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A multifunctional electronic suture for continuous strain monitoring and on-demand drug release

机译:一种多功能电子连续缝合随需应变监测和药物释放

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Surgical sutures are widely used for closing wounds in skin. However, the monitoring of wound integrity and promoting tissue regeneration at the same time still remains a challenge. To address this, we developed a drug-releasing electronic suture system (DRESS) to monitor the suture integrity in real-time and enhance tissue regeneration by triggered drug release. DRESS was fabricated by using a single fiber with a core-shell structure consisting of a stretchable conductive fiber core and a thermoresponsive polymer shell containing drugs. The highly conductive fiber core acts as a strain sensor that enables continuous monitoring of suture strain with high sensitivity (a gauge factor of similar to 686) and mechanical durability (being able to endure more than 3000 stretching cycles). The thermoresponsive shell layer composed of flexible poly(vinyl alcohol) (PVA) grafted onto poly(N-isopropylacrylamide) (PNIPAm) facilitates on-demand drug release via Joule heating. The results of an in vitro scratch assay showed a 66% decrease in wound area upon heat-activation after 48 hours demonstrating the stimuli-responsive therapeutic efficacy of DRESS by promoting cell migration. Moreover, ex vivo testing on porcine skin demonstrated the applicability of DRESS as a electronic suture. The approach used for DRESS provides insight into multifunctional sutures and offers additional therapeutic and diagnostic options for clinical applications.
机译:手术缝合线广泛用于关闭在皮肤伤口。完整性和促进组织再生同一时间仍然是一个挑战。解决这个问题,我们开发了一个drug-releasing电子缝合系统(衣服)监控实时缝合完整性,提高组织再生引发药物释放。通过使用单一纤维制作的核壳结构组成的一个可伸缩的导电纤维芯和thermoresponsive聚合物壳含有药物。导电纤维芯作为应变传感器缝合,使持续的监控高的应变敏感性(一个衡量因素类似于686年)和机械耐久性能够承受超过3000拉伸循环)。thermoresponsive壳层组成的灵活的聚(乙烯醇)(PVA)嫁接上聚(N-isopropylacrylamide facilitates PNIPAm)按需通过电阻加热药物释放。结果体外划痕试验显示66%伤口面积减少后加热激活48小时内展示stimuli-responsive通过促进细胞治疗效果的礼服迁移。皮肤证明了礼服的适用性电子缝合。提供洞察多功能缝合线和提供额外的治疗和诊断临床应用程序的选项。

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