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The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial

Introduction: Skin biopsies can be used to evaluate physiological effects of aging targeted intervention at the tissue/cellular levels. Recent clinical trials have shown that hyperbaric oxygen therapy (HBOT) can target aging hallmarks, including telomere shortening, senescent cells clearance and ang...

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Autores principales: Hachmo, Yafit, Hadanny, Amir, Mendelovic, Sonia, Hillman, Pnina, Shapira, Eyal, Landau, Geva, Gattegno, Hadar, Zrachya, Avi, Daniel-Kotovsky, Malka, Catalogna, Merav, Fishlev, Gregory, Lang, Erez, Polak, Nir, Doenyas, Keren, Friedman, Mony, Zemel, Yonatan, Bechor, Yair, Efrati, Shai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8660605/
https://www.ncbi.nlm.nih.gov/pubmed/34784294
http://dx.doi.org/10.18632/aging.203701
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author Hachmo, Yafit
Hadanny, Amir
Mendelovic, Sonia
Hillman, Pnina
Shapira, Eyal
Landau, Geva
Gattegno, Hadar
Zrachya, Avi
Daniel-Kotovsky, Malka
Catalogna, Merav
Fishlev, Gregory
Lang, Erez
Polak, Nir
Doenyas, Keren
Friedman, Mony
Zemel, Yonatan
Bechor, Yair
Efrati, Shai
author_facet Hachmo, Yafit
Hadanny, Amir
Mendelovic, Sonia
Hillman, Pnina
Shapira, Eyal
Landau, Geva
Gattegno, Hadar
Zrachya, Avi
Daniel-Kotovsky, Malka
Catalogna, Merav
Fishlev, Gregory
Lang, Erez
Polak, Nir
Doenyas, Keren
Friedman, Mony
Zemel, Yonatan
Bechor, Yair
Efrati, Shai
author_sort Hachmo, Yafit
collection PubMed
description Introduction: Skin biopsies can be used to evaluate physiological effects of aging targeted intervention at the tissue/cellular levels. Recent clinical trials have shown that hyperbaric oxygen therapy (HBOT) can target aging hallmarks, including telomere shortening, senescent cells clearance and angiogenesis. The aim of this study was to evaluate the effects of HBOT on the skin of a normal, non-pathological, aging population. Methods: The study was performed as a prospective clinical trial. After signing informed consent and undergoing baseline evaluations, the subjects were assigned to a three-month control period followed by three months of HBOT daily sessions. Skin biopsies were taken at baseline, after three months of no intervention (control) and 1-2 weeks following the last HBOT session. Trichrome, Orecin, lipofuscin and CD31 staining were used to evaluate collagen fibers, elastic fibers, senescent cells and blood vessels, respectively. Results: Out of the cohort of 70 participants in the normal aging population study, thirteen male patients (age 68.07±2.5y) gave consent for repeated skin biopsies. Following HBOT, there was a significant increase in collagen density (p<0.001, effect size(es)=1.10), elastic fiber length (p<0.0001, es=2.71) and the number of blood vessels (p=0.02, es=1.00). There was a significant decrease in fiber fragmentation (p=0.012) and in tissue senescent cells (p=0.03, es=0.84) post-HBOT. No changes were noted in elastic fiber density or thickness. Conclusions: The study indicates, for the first time in humans, that HBOT can significantly modulate the pathophysiology of the skin aging in a healthy aging population. The demonstrated mechanisms include angiogenesis and senescent cell clearance.
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spelling pubmed-86606052021-12-13 The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial Hachmo, Yafit Hadanny, Amir Mendelovic, Sonia Hillman, Pnina Shapira, Eyal Landau, Geva Gattegno, Hadar Zrachya, Avi Daniel-Kotovsky, Malka Catalogna, Merav Fishlev, Gregory Lang, Erez Polak, Nir Doenyas, Keren Friedman, Mony Zemel, Yonatan Bechor, Yair Efrati, Shai Aging (Albany NY) Research Paper Introduction: Skin biopsies can be used to evaluate physiological effects of aging targeted intervention at the tissue/cellular levels. Recent clinical trials have shown that hyperbaric oxygen therapy (HBOT) can target aging hallmarks, including telomere shortening, senescent cells clearance and angiogenesis. The aim of this study was to evaluate the effects of HBOT on the skin of a normal, non-pathological, aging population. Methods: The study was performed as a prospective clinical trial. After signing informed consent and undergoing baseline evaluations, the subjects were assigned to a three-month control period followed by three months of HBOT daily sessions. Skin biopsies were taken at baseline, after three months of no intervention (control) and 1-2 weeks following the last HBOT session. Trichrome, Orecin, lipofuscin and CD31 staining were used to evaluate collagen fibers, elastic fibers, senescent cells and blood vessels, respectively. Results: Out of the cohort of 70 participants in the normal aging population study, thirteen male patients (age 68.07±2.5y) gave consent for repeated skin biopsies. Following HBOT, there was a significant increase in collagen density (p<0.001, effect size(es)=1.10), elastic fiber length (p<0.0001, es=2.71) and the number of blood vessels (p=0.02, es=1.00). There was a significant decrease in fiber fragmentation (p=0.012) and in tissue senescent cells (p=0.03, es=0.84) post-HBOT. No changes were noted in elastic fiber density or thickness. Conclusions: The study indicates, for the first time in humans, that HBOT can significantly modulate the pathophysiology of the skin aging in a healthy aging population. The demonstrated mechanisms include angiogenesis and senescent cell clearance. Impact Journals 2021-11-16 /pmc/articles/PMC8660605/ /pubmed/34784294 http://dx.doi.org/10.18632/aging.203701 Text en Copyright: © 2021 Hachmo et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Hachmo, Yafit
Hadanny, Amir
Mendelovic, Sonia
Hillman, Pnina
Shapira, Eyal
Landau, Geva
Gattegno, Hadar
Zrachya, Avi
Daniel-Kotovsky, Malka
Catalogna, Merav
Fishlev, Gregory
Lang, Erez
Polak, Nir
Doenyas, Keren
Friedman, Mony
Zemel, Yonatan
Bechor, Yair
Efrati, Shai
The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial
title The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial
title_full The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial
title_fullStr The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial
title_full_unstemmed The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial
title_short The effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial
title_sort effect of hyperbaric oxygen therapy on the pathophysiology of skin aging: a prospective clinical trial
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8660605/
https://www.ncbi.nlm.nih.gov/pubmed/34784294
http://dx.doi.org/10.18632/aging.203701
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