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Rational Nanotoolbox with Theranostic Potential for Medicated Pro-Regenerative Corneal Implants

机译:用于治疗前再生型角膜植入物的具有治疗诊断潜力的Rational Nanotoolbox

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摘要

Cornea diseases are a leading cause of blindness and the disease burden is exacerbated by the increasing shortage around the world for cadaveric donor corneas. Despite the advances in the field of regenerative medicine, successful transplantation of laboratory-made artificial corneas is not fully realized in clinical practice. The causes of failure of such artificial corneal implants are multifactorial and include latent infections from viruses and other microbes, enzyme overexpression, implant degradation, extrusion or delayed epithelial regeneration. Therefore, there is an urgent unmet need for developing customized corneal implants to suit the host environment and counter the effects of inflammation or infection, which are able to track early signs of implant failure in situ. This work reports a nanotoolbox comprising tools for protection from infection, promotion of regeneration, and noninvasive monitoring of the in situ corneal environment. These nanosystems can be incorporated within pro-regenerative biosynthetic implants, transforming them into theranostic devices, which are able to respond to biological changes following implantation.
机译:角膜疾病是失明的主要原因,并且尸体供体角膜在世界范围内的日益短缺加剧了疾病负担。尽管再生医学领域取得了进步,但是在临床实践中仍未完全实现对实验室制造的人工角膜的成功移植。此类人工角膜植入物失效的原因是多方面的,包括病毒和其他微生物的潜在感染,酶的过表达,植入物降解,挤压或上皮再生延迟。因此,迫切需要开发定制的角膜植入物以适应宿主环境并抵抗炎症或感染的影响,该需求能够原位追踪植入物衰竭的早期迹象。这项工作报告了一个纳米工具箱,其中包括用于防止感染,促进再生和对角膜原位环境进行无创监测的工具。可以将这些纳米系统整合到可再生的生物合成植入物中,将其转变为能够在植入后对生物学变化做出反应的诊断学装置。

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