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Laser Fusion of Mouse Embryonic Cells and Intra-Embryonic Fusion of Blastomeres without Affecting the Embryo Integrity

机译:小鼠胚胎细胞的激光融合和卵裂球的胚内融合而不影响胚胎的完整性

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摘要

Manipulation with early mammalian embryos is the one of the most important approach to study preimplantation development. Artificial cell fusion is a research tool for various biotechnological experiments. However, the existing methods have various disadvantages, first of them impossibility to fuse selected cells within multicellular structures like mammalian preimplantation embryos. In our experiments we have successfully used high repetition rate picosecond near infrared laser beam for fusion of pairs of oocytes and oocytes with blastomeres. Fused cells looked morphologically normal and keep their ability for further divisions in vitro. We also fused two or three blastomeres inside four-cell mouse embryos. The presence of one, two or three nuclei in different blastomeres of the same early preimplantation mouse embryo was confirmed under UV-light after staining of DNA with the vital dye Hoechst-33342. The most of established embryos demonstrated high viability and developed in vitro to the blastocyst stage. We demonstrated for the first time the use of laser beam for the fusion of various embryonic cells of different size and of two or three blastomeres inside of four-cell mouse embryos without affecting the embryo’s integrity and viability. These embryos with blastomeres of various ploidy maybe unique model for numerous purposes. Thus, we propose laser optical manipulation as a new tool for investigation of fundamental mechanisms of mammalian development.
机译:早期哺乳动物胚胎的操纵是研究植入前发育的最重要方法之一。人工细胞融合是用于各种生物技术实验的研究工具。然而,现有的方法具有各种缺点,首先,它们不能融合多细胞结构内的选定细胞,如哺乳动物植入前的胚胎。在我们的实验中,我们成功地使用了高重复率皮秒的近红外激光束来融合卵母细胞对和卵母细胞与卵裂球。融合细胞在形态上看起来正常,并保持其在体外进一步分裂的能力。我们还在四细胞小鼠胚胎中融合了两个或三个卵裂球。在用活性染料Hoechst-33342对DNA染色后,在紫外线下,在同一早期植入前小鼠胚胎的不同卵裂球中,存在一个,两个或三个核。大多数已建立的胚胎表现出很高的生存能力,并在体外发育到胚泡期。我们首次展示了激光束用于融合大小不同的各种胚胎细胞以及四细胞小鼠胚胎内部的两个或三个卵裂球的融合,而不会影响胚胎的完整性和生存能力。这些具有不同倍性卵裂球的胚胎可能出于许多目的而具有独特的模型。因此,我们提出激光光学操纵作为研究哺乳动物发育基本机制的新工具。

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