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February 17, 2026Microsystems & Nanoengineering2 citationsOpen Access

Female reproductive tract-on-a-chip for selecting sperm with ultra-low DNA fragmentation index

JDJing DaiHSHan ShanYGYifan Gu

Key Points

  • This research aims to develop a method to select sperm with ultra-low DNA fragmentation index to enhance fertility outcomes.
  • Designed and fabricated a female reproductive tract-on-a-chip device to simulate the physiological environment.
  • Conducted clinical validations using patient semen samples.
  • Analyzed sorted sperm for DNA fragmentation, motility, acrosome integrity, and stress mitigation capacity.
  • Achieved a sperm DNA fragmentation index reduction to 0.13%, significantly lower than 34.57% in raw semen.
  • Selected sperm showed means of 0.71% DFI and 41.93% DFI in patient samples.
  • Sorted sperm exhibited superior motility and integrity compared to unsorted samples.

Abstract

High levels of sperm DNA fragmentation index (DFI) represent a critical factor in male infertility, with detrimental effects on embryonic development and offspring well-being. However, selecting sperm with low DFI remains a tremendous challenge. Here, we present an organ-level selection strategy capable of isolating spermatozoa with ultra-low DFI, achieving a remarkable reduction to 0.13% compared to 34.57% observed in raw semen. We design and fabricate a female reproductive tract (FRT)-on-a-chip (FRToC) device that mimics the entire physiological microenvironment for in vivo sperm selection, with clinical validation performed using samples from patients. The FRToC selects sperm with ultra-low DFI (mean: 0.71%) from patients with high DFI (mean: 41.93%), while also ensuring superior sperm motility and acrosome integrity. Additionally, trace sperm proteomic and single-cell copy number variants (CNV) analyses revealed that sperm sorted by FRToC exhibited an increased capacity to mitigate oxidative stress, thus resulting in more intact chromosomes. Our organ-scale selection method underscores the potential of the FRToC to select high-quality spermatozoa, offering a promising improvement for assisted reproductive technology (ART).

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Cite This Study

Dai et al. (2026) studied this question.

synapsesocial.com/papers/699405254e9c9e835dfd5fachttps://doi.org/10.1038/s41378-026-01165-9
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Efficiency of sperm selection using microfluidic chips in assisted reproductive technology programs in patients with high levels of DNA fragmentation in the ejaculate2026
  2. 2Association of sperm DNA fragmentation index with semen quality and ART outcomes: real-world evidence from a retrospective cohort2026 · 1 citations
  3. 3P-017 DNA fragmentation Index before and after density gradient centrifugation using flow cytometry, its reflection in sperm ultrastructure and its association with clinical outcome2024
  4. 4To analyze the diagnostic effect of sperm DNA fragmentation index on male infertility2025
  5. 5Correlation of sperm DNA fragmentation index with routine semen parameters and its predictive value for clinical outcomes of in vitro fertilization2026