ArticleThe Journal of physiology2020
Impaired skeletal muscle performance as a consequence of random functional capillary rarefaction can be restored with overload-dependent angiogenesis.
Article in The Journal of physiology, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 21 papers.
What it found
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
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Who cites it
21 citing papers in PubMed, 34 citations in OpenAlex.
- Myovascular Niche: The Role of Endothelial Cells in Skeletal Muscle Health and Disease.Circulation research · 2026Review
- Bone and muscle crosstalk in steroid-induced osteonecrosis of the femoral head: a four-axis pathophysiological framework.Frontiers in immunology · 2026Review
- Microvascular Health as a Key Determinant of Organismal Aging.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Review
- Whole-body vibration training improves muscle mass and strength in older adults through intra- and extra-muscular pathways.Frontiers in cell and developmental biology · 2025Review
- Stroke-induced excess in capillarization relative to oxidative capacity in rats is muscle specific.Physiological reports · 2024Article
- Exercise-induced skeletal muscle angiogenesis: impact of age, sex, angiocrines and cellular mediators.European journal of applied physiology · 2023Review
- Skeletal muscle adaptation to indirect electrical stimulation: divergence between microvascular and metabolic adaptations.Experimental physiology · 2023Article
- Global Trends in Research of Mitochondrial Biogenesis over past 20 Years: A Bibliometric Analysis.Oxidative medicine and cellular longevity · 2023Article
- Capillary rarefaction during bed rest is proportionally less than fibre atrophy and loss of oxidative capacity.Journal of cachexia, sarcopenia and muscle · 2022Article
- C-bouton components on rat extensor digitorum longus motoneurons are resistant to chronic functional overload.Journal of anatomy · 2022Article
- The State of the Art of Piezo1 Channels in Skeletal Muscle Regeneration.International journal of molecular sciences · 2022Review
- Functional implications of microvascular heterogeneity for oxygen uptake and utilization.Physiological reports · 2022Review
- Heterogeneity in form and function of the rat extensor digitorum longus motor unit.Journal of anatomy · 2022Article
- Endothelial Piezo1 sustains muscle capillary density and contributes to physical activity.The Journal of clinical investigation · 2022Article
- High-Intensity Inspiratory Muscle Training Improves Scalene and Sternocleidomastoid Muscle Oxygenation Parameters in Patients With Weaning Difficulties: A Randomized Controlled Trial.Frontiers in physiology · 2022Article
- Exercise intolerance in pulmonary arterial hypertension: insight into central and peripheral pathophysiological mechanisms.European respiratory review : an official journal of the European Respiratory Society · 2021Review
- Distinct structural and functional angiogenic responses are induced by different mechanical stimuli.Microcirculation (New York, N.Y. : 1994) · 2021Article
- Regular endurance exercise of overloaded muscle of young and old male mice does not attenuate hypertrophy and improves fatigue resistance.GeroScience · 2021Article
- Abnormal skeletal muscle blood flow, contractile mechanics and fibre morphology in a rat model of obese-HFpEF.The Journal of physiology · 2021Article
- Oxygen transport kinetics underpin rapid and robust diaphragm recovery following chronic spinal cord injury.The Journal of physiology · 2021Article
Corrections and comments
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Authors and funding
4 authors at 2 institutions in 2 countries.
Funding
Abstract
key pointsLoss of skeletal muscle capillaries is thought to contribute to a reduction in exercise tolerance, but the relative contribution of a compromised microcirculation with disease, in isolation of co-morbidities, to impaired muscle function is unknown. We therefore developed a novel method to randomly occlude capillaries in the rat hindlimb to mimic the capillary rarefaction observed in many conditions. We demonstrate that muscle fatigue resistance is closely coupled with functional microvascular density, independent of arterial blood flow, while disturbance of the microcirculation leads to long-term impairment of muscle function if left untreated. Mechanical stretch due to muscle overload causes a restoration of fatigue resistance via angiogenic remodelling. These observations highlight the importance of a healthy microcirculation and suggest that restoring impaired microvascular supply, regardless of disease co-morbidities, will assist recovery of exercise tolerance in a variety of conditions that limit quality of life. ABSTRACT: To what extent microvascular rarefaction contributes to impaired skeletal muscle function remains unknown. Our understanding of whether pathological changes in the microcirculation can be reversed remains limited by a lack of basic physiological data in otherwise healthy tissue. The principal objectives here were to: (1) quantify the effect of random microvascular rarefaction on limb perfusion and muscle performance, and (2) determine if these changes could be reversed. We developed a novel protocol in rats whereby microspheres injected into the femoral artery allowed a unilateral reduction in functional capillary density in the extensor digitorum longus (EDL), and assessed acute and chronic effects on muscle function. Simultaneous bilateral EDL force and hindlimb blood flow measurements were made during electrical stimulation. Following functional capillary rarefaction there was an acute microsphere dose-dependent reduction in muscle fatigue resistance (P < 0.001), despite preserved femoral artery perfusion. Histological analysis of EDL samples taken from injected animals confirmed a positive correlation between the proportion of functional capillaries and fatigue resistance (P = 0.002). Such impaired performance persisted for at least 2 weeks (P = 0.016). Concomitant mechanical overload improved both perfused capillary density and fatigue resistance (P<0.05), confirming that the capacity for muscle remodelling was retained following chronic distributed ischaemia, and that the impact of capillary rarefaction could be alleviated. These results demonstrate that loss of functional capillaries is detrimental to muscle function, even in otherwise healthy tissue, independent of arterial perfusion. Restoration of muscle performance following a mechanical overload stimulus indicates that angiogenic treatments to alleviate microvascular rarefaction may be key to restoring exercise tolerance.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.