Loi Pasqualino, Galli Cesare, Lazzari Giovanna, Matsukawa Kazutsugu, Fulka Josef, Goeritz Frank, Hildebrandt Thomas B
Laboratory of Embryology, Faculty of Veterinary Medicine, University of Teramo, 64100 Teramo, Italy.
Avantea srl., Laboratorio di Tecnologie della Riproduzione, Cremona, Italy.
J Reprod Dev. 2018 Apr 13;64(2):187-191. doi: 10.1262/jrd.2017-109. Epub 2018 Feb 15.
Here we report in vitro and term development of sheep embryos after the inner cell mass (ICM) from one set of sheep blastocysts were injected into the trophoblast vesicles of another set. We also observed successful in vitro development of chimeric blastocysts made from sheep trophoblast vesicles injected with bovine ICM. First, we dissected ICMs from 35 sheep blastocysts using a stainless steel microblade and injected them into 29 re-expanded sheep trophoblastic vesicles. Of the 25 successfully micromanipulated trophoblastic vesicles, 15 (51.7%) re-expanded normally and showed proper ICM integration. The seven most well reconstructed embryos were transferred for development to term. Three ewes receiving manipulated blastocysts were pregnant at day 45 (42.8%), and all delivered normal offspring (singletons, two females and one male, average weight: 3.54 ± 0.358 kg). Next, we monitored in vitro development of sheep trophoblasts injected with bovine ICMs. Of 17 injected trophoblastic vesicles, 10 (58.8%) re-expanded after 4 h in culture, and four (40%) exhibited integrated bovine ICM. Our results indicate that ICM/trophoblast exchange is feasible, allowing full term development with satisfactory lambing rate. Therefore, ICM exchange is a promising approach for endangered species conservation.
在此,我们报告了将一组绵羊囊胚的内细胞团(ICM)注射到另一组滋养层囊泡后绵羊胚胎的体外发育和足月发育情况。我们还观察到,由注射了牛ICM的绵羊滋养层囊泡制成的嵌合囊胚在体外成功发育。首先,我们用不锈钢微型刀片从35个绵羊囊胚中分离出ICM,并将其注射到29个重新扩张的绵羊滋养层囊泡中。在25个成功进行显微操作的滋养层囊泡中,15个(51.7%)正常重新扩张,并显示出ICM的正确整合。将7个重构效果最好的胚胎转移至足月发育。三只接受操作囊胚的母羊在第45天怀孕(42.8%),并且均产下正常后代(单胎,两雌一雄,平均体重:3.54±0.358千克)。接下来,我们监测了注射牛ICM的绵羊滋养层的体外发育情况。在17个注射的滋养层囊泡中,10个(58.8%)在培养4小时后重新扩张,4个(40%)显示出整合的牛ICM。我们的结果表明,ICM/滋养层交换是可行的,能够实现足月发育并具有令人满意的产羔率。因此,ICM交换是一种有前途的濒危物种保护方法。