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CMOS-fabricated dielectrophoretic chip with embedded 3D TiN nano-electrode arrays for sperm capture and sperm damage reduction
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CMOS-fabricated dielectrophoretic chip with embedded 3D TiN nano-electrode arrays for sperm capture and sperm damage reduction

I.-H. Liao, J.-H. Shiau 和 C.-M. Cheng
Frontiers in Bioengineering and Biotechnology, 卷.13
2025
Web of Science ID: WOS:001537042000001

摘要

boar sperm bovine sperm CMOS-fabricated dielectrophoresis embedded 3D TiN nano-electrode arrays CMOS integrated circuits Dielectric devices Efficiency Electric fields Electrodes Fabrication Joule heating Mammals Structural design Throughput Tin Tungsten compounds Boar sperm Bovine sperm Capture efficiency CMOS-fabricated Electrode arrays Embedded 3d TiN nano-electrode array Joules heating Nanoelectrode Square-wave Strong electric fields Biocompatibility
Introduction: This study developed an embedded 3D TiN nano-electrode arrays with a strong electric field and high biocompatibility for the effective capture of motile sperms. The chip integrates CMOS fabrication technology with a three-dimensional structural design, exhibiting both electrode-based dielectrophoresis and insulator-based dielectrophoresis characteristics. It provides a stable operating environment under strong electric fields with minimal Joule heating interference. Methods: In the experiments, we evaluated the effects of different waveforms and capture spaces on the capture efficiency of boar and bovine sperms. Results and discussion: The results showed that square waves improved capture efficiency by approximately10% and confirmed that the capture space must exceed half the sperm length to enhance efficiency. When operated under a 20 Vpp square wave, the chip only generated a temperature rise of 1.7°C, causing no significant damage to the sperms and no notable decrease in viability. Under optimal conditions, the capture efficiencies for boar and bovine sperms reached 65.54% ± 1.07% and 63.25%, respectively. Overall, the results demonstrate that this chip offers high throughput, low Joule heating interference, and good species adaptability, showing potential for use in dynamic cell capture and high-throughput analysis. Copyright © 2025 Liao, Shiau and Cheng.

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url
https://www.scopus.com/inward/record.uri?eid=2-s2.0-105011954245&doi=10.3389%2ffbioe.2025.1635799&partnerID=40&md5=df857effcf252761e51a24c7b2e2f457檢視
url
https://doi.org/10.3389/fbioe.2025.1635799檢視
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本研究成果之相關指標(擷取自 InCites Benchmarking & Analytics)

引用書目主題
2 Chemistry
2.160 Microfluidic Devices & Superhydrophobicity
2.160.1541 Dielectrophoresis
Web Of Science研究領域
Biotechnology & Applied Microbiology
Engineering, Biomedical
ESI研究領域
Chemistry

聯合國永續發展目標(SDGs)

此研究成果有助於達成以下目標:

#3 Good Health and Well-Being

來源:來自InCites的SDGs

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