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Soluble Prorenin Receptor and Vascular Damage

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Manage episode 372749677 series 3479554
Innehåll tillhandahållet av American Physiological Society. Allt poddinnehåll inklusive avsnitt, grafik och podcastbeskrivningar laddas upp och tillhandahålls direkt av American Physiological Society eller deras podcastplattformspartner. Om du tror att någon använder ditt upphovsrättsskyddade verk utan din tillåtelse kan du följa processen som beskrivs här https://sv.player.fm/legal.

What is the impact of female sex hormones on obesity, diabetes, and vascular dysfunction? In this episode, Deputy Editor Dr. Zam Kassiri (University of Alberta) interviews authors Dr. Bruna Visniauskas and Dr. Minolfa Prieto (both at Tulane University School of Medicine), along with expert Dr. Glen Pyle (IMPART Network at Dalhousie Medicine) about the new study by Visniauskas et al. Using a long-term high fat diet mouse model of type 2 diabetes, the authors found that male mice had higher increases in plasma levels of prorenin and renin soluble prorenin receptor and angiotensin 2, which was also associated with hypertension and carotid artery stiffness, compared to female mice. This led Visniauskas et al. to interrogate a potential causal role of soluble prorenin receptor in development of the diabetes phenotype in the mice fed the high fat diet. Since female mice were less prone to the diabetic phenotype than males, the authors ovariectomized female mice to interrogate the role of estrogen in the development of the diabetes phenotype. Prieto, Visniauskas, and co-authors observed the Type 2 diabetes phenotype in both males and ovariectomized females but not intact females. How does dipping vs. non-dipping hypertension factor in? Will the soluble prorenin receptor emerge as a more reliable biomarker for vascular pathologies related to diabetes? Listen and find out.

Bruna Visniauskas, Virginia Reverte, Caleb M. Abshire, Benard O. Ogola, Carla B. Rosales, Michelle Galeas-Pena, Venkata N. Sure, Siva S. V. P. Sakamuri, Nicholas R. Harris, Isabella Kilanowski-Doroh, Alexandra B. Mcnally, Alec C. Horton, Margaret Zimmerman, Prasad V. G. Katakam, Sarah H. Lindsey, and Minolfa C. Prieto High-plasma soluble prorenin receptor is associated with vascular damage in male, but not female, mice fed a high-fat diet Am J Physiol Heart Circ Physiol, published April 25, 2023. DOI: 10.1152/ajpheart.00638.2022

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20 episoder

Artwork
iconDela
 
Manage episode 372749677 series 3479554
Innehåll tillhandahållet av American Physiological Society. Allt poddinnehåll inklusive avsnitt, grafik och podcastbeskrivningar laddas upp och tillhandahålls direkt av American Physiological Society eller deras podcastplattformspartner. Om du tror att någon använder ditt upphovsrättsskyddade verk utan din tillåtelse kan du följa processen som beskrivs här https://sv.player.fm/legal.

What is the impact of female sex hormones on obesity, diabetes, and vascular dysfunction? In this episode, Deputy Editor Dr. Zam Kassiri (University of Alberta) interviews authors Dr. Bruna Visniauskas and Dr. Minolfa Prieto (both at Tulane University School of Medicine), along with expert Dr. Glen Pyle (IMPART Network at Dalhousie Medicine) about the new study by Visniauskas et al. Using a long-term high fat diet mouse model of type 2 diabetes, the authors found that male mice had higher increases in plasma levels of prorenin and renin soluble prorenin receptor and angiotensin 2, which was also associated with hypertension and carotid artery stiffness, compared to female mice. This led Visniauskas et al. to interrogate a potential causal role of soluble prorenin receptor in development of the diabetes phenotype in the mice fed the high fat diet. Since female mice were less prone to the diabetic phenotype than males, the authors ovariectomized female mice to interrogate the role of estrogen in the development of the diabetes phenotype. Prieto, Visniauskas, and co-authors observed the Type 2 diabetes phenotype in both males and ovariectomized females but not intact females. How does dipping vs. non-dipping hypertension factor in? Will the soluble prorenin receptor emerge as a more reliable biomarker for vascular pathologies related to diabetes? Listen and find out.

Bruna Visniauskas, Virginia Reverte, Caleb M. Abshire, Benard O. Ogola, Carla B. Rosales, Michelle Galeas-Pena, Venkata N. Sure, Siva S. V. P. Sakamuri, Nicholas R. Harris, Isabella Kilanowski-Doroh, Alexandra B. Mcnally, Alec C. Horton, Margaret Zimmerman, Prasad V. G. Katakam, Sarah H. Lindsey, and Minolfa C. Prieto High-plasma soluble prorenin receptor is associated with vascular damage in male, but not female, mice fed a high-fat diet Am J Physiol Heart Circ Physiol, published April 25, 2023. DOI: 10.1152/ajpheart.00638.2022

  continue reading

20 episoder

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