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The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients

The stem cell theory of aging postulates that stem cells become inefficient at maintaining the original functions of the tissues. We, therefore, hypothesized that transplanting young bone marrow (BM) to old recipients would lead to rejuvenating effects on immunity, followed by improved general healt...

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Autores principales: Jazbec, Katerina, Jež, Mojca, Švajger, Urban, Smrekar, Boštjan, Miceska, Simona, Rajčevič, Uroš, Justin, Mojca, Završnik, Janja, Malovrh, Tadej, Švara, Tanja, Gombač, Mitja, Ramšak, Živa, Rožman, Primož
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028083/
https://www.ncbi.nlm.nih.gov/pubmed/35454183
http://dx.doi.org/10.3390/biom12040595
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author Jazbec, Katerina
Jež, Mojca
Švajger, Urban
Smrekar, Boštjan
Miceska, Simona
Rajčevič, Uroš
Justin, Mojca
Završnik, Janja
Malovrh, Tadej
Švara, Tanja
Gombač, Mitja
Ramšak, Živa
Rožman, Primož
author_facet Jazbec, Katerina
Jež, Mojca
Švajger, Urban
Smrekar, Boštjan
Miceska, Simona
Rajčevič, Uroš
Justin, Mojca
Završnik, Janja
Malovrh, Tadej
Švara, Tanja
Gombač, Mitja
Ramšak, Živa
Rožman, Primož
author_sort Jazbec, Katerina
collection PubMed
description The stem cell theory of aging postulates that stem cells become inefficient at maintaining the original functions of the tissues. We, therefore, hypothesized that transplanting young bone marrow (BM) to old recipients would lead to rejuvenating effects on immunity, followed by improved general health, decreased frailty, and possibly life span extension. We developed a murine model of non-myeloablative heterochronic BM transplantation in which old female BALB/c mice at 14, 16, and 18(19) months of age received altogether 125.1 ± 15.6 million nucleated BM cells from young male donors aged 7–13 weeks. At 21 months, donor chimerism was determined, and the immune system’s innate and adaptive arms were analyzed. Mice were then observed for general health and frailty until spontaneous death, when their lifespan, post-mortem examinations, and histopathological changes were recorded. The results showed that the old mice developed on average 18.7 ± 9.6% donor chimerism in the BM and showed certain improvements in their innate and adaptive arms of the immune system, such as favorable counts of neutrophils in the spleen and BM, central memory Th cells, effector/effector memory Th and Tc cells in the spleen, and B1a and B1b cells in the peritoneal cavity. Borderline enhanced lymphocyte proliferation capacity was also seen. The frailty parameters, pathomorphological results, and life spans did not differ significantly in the transplanted vs. control group of mice. In conclusion, although several favorable effects are obtained in our heterochronic non-myeloablative transplantation model, additional optimization is needed for better rejuvenation effects.
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spelling pubmed-90280832022-04-23 The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients Jazbec, Katerina Jež, Mojca Švajger, Urban Smrekar, Boštjan Miceska, Simona Rajčevič, Uroš Justin, Mojca Završnik, Janja Malovrh, Tadej Švara, Tanja Gombač, Mitja Ramšak, Živa Rožman, Primož Biomolecules Article The stem cell theory of aging postulates that stem cells become inefficient at maintaining the original functions of the tissues. We, therefore, hypothesized that transplanting young bone marrow (BM) to old recipients would lead to rejuvenating effects on immunity, followed by improved general health, decreased frailty, and possibly life span extension. We developed a murine model of non-myeloablative heterochronic BM transplantation in which old female BALB/c mice at 14, 16, and 18(19) months of age received altogether 125.1 ± 15.6 million nucleated BM cells from young male donors aged 7–13 weeks. At 21 months, donor chimerism was determined, and the immune system’s innate and adaptive arms were analyzed. Mice were then observed for general health and frailty until spontaneous death, when their lifespan, post-mortem examinations, and histopathological changes were recorded. The results showed that the old mice developed on average 18.7 ± 9.6% donor chimerism in the BM and showed certain improvements in their innate and adaptive arms of the immune system, such as favorable counts of neutrophils in the spleen and BM, central memory Th cells, effector/effector memory Th and Tc cells in the spleen, and B1a and B1b cells in the peritoneal cavity. Borderline enhanced lymphocyte proliferation capacity was also seen. The frailty parameters, pathomorphological results, and life spans did not differ significantly in the transplanted vs. control group of mice. In conclusion, although several favorable effects are obtained in our heterochronic non-myeloablative transplantation model, additional optimization is needed for better rejuvenation effects. MDPI 2022-04-18 /pmc/articles/PMC9028083/ /pubmed/35454183 http://dx.doi.org/10.3390/biom12040595 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jazbec, Katerina
Jež, Mojca
Švajger, Urban
Smrekar, Boštjan
Miceska, Simona
Rajčevič, Uroš
Justin, Mojca
Završnik, Janja
Malovrh, Tadej
Švara, Tanja
Gombač, Mitja
Ramšak, Živa
Rožman, Primož
The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients
title The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients
title_full The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients
title_fullStr The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients
title_full_unstemmed The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients
title_short The Influence of Heterochronic Non-Myeloablative Bone Marrow Transplantation on the Immune System, Frailty, General Health, and Longevity of Aged Murine Recipients
title_sort influence of heterochronic non-myeloablative bone marrow transplantation on the immune system, frailty, general health, and longevity of aged murine recipients
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028083/
https://www.ncbi.nlm.nih.gov/pubmed/35454183
http://dx.doi.org/10.3390/biom12040595
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