# Dimethyl itaconate ameliorates cognitive impairment induced by a high-fat diet via the gut-brain axis in mice

**Authors:** Wei Pan, Jinxiu Zhao, Jiacheng Wu, Daxiang Xu, Xianran Meng, Pengfei Jiang, Hongli Shi, Xing Ge, Xiaoying Yang, Minmin Hu, Peng Zhang, Renxian Tang, Nathan Nagaratnam, Kuiyang Zheng, Xu-Feng Huang, Yinghua Yu

PMC · DOI: 10.1186/s40168-023-01471-8 · Microbiome · 2023-02-21

## TL;DR

This study shows that dimethyl itaconate improves cognitive function in mice fed a high-fat diet by enhancing gut health and reducing brain inflammation.

## Contribution

This is the first study to demonstrate that dimethyl itaconate improves cognition via the gut-brain axis in high-fat diet-induced cognitive impairment.

## Key findings

- Dimethyl itaconate (DI) improved cognitive performance and synaptic plasticity in high-fat diet-fed mice.
- DI reduced gut inflammation and enhanced gut barrier function, including increasing propionate and butyrate levels.
- Fecal microbiome transplantation from DI-treated mice improved cognitive outcomes in recipient mice.

## Abstract

Gut homeostasis, including intestinal immunity and microbiome, is essential for cognitive function via the gut-brain axis. This axis is altered in high-fat diet (HFD)-induced cognitive impairment and is closely associated with neurodegenerative diseases. Dimethyl itaconate (DI) is an itaconate derivative and has recently attracted extensive interest due to its anti-inflammatory effect. This study investigated whether intraperitoneal administration of DI improves the gut-brain axis and prevents cognitive deficits in HF diet-fed mice.

DI effectively attenuated HFD-induced cognitive decline in behavioral tests of object location, novel object recognition, and nesting building, concurrent with the improvement of hippocampal RNA transcription profiles of genes associated with cognition and synaptic plasticity. In agreement, DI reduced the damage of synaptic ultrastructure and deficit of proteins (BDNF, SYN, and PSD95), the microglial activation, and neuroinflammation in the HFD-fed mice. In the colon, DI significantly lowered macrophage infiltration and the expression of pro-inflammatory cytokines (TNF-α, IL-1β, IL-6) in mice on the HF diet, while upregulating the expression of immune homeostasis-related cytokines (IL-22, IL-23) and antimicrobial peptide Reg3γ. Moreover, DI alleviated HFD-induced gut barrier impairments, including elevation of colonic mucus thickness and expression of tight junction proteins (zonula occludens-1, occludin). Notably, HFD-induced microbiome alteration was improved by DI supplementation, characterized by the increase of propionate- and butyrate-producing bacteria. Correspondingly, DI increased the levels of propionate and butyrate in the serum of HFD mice. Intriguingly, fecal microbiome transplantation from DI-treated HF mice facilitated cognitive variables compared with HF mice, including higher cognitive indexes in behavior tests and optimization of hippocampal synaptic ultrastructure. These results highlight the gut microbiota is necessary for the effects of DI in improving cognitive impairment.

The present study provides the first evidence that DI improves cognition and brain function with significant beneficial effects via the gut-brain axis, suggesting that DI may serve as a novel drug for treating obesity-associated neurodegenerative diseases.

Video Abstract

Video Abstract

The online version contains supplementary material available at 10.1186/s40168-023-01471-8.

## Linked entities

- **Proteins:** BDNF (brain derived neurotrophic factor), FYN (FYN proto-oncogene, Src family tyrosine kinase), DLG4 (discs large MAGUK scaffold protein 4), TNF (tumor necrosis factor), IL1B (interleukin 1 beta), IL6 (interleukin 6), IL22 (interleukin 22), IL37 (interleukin 37), REG3G (regenerating family member 3 gamma), si:ch73-61d6.3 (uncharacterized si:ch73-61d6.3)
- **Chemicals:** dimethyl itaconate (PubChem CID 69240), itaconate (PubChem CID 811), propionate (PubChem CID 104745), butyrate (PubChem CID 104775)
- **Species:** Mus musculus (taxon 10090)

## Full-text entities

- **Genes:** Il6 (interleukin 6) [NCBI Gene 16193] {aka Il-6}, Plcb4 (phospholipase C, beta 4) [NCBI Gene 18798] {aka A930039J07Rik, C230058B11Rik}, Tnf (tumor necrosis factor) [NCBI Gene 21926] {aka DIF, TNF-a, TNF-alpha, TNFSF2, TNFalpha, Tnfa}, Il1b (interleukin 1 beta) [NCBI Gene 16176] {aka IL-1beta, Il-1b}, Dlg4 (discs large MAGUK scaffold protein 4) [NCBI Gene 13385] {aka Dlgh4, PSD-95, PSD95, SAP90, SAP90A}, DLG4 (discs large MAGUK scaffold protein 4) [NCBI Gene 1742] {aka MRD62, PSD95, SAP-90, SAP90}, Actb (actin, beta) [NCBI Gene 11461] {aka Actx, E430023M04Rik, beta-actin}, Igh-V7183 (immunoglobulin heavy chain (V7183 family)) [NCBI Gene 16059] {aka B9-scFv, IgG, IgH, IgVH1(VSG), VH7183, VI24H}, Il23a (interleukin 23, alpha subunit p19) [NCBI Gene 83430] {aka IL-23, p19}, Mme (membrane metallo endopeptidase) [NCBI Gene 17380] {aka 6030454K05Rik, CALLA, CD10, NEP, SFE}, Iba1 (induction of brown adipocytes 1) [NCBI Gene 114737], BDNF (brain derived neurotrophic factor) [NCBI Gene 627] {aka ANON2, BULN2}, Il22 (interleukin 22) [NCBI Gene 50929] {aka IL-22, IL-22a, ILTIFa, If2b1, Iltif}, Tjp1 (tight junction protein 1) [NCBI Gene 21872] {aka ZO1}, Reg3g (regenerating islet-derived 3 gamma) [NCBI Gene 19695] {aka REG-3-gamma, reg III-gamma}, Ppp3ca (protein phosphatase 3, catalytic subunit, alpha isoform) [NCBI Gene 19055] {aka 2900074D19Rik, CN, Caln, Calna, CnA}, Slc18a2 (solute carrier family 18 (vesicular monoamine), member 2) [NCBI Gene 214084] {aka 1110037L13Rik, 9330105E13, Vmat2}, SYNM (synemin) [NCBI Gene 23336] {aka DMN, SYN}, Cd68 (CD68 antigen) [NCBI Gene 12514] {aka Lamp4, Scard1, gp110}, Kif5b (kinesin family member 5B) [NCBI Gene 16573] {aka Khc, Khcs, Kns1, Ukhc}, Bdnf (brain derived neurotrophic factor) [NCBI Gene 12064], Ocln (occludin) [NCBI Gene 18260] {aka Ocl}, jt (joined toes) [NCBI Gene 16473] {aka syn}
- **Diseases:** multiple sclerosis (MESH:D009103), neuroinflammation (MESH:D000090862), AD (MESH:D000544), memory impairment (MESH:D008569), glucose intolerance (MESH:D018149), immune dysfunction (MESH:D007154), damage to synaptic ultrastructure (MESH:D012183), Parkinson's disease (MESH:D010300), deficit of synaptic proteins (MESH:D009461), metabolic disorder (MESH:D008659), EAE (MESH:D004681), cognitive alteration (MESH:D003072), ultrastructure (MESH:C566368), neurodevelopmental disorders (MESH:D002658), gut microbiome disorder (MESH:C536735), gut dysbiosis (MESH:D064806), Neurodegenerative diseases (MESH:D019636), dementias (MESH:D003704), fungal keratitis (MESH:D009181), hyperinsulinemia (MESH:D006946), HF (MESH:D004620), gut dysfunction (MESH:C535334), insulin resistance (MESH:D007333), obese (MESH:D009765), intestinal damage (MESH:D007410), colonic inflammation (MESH:D007249),  (MESH:D060825)
- **Chemicals:** methanol (MESH:D000432), metronidazole (MESH:D008795), ampicillin (MESH:D000667), PVDF (MESH:C024865), cornstarch (MESH:D013213), EDTA (MESH:D004492), sodium citrate (MESH:D000077559), Itaconate (MESH:C005229), dopamine (MESH:D004298), SDS (MESH:D012967), acetone (MESH:D000096), DI (MESH:C518953), paraformaldehyde (MESH:C003043), salt (MESH:D012492), glucose (MESH:D005947), alcohol (MESH:D000438), Propionate (MESH:D011422), succinate (MESH:D019802), lard (MESH:C029310), Helium (MESH:D006371), uranyl acetate (MESH:C005460), epoxy resin (MESH:D004853), Oligo(dT) (MESH:C027903), PBS (MESH:D007854), water (MESH:D014867), fat (MESH:D005223), methionine (MESH:D008715), TRIzol (MESH:C411644), Cy3 (-), neomycin (MESH:D009355), carbohydrate (MESH:D002241), sucrose (MESH:D013395), osmium tetroxide (MESH:D009993), SCFA (MESH:D005232), paraffin (MESH:D010232), agarose (MESH:D012685), soybean oil (MESH:D013024), HF (MESH:D006195), glutaraldehyde (MESH:D005976), LPS (MESH:D008070), DAPI (MESH:C007293), vancomycin (MESH:D014640), butyrate (MESH:D002087), acetate (MESH:D000085), xylene (MESH:D014992), CO2 (MESH:D002245), ethanol (MESH:D000431), cellulose (MESH:D002482), Alcian blue (MESH:D000423), blood glucose (MESH:D001786), phosphate (MESH:D010710), polyacrylamide (MESH:C016679),  (MESH:D016207)
- **Species:** Lachnospiraceae (family) [taxon 186803], Rattus norvegicus (brown rat, species) [taxon 10116], Actinopterygii (fishes, superclass) [taxon 7898], Desulfovibrio (genus) [taxon 872], Bacteria Latreille et al. 1825 (Bacteria stick insect, genus) [taxon 629395], Lachnoclostridium (genus) [taxon 1506553], Saccharomyces cerevisiae (baker's yeast, species) [taxon 4932], Intestinimonas (genus) [taxon 1392389], Homo sapiens (human, species) [taxon 9606], Lactobacillus (genus) [taxon 1578], Glycine max (soybean, species) [taxon 3847], Oscillibacter (genus) [taxon 459786], Bacteroides (genus) [taxon 816], Desulfovibrionaceae (family) [taxon 194924], Desulfovibrionales (order) [taxon 213115], Mus musculus (house mouse, species) [taxon 10090], Oryctolagus cuniculus (domestic rabbit, species) [taxon 9986], Ruminiclostridium (genus) [taxon 1508657]
- **Cell lines:** S2 — Drosophila melanogaster (Fruit fly), Spontaneously immortalized cell line (CVCL_Z232), C57BL/6 — Mus musculus (Mouse), Transformed cell line (CVCL_C0MU), C57BL/6J — Mus musculus (Mouse), Transformed cell line (CVCL_C0MW), C57BL/ — Homo sapiens (Human), Burkitt lymphoma, Cancer cell line (CVCL_C152)

## Full text

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## Figures

7 figures with captions in the complete paper: https://tomesphere.com/paper/PMC9942412/full.md

## References

71 references — full list in the complete paper: https://tomesphere.com/paper/PMC9942412/full.md

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Source: https://tomesphere.com/paper/PMC9942412