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将多孔硅纳米针整合到医疗器械中用于核酸纳流注射。

Integrating Porous Silicon Nanoneedles within Medical Devices for Nucleic Acid Nanoinjection.

机构信息

Centre for Craniofacial and Regenerative Biology, King's College London, SE1 9RT London, U.K.

London Centre for Nanotechnology, King's College London, WC2R 2LS London, U.K.

出版信息

ACS Nano. 2024 Jun 11;18(23):14938-14953. doi: 10.1021/acsnano.4c00206. Epub 2024 May 10.

Abstract

Porous silicon nanoneedles can interface with cells and tissues with minimal perturbation for high-throughput intracellular delivery and biosensing. Typically, nanoneedle devices are rigid, flat, and opaque, which limits their use for topical applications in the clinic. We have developed a robust, rapid, and precise substrate transfer approach to incorporate nanoneedles within diverse substrates of arbitrary composition, flexibility, curvature, transparency, and biodegradability. With this approach, we integrated nanoneedles on medically relevant elastomers, hydrogels, plastics, medical bandages, catheter tubes, and contact lenses. The integration retains the mechanical properties and transfection efficiency of the nanoneedles. Transparent devices enable the live monitoring of cell-nanoneedle interactions. Flexible devices interface with tissues for efficient, uniform, and sustained topical delivery of nucleic acids and . The versatility of this approach highlights the opportunity to integrate nanoneedles within existing medical devices to develop advanced platforms for topical delivery and biosensing.

摘要

多孔硅纳米针可以与细胞和组织进行最小程度的干扰的相互作用,从而实现高通量的细胞内传递和生物传感。通常,纳米针器件是刚性的、平坦的和不透明的,这限制了它们在临床中的局部应用。我们已经开发了一种强大的、快速的和精确的基底转移方法,以将纳米针整合到具有任意组成、灵活性、曲率、透明度和可生物降解性的各种基底中。通过这种方法,我们将纳米针集成到有医学相关性的弹性体、水凝胶、塑料、医用绷带、导管管和隐形眼镜上。这种集成保留了纳米针的机械性能和转染效率。透明器件能够实时监测细胞-纳米针相互作用。柔性器件与组织界面接触,实现了核酸和药物的高效、均匀和持续的局部传递。这种方法的多功能性突出了将纳米针集成到现有医疗器械中的机会,以开发用于局部传递和生物传感的先进平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d77/11171749/bdf07d21cc48/nn4c00206_0001.jpg

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