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Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model

BACKGROUND & AIMS: Organ-level research using an animal model lacking Il2rg, the gene responsible for X-linked severe combined immunodeficiency (X-SCID), is clinically unavailable and would be a powerful tool to gain deeper insights into the symptoms of patients with X-SCID. METHODS: We used an...

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Autores principales: Nochi, Tomonori, Suzuki, Shunichi, Ito, Shun, Morita, Shotaro, Furukawa, Mutsumi, Fuchimoto, Daiichiro, Sasahara, Yoji, Usami, Katsuki, Niimi, Kanae, Itano, Osamu, Kitago, Minoru, Matsuda, Sachiko, Matsuo, Ayumi, Suyama, Yoshihisa, Sakai, Yoshifumi, Wu, Guoyao, Bazer, Fuller W., Watanabe, Kouichi, Onishi, Akira, Aso, Hisashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7210612/
https://www.ncbi.nlm.nih.gov/pubmed/32017983
http://dx.doi.org/10.1016/j.jcmgh.2020.01.011
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author Nochi, Tomonori
Suzuki, Shunichi
Ito, Shun
Morita, Shotaro
Furukawa, Mutsumi
Fuchimoto, Daiichiro
Sasahara, Yoji
Usami, Katsuki
Niimi, Kanae
Itano, Osamu
Kitago, Minoru
Matsuda, Sachiko
Matsuo, Ayumi
Suyama, Yoshihisa
Sakai, Yoshifumi
Wu, Guoyao
Bazer, Fuller W.
Watanabe, Kouichi
Onishi, Akira
Aso, Hisashi
author_facet Nochi, Tomonori
Suzuki, Shunichi
Ito, Shun
Morita, Shotaro
Furukawa, Mutsumi
Fuchimoto, Daiichiro
Sasahara, Yoji
Usami, Katsuki
Niimi, Kanae
Itano, Osamu
Kitago, Minoru
Matsuda, Sachiko
Matsuo, Ayumi
Suyama, Yoshihisa
Sakai, Yoshifumi
Wu, Guoyao
Bazer, Fuller W.
Watanabe, Kouichi
Onishi, Akira
Aso, Hisashi
author_sort Nochi, Tomonori
collection PubMed
description BACKGROUND & AIMS: Organ-level research using an animal model lacking Il2rg, the gene responsible for X-linked severe combined immunodeficiency (X-SCID), is clinically unavailable and would be a powerful tool to gain deeper insights into the symptoms of patients with X-SCID. METHODS: We used an X-SCID animal model, which was first established in our group by the deletion of Il2rg gene in pigs, to understand the clinical signs from multiple perspectives based on pathology, immunology, microbiology, and nutrition. We also treated the X-SCID pigs with bone marrow transplantation (BMT) for mimicking a current therapeutic treatment for patients with X-SCID and investigated the effect at the organ-level. Moreover, the results were confirmed using serum and fecal samples collected from patients with X-SCID. RESULTS: We demonstrated that X-SCID pigs completely lacked Peyer’s patches (PPs) and IgA production in the small intestine, but possessed some dysfunctional intestinal T and B cells. Another novel discovery was that X-SCID pigs developed a heterogeneous intestinal microflora and possessed abnormal plasma metabolites, indicating that X-SCID could be an immune disorder that affects various in vivo functions. Importantly, the organogenesis of PPs in X-SCID pigs was not promoted by BMT. Although a few isolated lymphoid follicles developed in the small intestine of BMT-treated X-SCID pigs, there was no evidence that they contributed to IgA production and microflora formation. Consistently, most patients with X-SCID who received BMT possessed abnormal intestinal immune and microbial environments regardless of the presence of sufficient serum IgG. CONCLUSIONS: These results indicate that the current BMT therapies for patients with X-SCID may be insufficient to induce the organogenesis of intestinal lymphoid tissues that are associated with numerous functions in vivo.
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spelling pubmed-72106122020-05-13 Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model Nochi, Tomonori Suzuki, Shunichi Ito, Shun Morita, Shotaro Furukawa, Mutsumi Fuchimoto, Daiichiro Sasahara, Yoji Usami, Katsuki Niimi, Kanae Itano, Osamu Kitago, Minoru Matsuda, Sachiko Matsuo, Ayumi Suyama, Yoshihisa Sakai, Yoshifumi Wu, Guoyao Bazer, Fuller W. Watanabe, Kouichi Onishi, Akira Aso, Hisashi Cell Mol Gastroenterol Hepatol Original Research BACKGROUND & AIMS: Organ-level research using an animal model lacking Il2rg, the gene responsible for X-linked severe combined immunodeficiency (X-SCID), is clinically unavailable and would be a powerful tool to gain deeper insights into the symptoms of patients with X-SCID. METHODS: We used an X-SCID animal model, which was first established in our group by the deletion of Il2rg gene in pigs, to understand the clinical signs from multiple perspectives based on pathology, immunology, microbiology, and nutrition. We also treated the X-SCID pigs with bone marrow transplantation (BMT) for mimicking a current therapeutic treatment for patients with X-SCID and investigated the effect at the organ-level. Moreover, the results were confirmed using serum and fecal samples collected from patients with X-SCID. RESULTS: We demonstrated that X-SCID pigs completely lacked Peyer’s patches (PPs) and IgA production in the small intestine, but possessed some dysfunctional intestinal T and B cells. Another novel discovery was that X-SCID pigs developed a heterogeneous intestinal microflora and possessed abnormal plasma metabolites, indicating that X-SCID could be an immune disorder that affects various in vivo functions. Importantly, the organogenesis of PPs in X-SCID pigs was not promoted by BMT. Although a few isolated lymphoid follicles developed in the small intestine of BMT-treated X-SCID pigs, there was no evidence that they contributed to IgA production and microflora formation. Consistently, most patients with X-SCID who received BMT possessed abnormal intestinal immune and microbial environments regardless of the presence of sufficient serum IgG. CONCLUSIONS: These results indicate that the current BMT therapies for patients with X-SCID may be insufficient to induce the organogenesis of intestinal lymphoid tissues that are associated with numerous functions in vivo. Elsevier 2020-02-01 /pmc/articles/PMC7210612/ /pubmed/32017983 http://dx.doi.org/10.1016/j.jcmgh.2020.01.011 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Nochi, Tomonori
Suzuki, Shunichi
Ito, Shun
Morita, Shotaro
Furukawa, Mutsumi
Fuchimoto, Daiichiro
Sasahara, Yoji
Usami, Katsuki
Niimi, Kanae
Itano, Osamu
Kitago, Minoru
Matsuda, Sachiko
Matsuo, Ayumi
Suyama, Yoshihisa
Sakai, Yoshifumi
Wu, Guoyao
Bazer, Fuller W.
Watanabe, Kouichi
Onishi, Akira
Aso, Hisashi
Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model
title Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model
title_full Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model
title_fullStr Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model
title_full_unstemmed Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model
title_short Elucidation of the Effects of a Current X-SCID Therapy on Intestinal Lymphoid Organogenesis Using an In Vivo Animal Model
title_sort elucidation of the effects of a current x-scid therapy on intestinal lymphoid organogenesis using an in vivo animal model
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7210612/
https://www.ncbi.nlm.nih.gov/pubmed/32017983
http://dx.doi.org/10.1016/j.jcmgh.2020.01.011
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