Urolithin A Supplementation Exercise Recovery Randomized Trial Evidence Table

Structured evidence table for Urolithin A Supplementation Exercise Recovery Randomized Trial, generated from 2 reusable source documents in the Migaku knowledge base.

topicclaimevidence levelcitationsource
Urolithin A Supplementation Exercise Recovery Randomized TrialThis review summarizes current evidence on nutritional compounds that target aging-related pathways, focusing on interventions that influence mitochondrial health, cognitive performance, immune function, metabolic regulation, and maintenance of muscle mass in older adults.4Kurtz JA (2026)Targeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
Urolithin A Supplementation Exercise Recovery Randomized TrialRecent findings Evidence indicates that several targeted nutrients, including protein, probiotics, antioxidants, and emerging mitochondrial-support compounds, may contribute to healthy aging.4Kurtz JA (2026)Targeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
Urolithin A Supplementation Exercise Recovery Randomized TrialA personalized, evidence-informed supplementation strategy integrated with exercise and balanced nutrition may help optimize physiological function in aging adults.4Kurtz JA (2026)Targeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
Urolithin A Supplementation Exercise Recovery Randomized TrialPurpose of review Aging is marked by progressive physiological decline driven by chronic inflammation, mitochondrial dysfunction, and impaired metabolic and musculoskeletal resilience.4Kurtz JA (2026)Targeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
Urolithin A Supplementation Exercise Recovery Randomized TrialType 2 diabetes mellitus (T2DM) affects approximately 10-25% of patients undergoing orthopedic procedures and is associated with impaired tissue healing, increased complication rates, and reduced responsiveness to orthobiologic therapies, including platelet-rich plasma (PRP), bone marrow aspirate concentrate (BMAC), and mesenchymal stem cell (MSC) preparations.4Santos MDS (2026)Nutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.
Urolithin A Supplementation Exercise Recovery Randomized TrialEmerging, predominantly mechanistic evidence suggests that targeted nutritional interventions, including bioactive compounds targeting mitochondrial biogenesis pathways, anti-inflammatory dietary patterns, and specific micronutrients, may modulate these pathological processes and potentially improve orthobiologic outcomes.4Santos MDS (2026)Nutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.
Urolithin A Supplementation Exercise Recovery Randomized TrialThis narrative review synthesizes evidence from diabetic pathophysiology, orthobiologic outcomes research, and nutritional science to propose a conceptual clinical framework for regenerative medicine optimization in T2DM patients.4Santos MDS (2026)Nutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.
Urolithin A Supplementation Exercise Recovery Randomized TrialThe underlying mechanisms include advanced glycation end-product accumulation, NF-κB-driven chronic inflammation, Nrf2 pathway impairment, mitochondrial dysfunction, and epigenetic diabetic memory, collectively compromising both orthobiologic product quality and the tissue microenvironment.4Santos MDS (2026)Nutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimThis review summarizes current evidence on nutritional compounds that target aging-related pathways, focusing on interventions that influence mitochondrial health, cognitive performance, immune function, metabolic regulation, and maintenance of muscle mass in older adults.
evidence level4
citationKurtz JA (2026)
sourceTargeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimRecent findings Evidence indicates that several targeted nutrients, including protein, probiotics, antioxidants, and emerging mitochondrial-support compounds, may contribute to healthy aging.
evidence level4
citationKurtz JA (2026)
sourceTargeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimA personalized, evidence-informed supplementation strategy integrated with exercise and balanced nutrition may help optimize physiological function in aging adults.
evidence level4
citationKurtz JA (2026)
sourceTargeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimPurpose of review Aging is marked by progressive physiological decline driven by chronic inflammation, mitochondrial dysfunction, and impaired metabolic and musculoskeletal resilience.
evidence level4
citationKurtz JA (2026)
sourceTargeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimType 2 diabetes mellitus (T2DM) affects approximately 10-25% of patients undergoing orthopedic procedures and is associated with impaired tissue healing, increased complication rates, and reduced responsiveness to orthobiologic therapies, including platelet-rich plasma (PRP), bone marrow aspirate concentrate (BMAC), and mesenchymal stem cell (MSC) preparations.
evidence level4
citationSantos MDS (2026)
sourceNutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimEmerging, predominantly mechanistic evidence suggests that targeted nutritional interventions, including bioactive compounds targeting mitochondrial biogenesis pathways, anti-inflammatory dietary patterns, and specific micronutrients, may modulate these pathological processes and potentially improve orthobiologic outcomes.
evidence level4
citationSantos MDS (2026)
sourceNutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimThis narrative review synthesizes evidence from diabetic pathophysiology, orthobiologic outcomes research, and nutritional science to propose a conceptual clinical framework for regenerative medicine optimization in T2DM patients.
evidence level4
citationSantos MDS (2026)
sourceNutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.
topicUrolithin A Supplementation Exercise Recovery Randomized Trial
claimThe underlying mechanisms include advanced glycation end-product accumulation, NF-κB-driven chronic inflammation, Nrf2 pathway impairment, mitochondrial dysfunction, and epigenetic diabetic memory, collectively compromising both orthobiologic product quality and the tissue microenvironment.
evidence level4
citationSantos MDS (2026)
sourceNutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.

Source documents

  1. Targeted Supplementation and Nutritional Strategies for Healthy Aging: A Review of Physiological and Molecular Benefits.
  2. Nutritional Interventions to Optimize Orthobiologic Therapy Quality in Type 2 Diabetes Mellitus: Molecular Mechanisms and Clinical Framework: A Narrative Review.