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抑制凋亡途径可改善家猫未成熟玻璃化卵母细胞的DNA完整性,但不能提高其发育能力。

Inhibition of Apoptotic Pathways Improves DNA Integrity but Not Developmental Competence of Domestic Cat Immature Vitrified Oocytes.

作者信息

Colombo Martina, Zahmel Jennifer, Jänsch Stefanie, Jewgenow Katarina, Luvoni Gaia Cecilia

机构信息

Dipartimento di Scienze Veterinarie per la Salute, la Produzione Animale e la Sicurezza Alimentare "Carlo Cantoni", Università degli Studi di Milano, Milan, Italy.

Department of Reproduction Biology, Leibniz-Institute for Zoo and Wildlife Research, Berlin, Germany.

出版信息

Front Vet Sci. 2020 Oct 16;7:588334. doi: 10.3389/fvets.2020.588334. eCollection 2020.

Abstract

Being a model for endangered wild felids, cryopreservation protocols for domestic cat oocytes are under continuous development. Immature vitrified oocytes (VOs) are a valuable resource for fertility preservation programs, but they often degenerate after warming and their development is poor. Since the exact mechanisms are not clear, this study assessed whether vitrification might trigger two apoptotic markers (DNA fragmentation and caspase activity, Experiment I) and the effects of a chemical inhibitor (i.e., the pan-caspase inhibitor Z-VAD-FMK) on the same markers (Experiment II) and on VOs development (Experiment III). The overarching aim was to check whether apoptosis inhibition might be a strategy to improve cat oocytes cryotolerance. In Experiment I, vitrification induced DNA fragmentation and increased caspase activity in VOs incubated for 24 h after warming (DNA fragmentation: 59.38%; caspase activity: 414.6 ± 326.8) compared to a fresh control (9.68%; 199.6 ± 178.3; = 0.02). In Experiment II, the addition of Z-VAD-FMK to vitrification-warming and incubation media decreased DNA fragmentation and caspase activity (8.82%; 243.7 ± 106.9) compared to control (untreated) VOs (69.44%; 434.5 ± 248.3; < 0.001). In Experiment III, Z-VAD-FMK brought maturation rates of treated VOs close to those of fresh oocytes (53.13 and 65.38%, respectively, = 0.057), but there were no differences in VOs embryo development (cleavage rates; Z-VAD-FMK-treated VOs: 34.38%; control VOs: 31.78%; = 0.69). In summary, vitrification increased apoptotic markers in cat VOs, and while Z-VAD-FMK was able to hinder DNA damage and caspase activity, its addition was not determinant for embryo development. To make the best use of VOs, other oocyte maturation and embryo culture strategies, such as the addition of other inhibitors or their prolonged use, should be investigated.

摘要

作为濒危野生猫科动物的模型,家猫卵母细胞的冷冻保存方案正在不断发展。未成熟的玻璃化卵母细胞(VOs)是生育力保存计划的宝贵资源,但它们在解冻后常常退化,发育情况也不佳。由于确切机制尚不清楚,本研究评估了玻璃化是否可能触发两种凋亡标志物(DNA片段化和半胱天冬酶活性,实验一),以及一种化学抑制剂(即泛半胱天冬酶抑制剂Z-VAD-FMK)对相同标志物(实验二)和VOs发育(实验三)的影响。总体目标是检验抑制凋亡是否可能是提高猫卵母细胞冷冻耐受性的一种策略。在实验一中,与新鲜对照相比,玻璃化处理在解冻后孵育24小时的VOs中诱导了DNA片段化并增加了半胱天冬酶活性(DNA片段化:59.38%;半胱天冬酶活性:414.6±326.8)(新鲜对照为9.68%;199.6±178.3;P=0.02)。在实验二中,与对照(未处理)VOs相比,在玻璃化-解冻和孵育培养基中添加Z-VAD-FMK降低了DNA片段化和半胱天冬酶活性(8.82%;243.7±106.9)(对照为69.44%;434.5±248.3;P<0.001)。在实验三中,Z-VAD-FMK使处理后的VOs的成熟率接近新鲜卵母细胞的成熟率(分别为53.13%和65.38%,P=0.057),但VOs的胚胎发育没有差异(卵裂率;Z-VAD-FMK处理的VOs为34.38%;对照VOs为31.78%;P=0.69)。总之,玻璃化增加了猫VOs中的凋亡标志物,虽然Z-VAD-FMK能够阻碍DNA损伤和半胱天冬酶活性,但其添加对胚胎发育并非决定性因素。为了充分利用VOs,应研究其他卵母细胞成熟和胚胎培养策略,如添加其他抑制剂或延长其使用时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbfc/7596218/e2713629a716/fvets-07-588334-g0001.jpg

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