Oxidative Stress is a shared characteristic of ME/CFS and Long COVID.
Study Design
- Jenis Studi
- Observational Study
- Ukuran Sampel
- 46
- Populasi
- 16 healthy, 15 ME/CFS, 15 Long COVID donors
- Intervensi
- Oxidative Stress is a shared characteristic of ME/CFS and Long COVID. None
- Pembanding
- Healthy controls
- Luaran Utama
- Oxidative stress markers in ME/CFS and Long COVID
- Arah Efek
- Negative
- Risiko Bias
- Moderate
Abstract
More than 65 million individuals worldwide are estimated to have Long COVID (LC), a complex multisystemic condition, wherein patients of all ages report fatigue, post-exertional malaise, and other symptoms resembling myalgic encephalomyelitis / chronic fatigue syndrome (ME/CFS). With no current treatments or reliable diagnostic markers, there is an urgent need to define the molecular underpinnings of these conditions. By studying bioenergetic characteristics of peripheral blood lymphocytes in over 16 healthy controls, 15 ME/CFS, and 15 LC, we find both ME/CFS and LC donors exhibit signs of elevated oxidative stress, relative to healthy controls, especially in the memory subset. Using a combination of flow cytometry, bulk RNA-seq analysis, mass spectrometry, and systems chemistry analysis, we also observed aberrations in ROS clearance pathways including elevated glutathione levels, decreases in mitochondrial superoxide dismutase levels, and glutathione peroxidase 4 mediated lipid oxidative damage. Critically, these changes in redox pathways show striking sex-specific trends. While females diagnosed with ME/CFS exhibit higher total ROS and mitochondrial calcium levels, males with an ME/CFS diagnosis have normal ROS levels, but larger changes in lipid oxidative damage. Further analyses show that higher ROS levels correlates with hyperproliferation of T cells in females, consistent with the known role of elevated ROS levels in the initiation of proliferation. This hyperproliferation of T cells can be attenuated by metformin, suggesting this FDA-approved drug as a possible treatment, as also suggested by a recent clinical study of LC patients. Thus, we report that both ME/CFS and LC are mechanistically related and could be diagnosed with quantitative blood cell measurements. We also suggest that effective, patient tailored drugs might be discovered using standard lymphocyte stimulation assays.
TL;DR
Both ME/CFS and LC are mechanistically related and could be diagnosed with quantitative blood cell measurements, and it is suggested that effective, patient tailored drugs might be discovered using standard lymphocyte stimulation assays.
Used In Evidence Reviews
Similar Papers
BMC medicine · 2015
The many roads to mitochondrial dysfunction in neuroimmune and neuropsychiatric disorders.
Journal of internal medicine · 2005
Chronic fatigue syndrome: assessment of increased oxidative stress and altered muscle excitability in response to incremental exercise.
Molecular neurobiology · 2014
The glutathione system: a new drug target in neuroimmune disorders.
Free radical biology & medicine · 2000
Specific oxidative alterations in vastus lateralis muscle of patients with the diagnosis of chronic fatigue syndrome.
Journal of clinical and diagnostic research : JCDR · 2013
Role of reactive oxygen species and antioxidants in atopic dermatitis.
NMR in biomedicine · 2012