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Determination of Sperm Concentration Using Flow Cytometry with Simultaneous Analysis of Sperm Plasma Membrane Integrity in Zebrafish Danio rerio

机译:流式细胞术同时分析斑马鱼斑马鱼精子质膜完整性的流式细胞术测定精子浓度

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摘要

Control of sperm concentration is required to ensure consistent and reproducible results for cryopreservation and in vitro fertilization protocols. Determination of sperm concentration is traditionally performed with a counting chamber (e.g., hemocytometer), or more recently with a spectrophotometer. For small-sized biomedical model fishes, the availability of sperm sample is limited to microliters, so it is desirable to develop fast and accurate approaches for concentration determination that also minimize sample use. In this study, a new approach was developed for sperm concentration determination using a flow cytometer (Accuri C6, BD Biosciences, San Jose, CA) with simultaneous measurement of sperm membrane integrity after fluorescent staining with SYBR® − 14 and propidium iodide (PI) in sperm from Zebrafish Danio rerio. The goal was to develop a protocol for simultaneous determination of sperm quality and quantity by flow cytometry. The objectives were to (1) determine the effects of sample volume (250 and 500 µl) and analysis volume (10 and 50 µl) on the accuracy of particle counting using standard volumetric validation beads; (2) identify the effective range of sperm concentrations that flow cytometry can measure; (3) test the precision and reproducibility of the sperm concentration measurements; and (4) verify the flow cytometry approach by comparison with measurement with a hemocytometer and a microspectrophotometer. Sample volumes of 250 and 500 µl and analysis volumes of 10 and 50 µl did not affect bead count with the factory-set flow rates of “medium” or “fast,” and the precision and accuracy was retained across a concentration range of 1 × 103 − 1 × 107 cells/ml. The approach developed in this study was comparable to traditional methodologies such as hemocytometer or microspectrophotometer. This study provides an efficient, accurate, and rapid method for determination of sperm concentration using flow cytometry while providing simultaneous assessment of sperm membrane integrity. Such approaches can reduce the time needed for quantity assessment and maximize the use of valuable sperm samples.
机译:需要控制精子浓度以确保冷冻保存和体外受精方案的结果一致且可重现。精子浓度的测定传统上是用计数室(例如血细胞计数器)进行的,或者最近用分光光度计进行。对于小型生物医学模型鱼,精子样品的可获得性仅限于微升,因此希望开发出快速,准确的浓度测定方法,以最大程度地减少样品的使用。在这项研究中,开发了一种使用流式细胞仪(Accuri C6,BD Biosciences,San Jose,CA)测定精子浓度的新方法,同时用SYBR ®进行荧光染色后同时测量精子膜的完整性- 14和斑马鱼Danio rerio精子中的碘化丙锭(PI)。目的是开发一种通过流式细胞仪同时测定精子质量和数量的方案。目的是(1)使用标准体积验证珠确定样品量(250和500 µl)和分析量(10和50 µl)对颗粒计数准确性的影响; (2)确定流式细胞仪可以测量的精子有效浓度范围; (3)测试精子浓度测量的准确性和可重复性; (4)通过与血细胞计数器和显微分光光度计的比较来验证流式细胞仪的方法。 250和500 µl的样品量以及10和50 µl的分析量在出厂设置的流速为“中”或“快速”时不会影响珠子计数,并且在1×浓度范围内保持了精密度和准确性。 10 3 -1×10 7 细胞/ ml。本研究中开发的方法与传统方法如血细胞计数器或显微分光光度计相当。这项研究提供了一种使用流式细胞仪测定精子浓度的有效,准确和快速的方法,同时提供了对精子膜完整性的评估。这样的方法可以减少数量评估所需的时间,并最大限度地利用有价值的精子样本。

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