4.7 Article

Evidence that a deviation in the kynurenine pathway aggravates atherosclerotic disease in humans

期刊

JOURNAL OF INTERNAL MEDICINE
卷 289, 期 1, 页码 53-68

出版社

WILEY
DOI: 10.1111/joim.13142

关键词

atherosclerosis; inflammation; kynurenine pathway; IDO; kynurenic acid; aryl hydrocarbon receptor

资金

  1. Swedish Heart-Lung Foundation [20160229, 20170317, 20190549]
  2. Novo Nordisk Foundation [NNF15CC0018346]
  3. Karolinska Institute Cardiovascular Program Young Investigator Career Development Grant
  4. Swedish Research Council-Medicine [2016-02738]
  5. Stockholm County Council (ALF)
  6. Alexander S. Onassis Foundation
  7. Swedish HeartLung Foundation [20180244, 201602877, 20180247, 20180036]
  8. Swedish Research Council [2019-02027, 2017-01070]
  9. Uppdrag Besegra Stroke [P581/2011-123]
  10. Karolinska Institutet
  11. Foundation for Strategic Research
  12. European Commission
  13. Swedish Society for Medical Research [P13-0171]
  14. Stockholm County Council
  15. Sven and Ebba-Christina Hagberg foundation
  16. Tore Nilsson's foundation
  17. Magnus Bergvall's foundation
  18. Karolinska Institute research foundation
  19. Karolinska Institute doctoral education (KID) foundation
  20. Swedish Research Council [2016-02738] Funding Source: Swedish Research Council

向作者/读者索取更多资源

The study elucidates the potential role of the kynurenine pathway in human atherosclerosis through multiplatform analysis of tissue samples. It reveals that deviation in the kynurenine pathway is associated with an increased probability of developing symptomatic unstable atherosclerotic disease, with important implications for the regulation of vascular inflammation.
Background The metabolism of tryptophan (Trp) along the kynurenine pathway has been shown to carry strong immunoregulatory properties. Several experimental studies indicate that this pathway is a major regulator of vascular inflammation and influences atherogenesis. Knowledge of the role of this pathway in human atherosclerosis remains incomplete. Objectives In this study, we performed a multiplatform analysis of tissue samples,in vitroandin vivofunctional assays to elucidate the potential role of the kynurenine pathway in human atherosclerosis. Methods and results Comparison of transcriptomic data from carotid plaques and control arteries revealed an upregulation of enzymes within the quinolinic branch of the kynurenine pathway in the disease state, whilst the branch leading to the formation of kynurenic acid (KynA) was downregulated. Further analyses indicated that local inflammatory responses are closely tied to the deviation of the kynurenine pathway in the vascular wall. Analysis of cerebrovascular symptomatic and asymptomatic carotid stenosis data showed that the downregulation of KynA branch enzymes and reduced KynA production were associated with an increased probability of patients to undergo surgery due to an unstable disease.In vitro, we showed that KynA-mediated signalling through aryl hydrocarbon receptor (AhR) is a major regulator of human macrophage activation. Using a mouse model of peritoneal inflammation, we showed that KynA inhibits leukocyte recruitment. Conclusions We have found that a deviation in the kynurenine pathway is associated with an increased probability of developing symptomatic unstable atherosclerotic disease. Our study suggests that KynA-mediated signalling through AhR is an important mechanism involved in the regulation of vascular inflammation.

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