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Organ Repair Hemostasis and In Vivo Bonding of Medical Devices by Aqueous Solutions of Nanoparticles

机译:纳米粒子的水溶液对医疗器械的器官修复止血和体内结合

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摘要

Sutures are traumatic to soft connective tissues, such as liver or lungs. Polymer tissue adhesives require complex in vivo control of polymerization or cross-linking reactions and currently suffer from being toxic, weak, or inefficient within the wet conditions of the body. Herein, we demonstrate using Stöber silica or iron oxide nanoparticles that nanobridging, that is, adhesion by aqueous nanoparticle solutions, can be used in vivo in rats to achieve rapid and strong closure and healing of deep wounds in skin and liver. Nanoparticles were also used to fix polymer membranes to tissues even in the presence of blood flow, such as occurring after liver resection, yielding permanent hemostasis within a minute. Furthermore, medical devices and tissue engineering constructs were fixed to organs such as a beating heart. The simplicity, rapidity, and robustness of nanobridging bode well for clinical applications, surgery, and regenerative medicine.
机译:缝线对软结缔组织如肝或肺具有创伤。聚合物组织胶粘剂需要复杂的体内控制聚合或交联反应,并且目前在体内潮湿的条件下有毒,脆弱或效率低下。在本文中,我们证明了使用Stöber二氧化硅或氧化铁纳米颗粒可以在大鼠体内进行纳米桥接,即通过水性纳米颗粒溶液的粘附,从而快速,牢固地闭合和治愈皮肤和肝脏深层伤口。纳米颗粒也被用于将聚合物膜固定在组织上,即使在有血流的情况下,例如在肝切除后发生的情况下,也能在一分钟内产生永久止血。此外,医疗设备和组织工程构造被固定在诸如跳动的心脏的器官上。纳米桥的简单性,快速性和耐用性预示着其在临床应用,外科手术和再生医学中的应用。

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