Magnesium Glycinate Muscle Recovery Randomized Trial Evidence Table

Structured evidence table for Magnesium Glycinate Muscle Recovery Randomized Trial, generated from 2 reusable source documents in the Migaku knowledge base.

topicclaimevidence levelcitationsource
Magnesium Glycinate Muscle Recovery Randomized TrialAccumulating evidence indicates that magnesium regulates bone metabolism through multiple signaling pathways, including PI3K/Akt, OPG/RANKL/RANK, TRPM, etc.3Sheng Shaoying (2026)Application and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
Magnesium Glycinate Muscle Recovery Randomized TrialDysregulated magnesium metabolism has been associated with osteoporosis, impaired fracture healing, and other skeletal disorders ().3Sheng Shaoying (2026)Application and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
Magnesium Glycinate Muscle Recovery Randomized TrialA central graphic links magnesium to its effects: pathologies and therapeutics, biomaterials applications with biodegradable magnesium implants promoting bone regeneration, and clinical or nursing applications such as supplementation, improved bone health, postoperative care, and pain management.3Sheng Shaoying (2026)Application and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
Magnesium Glycinate Muscle Recovery Randomized TrialJallot, et al., 2005 Xia, et al., 2025 Magnesium is the fourth most abundant cation in human body and plays a crucial role in maintaining physiological homeostasis.3Sheng Shaoying (2026)Application and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
Magnesium Glycinate Muscle Recovery Randomized TrialAdequate magnesium status supports muscle contraction and relaxation, regulates electrolyte balance, and enhances exercise capacity as well as post-exercise recovery, whereas deficiency is associated with fatigue, weakness, and impaired physical performance [,].3Matek Sarić Marijana (2025)Magnesium: Health Effects, Deficiency Burden, and Future Public Health Directions
Magnesium Glycinate Muscle Recovery Randomized TrialGrowing evidence links insufficient intake to hypertension, type 2 diabetes, osteoporosis, migraines, depression, and chronic inflammation [,].3Matek Sarić Marijana (2025)Magnesium: Health Effects, Deficiency Burden, and Future Public Health Directions
Magnesium Glycinate Muscle Recovery Randomized TrialDisruption at any of these regulatory sites, whether through reduced intestinal absorption, increased renal losses, or impaired skeletal buffering, may therefore result in systemic deficiency even when serum concentrations remain within normal range, which may partly explain inconsistencies observed across clinical studies.3Matek Sarić Marijana (2025)Magnesium: Health Effects, Deficiency Burden, and Future Public Health Directions
Magnesium Glycinate Muscle Recovery Randomized Trial1 1 2 3 4 Magnesium (Mg) is a divalent metal ion and the fourth most abundant cation in the human body, after calcium, potassium, and sodium [].3Matek Sarić Marijana (2025)Magnesium: Health Effects, Deficiency Burden, and Future Public Health Directions
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claimAccumulating evidence indicates that magnesium regulates bone metabolism through multiple signaling pathways, including PI3K/Akt, OPG/RANKL/RANK, TRPM, etc.
evidence level3
citationSheng Shaoying (2026)
sourceApplication and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claimDysregulated magnesium metabolism has been associated with osteoporosis, impaired fracture healing, and other skeletal disorders ().
evidence level3
citationSheng Shaoying (2026)
sourceApplication and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claimA central graphic links magnesium to its effects: pathologies and therapeutics, biomaterials applications with biodegradable magnesium implants promoting bone regeneration, and clinical or nursing applications such as supplementation, improved bone health, postoperative care, and pain management.
evidence level3
citationSheng Shaoying (2026)
sourceApplication and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claimJallot, et al., 2005 Xia, et al., 2025 Magnesium is the fourth most abundant cation in human body and plays a crucial role in maintaining physiological homeostasis.
evidence level3
citationSheng Shaoying (2026)
sourceApplication and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claimAdequate magnesium status supports muscle contraction and relaxation, regulates electrolyte balance, and enhances exercise capacity as well as post-exercise recovery, whereas deficiency is associated with fatigue, weakness, and impaired physical performance [,].
evidence level3
citationMatek Sarić Marijana (2025)
sourceMagnesium: Health Effects, Deficiency Burden, and Future Public Health Directions
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claimGrowing evidence links insufficient intake to hypertension, type 2 diabetes, osteoporosis, migraines, depression, and chronic inflammation [,].
evidence level3
citationMatek Sarić Marijana (2025)
sourceMagnesium: Health Effects, Deficiency Burden, and Future Public Health Directions
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claimDisruption at any of these regulatory sites, whether through reduced intestinal absorption, increased renal losses, or impaired skeletal buffering, may therefore result in systemic deficiency even when serum concentrations remain within normal range, which may partly explain inconsistencies observed across clinical studies.
evidence level3
citationMatek Sarić Marijana (2025)
sourceMagnesium: Health Effects, Deficiency Burden, and Future Public Health Directions
topicMagnesium Glycinate Muscle Recovery Randomized Trial
claim1 1 2 3 4 Magnesium (Mg) is a divalent metal ion and the fourth most abundant cation in the human body, after calcium, potassium, and sodium [].
evidence level3
citationMatek Sarić Marijana (2025)
sourceMagnesium: Health Effects, Deficiency Burden, and Future Public Health Directions

Source documents

  1. Application and translational research of magnesium in nursing care of orthopedic diseases: from mechanism to clinical translation
  2. Magnesium: Health Effects, Deficiency Burden, and Future Public Health Directions