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PMID: 42022872 已发表 · epublish 英语

PPy-Coated Wire Actuators for the Micromechanostimulation of Cells: Fabrication and Characterization.

Small science ·第 6 卷 ·第 3 期 ·2026-03-00

Ortega-Santos AB, Hayano S, Hara ES, Martínez JG, Kamioka H, Jager EWH

摘要

Cellular mechanotransduction signals play a crucial role in physiological and pathological conditions, including skeletal disorders. Although various systems exist to mechanically stimulate cultured cells, most are constrained by incubator incompatibility, limited physiological relevance, nonuniform stimulation, or complexity. The objective of this article is to develop and validate a compact, incubator-compatible tool capable of delivering localized and physiologically relevant mechanical stimulation to small cell populations. Here, we introduce a polypyrrole-based wire-shaped microactuator designed to induce localized mechanical stress to adjacent cells. These wire-shaped microactuators are biocompatible, easy-to-use, and compact for use within standard in vitro cell culture systems. Using a noncontact optical method, we characterize the actuation of polypyrrole-coated wires in an aqueous NaDBS electrolyte, showing radial expansion of 1.5-8 µm depending on the deposited polypyrrole film thickness, comparable to cellular dimensions. Next, the actuation is confirmed to be robust and stable to use in cell culture media at physiological temperature. To evaluate biological relevance, osteoblastic KUSA-A1 cells are mechanically stimulated inside the incubator and transcriptomic changes are assessed. Mechanical stimulation resulted in upregulation of genes previously associated with mechanotransduction, including Fos and Fosb. Additionally, several uncharacterized long noncoding RNAs are differentially expressed, suggesting potential novel players in the mechanotransduction pathway.

关键词
RNA sequencing conducting polymers mechanotransduction osteoblasts polypyrrole soft‐microactuators
文献信息
期刊
Small science
期刊简称
Small Sci
ISSN
2688-4046
发表日期
2026-03-00
语言
英语
国家/地区
Germany
NLM ID
101777709
分析服务
分析服务

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