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The role of TMAO in renal interstitium and chronic kidney disease
Örebro University, School of Medical Sciences.
2024 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Chronic kidney disease (CKD) is defined by progressive kidney damage and loss of renal function over time. Its global prevalence in 2022 was more than 10% of the world’s population and this is steadily increasing. Several mouse and clinical studies found that trimethylamine N-oxide (TMAO), a uremic toxin generated through gut microbiota metabolism, is associated with CKD. However, these studies do not elucidate the role of TMAO in CKD at the cellular level. To fill this knowledge gap, this thesis investigates the role of TMAO in the renal tubulointerstitium and CKD. We found that TMAO promotes cell proliferation and collagen production in renal fibroblasts via PERK/Akt/mTOR pathway, NLRP3, and caspase-1 signaling and enhances TNF-α mediated proliferation of renal fibroblasts and collagen production via Akt/mTOR and ERK. Furthermore, TMAO enhances TNF-α-mediated secretion of inflammatory proteins known to be associated with kidney disease. In addition, we found that TMAO in proximal tubular cells decreases albumin uptake and megalin expression via PI3K and ERK signaling. The effect of TMAO on megalin was counteracted by candesartan, dapagliflozin, and enalaprilat, which are widely used anti-proteinuric drugs. In patients with CKD, we identified significant concentration differences and correlations between TMAO or its precursors and urine megalin, urine lysine, urine albumin and markers of tubular damage compared to healthy controls. The results of this thesis can form the basis of future research to further elucidate the contribution of TMAO to CKD pathogenesis and progress and to identify new therapeutic targets for CKD.

Place, publisher, year, edition, pages
Örebro: Örebro University , 2024. , p. 89
Series
Örebro Studies in Medicine, ISSN 1652-4063 ; 302
Keywords [en]
TMAO, chronic kidney disease, renal fibroblasts, proximal tubular cells, proliferation, collagen, fibrosis, inflammation, TNF-α, megalin, proximal tubular cells, albumin uptake, lysine, albuminuria
National Category
General Practice
Identifiers
URN: urn:nbn:se:oru:diva-116078ISBN: 9789175295961 (print)ISBN: 9789175295978 (electronic)OAI: oai:DiVA.org:oru-116078DiVA, id: diva2:1898520
Public defence
2024-12-02, Örebro universitet, Campus USÖ, Tidefeltsalen, Södra Grev Rosengatan 32, Örebro, 09:00 (English)
Opponent
Supervisors
Available from: 2024-09-17 Created: 2024-09-17 Last updated: 2024-11-25Bibliographically approved
List of papers
1. The Fibrotic Effects of TMAO on Human Renal Fibroblasts Is Mediated by NLRP3, Caspase-1 and the PERK/Akt/mTOR Pathway
Open this publication in new window or tab >>The Fibrotic Effects of TMAO on Human Renal Fibroblasts Is Mediated by NLRP3, Caspase-1 and the PERK/Akt/mTOR Pathway
2021 (English)In: International Journal of Molecular Sciences, ISSN 1661-6596, E-ISSN 1422-0067, Vol. 22, no 21, article id 11864Article in journal (Refereed) Published
Abstract [en]

Trimethylamine N-oxide (TMAO), a product of gut microbiota metabolism, has previously been shown to be implicated in chronic kidney disease. A high TMAO-containing diet has been found to cause tubulointerstitial renal fibrosis in mice. However, today there are no data linking specific molecular pathways with the effect of TMAO on human renal fibrosis. The aim of this study was to investigate the fibrotic effects of TMAO on renal fibroblasts and to elucidate the molecular pathways involved. We found that TMAO promoted renal fibroblast activation and fibroblast proliferation via the PERK/Akt/mTOR pathway, NLRP3, and caspase-1 signaling. We also found that TMAO increased the total collagen production from renal fibroblasts via the PERK/Akt/mTOR pathway. However, TMAO did not induce fibronectin or TGF-β1 release from renal fibroblasts. We have unraveled that the PERK/Akt/mTOR pathway, NLRP3, and caspase-1 mediates TMAO's fibrotic effect on human renal fibroblasts. Our results can pave the way for future research to further clarify the molecular mechanism behind TMAO's effects and to identify novel therapeutic targets in the context of chronic kidney disease.

Place, publisher, year, edition, pages
MDPI, 2021
Keywords
TMAO, chronic kidney disease, collagen, proliferation, renal fibroblasts
National Category
Clinical Medicine
Identifiers
urn:nbn:se:oru:diva-95420 (URN)10.3390/ijms222111864 (DOI)000720489400001 ()34769294 (PubMedID)2-s2.0-85118225277 (Scopus ID)
Note

Funding agency:

Faculty of Medicine and Health at Örebro University

Available from: 2021-11-15 Created: 2021-11-15 Last updated: 2025-02-18Bibliographically approved
2. TMAO enhances TNF-α mediated fibrosis and release of inflammatory mediators from renal fibroblasts
Open this publication in new window or tab >>TMAO enhances TNF-α mediated fibrosis and release of inflammatory mediators from renal fibroblasts
Show others...
2024 (English)In: Scientific Reports, E-ISSN 2045-2322, Vol. 14, no 1, article id 9070Article in journal (Refereed) Published
Abstract [en]

Trimethylamine-N-oxide (TMAO) is a gut microbiota-derived metabolite and TNF-α is proinflammatory cytokine, both known to be associated with renal inflammation, fibrosis and chronic kidney disease. However, today there are no data showing the combined effect of TMAO and TNF-α on renal fibrosis-and inflammation. The aim of this study was to investigate whether TMAO can enhance the inflammatory and fibrotic effects of TNF-α on renal fibroblasts. We found that the combination of TNF-α and TMAO synergistically increased fibronectin release and total collagen production from renal fibroblasts. The combination of TMAO and TNF-α also promoted increased cell proliferation. Both renal proliferation and collagen production were mediated through Akt/mTOR/ERK signaling. We also found that TMAO enhanced TNF-α mediated renal inflammation by inducing the release of several cytokines (IL-6, LAP TGF-beta-1), chemokines (CXCL-6, MCP-3), inflammatory-and growth mediators (VEGFA, CD40, HGF) from renal fibroblasts. In conclusion, we showed that TMAO can enhance TNF-α mediated renal fibrosis and release of inflammatory mediators from renal fibroblasts in vitro. Our results can promote further research evaluating the combined effect of TMAO and inflammatory mediators on the development of kidney disease.

Place, publisher, year, edition, pages
Nature Publishing Group, 2024
Keywords
Fibrosis, Inflammation, Renal fibroblasts, TMAO, TNF-α
National Category
Clinical Medicine
Identifiers
urn:nbn:se:oru:diva-113326 (URN)10.1038/s41598-024-58084-w (DOI)001207737100003 ()38643262 (PubMedID)2-s2.0-85190774511 (Scopus ID)
Funder
Örebro University
Available from: 2024-04-22 Created: 2024-04-22 Last updated: 2026-03-19Bibliographically approved
3. TMAO Suppresses Megalin Expression and Albumin Uptake in Human Proximal Tubular Cells Via PI3K and ERK Signaling
Open this publication in new window or tab >>TMAO Suppresses Megalin Expression and Albumin Uptake in Human Proximal Tubular Cells Via PI3K and ERK Signaling
2022 (English)In: International Journal of Molecular Sciences, ISSN 1661-6596, E-ISSN 1422-0067, Vol. 23, no 16, article id 8856Article in journal (Refereed) Published
Abstract [en]

Trimethylamine-N-oxide (TMAO) is a uremic toxin, which has been associated with chronic kidney disease (CKD). Renal tubular epithelial cells play a central role in the pathophysiology of CKD. Megalin is an albumin-binding surface receptor on tubular epithelial cells, which is indispensable for urine protein reabsorption. To date, no studies have investigated the effect of TMAO on megalin expression and the functional properties of human tubular epithelial cells. The aim of this study was first to identify the functional effect of TMAO on human renal proximal tubular cells and second, to unravel the effects of TMAO on megalin-cubilin receptor expression. We found through global gene expression analysis that TMAO was associated with kidney disease. The microarray analysis also showed that megalin expression was suppressed by TMAO, which was also validated at the gene and protein level. High glucose and TMAO was shown to downregulate megalin expression and albumin uptake similarly. We also found that TMAO suppressed megalin expression via PI3K and ERK signaling. Furthermore, we showed that candesartan, dapagliflozin and enalaprilat counteracted the suppressive effect of TMAO on megalin expression. Our results may further help us unravel the role of TMAO in CKD development and to identify new therapeutic targets to counteract TMAOs effects.

Place, publisher, year, edition, pages
MDPI, 2022
Keywords
TMAO, chronic kidney disease, megalin, albumin uptake, proximal tubular cells
National Category
Cell and Molecular Biology Clinical Medicine
Identifiers
urn:nbn:se:oru:diva-100799 (URN)10.3390/ijms23168856 (DOI)000845866200001 ()36012119 (PubMedID)2-s2.0-85137126271 (Scopus ID)
Note

Funding agency:

Faculty of Medicine and Health at Örebro University

Available from: 2022-08-23 Created: 2022-08-23 Last updated: 2025-02-18Bibliographically approved
4. Correlations between Trimethylamine-N-oxide, megalin, lysine and markers of tubular damage in chronic kidney disease
Open this publication in new window or tab >>Correlations between Trimethylamine-N-oxide, megalin, lysine and markers of tubular damage in chronic kidney disease
Show others...
(English)Manuscript (preprint) (Other academic)
National Category
General Practice
Identifiers
urn:nbn:se:oru:diva-117249 (URN)
Available from: 2024-11-07 Created: 2024-11-07 Last updated: 2024-11-07Bibliographically approved

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Kapetanaki, Stefania

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