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通过抑制糖原合成酶激酶 β 和 Rho 相关激酶信号通路,从优质和劣质卵裂胚胎的单个卵裂球中增强人类胚胎干细胞的生成。

Enhanced generation of human embryonic stem cells from single blastomeres of fair and poor-quality cleavage embryos via inhibition of glycogen synthase kinase β and Rho-associated kinase signaling.

机构信息

Department of Stem Cells and Developmental Biology at Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, P.O. Box 19395-4644, Tehran, Iran.

出版信息

Hum Reprod. 2013 Oct;28(10):2661-71. doi: 10.1093/humrep/det309. Epub 2013 Aug 6.

Abstract

STUDY QUESTION

Could selected pluripotency-enhancing small molecules (SMs) lead to efficient derivation of human embryonic stem cells (hESCs) from cleavage embryos-derived single blastomeres (SBs)?

SUMMARY ANSWER

Inhibition of glycogen synthase kinase β (GSK3β) and Rho-associated kinase (ROCK) signaling can enhance the derivation of hESCs from cleavage embryo-derived SBs.

WHAT IS KNOWN ALREADY

Parameters involved in sustaining the pluripotency of biopsied blastomeres for generating hESCs without causing injury to a viable embryo have remained obscure. This research seeks to improve the culture conditions for increasing the efficiency of deriving hESCs from SBs from cleavage-stage embryos by using SMs.

STUDY DESIGN, SIZE, DURATION: In order to identify SMs which may enhance hESC generation from SBs, 11 pluripotency-enhancing SMs were screened and CHIR99021 (CH), a GSK3β inhibitor, was selected. To optimize culture condition in hESC generation from SMs, we used ROCK inhibitor Y27632 (Y) and basic fibroblast growth factor in combination with CH or its alternative, Kenpaullone, in different time courses over 12 days. We also assessed a critical time point for CH + Y treatment of cleavage embryos from 4- to 8-cell embryo. In total, 224 embryos and 1607 SBs were used in the study.

PARTICIPANTS/MATERIALS, SETTING, METHODS: Blastomeres of fair and poor-quality from 6- to 8-cell stage human embryos were mechanically dispersed and individually seeded into a 96-well plate that was precoated with mitotically inactivated feeder cells. Derivation of hESC line from each SB was carried out in hESC defined medium supplemented with SMs. Randomly selected hESC lines were evaluated by immunostaining for pluripotency markers, karyotype analysis and differentiation potential into the three embryonic germ layer derivatives.

MAIN RESULTS AND THE ROLE OF CHANCE

We found that 3 μM CH was the only SM that was capable of directing SBs from fair and poor-quality 6-8-cell embryos into hESC lines. The application of hESC-conditioned medium had no additive effect on hESC establishment from SBs. Also, we indicated that CH combined with Y improved hESC generation efficiency by up to 31%. By using of Kenpaullone as an alternative to CH, we confirmed the involvement of GSK3 inhibition in hESC derivation from SBs. Interestingly, by treatment of 4-cell embryos, these SMs could enhance the derivation efficiency of SB-derived hESC lines up to 73% and the maximum number of hESC lines from SBs of one embryo was achieved in this state.

LIMITATIONS, REASONS FOR CAUTION: The low quality of the embryos used in this study most likely had an effect on hESC generation. Furthermore, although we attempted to minimize any differences in inter-embryo quality, we cannot exclude the possibility that small differences in starting quality between embryos may have contributed to the differences observed, other than the addition of SMs.

WIDER IMPLICATIONS OF THE FINDINGS

This approach would allow the establishment of autogeneic or allogeneic matched cells from embryos fertilized in vitro without destroying them.

STUDY FUNDING/COMPETING INTEREST(S): This study was financially supported by the National Elite Foundation and the Royan Institute for Stem Cell Biology and Technology. The authors have no conflict of interest to declare.

摘要

研究问题

选择的多能增强型小分子(SMs)能否有效从卵裂胚胎衍生的单个分裂球(SBs)中衍生出人类胚胎干细胞(hESCs)?

总结答案

抑制糖原合酶激酶β(GSK3β)和Rho 相关激酶(ROCK)信号可以增强 hESC 从卵裂胚胎衍生的 SBs 中的衍生效率。

已知内容

维持活检胚胎全能性以生成 hESC 而不损害活胚胎的参数仍然不清楚。本研究旨在通过使用 SMs 改善培养条件,提高从 SBs 衍生 hESC 的效率。

研究设计、规模、持续时间:为了鉴定可能增强从 SBs 生成 hESC 的 SMs,筛选了 11 种多能增强型 SMs,选择了 GSK3β抑制剂 CHIR99021(CH)。为了优化从 SMs 生成 hESC 的培养条件,我们使用了 ROCK 抑制剂 Y27632(Y)和碱性成纤维细胞生长因子与 CH 或其替代品 Kenpaullone 结合,在 12 天的不同时间过程中使用。我们还评估了 CH+Y 处理 4 到 8 细胞胚胎的临界时间点。总共使用了 224 个胚胎和 1607 个 SBs 进行了这项研究。

参与者/材料、设置、方法:6-8 细胞期人类胚胎的中等和低质量的卵裂球通过机械分散并单独接种到预先涂有有丝分裂失活饲养细胞的 96 孔板上。在含有 SMs 的 hESC 定义培养基中进行从每个 SB 衍生 hESC 系的实验。随机选择的 hESC 系通过免疫染色进行多能性标记、核型分析和分化潜能评估为三个胚胎生殖层衍生物。

主要结果和机会的作用

我们发现,3 μM CH 是唯一能够将中等和低质量的 6-8 细胞胚胎的 SB 定向为 hESC 系的 SM。hESC 条件培养基的应用对 SB 中 hESC 的建立没有附加作用。此外,我们表明,CH 与 Y 的联合使用可将 hESC 的生成效率提高多达 31%。使用 Kenpaullone 作为 CH 的替代品,我们证实了 GSK3 抑制在 SB 中 hESC 衍生中的作用。有趣的是,通过处理 4 细胞胚胎,这些 SMs 可以将 SB 衍生的 hESC 系的衍生效率提高高达 73%,并且在这种状态下可以从一个胚胎的 SB 中获得最多数量的 hESC 系。

局限性、谨慎的原因:本研究中使用的胚胎质量低,这很可能对 hESC 的生成产生影响。此外,尽管我们试图最小化胚胎间质量的差异,但我们不能排除胚胎起始质量的微小差异可能除了添加 SMs 之外,对观察到的差异有影响。

研究结果的更广泛意义

这种方法将允许从体外受精的胚胎中建立自体或同种异体匹配的细胞,而不会破坏它们。

研究资金/利益冲突:本研究由国家精英基金会和罗扬研究所干细胞生物学和技术资助。作者没有利益冲突需要申报。

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