Fernández Javier, Pedrosa Concepción, Vergara Francisco, Nieto Ana I, Quintas Ana, Fernández Ana, Moyano Carmen, Fernández Ana, Ponce Jordi
Criovida, Granada, Spain; Human Reproduction Unit, Clínica Pedrosa, Granada, Spain; Programa de Doctorado en Biomedicina, Universidad de Granada, Granada, Spain.
Human Reproduction Unit, Clínica Pedrosa, Granada, Spain.
Reprod Biol. 2020 Dec;20(4):584-588. doi: 10.1016/j.repbio.2020.07.008. Epub 2020 Aug 6.
We assessed the feasibility of using a new oocyte-holding pipette (pipette without aspiration, PiWA) for intracytoplasmic sperm injection (ICSI), which prevents cytoplasmic aspiration during microinjection. A pilot experimental study in eight mature mouse oocytes to assess the feasibility of the oocyte-holding PiWA for ICSI procedure. The absence of oocyte degeneration after microinjection and the viability of correct embryo development were also evaluated. The pipette comprises a suction conduit inside an elongated cylindrical body and a funnel-shaped working end, which is dimensioned to hold the oocyte in a tight-fitting manner. Upon aspirating via the suction conduit, the oocyte remains partially trapped inside the funnel and becomes deformed changing the spherical shape of its resting state to an oval shape that tensions the surface and increases the turgor. In all ICSI procedures using the new PiWA, the oocyte membrane presented some resistance but was easily broken when exerting some pressure or small aspiration. The eight oocytes developed, six of which reached the blastocyte stage. The results obtained in this study indicate that the increase in oocyte membrane turgidity caused by PiWA prevents vigorous aspiration of the cytoplasm during spermatozoa microinjection.
我们评估了使用一种新型持卵移液器(无抽吸移液器,PiWA)进行卵胞浆内单精子注射(ICSI)的可行性,该移液器可防止显微注射过程中细胞质的抽吸。对8个成熟小鼠卵母细胞进行了一项初步实验研究,以评估持卵PiWA用于ICSI操作的可行性。还评估了显微注射后卵母细胞是否退化以及正确胚胎发育的活力。该移液器包括一个位于细长圆柱形体内的抽吸导管和一个漏斗形工作端,其尺寸设计为能紧密容纳卵母细胞。通过抽吸导管抽吸时,卵母细胞部分被困在漏斗内并变形,将其静止状态的球形变为椭圆形,从而使表面张力增加并提高膨压。在所有使用新型PiWA的ICSI操作中,卵母细胞膜表现出一定阻力,但在施加一些压力或轻微抽吸时很容易破裂。8个卵母细胞发育,其中6个达到囊胚阶段。本研究获得的结果表明,PiWA引起的卵母细胞膜膨压增加可防止精子显微注射过程中细胞质的剧烈抽吸。