655] {aka B430204E11Rik, Cu/Zn-SOD, CuZnSOD, Ipo-1, Ipo1, SODC}, Tnf (tumor necrosis factor) [NCBI Gene 21926] {aka DIF, TNF-a, TNF-alpha, TNFSF2, TNFalpha, Tnfa}, Dgat1 (diacylglycerol O-acyltransferase 1) [NCBI Gene 13350] {aka ARAT, D15Ertd23e, Dgat}
- **Diseases:** obese (MESH:D009765), glucose and lipid metabolism disorders (MESH:D052439), fatty change (MESH:D005234), metabolic syndrome (MESH:D024821), hyperlipidemia (MESH:D006949), overweight (MESH:D050177), hyperglycemia (MESH:D006943), cardiovascular diseases (MESH:D002318), GT (MESH:D018149), IS (MESH:D007333), type 2 diabetes mellitus (MESH:D003924), colitis (MESH:D003092), hepatic inflammatory (MESH:D007249), intestinal dysfunction (MESH:D007410), metabolic (MESH:D008659), diabetes (MESH:D003920), cervical dislocation (MESH:D002575), NAFLD (MESH:D065626)
- **Species:** Dubosiella (genus) [taxon 1937008], Mus musculus (house mouse, species) [taxon 10090], Romboutsia (genus) [taxon 1501226], Robinsoniella (genus) [taxon 588605], Akkermansia (genus) [taxon 239934], Mucispirillum (genus) [taxon 248038], Blautia (genus) [taxon 572511], Escherichia coli (E. coli, species) [taxon 562], Lactobacillus (genus) [taxon 1578], Rikenellaceae (family) [taxon 171550], Enterococcus (genus) [taxon 1350], Faecalibaculum (genus) [taxon 1729679], Bifidobacterium (genus) [taxon 1678], Homo sapiens (human, species) [taxon 9606], Nicotiana tabacum (American tobacco, species) [taxon 4097], Rattus norvegicus (brown rat, species) [taxon 10116]

## Full text

_Full body text omitted from this summary view._ Fetch the complete paper as Markdown: https://tomesphere.com/paper/PMC9714618/full.md

## Figures

5 figures with captions in the complete paper: https://tomesphere.com/paper/PMC9714618/full.md

## References

51 references — full list in the complete paper: https://tomesphere.com/paper/PMC9714618/full.md

---
Source: https://tomesphere.com/paper/PMC9714618