TimeLine Layout

September, 2026

  • 22 September

    Why One Form Of Vitamin B1 May Work When Another Doesn’t

    Trying thiamine once and feeling no difference does not necessarily mean B1 will not help. This clip explains why thiamine hydrochloride, benfotiamine, and TTFD can behave differently in the body, and why both the form and the dose may matter when judging whether a B1-based approach is actually working.

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  • 21 September

    How Safe Is High-Dose Vitamin B1?

    Thiamine has an unusually wide safety margin compared with many other nutrients. This clip explains why even very large oral doses of B1 are generally considered well tolerated, how the body tends to limit excess absorption, and why oral supplementation is very different from injecting or infusing thiamine directly.

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  • 20 September

    Why Normal B1 Tests May Miss Thiamine-Responsive Parkinson’s

    Some Parkinson’s patients show normal thiamine levels on standard blood tests, yet case reports have described substantial improvement after high-dose B1. This clip explores why thiamine responsiveness may not always look like a classic deficiency, and why normal blood or red-cell levels may not tell the full story about how B1 is functioning inside the nervous system.

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  • 19 September

    Why Organic Acids Testing Can Reveal What Blood Tests Miss

    Functional medicine often uses organic acids testing to look beyond nutrient levels in the blood and assess how metabolism is actually functioning. This clip explains how markers such as lactate, pyruvate, and alpha-ketoglutarate can point to problems with thiamine-dependent enzymes, giving a clearer picture of what may be happening inside the cells in real time.

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  • 18 September

    Why Fixing Your Thyroid May Not Fix Your Energy

    Thyroid hormone may press the gas pedal, but your cells still need a working engine. This clip explains how thiamine helps turn carbohydrates, fats, and proteins into usable energy, and why improving thyroid function alone may not fully restore energy if cellular metabolism is still struggling.

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  • 15 September

    What If Your Gut Problem Actually Starts With The Nervous System?

    Your gut depends on constant signals from the autonomic nervous system, especially through the vagus nerve. This clip explains why conditions involving autonomic dysfunction, including POTS and long COVID, may also show up as digestive problems, and why thiamine may be relevant when the nervous system is no longer regulating the gut properly.

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  • 14 September

    The B1 Deficiency That Can Shut Down Your Gut

    Severe thiamine deficiency can affect far more than nerves and the heart. This clip explains GI beriberi, a lesser-known form of B1 deficiency associated with lactic acidosis, nausea, vomiting, severe constipation, and in extreme cases, near-total loss of stomach and intestinal movement.

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  • 14 September

    Why Mitochondrial Supplements Can Make Some People Feel Worse

    If every supplement aimed at boosting mitochondrial energy makes symptoms worse, the problem may not be a lack of support. This clip explains how mold, stealth infections, and other ongoing stressors may push cells to deliberately downregulate energy production as a protective response. In that state, trying to force mitochondrial output higher can sometimes backfire until the underlying stressor is addressed.

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  • 13 September

    You Can Be Low In A Nutrient Without Being “Deficient”

    Nutrient status is not simply deficient or sufficient. This clip explains why it exists on a spectrum, and how stress, diet, activity, and toxin exposure can gradually push someone toward deficiency long before classic symptoms appear. That middle ground may help explain many vague, hard-to-diagnose symptoms that standard testing can miss.

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  • 13 September

    Why Vitamin B1 Is Essential For Energy And Brain Function

    Vitamin B1 sits at the center of two things your body cannot function without: cellular energy and nerve communication. This clip explains how thiamine helps enzymes turn carbohydrates, fats, and proteins into ATP, while also supporting action potentials and neurotransmitter signaling between neurons. When B1 runs low, both energy production and neurological function can start to break down.

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