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Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model

To align the xeno-metanephros and renal progenitor cell timing for transplantation treatments, cryopreservation techniques and an efficient transportation of regenerated renal products such as xeno-metanephroi and renal progenitor cells should be established. Therefore, we propose a novel method of...

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Autores principales: Takamura, Tsuyoshi, Nagashima, Hiroshi, Matsunari, Hitomi, Yamanaka, Shuichiro, Saito, Yatsumu, Kinoshita, Yoshitaka, Fujimoto, Toshinari, Matsumoto, Kei, Nakano, Kazuaki, Okano, Hirotaka James, Kobayashi, Eiji, Yokoo, Takashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9737507/
https://www.ncbi.nlm.nih.gov/pubmed/36498811
http://dx.doi.org/10.3390/jcm11237237
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author Takamura, Tsuyoshi
Nagashima, Hiroshi
Matsunari, Hitomi
Yamanaka, Shuichiro
Saito, Yatsumu
Kinoshita, Yoshitaka
Fujimoto, Toshinari
Matsumoto, Kei
Nakano, Kazuaki
Okano, Hirotaka James
Kobayashi, Eiji
Yokoo, Takashi
author_facet Takamura, Tsuyoshi
Nagashima, Hiroshi
Matsunari, Hitomi
Yamanaka, Shuichiro
Saito, Yatsumu
Kinoshita, Yoshitaka
Fujimoto, Toshinari
Matsumoto, Kei
Nakano, Kazuaki
Okano, Hirotaka James
Kobayashi, Eiji
Yokoo, Takashi
author_sort Takamura, Tsuyoshi
collection PubMed
description To align the xeno-metanephros and renal progenitor cell timing for transplantation treatments, cryopreservation techniques and an efficient transportation of regenerated renal products such as xeno-metanephroi and renal progenitor cells should be established. Therefore, we propose a novel method of xenogeneic regenerative medicine for patients with chronic kidney disease by grafting porcine fetal kidneys injected with human renal progenitor cells. To develop a useful cryopreserve system of porcine fetal kidney and human renal progenitor cells, we examined the cryopreservation of a fetal kidney implanted with renal progenitor cells in a mouse model. First, we developed a new method for direct cell injection under the capsule of the metanephros using gelatin as a support for unzipped fetal kidneys. Then, we confirmed in vitro that the nephrons derived from the transplanted cells were regenerated even after cryopreservation before and after cell transplantation. Furthermore, the cryopreserved chimeric metanephroi grew, and regenerated nephrons were observed in NOD. We confirmed that even in cryopreserved chimeric metanephroi, transplanted cell-derived nephrons as well as fresh transplants grew.
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spelling pubmed-97375072022-12-11 Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model Takamura, Tsuyoshi Nagashima, Hiroshi Matsunari, Hitomi Yamanaka, Shuichiro Saito, Yatsumu Kinoshita, Yoshitaka Fujimoto, Toshinari Matsumoto, Kei Nakano, Kazuaki Okano, Hirotaka James Kobayashi, Eiji Yokoo, Takashi J Clin Med Article To align the xeno-metanephros and renal progenitor cell timing for transplantation treatments, cryopreservation techniques and an efficient transportation of regenerated renal products such as xeno-metanephroi and renal progenitor cells should be established. Therefore, we propose a novel method of xenogeneic regenerative medicine for patients with chronic kidney disease by grafting porcine fetal kidneys injected with human renal progenitor cells. To develop a useful cryopreserve system of porcine fetal kidney and human renal progenitor cells, we examined the cryopreservation of a fetal kidney implanted with renal progenitor cells in a mouse model. First, we developed a new method for direct cell injection under the capsule of the metanephros using gelatin as a support for unzipped fetal kidneys. Then, we confirmed in vitro that the nephrons derived from the transplanted cells were regenerated even after cryopreservation before and after cell transplantation. Furthermore, the cryopreserved chimeric metanephroi grew, and regenerated nephrons were observed in NOD. We confirmed that even in cryopreserved chimeric metanephroi, transplanted cell-derived nephrons as well as fresh transplants grew. MDPI 2022-12-06 /pmc/articles/PMC9737507/ /pubmed/36498811 http://dx.doi.org/10.3390/jcm11237237 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
Takamura, Tsuyoshi
Nagashima, Hiroshi
Matsunari, Hitomi
Yamanaka, Shuichiro
Saito, Yatsumu
Kinoshita, Yoshitaka
Fujimoto, Toshinari
Matsumoto, Kei
Nakano, Kazuaki
Okano, Hirotaka James
Kobayashi, Eiji
Yokoo, Takashi
Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model
title Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model
title_full Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model
title_fullStr Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model
title_full_unstemmed Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model
title_short Development of a Cryopreservation Technique for Xenogeneic Kidney Grafts: Evaluation Using a Mouse Model
title_sort development of a cryopreservation technique for xenogeneic kidney grafts: evaluation using a mouse model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9737507/
https://www.ncbi.nlm.nih.gov/pubmed/36498811
http://dx.doi.org/10.3390/jcm11237237
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