Modulation of Angiogenesis‐Related Biomarkers in Brain and Myocardial Tissues by Exercise and Carnosine: An ELISA‐Based Analysis of VEGF‐A, HIF‐1α, Ang‐1, MMP‐9, and Anti‐Angiogenic Factors

肌肽 无氧运动 内皮抑素 医学 有氧运动 生物标志物 内科学 内分泌学 脑组织 体育锻炼 神经学 心脏病学 神经血管束
作者
Hüsne Bolat,Taner Akbulut,Vedat Çınar,Emsal Çağla Avcu,Yavuz Yasul,Kenan Bozbay,Süleyman Aydın
出处
期刊:Molecular Nutrition & Food Research [Wiley]
卷期号:69 (24): e70298-e70298
标识
DOI:10.1002/mnfr.70298
摘要

This study explored the impact of aerobic and anaerobic exercise, combined with carnosine supplementation, on angiogenesis-related biomarkers in cardiac and cerebral tissues. Forty-five male Sprague-Dawley rats were randomly allocated to seven groups: control (C), sham (S), carnosine (Cz), aerobic exercise (AE), anaerobic exercise (AnE), AE + Cz, and AnE + Cz. Exercise protocols were performed 5 days per week for 5 weeks (aerobic: 15 m/min; anaerobic: 25 m/min), while carnosine was administered orally (100 mg/kg/day). Biomarker levels of VEGF-A, HIF-1α, Ang-1, MMP-9, tumstatin, and endostatin were measured using ELISA, and data were analyzed by ANOVA, Pearson correlation, PCA, and hierarchical clustering. The myocardial tissue revealed that VEGF-A, HIF-1α, and Ang-1 significantly increased in exercise and combined groups (p < 0.05), with AE + Cz showing the highest VEGF-A and AnE + Cz the highest HIF-1α. The tumstatin and endostatin levels were significantly reduced in AE and AE + Cz groups. The brain tissue indicated that Ang-1 increased, while tumstatin and endostatin consistently decreased across all exercise groups. PCA and clustering analyses revealed a dominant pro-angiogenic profile in AE + Cz and AnE + Cz, whereas C, S, and Cz groups showed anti-angiogenic tendencies. Carnosine supplementation may represent a nutritionally relevant approach to modulate exercise-induced angiogenic adaptations with possible implications for cardiovascular and neurovascular health.
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