Efficient breeding system of infertile Niemann–Pick disease type C model mice by in vitro fertilization and embryo transfer

Author:

Kuroshima Serina12,Nakao Satohiro1,Horikoshi Yuka1,Ito Kotono1,Ishii Akira2,Shirakawa Aina2,Kondo Yuki2,Irie Tetsumi3,Ishitsuka Yoichi2,Nakagata Naomi4,Takeo Toru1ORCID

Affiliation:

1. Division of Reproductive Engineering, Center for Animal Resources and Development, Kumamoto University, Japan

2. Department of Clinical Chemistry and Informatics, Graduate School of Pharmaceutical Sciences, Kumamoto University, Japan

3. Department of Pharmaceutical Packaging Technology, Faculty of Life Sciences, Kumamoto University, Japan

4. Division of Reproductive Biotechnology and Innovation, Center for Animal Resources and Development, Kumamoto University, Japan

Abstract

Niemann–Pick disease type C (NPC) is a lethal genetic disease with mutations in NPC1 or NPC2 gene. Npc1-deficient ( Npc1−/−) mice have been used as a model for NPC pathogenesis to develop novel therapies for NPC. However, Npc1−/− mice are infertile; thus, securing sufficient numbers for translational research is difficult. Hence, we attempted reproductive engineering techniques such as in vitro fertilization (IVF) and sperm cryopreservation. For the first time, we succeeded in producing fertilized oocytes via IVF using male and female Npc1−/− mice. Fertilized oocytes were also obtained via IVF using cryopreserved sperm from Npc1−/− mice. The obtained fertilized oocytes normally developed into live pups via embryo transfer, and they eventually exhibited NPC pathogenesis. These findings are useful for generating an efficient breeding system that overcomes the reproductive challenges of Npc1−/− mice and will contribute to developing novel therapeutic methods using NPC model mice.

Funder

Japan Agency for Medical Research and Development

Publisher

SAGE Publications

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