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基于静电纺纳米纤维和等离子体水凝胶的多功能平台:一种用于近红外光驱动生物医学应用的智能纳米结构枕头。

Multifunctional Platform Based on Electrospun Nanofibers and Plasmonic Hydrogel: A Smart Nanostructured Pillow for Near-Infrared Light-Driven Biomedical Applications.

机构信息

Department of Biosystems and Soft Matter, Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw 02-106, Poland.

Research Center for Biophotonics and Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Corso della Repubblica 79, Latina 04100, Italy.

出版信息

ACS Appl Mater Interfaces. 2020 Dec 9;12(49):54328-54342. doi: 10.1021/acsami.0c13266. Epub 2020 Nov 25.

Abstract

Multifunctional nanomaterials with the ability to respond to near-infrared (NIR) light stimulation are vital for the development of highly efficient biomedical nanoplatforms with a polytherapeutic approach. Inspired by the mesoglea structure of jellyfish bells, a biomimetic multifunctional nanostructured pillow with fast photothermal responsiveness for NIR light-controlled on-demand drug delivery is developed. We fabricate a nanoplatform with several hierarchical levels designed to generate a series of controlled, rapid, and reversible cascade-like structural changes upon NIR light irradiation. The mechanical contraction of the nanostructured platform, resulting from the increase of temperature to 42 °C due to plasmonic hydrogel-light interaction, causes a rapid expulsion of water from the inner structure, passing through an electrospun membrane anchored onto the hydrogel core. The mutual effects of the rise in temperature and water flow stimulate the release of molecules from the nanofibers. To expand the potential applications of the biomimetic platform, the photothermal responsiveness to reach the typical temperature level for performing photothermal therapy (PTT) is designed. The on-demand drug model penetration into pig tissue demonstrates the efficiency of the nanostructured platform in the rapid and controlled release of molecules, while the high biocompatibility confirms the pillow potential for biomedical applications based on the NIR light-driven multitherapy strategy.

摘要

具有近红外 (NIR) 光刺激响应能力的多功能纳米材料对于开发具有多治疗方法的高效生物医学纳米平台至关重要。受水母钟乳石结构的启发,开发了一种具有快速光热响应性的仿生多功能纳米结构枕头,用于 NIR 光控按需药物输送。我们制备了一种具有多个层次结构的纳米平台,旨在在 NIR 光照射下产生一系列受控、快速和可逆的级联结构变化。由于等离子体水凝胶-光相互作用导致温度升高到 42°C,纳米结构平台的机械收缩会导致水从内部结构中快速排出,穿过固定在水凝胶核心上的电纺膜。温度升高和水流的相互作用刺激了分子从纳米纤维中的释放。为了扩展仿生平台的潜在应用,设计了光热响应以达到进行光热治疗 (PTT) 的典型温度水平。按需药物模型渗透到猪组织中证明了纳米结构平台在快速和控制释放分子方面的效率,而高生物相容性证实了基于 NIR 光驱动多疗法策略的纳米平台在生物医学应用中的潜力。

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