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Could the kynurenine pathway be the key missing piece of Myalgic Encephalomyelitis/Chronic Fatigue Syndrome (ME/CFS) complex puzzle?

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posted on 2022-10-25, 00:57 authored by B Kavyani, BA Lidbury, R Schloeffel, Paul FisherPaul Fisher, Daniel MissailidisDaniel Missailidis, Sarah AnnesleySarah Annesley, M Dehhaghi, Benjamin Heng, GJ Guillemin
Myalgic Encephalomyelitis/Chronic Fatigue Syndrome (ME/CFS) is a complex and debilitating disease with a substantial social and economic impact on individuals and their community. Despite its importance and deteriorating impact, progresses in diagnosis and treatment of ME/CFS is limited. This is due to the unclear pathophysiology of the disease and consequently lack of prognostic biomarkers. To investigate pathophysiology of ME/CFS, several potential pathologic hallmarks have been investigated; however, these studies have failed to report a consistent result. These failures in introducing the underlying reason for ME/CFS have stimulated considering other possible contributing mechanisms such as tryptophan (TRP) metabolism and in particular kynurenine pathway (KP). KP plays a central role in cellular energy production through the production of nicotinamide adenine dinucleotide (NADH). In addition, this pathway has been shown to mediate immune response and neuroinflammation through its metabolites. This review, we will discuss the pathology and management of ME/CFS and provide evidence pertaining KP abnormalities and symptoms that are classic characteristics of ME/CFS. Targeting the KP regulation may provide innovative approaches to the management of ME/CFS.

Funding

B.K is supported by an International PhD scholarship from Macquarie University. G.J.G is supported by the National Health and Medical Research Council (NHMRC), the Handbury foundation, the Mason Foundation, PANDIS.org, and Macquarie University. B.H is supported by the NHMRC. Paul R. Fisher and Sarah J. Annesley are supported by the Mason Foundation (MAS2018F00026 and MASONMECFS051) and ME Research UK (SCIO Charity Number SC036942) with the financial support of The Fred and Joan Davies Bequest.

History

Publication Date

2022-07-11

Journal

Cellular and Molecular Life Sciences

Volume

79

Article Number

412

Pagination

19p.

Publisher

Springer Nature

ISSN

1420-682X

Rights Statement

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