HBOT Conversations:
Dr. Paul Harch & 8,101 Genes
He is the author of The Oxygen Revolution and is considered an International expert and pioneer in the field of Hyperbaric Oxygen Therapy (HBOT). His informative, and comprehensive guide on HBOT has helped countless souls better understand what HBOT is and how it directly affects the body at the genetic level.
This episode on 8,101 genes is the eighth in a nine episode series that will be released weekly with Dr. Harch.
Watch the Podcast
In episode 8 of 9, host Edward di Girolamo speaks with world renowned HBOT expert, Dr. Paul G. Harch, about aging and the 8,101 genes HBOT affects.
di Girolamo starts this conversation with Dr. Harch bringing up the 8,101 genes that are activated by Hyperbaric Oxygen Therapy. The discussion leads to talk of Big Pharma, telomeres, reparative gene process, patents, and successful business models for HBOT clinics.
Dr. Harch explains that Hyperbaric Oxygen Therapy affects 8,101 of our genes, and it’s doing so on a different level for the ones that are overactive and abnormal in the disease process. He speaks of a 2004 lecture he gave to A4M about the effects of HBOT on longevity; and asks, “Where is senescence and aging based?”, answering with, “It’s in our DNA”. Dr. Harch dives in to how HBOT turns on our genes to grow new tissue and stimulates cellular repair and regeneration. di Girolamo agrees and brings up a different past lecture from Dr. Harch where Harch referred to Hyperbaric Oxygen Therapy as the ‘Fountain of Youth‘.
This series ends with Dr. Harch discussing a Buffalo VA study, and how the study subjects (comprised of older veterans) literally came alive and started propositioning nurses after Hyperbaric Oxygen Therapy treatments. He explained this is why no follow-up study was ever done because they weren’t expecting such and didn’t know what to do. Makes sense…. studies have shown success in HBOT treating erectile dysfunction.
If you are searching for the Fountain of Youth and ready to activate 8,101 genes in your body —- find a Hyperbaric Oxygen Therapy clinic near you.
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Guest
Dr. Paul G. Harch, MD
Dr. Harch initiated and continues to be a private practice that has resulted in the largest case experience in neurological hyperbaric medicine in the world. In this practice, he adapted the concepts of conventional hyperbaric oxygen therapy to wounds in the central nervous system, which spawned the subsequent academic and research practice. Harch HBOT is the best place to receive oxygen therapy treatments, and patients have traveled from more than 50 countries to be treated by Dr. Harch himself.
Harch HBOT – Hyperbaric Oxygen Therapy Clinic
5216 Lapalco Blvd.
Marrero, LA
504-309-4948
hbot@hbot.com
https://hbot.com/
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Hyperbaric oxygen in chronic traumatic brain injury: oxygen, pressure, and gene therapy.
Hyperbaric oxygen therapy is a treatment for wounds in any location and of any duration that has been misunderstood for 353 years. Since 2008 it has been applied to the persistent post-concussion syndrome of mild traumatic brain injury by civilian and later military researchers with apparent conflicting results. The civilian studies are positive and the military-funded studies are a mixture of misinterpreted positive data, indeterminate data, and negative data. This has confused the medical, academic, and lay communities. The source of the confusion is a fundamental misunderstanding of the definition, principles, and mechanisms of action of hyperbaric oxygen therapy. This article argues that the traditional definition of hyperbaric oxygen therapy is arbitrary. The article establishes a scientific definition of hyperbaric oxygen therapy as a wound-healing therapy of combined increased atmospheric pressure and pressure of oxygen over ambient atmospheric pressure and pressure of oxygen whose main mechanisms of action are gene-mediated. Hyperbaric oxygen therapy exerts its wound-healing effects by expression and suppression of thousands of genes. The dominant gene actions are upregulation of trophic and anti-inflammatory genes and down-regulation of pro-inflammatory and apoptotic genes. The combination of genes affected depends on the different combinations of total pressure and pressure of oxygen. Understanding that hyperbaric oxygen therapy is a pressure and oxygen dose-dependent gene therapy allows for reconciliation of the conflicting TBI study results as outcomes of different doses of pressure and oxygen.
