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Wireless Localized Electrical Stimulation Generated by an Ultrasound‐Driven Piezoelectric Discharge Regulates Proinflammatory Macrophage Polarization

机译:通过超声波驱动的压电放电产生的无线局部电刺激调节促炎巨噬细胞极化

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摘要

Proinflammatory (M1) macrophages play a vital role in antitumor immunity, and regulation of proinflammatory macrophage polarization is critical for immunotherapy. The polarization of macrophages can be regulated by biological or chemical stimulation, but investigations of the regulatory effect of physical stimulation are limited. Herein, regulating macrophage polarization with localized electrical signals derived from a piezoelectric β‐phase poly(vinylidene fluoride) (β‐PVDF) film in a wireless mode is proposed. Charges released on the surface of the β‐PVDF film driven by ultrasonic irradiation can significantly enhance the M1 polarization of macrophages. Mechanistic investigation confirms that electrical potentials rather than reactive oxygen species and mechanical forces enable Ca2+ influx through voltage‐gated channels and establishment of the Ca2+‐CAMK2A‐NF‐κB axis to promote the proinflammatory macrophage response during ultrasound treatment. Piezoelectric material‐mediated electrical signal‐activated proinflammatory macrophages significantly inhibit tumor cell proliferation. A method for electrogenetic regulation of immune cells as well as a powerful tool for engineering macrophages for immunotherapy is provided here.
机译:促炎(M1)巨噬细胞在抗肿瘤免疫中发挥着至关重要的作用,并且对促炎巨噬细胞极化的调节对于免疫疗法至关重要。巨噬细胞的极化可以通过生物或化学刺激来调节,但物理刺激的调节效果的研究受到限制。在此,调节以无线模式与来自压电β相聚衍生局部电信号极化巨噬细胞(偏二氟乙烯)(β-PVDF)膜,提出了。通过超声波照射驱动的β-PVDF膜的表面上释放的电荷可以显著增强巨噬细胞的M1极化。机理调查确认的电势,而不是反应性氧物质和机械力使通过电压门控通道和Ca 2+流入建立的Ca2 + -CAMK2A-NF-κB的轴线推动超声处理过程中的促炎性巨噬细胞反应。压电材料介导的电信号激活的巨噬细胞的促炎显著抑制肿瘤细胞增殖。这里提供了一种用于免疫细胞的闪电性调节方法以及用于免疫疗法的工程巨噬细胞的强大工具。

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