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Fluorimetric Techniques for the Assessment of Sperm Membranes
Published on: November 28, 2018
Comparison of methods for assessing integrity of equine sperm membranes
M L Foster1, C C Love, D D Varner
1Department of Large Animal Clinical Sciences, Texas A&M University, College Station, TX, USA.
Abstract:
Sperm membrane integrity (SMI) is thought to be an important measure of stallion sperm quality. The objective was to compare three methods for evaluating SMI: flow cytometry using SYBR-14/propidium iodide (PI) stain; an automated cell counting device using PI stain; and eosin-nigrosin stain. Raw equine semen was subjected to various treatments containing 20 to 80% seminal plasma in extender, with differing sperm concentrations, to simulate spontaneous loss of SMI. The SMI was assessed immediately, and after 1 and 2 d of cooled storage. Agreement between methods was determined according to Bland-Altman methodology. Eosin-nigrosin staining yielded higher (2%) overall mean values for SMI than did flow cytometry. Flow cytometry yielded higher (6%) overall mean values for SMI than did the automated cell counter. As percentage of membrane-damaged sperm increased, agreement of SMI measurement between methods decreased. When semen contained 50-79% membrane-intact sperm, the 95% limits of agreement between SMI determined by flow cytometry and eosin-nigrosin staining were greater (range = -26.9 to 24.3%; i.e., a 51.2% span) than for SMI determined by flow cytometry and the automated cell counter (range = -3.1 to 17.0%; 20.1% span). When sperm populations contained <50% membrane-intact sperm, the 95% limits of agreement between SMI determined by flow cytometry and eosin-nigrosin staining were greater (range = -35.9 to 19.0%; 54.9% span) than for SMI determined by flow cytometry and the automated cell counter (range = -11.6 to 28.7%; 40.3% span). We concluded that eosin-nigrosin staining assessments of percent membrane-intact sperm agreed less with flow cytometry when <80% of sperm had intact membranes, whereas automated cell counter assessments of percent membrane-intact sperm agreed less with flow cytometry when <30% of sperm had intact membranes.
Insights
Evaluating stallion sperm membrane integrity (SMI) is crucial for quality assessment. Flow cytometry, automated counters, and eosin-nigrosin staining were compared, with agreement decreasing as membrane damage increased.
Area of Science:
- Veterinary Reproduction
- Sperm Biology
- Animal Breeding
Background:
- Sperm membrane integrity (SMI) is a key indicator of stallion sperm quality.
- Accurate assessment of SMI is vital for reproductive success in equine breeding programs.
- Various methods exist for evaluating SMI, but their comparative agreement needs clarification.
Purpose of the Study:
- To compare the agreement of three methods for assessing stallion sperm membrane integrity (SMI).
- Methods compared include flow cytometry (SYBR-14/propidium iodide), an automated cell counter (propidium iodide), and eosin-nigrosin staining.
- To evaluate method agreement under simulated conditions of spontaneous SMI loss.
Main Methods:
- Equine semen was treated to create varying levels of sperm membrane damage.
- SMI was assessed immediately and after 1-2 days of cooled storage using three distinct techniques.
- Bland-Altman methodology was employed to determine the agreement between the different assessment methods.
Main Results:
- Eosin-nigrosin staining showed higher overall SMI values than flow cytometry.
- Flow cytometry yielded higher SMI values than the automated cell counter.
- Agreement between methods decreased significantly as the percentage of membrane-damaged sperm increased, particularly for eosin-nigrosin compared to flow cytometry at lower SMI levels (<80%).
Conclusions:
- Eosin-nigrosin staining demonstrated poorer agreement with flow cytometry when stallion sperm membrane integrity was below 80%.
- Automated cell counter agreement with flow cytometry was less reliable when sperm membrane integrity fell below 30%.
- The choice of method for assessing stallion SMI is critical, especially when dealing with compromised sperm quality.

