Side-by-side comparison of mechanisms, dosing, interactions, and stacking potential.
| Iodine (from Kelp or Potassium Iodide) | Magnesium Glycinate | |
|---|---|---|
| Category | Minerals | Minerals |
| Standard Dose | 150-300 mcg daily (RDA: 150 mcg; upper range for optimization) | 200-400mg elemental magnesium daily |
| Timing | Morning with food. | Evening/bedtime (promotes relaxation and sleep quality). Can split AM/PM. |
| Cycle Duration | ongoing | ongoing |
| Evidence Level | strong_human | strong_human |
Iodine is the essential substrate for thyroid hormone synthesis. Thyroid peroxidase (TPO) uses iodine to iodinate tyrosine residues on thyroglobulin, producing monoiodotyrosine (MIT) and diiodotyrosine (DIT), which couple to form T4 (3,5,3',5'-tetraiodothyronine) and T3 (3,5,3'-triiodothyronine). Iodine is concentrated by the sodium-iodide symporter (NIS) in the thyroid, breast tissue, gastric mucosa, salivary glands, and choroid plexus. Beyond thyroid function, iodine has direct antimicrobial properties, modulates immune function, and may play a role in breast tissue health via iodolactone-mediated apoptosis.
150-300 mcg daily (RDA: 150 mcg; upper range for optimization)
Morning with food.
ongoing
Magnesium is a cofactor for >600 enzymatic reactions including all ATP-dependent reactions (Mg-ATP is the true substrate), DNA/RNA polymerases, and ion channel regulation. Magnesium glycinate chelate provides highly bioavailable elemental magnesium bound to glycine. The glycine moiety itself is an inhibitory neurotransmitter (glycine receptors) and NMDA receptor co-agonist at the glycine binding site. The chelated form minimizes the osmotic laxative effect of ionic magnesium salts. Magnesium regulates NMDA receptor gating (voltage-dependent Mg2+ block), GABA-A receptor potentiation, HPA axis modulation, and parathyroid hormone secretion.
200-400mg elemental magnesium daily
Evening/bedtime (promotes relaxation and sleep quality). Can split AM/PM.
ongoing
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