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Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment

Ionizing irradiation (IR) causes bone marrow (BM) injury, with senescence and impaired self-renewal of hematopoietic stem cells (HSCs), and inhibiting Wnt signaling could enhance hematopoietic regeneration and survival against IR stress. However, the underlying mechanisms by which a Wnt signaling bl...

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Autores principales: Sim, Hyun-Jaung, So, Han-Sol, Poudel, Sher Bahadur, Bhattarai, Govinda, Cho, Eui-Sic, Lee, Jeong-Chae, Kook, Sung-Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: JKL International LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10187694/
https://www.ncbi.nlm.nih.gov/pubmed/37191410
http://dx.doi.org/10.14336/AD.2022.1026
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author Sim, Hyun-Jaung
So, Han-Sol
Poudel, Sher Bahadur
Bhattarai, Govinda
Cho, Eui-Sic
Lee, Jeong-Chae
Kook, Sung-Ho
author_facet Sim, Hyun-Jaung
So, Han-Sol
Poudel, Sher Bahadur
Bhattarai, Govinda
Cho, Eui-Sic
Lee, Jeong-Chae
Kook, Sung-Ho
author_sort Sim, Hyun-Jaung
collection PubMed
description Ionizing irradiation (IR) causes bone marrow (BM) injury, with senescence and impaired self-renewal of hematopoietic stem cells (HSCs), and inhibiting Wnt signaling could enhance hematopoietic regeneration and survival against IR stress. However, the underlying mechanisms by which a Wnt signaling blockade modulates IR-mediated damage of BM HSCs and mesenchymal stem cells (MSCs) are not yet completely understood. We investigated the effects of osteoblastic Wntless (Wls) depletion on total body irradiation (TBI, 5 Gy)-induced impairments in hematopoietic development, MSC function, and the BM microenvironment using conditional Wls knockout mutant mice (Col-Cre;Wls(fl/fl)) and their littermate controls (Wls(fl/fl)). Osteoblastic Wls ablation itself did not dysregulate BM frequency or hematopoietic development at a young age. Exposure to TBI at 4 weeks of age induced severe oxidative stress and senescence in the BM HSCs of Wls(fl/fl) mice but not in those of the Col-Cre;Wls(fl/fl) mice. TBI-exposed Wls(fl/fl) mice exhibited greater impairments in hematopoietic development, colony formation, and long-term repopulation than TBI-exposed Col-Cre;Wls(fl/fl) mice. Transplantation with BM HSCs or whole BM cells derived from the mutant, but not Wls(fl/fl) mice, protected against HSC senescence and hematopoietic skewing toward myeloid cells and enhanced survival in recipients of lethal TBI (10 Gy). Unlike the Wls(fl/fl) mice, the Col-Cre;Wls(fl/fl) mice also showed radioprotection against TBI-mediated MSC senescence, bone mass loss, and delayed body growth. Our results indicate that osteoblastic Wls ablation renders BM-conserved stem cells resistant to TBI-mediated oxidative injuries. Overall, our findings show that inhibiting osteoblastic Wnt signaling promotes hematopoietic radioprotection and regeneration.
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spelling pubmed-101876942023-06-01 Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment Sim, Hyun-Jaung So, Han-Sol Poudel, Sher Bahadur Bhattarai, Govinda Cho, Eui-Sic Lee, Jeong-Chae Kook, Sung-Ho Aging Dis Original Article Ionizing irradiation (IR) causes bone marrow (BM) injury, with senescence and impaired self-renewal of hematopoietic stem cells (HSCs), and inhibiting Wnt signaling could enhance hematopoietic regeneration and survival against IR stress. However, the underlying mechanisms by which a Wnt signaling blockade modulates IR-mediated damage of BM HSCs and mesenchymal stem cells (MSCs) are not yet completely understood. We investigated the effects of osteoblastic Wntless (Wls) depletion on total body irradiation (TBI, 5 Gy)-induced impairments in hematopoietic development, MSC function, and the BM microenvironment using conditional Wls knockout mutant mice (Col-Cre;Wls(fl/fl)) and their littermate controls (Wls(fl/fl)). Osteoblastic Wls ablation itself did not dysregulate BM frequency or hematopoietic development at a young age. Exposure to TBI at 4 weeks of age induced severe oxidative stress and senescence in the BM HSCs of Wls(fl/fl) mice but not in those of the Col-Cre;Wls(fl/fl) mice. TBI-exposed Wls(fl/fl) mice exhibited greater impairments in hematopoietic development, colony formation, and long-term repopulation than TBI-exposed Col-Cre;Wls(fl/fl) mice. Transplantation with BM HSCs or whole BM cells derived from the mutant, but not Wls(fl/fl) mice, protected against HSC senescence and hematopoietic skewing toward myeloid cells and enhanced survival in recipients of lethal TBI (10 Gy). Unlike the Wls(fl/fl) mice, the Col-Cre;Wls(fl/fl) mice also showed radioprotection against TBI-mediated MSC senescence, bone mass loss, and delayed body growth. Our results indicate that osteoblastic Wls ablation renders BM-conserved stem cells resistant to TBI-mediated oxidative injuries. Overall, our findings show that inhibiting osteoblastic Wnt signaling promotes hematopoietic radioprotection and regeneration. JKL International LLC 2023-06-01 /pmc/articles/PMC10187694/ /pubmed/37191410 http://dx.doi.org/10.14336/AD.2022.1026 Text en Copyright: © 2023 Sim et al. https://creativecommons.org/licenses/by/2.0/this is an open access article distributed under the terms of the creative commons attribution license, which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Original Article
Sim, Hyun-Jaung
So, Han-Sol
Poudel, Sher Bahadur
Bhattarai, Govinda
Cho, Eui-Sic
Lee, Jeong-Chae
Kook, Sung-Ho
Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment
title Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment
title_full Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment
title_fullStr Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment
title_full_unstemmed Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment
title_short Osteoblastic Wls Ablation Protects Mice from Total Body Irradiation-Induced Impairments in Hematopoiesis and Bone Marrow Microenvironment
title_sort osteoblastic wls ablation protects mice from total body irradiation-induced impairments in hematopoiesis and bone marrow microenvironment
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10187694/
https://www.ncbi.nlm.nih.gov/pubmed/37191410
http://dx.doi.org/10.14336/AD.2022.1026
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