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壳聚糖纳米纤维纸在光(生物)传感应用中的研究进展

Chitin Nanofiber Paper toward Optical (Bio)sensing Applications.

机构信息

Nanosensor Bioplatforms Laboratory, Chemistry and Chemical Engineering Research Center of Iran, 14335-186 Tehran, Iran.

ICN2 - Nanobioelectronics & Biosensors Group, Institut Catala de Nanociencia i Nanotecnologia, Campus UAB, Bellaterra, Barcelona 08193, Spain.

出版信息

ACS Appl Mater Interfaces. 2020 Apr 1;12(13):15538-15552. doi: 10.1021/acsami.9b23487. Epub 2020 Mar 20.

Abstract

Because of numerous inherent and unrivaled features of nanofibers made of chitin, the second most plentiful natural-based polymer (after cellulose), including affordability, abundant nature, biodegradability, biocompatibility, commercial availability, flexibility, transparency, and extraordinary mechanical and physicochemical properties, chitin nanofibers (ChNFs) are being applied as one of the most appealing bionanomaterials in a myriad of fields. Herein, we exploited the beneficial properties offered by the ChNF paper to fabricate transparent, efficient, biocompatible, flexible, and miniaturized optical sensing bioplatforms via embedding/immobilizing various plasmonic nanoparticles (silver and gold nanoparticles), photoluminescent nanoparticles (CdTe quantum dots, carbon dots, and NaYF:Yb@Er&SiO upconversion nanoparticles) along with colorimetric reagents (curcumin, dithizone, etc.) in the 3D nanonetwork scaffold of the ChNF paper. Several configurations, including 2D multi-wall and 2D cuvette patterns with hydrophobic barriers/walls and hydrophilic test zones/channels, were easily printed using laser printing technology or punched as spot patterns on the dried ChNF paper-based nanocomposites to fabricate the (bio)sensing platforms. A variety of (bio)chemicals as model analytes were used to confirm the efficiency and applicability of the fabricated ChNF paper-based sensing bioplatforms. The developed (bio)sensors were also coupled with smartphone technology to take the advantages of smartphone-based monitoring/sensing devices along with the Internet of Nano Things (IoNT)/the Internet of Medical Things (IoMT) concepts for easy-to-use sensing applications. Building upon the unrivaled and inherent features of ChNF as a very promising bionanomaterial, we foresee that the ChNF paper-based sensing bioplatforms will emerge new opportunities for the development of innovative strategies to fabricate cost-effective, simple, smart, transparent, biodegradable, miniaturized, flexible, portable, and easy-to-use (bio)sensing/monitoring devices.

摘要

由于壳聚糖纳米纤维具有众多内在的、无与伦比的特性,壳聚糖是仅次于纤维素的第二大丰富的天然聚合物(仅次于纤维素),包括价格合理、丰富的天然来源、可生物降解性、生物相容性、商业可用性、灵活性、透明度以及非凡的机械和物理化学性质,壳聚糖纳米纤维 (ChNF) 正被应用于众多领域中最具吸引力的生物纳米材料之一。在此,我们利用 ChNF 纸的有益特性,通过在 3D 纳米网络支架中嵌入/固定各种等离子体纳米颗粒(银和金纳米颗粒)、光致发光纳米颗粒(CdTe 量子点、碳点和 NaYF:Yb@Er&SiO 上转换纳米颗粒)以及比色试剂(姜黄素、二硫腙等),来制造透明、高效、生物相容、灵活且小型化的光学传感生物平台。多种配置,包括 2D 多壁和 2D 试管图案,带有疏水障碍/壁和亲水测试区/通道,使用激光打印技术轻松打印或在干燥的 ChNF 纸基纳米复合材料上打孔成点状图案,以制造(生物)传感平台。各种(生物)化学物质被用作模型分析物,以确认所制造的 ChNF 纸基传感生物平台的效率和适用性。所开发的(生物)传感器还与智能手机技术相结合,利用基于智能手机的监测/传感设备以及物联网(IoNT)/医疗物联网(IoMT)概念,实现易于使用的传感应用。基于 ChNF 作为一种非常有前途的生物纳米材料的无与伦比和内在特性,我们预计 ChNF 纸基传感生物平台将为开发具有成本效益、简单、智能、透明、可生物降解、小型化、灵活、便携和易于使用的(生物)传感/监测设备的创新策略带来新的机遇。

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