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Flow Cytometric Analysis of Biomarkers for Detecting Human Sperm Functional Defects
Published on: April 21, 2022
Spermatozoa with numerical chromosomal abnormalities are more prone to be retained by Annexin V-MACS columns
M Esbert1, A Godo2, S R Soares3
1IVI Barcelona, Barcelona, Spain.
Abstract:
Colloidal super-paramagnetic microbeads conjugated with annexin V are effective for separating apoptotic spermatozoa by MACS as a result of the high affinity of annexin V for externalized PS molecules. The effectiveness of the procedure in reducing the percentage of sperm with fragmented DNA and abnormal morphology has also been reported. However, it is still unknown if it could decrease the percentage of aneuploid spermatozoa. The objective of our prospective study, performed on 16 males with abnormal FISH on spermatozoa, was to assess if MACS columns were useful tools to retain spermatozoa carrying chromosomal abnormalities in semen samples processed after density gradient centrifugation (DGC). The pellet obtained after DGC was subjected to MACS, and sperm FISH analyses were performed both in the eluded fraction and in the fraction retained in the column. The observed frequencies of disomy and nullisomy 13, 18, and 21, X and Y, as well as the diploidy rates in the MACS eluded fraction and the fraction retained in the MACS column were recorded. We observed that the frequencies of aneuploidies in the eluded fraction were lower than in the fraction retained in the MACS column (0.59% vs. 0.75%; p = 0.010). DGC determined a significant reduction in sperm concentration (z-ratio = 2.83; p = 0.005) and a significant increase in sperm progressive motility (z-ratio = -3.5; p < 0.001). MACS also led to a significant reduction in sperm concentration (z-ratio = 3.14; p = 0.002) and a significant increase in progressive motility (z-ratio = -2.59; p = 0.01) when compared with the post-DGC sample. Sperm concentration was similar in the two fractions generated by MACS (z-ratio = 0.63; p = 0.52), while progressive motility was significantly higher in the MACS eluded fraction (z-ratio = 2.42; p = 0.02). According to our results, MACS columns are able to selectively retain spermatozoa carrying chromosomal abnormalities. Furthermore, the performance of DGC and MACS on semen samples leads to an enrichment of progressive motility.
Insights
Magnetic-activated cell sorting (MACS) effectively retains spermatozoa with chromosomal abnormalities. This technique, combined with density gradient centrifugation (DGC), improves sperm motility and reduces aneuploidies in processed semen samples.
Area of Science:
- Reproductive Biology
- Genetics
- Cell Biology
Background:
- Annexin V-conjugated microbeads via MACS effectively separate apoptotic spermatozoa.
- Previous studies show MACS reduces sperm DNA fragmentation and abnormal morphology.
- The efficacy of MACS in reducing aneuploid spermatozoa remains largely uninvestigated.
Purpose of the Study:
- To assess the utility of MACS columns in retaining chromosomally abnormal spermatozoa.
- To evaluate MACS effectiveness in semen samples pre-processed by DGC.
- To analyze aneuploidy rates (disomy, nullisomy, diploidy) in MACS fractions.
Main Methods:
- Semen samples from 16 males with abnormal sperm FISH underwent DGC followed by MACS.
- Sperm FISH analysis was performed on both the MACS eluded and retained fractions.
- Frequencies of specific aneuploidies (13, 18, 21, X, Y) and diploidy were quantified.
Main Results:
- MACS columns selectively retained spermatozoa with chromosomal abnormalities (0.75% in retained vs. 0.59% in eluded fraction; p=0.010).
- DGC significantly reduced sperm concentration and increased motility.
- MACS further reduced sperm concentration and enhanced motility, with higher motility in the eluded fraction.
Conclusions:
- MACS columns demonstrate selective retention of spermatozoa carrying chromosomal abnormalities.
- Combined DGC and MACS processing enriches semen samples for progressively motile spermatozoa.
- This approach offers potential for improving sperm quality in assisted reproductive technologies.
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