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Biomimetic Barbed Microneedles for Highly Robust Tissue Anchoring

机译:仿生倒刺微针,用于高度坚固的组织固定

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We present a bioinspired tissue-anchoring technology enabled via direct laser writing (DLW). 3-D printed barbed microneedles, mimicking the parasitic spiny-headed worm, display excellent structural fidelity/resolution and demonstrate −0.6 mN penetration force and 25 mN pull-out force when characterized on porcine small intestine tissue. Compared to the state-of-the-art barbed microneedles, the results indicate a significant advancement with approximately two orders of magnitude lower penetration force and over ten-fold higher pull-out/penetration ratio (PPR). The ease of tissue penetration and strength of attachment characteristics allow a more passive anchoring mechanism, with lower actuation and power requirements, for use in minimally invasive gastrointestinal (GI) resident devices.
机译:我们介绍了一种通过直接激光写入(DLW)实现的具有生物启发性的组织锚定技术。 3-D打印的带刺的带刺微针,模仿寄生的多头蠕虫,在猪小肠组织上表现出优异的结构保真度/分辨率,并显示出-0.6 mN的穿透力和25 mN的拔出力。与最新的倒刺微针相比,结果表明,刺入力显着提高,穿透力降低了约两个数量级,拔出/穿透率(PPR)则提高了十倍以上。组织穿透的容易性和附着特性的强度允许用于被动侵入式胃肠(GI)驻留设备的被动式锚固机制,具有较低的驱动力和功率要求。

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