ArticleJournal of sport and health science2022
Lymphangiogenesis contributes to exercise-induced physiological cardiac growth.
Article in Journal of sport and health science, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 33 papers.
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Who cites it
33 citing papers in PubMed, 52 citations in OpenAlex.
- Metabolic Remodeling Induced by Exercise: Emerging Mechanisms for Myocardial Protection in Cardiovascular Disease.Journal of cardiovascular translational research · 2026Review
- Cardiac lymphatics: functional plasticity in development, disease, and precision-targeted therapies.Basic research in cardiology · 2026Review
- Running exercise mitigates amyloidosis in 5xFAD mice by improving the structure and function of the meningeal lymphatic system.Acta neuropathologica communications · 2026Article
- Intrahepatic Lymphangiogenesis Is Associated with Early Post-Hepatectomy Liver Regeneration, in Part via IL-6/STAT3 Signaling.International journal of medical sciences · 2026Article
- Expert consensus statement for basic research of animal exercise intervention studies in chronic disease prevention and treatment: A joint position paper of the Exercise Science branch of the Biophysical Society of China and the Metabolism and Genetics branch of the Genetics Society of China.Journal of sport and health science · 2025Article
- Modeling myocardial physiological growth using human pluripotent stem cell derived cardiomyocytes and 3D cardiac microtissues.Cellular and molecular life sciences : CMLS · 2025Article
- Cardiac ageing: from hallmarks to therapeutic opportunities.Cardiovascular research · 2025Review
- Molecular Mediators of the Cardiac Benefits of Exercise.Circulation research · 2025Review
- Athlete's Heart Revisited: Historical, Clinical, and Molecular Perspectives.Circulation research · 2025Review
- Exercise-Induced Cardiac Lymphatic Remodeling Mitigates Inflammation in the Aging Heart.Aging cell · 2025Article
- Long-term physical exercise facilitates putative glymphatic and meningeal lymphatic vessel flow in humans.Nature communications · 2025Article
- Treatment of Pathological Lymphangiogenesis via Circular RNA-Mediated Cholesterol Metabolism Remodeling.Investigative ophthalmology & visual science · 2025Article
- An overview of the multi-dimensional mechanisms of exercise-regulated hormones and growth factors in cardiac physiological adaptation.Frontiers in physiology · 2025Review
- Regulatory mechanisms of exercise-induced physiological cardiac hypertrophy: progress and prospects.Frontiers in cardiovascular medicine · 2025Review
- Sex-specific regulation of the cardiac transcriptome by the protein phosphatase 2A regulatory subunit B55α.npj metabolic health and disease · 2024Article
- Cardiac lymphatics undergo distinct remodeling during hypertrophic and nonhypertrophic pregnancy.American journal of physiology. Heart and circulatory physiology · 2024Article
- Disease-Specific Alteration of Cardiac Lymphatics: A Review from Animal Disease Models to Clinics.International journal of molecular sciences · 2024Review
- Exercise training decreases lactylation and prevents myocardial ischemia-reperfusion injury by inhibiting YTHDF2.Basic research in cardiology · 2024Article
- Molecular insights of exercise therapy in disease prevention and treatment.Signal transduction and targeted therapy · 2024Review
- Intrinsic and Extrinsic Contributors to the Cardiac Benefits of Exercise.JACC. Basic to translational science · 2024Review
Corrections and comments
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Authors and funding
11 authors at 4 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundPromoting cardiac lymphangiogenesis exerts beneficial effects for the heart. Exercise can induce physiological cardiac growth with cardiomyocyte hypertrophy and increased proliferation markers in cardiomyocytes. However, it remains unclear whether and how lymphangiogenesis contributes to exercise-induced physiological cardiac growth. We aimed to investigate the role and mechanism of lymphangiogenesis in exercise-induced physiological cardiac growth.
methodsAdult C57BL6/J mice were subjected to 3 weeks of swimming exercise to induce physiological cardiac growth. Oral treatment with vascular endothelial growth factor receptor 3 (VEGFR3) inhibitor SAR131675 was used to investigate whether cardiac lymphangiogenesis was required for exercise-induced physiological cardiac growth by VEGFR3 activation. Furthermore, human dermal lymphatic endothelial cell (LEC)-conditioned medium was collected to culture isolated neonatal rat cardiomyocytes to determine whether and how LECs could influence cardiomyocyte proliferation and hypertrophy.
resultsSwimming exercise induced physiological cardiac growth accompanied by a remarkable increase of cardiac lymphangiogenesis as evidenced by increased density of lymphatic vessel endothelial hyaluronic acid receptor 1-positive lymphatic vessels in the heart and upregulated LYVE-1 and Podoplanin expressions levels. VEGFR3 was upregulated in the exercised heart, while VEGFR3 inhibitor SAR131675 attenuated exercise-induced physiological cardiac growth as evidenced by blunted myocardial hypertrophy and reduced proliferation marker Ki67 in cardiomyocytes, which was correlated with reduced lymphatic vessel density and downregulated LYVE-1 and Podoplanin in the heart upon exercise. Furthermore, LEC-conditioned medium promoted both hypertrophy and proliferation of cardiomyocytes and contained higher levels of insulin-like growth factor-1 and the extracellular protein Reelin, while LEC-conditioned medium from LECs treated with SAR131675 blocked these effects. Functional rescue assays further demonstrated that protein kinase B (AKT) activation, as well as reduced CCAAT enhancer-binding protein beta (C/EBPβ) and increased CBP/p300-interacting transactivators with E (glutamic acid)/D (aspartic acid)-rich-carboxylterminal domain 4 (CITED4), contributed to the promotive effect of LEC-conditioned medium on cardiomyocyte hypertrophy and proliferation.
conclusionOur findings reveal that cardiac lymphangiogenesis is required for exercise-induced physiological cardiac growth by VEGFR3 activation, and they indicate that LEC-conditioned medium promotes both physiological hypertrophy and proliferation of cardiomyocytes through AKT activation and the C/EBPβ-CITED4 axis. These results highlight the essential roles of cardiac lymphangiogenesis in exercise-induced physiological cardiac growth.
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