Organoids and Assembloids Revolutionizing Pain Research, Mitochondrial Transfer for Peripheral Neuropathy, and Parkinson's Disease Iron Misconceptions Podcast Por  arte de portada

Organoids and Assembloids Revolutionizing Pain Research, Mitochondrial Transfer for Peripheral Neuropathy, and Parkinson's Disease Iron Misconceptions

Organoids and Assembloids Revolutionizing Pain Research, Mitochondrial Transfer for Peripheral Neuropathy, and Parkinson's Disease Iron Misconceptions

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Broadcast from KSQD, Santa Cruz on 1-15-2026:

  • An emailer from Switzerland asks about fluorescein angiography requested before her first retina appointment. Dr. Dawn suspects protocol-based medicine screening for macular degeneration and suggests negotiating to see the doctor first given her different reason for seeing a retinal specialist. She encourages patients to maintain agency in medical settings.
  • An emailer asks about creatine supplements. Dr. Dawn notes it helps muscle development in people doing weight training at 3-5 grams daily, but does nothing for aerobic-only exercisers. Claims about cognition and mood lack solid research. She advises against high-dose "loading," and cautions that creatine causes fluid retention problematic for congestive heart failure and should be avoided with stage 3 or higher kidney disease.
  • Dr. Dawn reminds listeners it's not too late for flu shots, noting this season's H3N2 strain emerged after vaccine formulation was finalized. She laments mRNA vaccine research defunding, as that technology allows rapid reformulation.
  • She describes organoids—tissues grown from stem cells that self-organize into primitive organ structures, enabling rapid drug screening without animal testing. Stanford researchers created assembloids by placing four neurological organoids together that spontaneously connected and built the ascending sensory pain pathway, offering new approaches to studying chronic pain.
  • Dr. Dawn explains research showing satellite glial cells transfer healthy mitochondria to spinal sensory neurons through tunneling nanotubules. When this transfer fails, neurons fire erratically causing pain. Infusing healthy mitochondria into mouse spinal columns cured peripheral neuropathy—suggesting future periodic infusion treatments for humans.
  • She reports Texas A&M researchers created "nanoflowers" from molybdenum disulfate that double stem cell's mitochondrial production, potentially supercharging regenerative medicine for conditions including Alzheimer's and muscular dystrophy.
  • A caller asks about flu vaccines with egg allergy. Dr. Dawn explains that his gastrointestinal reactions to eggs differ from dangerous IgE allergies causing hives or anaphylaxis—GI intolerance doesn't preclude vaccination.
  • Dr. Dawn reveals that 20 years of Parkinson's research followed a false lead. MRI showed increased iron in patients' brains, prompting iron chelation trials—which worsened symptoms. The problem: MRI detects paramagnetic ferric iron (stored, inert) not ferrous iron (biologically active). Patients accumulate useless ferric iron but are deficient in usable ferrous iron. Earlier 1980s studies showing that iron supplementation helped were ignored and abandoned prematurely. She suggests Parkinson's patients discuss iron supplementation with neurologists. She will post the link in the resources page on her website.
  • A caller concerned about early Parkinson's describes tremors and balance problems in darkness. Dr. Dawn suggests darkness-related symptoms sound more like peripheral neuropathy than Parkinson's, recommending neurological examination and screening for diabetes, B vitamin deficiency, or heavy metal exposure. She confirms that sedentary lifestyle reduces mitochondrial production while progressive exercise builds both muscle and mitochondria.
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