1/10 I am incredibly proud to share our latest study, published today in @NatureComms, a follow-up to our 2024 paper on skeletal muscle abnormalities in long COVID. Open access:
2/10 People with long COVID and ME/CFS are often told that their reduced exercise capacity and muscle abnormalities simply result from physical inactivity or “deconditioning.”
We directly tested this assumption.
3/10 We compared people with long COVID and ME/CFS with healthy individuals who underwent 60 days of strict bed rest, an extreme and carefully controlled model of prolonged physical inactivity, in close collaboration with @esa and @DLR_en.
@esa @DLR_en 4/10 Although all groups had a lower exercise capacity, compared to healthy controls, the underlying changes were clearly different. After bed rest, healthy participants showed substantial and rapid muscle loss. This pattern was not observed in people with long COVID or ME/CFS.
@esa @DLR_en 5/10 Both patient groups had fewer slow-twitch muscle fibres, which are important for endurance, and relatively more fast-twitch fibres, which fatigue more quickly. This does not occur after bed rest. People with ME/CFS also showed specific atrophy of their slow-twitch fibres.
@esa @DLR_en 6/10 We also found signs of impaired energy production in the muscles of people with long COVID and ME/CFS.
In ME/CFS, we additionally observed fewer muscle capillaries, potentially limiting oxygen delivery during exercise.
@esa @DLR_en 7/10 Our main conclusion: physical inactivity alone cannot explain the reduced exercise capacity and skeletal muscle abnormalities in long COVID and ME/CFS. This helps explain why “just exercise more” does not reflect the underlying biology, especially for those with physical PEM
@esa @DLR_en 8/10 At the same time, deconditioning can occur in sedentary patients. Complete inactivity causes muscle loss, increased fat mass and reduced insulin sensitivity. The challenge is finding the individual balance between too little and too much activity. pubmed.ncbi.nlm.nih.gov/38232697/
@esa @DLR_en 9/10 Huge thanks to our participants, patient representatives, co-authors, collaborators all over the world
@esa @DLR_en And a special shout-out to all the funders of this work: @ZonMw, @patientled @PlzSolveCFS @MEResearchUK @StLongCOVID @amsterdamumc @VU_FGB @AMSmovement @esa. Thanks a lot for your continued support!
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🧵 New insight into Long COVID & ME/CFS: why do symptoms like severe fatigue, brain fog persist after a viral infection?
A new review with @resiapretorius @drmassimonunes brings together evidence pointing to a shared biological mechanism. nature.com/articles/s4141…
🧬 The core idea that @drmassimonunes developed: Viruses such as SARS-CoV-2 can damage the cells lining our blood vessels, the endothelium.
In some people, these cells enter a stressed, dysfunctional state called senescence and are not properly cleared by the immune system.
@drmassimonunes 🩸 Why blood vessels matter: Healthy blood vessels regulate blood flow, oxygen delivery, and nutrient supply to the brain, muscles, and other organs. If this system is disrupted, many common Long COVID and ME/CFS symptoms can start to make sense.
🧵 THREAD: Skeletal Muscle Alterations in Long COVID and ME/CFS 1/ 💡 Study Overview
We studied whether skeletal muscle changes in Long COVID and Myalgic Encephalomyelitis/Chronic Fatigue Syndrome (ME/CFS) patients are due to inactivity or distinct pathological processes.
With @BraedenCharlton, @RichieGoulding1 @m_eggelbusch and others
@BraedenCharlton @RichieGoulding1 @m_eggelbusch Both Long COVID and ME/CFS patients exhibited:
Mitochondrial dysfunction
Altered muscle fiber composition
Altered capillary supply
These changes were not replicated in healthy individuals subjected to strict bed rest (done with ESA and NASA).
🚨 New preprint with @KasperJanssen alert! 🚨 1/ Patients with Long COVID often struggle with fatigue, autonomic dysfunction, and post-exertional malaise (PEM). Can wearable heart rate variability (HRV) monitoring help? Our latest study suggests YES. 1/xmedrxiv.org/cgi/content/sh…
@KasperJanssen 2/ MSc student Twan Ruijgt, together with @KasperJanssen, tracked 127 Long COVID patients and 21 healthy controls using continuous HRV monitoring over multiple days. Participants also underwent submaximal (!) exercise testing to determine individual ventilatory thresholds. 🏃♂️📊
@KasperJanssen 3/ Findings:
✅ Long COVID patients had lower HRV during daily activities & sleep
✅ HRV remained lower for 24 hours post-exercise, indicating delayed recovery
✅ Intense or prolonged exercise worsened subsequent nighttime HRV, a possible PEM-related symptom
📢 Long COVID symptoms include fatigue, brain fog, myalgia, and post-exertional malaise (#PEM). This thread dives into our newest literature review exploring skeletal muscle dysfunction as a key factor in reduced exercise capacity for #LongCovid . 🧵cell.com/trends/endocri…
With @BraedenCharlton, @RichieGoulding1, @JaspersLab, we performed a literature review and found that LC patients show reduced aerobic capacity, earlier lactate buildup, and muscle abnormalities. Mitochondrial dysfunction and endothelial issues are major contributors to fatigue.
@BraedenCharlton @RichieGoulding1 @JaspersLab 🧠 What is PEM?
Post-exertional malaise (#PEM) is the hallmark symptom where physical or cognitive exertion worsens symptoms, lasting days to weeks. This is different from simply fatigue/tiredness. It's a diagnostic feature of #MECFS, showing overlap between the two conditions.
Delighted to see our latest work on "The impact of bed rest on human skeletal muscle metabolism“ out in @cellrepmed! Thanks to @DLR_en , @esa, @nasa, @m_eggelbusch @BraedenCharlton and all colleagues for the collaborative effort! doi.org/10.1016/j.xcrm…
Our results of >4 years of measurements on human skeletal muscle biopsies and blood samples highlight that bed rest leads to a rapid intracellular glycogen and lipid buildup, accompanied by a decrease in insulin insensitivity after only 6 days of bed rest.
Surprisingly, the accumulation of toxic lipids coincided with a shift from fat to glucose oxidation and changes in mitochondrial structure and function. This buildup of toxic lipids did not worsen insulin sensitivity, changing our understanding of the development of diabetes
After a long wait, our longitudinal long COVID study is finally published in @NatureComms: . We find a skeletal muscle alterations in patients with #longcovid, which worsen with exercise. 1/nnature.com/articles/s4146…
With @BraedenCharlton, and clinical colleagues (Brent Appelman and Michele van Vugt), we confirmed the lower exercise capacity in patients with #longcovid, which can partly be explained by changes in skeletal muscle structure and function 2/n
@BraedenCharlton We next wanted to find out if skeletal muscle abnormalities contribute to the feeling of muscle pain, and fatigue one day after an exercise test on a bike. We found that in some #longcovid patients there was extensive muscle damage, but also signs of repair 3/n