Microtubule Integrity Is Associated with Mitochondrial Function and Quality of Murine Preimplantation Embryos
Yu-Ha Shim, Min-Jeong Cho, Min-Hee Kang, Yu-Jin Kim, Seung-A Oh, Ji-Soo Ryu, Byeong-Jun Mun, Jin-Young An, Jae-Ho Lee

TL;DR
Improving microtubule integrity in mouse embryos boosts mitochondrial function and embryo quality, potentially aiding reproductive treatments.
Contribution
This study shows that microtubule stabilizers enhance embryo quality through improved mitochondrial function.
Findings
MTS-treated embryos had higher mitochondrial membrane potentials and motility.
Blastocyst formation was significantly higher in MTS-treated embryos.
MTS-treated embryos resulted in more offspring in surrogate mice.
Abstract
Poor embryo quality is a major cause of poor clinical outcomes in assisted reproductive medicine, and there are no currently available interventions that can improve embryo quality. Mitochondria dysfunction is linked to low-quality female gametes and zygotes. Previously, microtubule integrity was also associated with mitochondrial function in oocytes. In the present study, we investigated the effects of the microtubule stabilizers (MTS) Taxol and Epothilone D (EpD) and the microtubule disturber (MTD) vinorelbine on mouse preimplantation embryo quality and pregnancy outcome compared with non-treatment controls. We prepared young BDF1 mice (7~9 weeks old) and cultured preimplantation embryos with MTS or MTD. Mitochondrial functional activity and embryo development ratios including pregnancy ratios were then assessed. MTS-treated embryos showed significantly increased mitochondrial…
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Taxonomy
TopicsPluripotent Stem Cells Research · Reproductive Biology and Fertility · Microtubule and mitosis dynamics
