Mild systemic inflammation increases erythrocyte fragility
Mild systemic inflammation increases erythrocyte fragility
There is growing evidence that inflammation impairs erythrocyte structure and function. We assessed the impact of mild systemic inflammation on erythrocyte fragility in three different settings. In order to investigate causation, erythrocyte osmotic fragility was measured in mice challenged with a live attenuated bacterial strain to induce low-grade systemic inflammation; a significant increase in erythrocyte osmotic fragility was observed. To gather evidence that systemic inflammation is associated with erythrocyte fragility in humans, two observational studies were conducted. First, using a retrospective study design, the relationship between reticulocyte-based surrogate markers of haemolysis and high-sensitivity C-reactive protein was investigated in 9292 healthy participants of the UK Biobank project. Secondly, we prospectively assessed the relationship between systemic inflammation (measured by the urinary neopterin/creatinine ratio) and erythrocyte osmotic fragility in a mixed population (n = 54) of healthy volunteers and individuals with long-term medical conditions. Both human studies were in keeping with a relationship between inflammation and erythrocyte fragility. Taken together, we conclude that mild systemic inflammation increases erythrocyte fragility and may contribute to haemolysis. Further research is needed to assess the molecular underpinnings of this pathway and the clinical implications in inflammatory conditions.
haemolysis, inflammation, fragility, erythrocyte, red blood cell
Stuart, Charlotte M.
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Jacob, Carmen
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Varatharaj, Aravinthan
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Howard, Sarah
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Chouhan, Joe K.
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Teeling, Jessica L.
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Galea, Ian
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27 June 2024
Stuart, Charlotte M.
734d13d9-fd1f-4c55-ba90-bf1abf303bb4
Jacob, Carmen
0614f0d5-1365-49f7-91cd-1b4d14369e7c
Varatharaj, Aravinthan
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Howard, Sarah
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Chouhan, Joe K.
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Teeling, Jessica L.
fcde1c8e-e5f8-4747-9f3a-6bdb5cd87d0a
Galea, Ian
66209a2f-f7e6-4d63-afe4-e9299f156f0b
Stuart, Charlotte M., Jacob, Carmen, Varatharaj, Aravinthan, Howard, Sarah, Chouhan, Joe K., Teeling, Jessica L. and Galea, Ian
(2024)
Mild systemic inflammation increases erythrocyte fragility.
International Journal of Molecular Sciences, 25 (13), [7027].
(doi:10.3390/ijms25137027).
Abstract
There is growing evidence that inflammation impairs erythrocyte structure and function. We assessed the impact of mild systemic inflammation on erythrocyte fragility in three different settings. In order to investigate causation, erythrocyte osmotic fragility was measured in mice challenged with a live attenuated bacterial strain to induce low-grade systemic inflammation; a significant increase in erythrocyte osmotic fragility was observed. To gather evidence that systemic inflammation is associated with erythrocyte fragility in humans, two observational studies were conducted. First, using a retrospective study design, the relationship between reticulocyte-based surrogate markers of haemolysis and high-sensitivity C-reactive protein was investigated in 9292 healthy participants of the UK Biobank project. Secondly, we prospectively assessed the relationship between systemic inflammation (measured by the urinary neopterin/creatinine ratio) and erythrocyte osmotic fragility in a mixed population (n = 54) of healthy volunteers and individuals with long-term medical conditions. Both human studies were in keeping with a relationship between inflammation and erythrocyte fragility. Taken together, we conclude that mild systemic inflammation increases erythrocyte fragility and may contribute to haemolysis. Further research is needed to assess the molecular underpinnings of this pathway and the clinical implications in inflammatory conditions.
Text
ijms-25-07027-v2
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Accepted/In Press date: 23 June 2024
Published date: 27 June 2024
Keywords:
haemolysis, inflammation, fragility, erythrocyte, red blood cell
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Local EPrints ID: 492632
URI: http://eprints.soton.ac.uk/id/eprint/492632
ISSN: 1422-0067
PURE UUID: cc002222-335f-48fc-a8a0-ce45939372f7
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Date deposited: 08 Aug 2024 16:36
Last modified: 19 Dec 2024 02:55
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Author:
Charlotte M. Stuart
Author:
Carmen Jacob
Author:
Sarah Howard
Author:
Joe K. Chouhan
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