Protective Effects of Spirulina Supplementation Against Exercise-Induced Cardiac Remodeling: Integrated Morphological and Biochemical Evidence from an Experimental Study
Jalalova Vazira ZamirovnaHead of the Department of Clinic pharmacology of the Bukhara State Medical Institute named after Abu Ali ibn Sino, PhD, Associate Professor 200126, Gijduvan Str, 23, Bukhara, Uzbekistan. https://orcid.org/0000-0001-7792-6766
Teshaev Shukhrat JumayevichDoctor of Medical Sciences, Professor of the Department of Anatomy, Clinical Anatomy and Operative Surgery with Topographic Anatomy at the Bukhara State Medical Institute named after Abu Ali ibn Sino. Bukhara, Uzbekistan. https://orcid.org/0009-0002-1996-4275
Iroda Kurbonovna Sa’dulloyevaHead of department (Propaedeutics of children diseases and child neurology) Bukhara State Medical Institute, 200100 Bukhara, Uzbekistan. https://orcid.org/0000-0002-7640-4584
Mashkhura Muzafarovna YuldashevaAssociate Professor at the Department of Russian Language and Literature, Bukhara State Pedagogical Institute; PhD in Pedagogy; Bukhara, Republic of Uzbekistan. https://orcid.org/0000-0002-4048-2775
Sharipova Elvina MidatovnaPhD, Assistant of the Department of Clinical Pharmacology, Bukhara State Medical Institute, Bukhara, Uzbekistan. https://orcid.org/0000-0003-2397-1881
Nozima YuldashevaMaster’s student of the Department of Ophthalmology, Bukhara State Medical Institute named after Abu Ali Ibn Sino, Uzbekistan. https://orcid.org/0000-0002-2188-3661
Intensive physical exercise induces structural remodeling of the myocardium accompanied by oxidative stress and inflammatory responses, which may impair cardiac adaptation and recovery. This study evaluated the protective effects of Spirulina supplementation on exercise-induced myocardial alterations using morphological and biochemical assessments in an experimental model. Histological examination demonstrated that prolonged intensive exercise caused myocardial fiber disorganization, interstitial inflammatory infiltration, and increased collagen deposition, accompanied by morphometric changes in cardiomyocytes. Digital morphometric analysis revealed a reduction in the proportion of cardiomyocytes (from 38.7% in controls to 28.7% following intensive exercise) and an increase in fibroblast distribution (from 32.3% to 40.3%), indicating early myocardial remodeling. Spirulina supplementation partially restored myocardial architecture, reduced structural damage, improved morphometric parameters, and attenuated biochemical indicators of oxidative stress and tissue injury. These findings suggest that Spirulina exerts cardioprotective effects against exercise-induced myocardial remodeling, most likely through antioxidant, anti-inflammatory, and cytoprotective mechanisms, supporting its potential use as a metabolic support strategy for individuals exposed to intensive physical activity.