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使用单波长荧光显微镜评估新鲜和冻融后人精子的活力和顶体状态。

Assessment of the viability and acrosome status of fresh and frozen-thawed human spermatozoa using single-wavelength fluorescence microscopy.

作者信息

Centola G M, Mattox J H, Burde S, Leary J F

机构信息

Department of Obstetrics-Gynecology, University of Rochester Medical Center, New York 14642.

出版信息

Mol Reprod Dev. 1990 Oct;27(2):130-5. doi: 10.1002/mrd.1080270207.

Abstract

The purpose of this study was to use fluorescence microscopy to determine the viability and acrosome status of fresh and frozen-thawed human spermatozoa. Sperm cells were stained with the viability stains Hoechst 33258 (H33258) alone, or propidium iodide (PI) alone, and PI in combination with FITC-conjugated Pisum sativum agglutinin (PSA). The PSA stains the acrosome contents of permeabilized acrosome-intact sperm. Viability by fluorescence microscopy was compared to conventional eosin nigrosin staining. The overall viability using H33258 was not significantly different from that using PI. Therefore, PI was used in combination with PSA for simultaneous measurement of viability and acrosome status at the same excitation wavelength (488 nm). By combining PI and PSA, four subgroups of cells could be detected: group I, PI-neg/PSA-neg--viable, physiologic acrosome reacted (AR); group II, PI-neg/PSA-pos--viable, non-AR; group III, PI-pos/PSA-neg--nonviable, non-AR; group IV, PI-pos/PSA-neg--nonviable, degenerative AR. The postthaw sperm exhibited a significantly greater percent of sperm that were acrosome reacted (both viable and degenerative) (groups I and IV) than the fresh semen. We conclude that frozen-thawed sperm may undergo premature break-down of the acrosome prior to interaction with the oocyte, thus explaining the reduced fertility potential of cryopreserved semen.

摘要

本研究的目的是利用荧光显微镜来测定新鲜及冻融后人精子的活力和顶体状态。精子细胞分别用活力染料单独染色,即单独使用 Hoechst 33258(H33258)或碘化丙啶(PI),以及 PI 与异硫氰酸荧光素(FITC)偶联的豌豆凝集素(PSA)联合染色。PSA 可对通透的顶体完整精子的顶体内容物进行染色。通过荧光显微镜观察的活力与传统的伊红黑色素染色结果进行比较。使用 H33258 测定的总体活力与使用 PI 测定的结果无显著差异。因此,PI 与 PSA 联合使用,以便在相同激发波长(488 nm)下同时测定活力和顶体状态。通过联合使用 PI 和 PSA,可检测到四个细胞亚组:第一组,PI 阴性/PSA 阴性——有活力、生理性顶体反应(AR);第二组,PI 阴性/PSA 阳性——有活力、非 AR;第三组,PI 阳性/PSA 阴性——无活力、非 AR;第四组,PI 阳性/PSA 阳性——无活力、退化性 AR。冻融后的精子中发生顶体反应(包括有活力和退化性)的精子百分比(第一组和第四组)显著高于新鲜精液。我们得出结论,冻融后的精子在与卵母细胞相互作用之前可能会过早发生顶体破裂,从而解释了冷冻精液生育潜力降低的原因。

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