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Porcine Model of Hemophilia A

Hemophilia A is a common X chromosome-linked genetic bleeding disorder caused by abnormalities in the coagulation factor VIII gene (F8). Hemophilia A patients suffer from a bleeding diathesis, such as life-threatening bleeding in the brain and harmful bleeding in joints and muscles. Because it could...

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Autores principales: Kashiwakura, Yuji, Mimuro, Jun, Onishi, Akira, Iwamoto, Masaki, Madoiwa, Seiji, Fuchimoto, Daiichiro, Suzuki, Shunichi, Suzuki, Misae, Sembon, Shoichiro, Ishiwata, Akira, Yasumoto, Atsushi, Sakata, Asuka, Ohmori, Tsukasa, Hashimoto, Michiko, Yazaki, Satoko, Sakata, Yoichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3509096/
https://www.ncbi.nlm.nih.gov/pubmed/23209578
http://dx.doi.org/10.1371/journal.pone.0049450
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author Kashiwakura, Yuji
Mimuro, Jun
Onishi, Akira
Iwamoto, Masaki
Madoiwa, Seiji
Fuchimoto, Daiichiro
Suzuki, Shunichi
Suzuki, Misae
Sembon, Shoichiro
Ishiwata, Akira
Yasumoto, Atsushi
Sakata, Asuka
Ohmori, Tsukasa
Hashimoto, Michiko
Yazaki, Satoko
Sakata, Yoichi
author_facet Kashiwakura, Yuji
Mimuro, Jun
Onishi, Akira
Iwamoto, Masaki
Madoiwa, Seiji
Fuchimoto, Daiichiro
Suzuki, Shunichi
Suzuki, Misae
Sembon, Shoichiro
Ishiwata, Akira
Yasumoto, Atsushi
Sakata, Asuka
Ohmori, Tsukasa
Hashimoto, Michiko
Yazaki, Satoko
Sakata, Yoichi
author_sort Kashiwakura, Yuji
collection PubMed
description Hemophilia A is a common X chromosome-linked genetic bleeding disorder caused by abnormalities in the coagulation factor VIII gene (F8). Hemophilia A patients suffer from a bleeding diathesis, such as life-threatening bleeding in the brain and harmful bleeding in joints and muscles. Because it could potentially be cured by gene therapy, subhuman animal models have been sought. Current mouse hemophilia A models generated by gene targeting of the F8 have difficulties to extrapolate human disease due to differences in the coagulation and immune systems between mice and humans. Here, we generated a porcine model of hemophilia A by nuclear transfer cloning from F8-targeted fibroblasts. The hemophilia A pigs showed a severe bleeding tendency upon birth, similar to human severe hemophiliacs, but in contrast to hemophilia A mice which rarely bleed under standard breed conditions. Infusion of human factor VIII was effective in stopping bleeding and reducing the bleeding frequency of a hemophilia A piglet but was blocked by the inhibitor against human factor VIII. These data suggest that the hemophilia A pig is a severe hemophilia A animal model for studying not only hemophilia A gene therapy but also the next generation recombinant coagulation factors, such as recombinant factor VIII variants with a slower clearance rate.
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spelling pubmed-35090962012-12-03 Porcine Model of Hemophilia A Kashiwakura, Yuji Mimuro, Jun Onishi, Akira Iwamoto, Masaki Madoiwa, Seiji Fuchimoto, Daiichiro Suzuki, Shunichi Suzuki, Misae Sembon, Shoichiro Ishiwata, Akira Yasumoto, Atsushi Sakata, Asuka Ohmori, Tsukasa Hashimoto, Michiko Yazaki, Satoko Sakata, Yoichi PLoS One Research Article Hemophilia A is a common X chromosome-linked genetic bleeding disorder caused by abnormalities in the coagulation factor VIII gene (F8). Hemophilia A patients suffer from a bleeding diathesis, such as life-threatening bleeding in the brain and harmful bleeding in joints and muscles. Because it could potentially be cured by gene therapy, subhuman animal models have been sought. Current mouse hemophilia A models generated by gene targeting of the F8 have difficulties to extrapolate human disease due to differences in the coagulation and immune systems between mice and humans. Here, we generated a porcine model of hemophilia A by nuclear transfer cloning from F8-targeted fibroblasts. The hemophilia A pigs showed a severe bleeding tendency upon birth, similar to human severe hemophiliacs, but in contrast to hemophilia A mice which rarely bleed under standard breed conditions. Infusion of human factor VIII was effective in stopping bleeding and reducing the bleeding frequency of a hemophilia A piglet but was blocked by the inhibitor against human factor VIII. These data suggest that the hemophilia A pig is a severe hemophilia A animal model for studying not only hemophilia A gene therapy but also the next generation recombinant coagulation factors, such as recombinant factor VIII variants with a slower clearance rate. Public Library of Science 2012-11-28 /pmc/articles/PMC3509096/ /pubmed/23209578 http://dx.doi.org/10.1371/journal.pone.0049450 Text en © 2012 Kashiwakura et al http://creativecommons.org/licenses/by/4.0/ 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 the original author and source are properly credited.
spellingShingle Research Article
Kashiwakura, Yuji
Mimuro, Jun
Onishi, Akira
Iwamoto, Masaki
Madoiwa, Seiji
Fuchimoto, Daiichiro
Suzuki, Shunichi
Suzuki, Misae
Sembon, Shoichiro
Ishiwata, Akira
Yasumoto, Atsushi
Sakata, Asuka
Ohmori, Tsukasa
Hashimoto, Michiko
Yazaki, Satoko
Sakata, Yoichi
Porcine Model of Hemophilia A
title Porcine Model of Hemophilia A
title_full Porcine Model of Hemophilia A
title_fullStr Porcine Model of Hemophilia A
title_full_unstemmed Porcine Model of Hemophilia A
title_short Porcine Model of Hemophilia A
title_sort porcine model of hemophilia a
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3509096/
https://www.ncbi.nlm.nih.gov/pubmed/23209578
http://dx.doi.org/10.1371/journal.pone.0049450
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