ReviewFrontiers in nutrition2026
Vitamin D and exercise in obesity: a neurovascular-muscle axis.
Review in Frontiers in nutrition, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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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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Abstract
Obesity is characterized by chronic low-grade inflammation, insulin resistance, impaired skeletal muscle function, and disturbances in neurovascular health. Metabolic inflexibility, defined as a reduced capacity to appropriately switch between lipid and glucose utilization in response to physiological demands, represents a central pathophysiological feature linking these alterations. Emerging evidence suggests that physical exercise and vitamin D status influence overlapping molecular pathways involved in energy metabolism, inflammation, vascular function, and neural signaling. Exercise robustly improves mitochondrial function, endothelial health, and myokine-mediated cross-talk between muscle, adipose tissue, and the brain, while vitamin D, acting through the vitamin D receptor (VDR), modulates calcium homeostasis, immune signaling, and tissue-specific metabolic responsiveness. This narrative review synthesizes mechanistic and translational evidence on how vitamin D and exercise may interact within a neurovascular-muscle axis to influence metabolic regulation, adipose inflammation, skeletal muscle adaptation, and neurocognitive function in obesity. Importantly, current evidence supports exercise as the primary driver of metabolic improvement, whereas vitamin D may exert context-dependent, adjunctive effects, particularly in deficient populations. Rather than proposing a standalone therapy, this review situates the vitamin D-exercise interaction as a complementary strategy that may enhance functional and systemic adaptations relevant to obesity-related complications. Limitations related to causal inference and population heterogeneity are highlighted, underscoring the need for well-powered, obesity-specific clinical trials to clarify translational relevance.
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