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August 15, 2025Science Advances3 citationsOpen Access

Nanoscale acoustic oscillator for mechanoimmunology: NAOMI

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YHYe HeKJKe JinBPBo Pan

Key Points

  • Enhanced M1 polarization in macrophages was observed using the NAOMI platform, indicating a significant impact on immune response.
  • NAOMI delivered precise 3D nanoscale oscillations with a deviation of ±1 nanometer for 72 hours, enabling compliance with experimental standards.
  • The platform employs micropatterned pillars to form uniform cell monolayers, facilitating controlled mechanical stimulation for individual cells.
  • Future research may leverage NAOMI's stability and tunability, potentially transforming how mechanotransduction is studied in immunology.

Abstract

Mechanoimmunology explores how mechanical forces orchestrate immune responses, offering insights into immune cell functions and the mechanisms underlying mechanotransduction. A critical challenge in this field is the absence of reliable platforms that apply precise, consistent mechanical stimuli to individual cells while enabling reproducible immune activation. Here, we present a nanoscale acoustic oscillator for mechanoimmunology applications: NAOMI. NAOMI features micropatterned pillars that support uniform cell monolayer formation with an integrated acoustic transducer that delivers highly controlled 3D nanoscale oscillations (±1-nanometer deviation) for up to 72 hours. Unlike conventional passive platforms relying on static stiffness or surface topography, NAOMI enables dynamic, programmable stimulation with high precision and reproducibility. Validation studies demonstrate that NAOMI notably enhances mechanical stress intensity and cell displacement, driving robust M1 polarization in macrophages. NAOMI provides a practical and versatile platform for studying mechanoimmunology, offering high precision, stability, and tunability. Its capabilities also position it well to support future research and drive innovative discoveries in the field.

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Cite This Study

He et al. (2025) studied this question.

synapsesocial.com/papers/68a365560a429f797332b14chttps://doi.org/10.1126/sciadv.adx3851
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