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February 17, 2026Microsystems & Nanoengineering0 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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