Highly piezoelectric, biodegradable, and flexible amino acid nanofibers for medical applications

用于医疗应用的高压电、可生物降解、柔韧的氨基酸纳米纤维

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作者:Meysam T Chorsi, Thinh T Le, Feng Lin, Tra Vinikoor, Ritopa Das, James F Stevens, Caitlyn Mundrane, Jinyoung Park, Khanh T M Tran, Yang Liu, Jacob Pfund, Rachel Thompson, Wu He, Menka Jain, M Daniela Morales-Acosta, Osama R Bilal, Kazem Kazerounian, Horea Ilies, Thanh D Nguyen

Abstract

Amino acid crystals are an attractive piezoelectric material as they have an ultrahigh piezoelectric coefficient and have an appealing safety profile for medical implant applications. Unfortunately, solvent-cast films made from glycine crystals are brittle, quickly dissolve in body fluid, and lack crystal orientation control, reducing the overall piezoelectric effect. Here, we present a material processing strategy to create biodegradable, flexible, and piezoelectric nanofibers of glycine crystals embedded inside polycaprolactone (PCL). The glycine-PCL nanofiber film exhibits stable piezoelectric performance with a high ultrasound output of 334 kPa [under 0.15 voltage root-mean-square (Vrms)], which outperforms the state-of-the-art biodegradable transducers. We use this material to fabricate a biodegradable ultrasound transducer for facilitating the delivery of chemotherapeutic drug to the brain. The device remarkably enhances the animal survival time (twofold) in mice-bearing orthotopic glioblastoma models. The piezoelectric glycine-PCL presented here could offer an excellent platform not only for glioblastoma therapy but also for developing medical implantation fields.

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