Lim J M, Reggio B C, Godke R A, Hansel W
Department of Reproductive Biotechnology, LSU-Pennington Biomedical Research Center, Louisiana State University, Baton Rouge 70808-4124, USA.
Reprod Fertil Dev. 1997;9(4):411-8. doi: 10.1071/r96070.
Three experiments were conducted in an attempt to improve a continuous flow-perifusion system capable of maintaining embryo development for long periods of time. Bovine embryos (8-16 cells) obtained from static co-culture with cumulus cells in a serum-free medium were perifused in an ACUSYST-S cell culture incubator. Culture chambers of the incubator consisted of a 0.2-mL unit (Chamber 1) connected to a 1.5-mL unit (Chamber 2), with the outflow from Chamber 1 routed to the inlet to Chamber 2. A bovine embryo culture medium supplemented with 3 mg mL-1 bovine serum albumin (BSA) and 25 mM HEPES was used as a perifusion culture medium (PCM). Embryos were perifused in Chamber 2 for 24, 48 and 72 h and further co-cultured in a static system up to 216 h after insemination. In Experiment 1, conditioning PCM with frozen-thawed bovine oviduct epithelial cells (BOEC) placed in Chamber 1 enhanced (P < 0.05) blastocyst formation of embryos in Chamber 2, after 24, 48 and 72 h of perifusion culture. The proportion of blastocysts was not further increased by placing BOEC in Chamber 2 along with the embryos. In Experiment 2, embryos were perifused with PCM conditioned with BOEC in Chamber 1 for 48 h or 72 h. A higher proportion of perifused embryos developed to the blastocyst stage after addition of 25 U mL-1 or 50 U mL-1 of superoxide dismutase (SOD) to PCM than in its absence. However, blastocyst formation of embryos perifused for 72 h was not increased after addition of 50 U mL-1 SOD compared with its absence. In Experiment 3, the proportions of morulae and blastocysts were not decreased by replacement of 3 mg mL-1 BSA with 1 mg mL-1 polyvinyl alcohol (PVA) in a BOEC-conditioned medium containing 50 U mL-1 SOD after perifusion for 48 h. In conclusion, PCM conditioning with BOEC and addition of an antioxidant to the perifusion medium improved the developmental capacity of perifused embryos. PVA is an adequate replacement for BSA in the perifusion medium.
进行了三项实验,旨在改进一种能够长时间维持胚胎发育的连续流动灌注系统。从无血清培养基中与卵丘细胞进行静态共培养获得的牛胚胎(8 - 16细胞),在ACUSYST - S细胞培养箱中进行灌注培养。培养箱的培养室由一个0.2毫升单元(第1室)连接到一个1.5毫升单元(第2室)组成,第1室的流出物通向第2室的入口。一种添加了3毫克/毫升牛血清白蛋白(BSA)和25毫摩尔HEPES的牛胚胎培养基用作灌注培养基(PCM)。胚胎在第2室中灌注培养24、48和72小时,并在授精后在静态系统中进一步共培养至216小时。在实验1中,将冻融的牛输卵管上皮细胞(BOEC)置于第1室对PCM进行预处理,在灌注培养24、48和72小时后,增强了(P < 0.05)第2室中胚胎的囊胚形成。将BOEC与胚胎一起置于第2室中,囊胚比例没有进一步增加。在实验2中,胚胎在第1室中用经BOEC预处理的PCM灌注培养48小时或72小时。在PCM中添加25单位/毫升或50单位/毫升超氧化物歧化酶(SOD)后,与未添加相比,有更高比例的灌注胚胎发育到囊胚阶段。然而,与未添加相比,添加50单位/毫升SOD后,灌注72小时的胚胎的囊胚形成没有增加。在实验3中,在含有50单位/毫升SOD的经BOEC预处理的培养基中,用1毫克/毫升聚乙烯醇(PVA)替代3毫克/毫升BSA,在灌注48小时后,桑葚胚和囊胚的比例没有降低。总之,用BOEC对PCM进行预处理并在灌注培养基中添加抗氧化剂可提高灌注胚胎的发育能力。PVA是灌注培养基中BSA的合适替代品。