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Chromosome Screening of Human Preimplantation Embryos by Using Spent Culture Medium: Sample Collection and Chromosomal Ploidy Analysis
Published on: September 7, 2021
Does Microfluidic Sperm Sorting Affect Embryo Ploidy in Human In Vitro Fertilization?
N P Makarova1, A A Seliverstova2, I S Kichko3
1National Medical Research Center of Obstetrics, Gynecology, and Perinatology Named after Academician V. I. Kulakov, Ministry of Health of the Russian Federation, Moscow, Russia. np.makarova@gmail.com.
Bulletin of Experimental Biology and Medicine
|July 27, 2026
Summary
Microfluidic sperm sorting enhances blastocyst rates in in vitro fertilization (IVF) but does not significantly alter the genetic status of human embryos. Further research is needed to explore its impact on embryo genetics.
Area of Science:
- Reproductive Science
- Genetics
- Embryology
Background:
- In vitro fertilization (IVF) success is influenced by embryo quality and genetic integrity.
- Microfluidic sperm sorting is a technique to select motile and morphologically normal spermatozoa.
- Evaluating the impact of sperm selection methods on embryo genetics is crucial for improving IVF outcomes.
Purpose of the Study:
- To assess the genetic status of human embryos derived from microfluidic-sorted spermatozoa.
- To compare preimplantation genetic testing for aneuploidies (PGT-A) results between embryos from sorted and unsorted sperm groups.
Main Methods:
- Embryos from 127 (main group) and 194 (control group) IVF cycles were analyzed.
- Blastocyst biopsy was performed on day 5 for high-throughput sequencing-based PGT-A.
- Embryological parameters including fertilization rates, embryo quality, and blastocyst yield were recorded.
Main Results:
- Microfluidic sperm sorting significantly increased blastocyst yield (p = 0.03) without compromising fertilization or embryo quality.
- No significant difference in the frequency of euploid embryos was observed: 29.9% in the main group vs. 32.4% in the control group (OR = 0.88).
Conclusions:
- Microfluidic sperm sorting improves specific embryological outcomes, notably blastulation rates.
- Current evidence suggests microfluidic sperm sorting does not have a statistically significant impact on the genetic normalcy of preimplantation human embryos.
- The genetic implications of microfluidic sperm sorting warrant further investigation.
