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SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength

Disclosure: J.D. Zajac: None. T. Nie: None. V. Venkatesh: None. S. Golub: None. K. Stok: None. R. Desai: None. D.J. Handelsman: None. R.A. Davey: None. There are conflicting reports of the effects of GAHT on bone health and fracture risk in adult transgender women, and the underlying changes are poo...

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Autores principales: Zajac, Jeffrey D, Nie, Tian, Venkatesh, Varun, Golub, Suzanne, Stok, Kathryn, Desai, Reena, Handelsman, David J, Grossmann, Mathis, Davey, Rachel A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10554799/
http://dx.doi.org/10.1210/jendso/bvad114.2093
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author Zajac, Jeffrey D
Nie, Tian
Venkatesh, Varun
Golub, Suzanne
Stok, Kathryn
Desai, Reena
Handelsman, David J
Grossmann, Mathis
Davey, Rachel A
author_facet Zajac, Jeffrey D
Nie, Tian
Venkatesh, Varun
Golub, Suzanne
Stok, Kathryn
Desai, Reena
Handelsman, David J
Grossmann, Mathis
Davey, Rachel A
author_sort Zajac, Jeffrey D
collection PubMed
description Disclosure: J.D. Zajac: None. T. Nie: None. V. Venkatesh: None. S. Golub: None. K. Stok: None. R. Desai: None. D.J. Handelsman: None. R.A. Davey: None. There are conflicting reports of the effects of GAHT on bone health and fracture risk in adult transgender women, and the underlying changes are poorly understood. We aimed to determine the effects of GAHT administered during adulthood on bone microarchitecture and strength in a mouse model of male-to-female transition. To model male-to-female transition in adults, C57BL/6 male mice aged 16 weeks that had reached peak bone mass were administered an estradiol-filled silastic implant (∼1.3mg) intraperitoneally for 12 weeks. Controls included vehicle treated intact males and females, n=9-10/group. At study end, serum sex steroids were determined by LCMS/MS, femoral bone microarchitecture by μ-CT, and strength by 3-point bending. Mean serum estradiol was 4.7-fold higher in males treated with estradiol (91.8±10.4 pg/mL) than the peak estradiol levels observed during the proestrus stage of the estrus cycle in adult female mice (19.4±13.5 pg/mL, Handelsman, 2020). Estradiol treatment in males increased the endocortical deposition of bone evidenced by an increase in cortical thickness (mm)(P<0.05) and a decrease in medullary volume (mm(3))(P<0.05) compared to male and female controls. Periosteal circumference was not effected by estradiol treatment in males compared to controls. Trabecular bone volume/tissue volume (%) was 4-fold higher in estradiol treated males compared to male controls and 12-fold higher than female controls due to an increase in trabecular number (μm)(P<0.0001). The increase in both cortical and trabecular bone contributed to increased bone strength, as the maximum force (N) the bone could withstand prior to fracture was 2-fold higher in males treated with estradiol compared to both male and female controls (P<0.0001). Measurement of the material properties of the femur showed an increase in ultimate stress (MPa)(P<0.001) and elastic modulus (MPa)(P<0.01) in males following estradiol treatment compared to male controls, indicative of increased rigidity. In this model of adult male-to-female transition, supraphysiological levels of estradiol in male mice increases cortical and trabecular bone mass leading to increased bone strength. The increased rigidity of the femur following estradiol treatment suggests increased bone mineral content. It may be possible therefore, to preserve bone health and prevent fractures in trans women treated with GAHT, however a dose of estradiol that protects the bone without adverse side effects needs to be identified. Presentation: Saturday, June 17, 2023
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spelling pubmed-105547992023-10-06 SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength Zajac, Jeffrey D Nie, Tian Venkatesh, Varun Golub, Suzanne Stok, Kathryn Desai, Reena Handelsman, David J Grossmann, Mathis Davey, Rachel A J Endocr Soc Transgender Medicine Disclosure: J.D. Zajac: None. T. Nie: None. V. Venkatesh: None. S. Golub: None. K. Stok: None. R. Desai: None. D.J. Handelsman: None. R.A. Davey: None. There are conflicting reports of the effects of GAHT on bone health and fracture risk in adult transgender women, and the underlying changes are poorly understood. We aimed to determine the effects of GAHT administered during adulthood on bone microarchitecture and strength in a mouse model of male-to-female transition. To model male-to-female transition in adults, C57BL/6 male mice aged 16 weeks that had reached peak bone mass were administered an estradiol-filled silastic implant (∼1.3mg) intraperitoneally for 12 weeks. Controls included vehicle treated intact males and females, n=9-10/group. At study end, serum sex steroids were determined by LCMS/MS, femoral bone microarchitecture by μ-CT, and strength by 3-point bending. Mean serum estradiol was 4.7-fold higher in males treated with estradiol (91.8±10.4 pg/mL) than the peak estradiol levels observed during the proestrus stage of the estrus cycle in adult female mice (19.4±13.5 pg/mL, Handelsman, 2020). Estradiol treatment in males increased the endocortical deposition of bone evidenced by an increase in cortical thickness (mm)(P<0.05) and a decrease in medullary volume (mm(3))(P<0.05) compared to male and female controls. Periosteal circumference was not effected by estradiol treatment in males compared to controls. Trabecular bone volume/tissue volume (%) was 4-fold higher in estradiol treated males compared to male controls and 12-fold higher than female controls due to an increase in trabecular number (μm)(P<0.0001). The increase in both cortical and trabecular bone contributed to increased bone strength, as the maximum force (N) the bone could withstand prior to fracture was 2-fold higher in males treated with estradiol compared to both male and female controls (P<0.0001). Measurement of the material properties of the femur showed an increase in ultimate stress (MPa)(P<0.001) and elastic modulus (MPa)(P<0.01) in males following estradiol treatment compared to male controls, indicative of increased rigidity. In this model of adult male-to-female transition, supraphysiological levels of estradiol in male mice increases cortical and trabecular bone mass leading to increased bone strength. The increased rigidity of the femur following estradiol treatment suggests increased bone mineral content. It may be possible therefore, to preserve bone health and prevent fractures in trans women treated with GAHT, however a dose of estradiol that protects the bone without adverse side effects needs to be identified. Presentation: Saturday, June 17, 2023 Oxford University Press 2023-10-05 /pmc/articles/PMC10554799/ http://dx.doi.org/10.1210/jendso/bvad114.2093 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the Endocrine Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Transgender Medicine
Zajac, Jeffrey D
Nie, Tian
Venkatesh, Varun
Golub, Suzanne
Stok, Kathryn
Desai, Reena
Handelsman, David J
Grossmann, Mathis
Davey, Rachel A
SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength
title SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength
title_full SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength
title_fullStr SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength
title_full_unstemmed SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength
title_short SAT644 Gender Affirming Hormone Therapy (GHAT) In Adult Male-to-female Mice Increases Cortical And Trabecular Bone, Resulting In An Increase In Bone Strength
title_sort sat644 gender affirming hormone therapy (ghat) in adult male-to-female mice increases cortical and trabecular bone, resulting in an increase in bone strength
topic Transgender Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10554799/
http://dx.doi.org/10.1210/jendso/bvad114.2093
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