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植物源蛋白的绿色合成保护铜量子簇用于宫内节育器应用。

Green synthesis of a plant-derived protein protected copper quantum cluster for intrauterine device application.

机构信息

Department of Chemistry, Indian Institute of Space Science and Technology, Valiamala, Thiruvananthapuram, Kerala 695547, India.

出版信息

Analyst. 2018 Aug 6;143(16):3841-3849. doi: 10.1039/c8an00438b.

Abstract

Fluorescent copper quantum clusters (CuQCs) have received great interest in recent times due to their attractive features, such as water solubility, low cost, wide availability of Cu and good biocompatibility. Recently, considerable efforts have been devoted to the preparation and applications of CuQCs. Herein, we report a simple one-pot green method for the preparation of fluorescent CuQCs using a plant-derived protein, gluten, as a stabilizing agent. Gluten, a naturally abundant, low-cost and sustainable plant-protein derived from wheat, was employed both as a reducing and stabilizing agent to produce blue emitting CuQCs. The CuQCs were characterized by UV-Vis absorption, fluorescence, FT-IR, TEM, and XPS. We further incorporated CuQCs into a polymer to study the release rate of Cu2+ ions from a CuQC-polymer composite, since copper ions are well known for their fungicidal properties and contraceptive action in copper-T (CuT). The CuQCs were incorporated into a model polymer, polyurethane (PU), by melt compounding, and the mixtures were extruded in the form of a wire. It was observed that the CuQCs were uniformly dispersed within the polymer matrix. An in vitro experiment was carried out to quantify the potential release of Cu(ii) ions for contraceptive applications. The developed nanocomposite releases Cu(ii) ions for 90 days, which suggests the potential application of the CuQCs in the medical field like the development of short-term intrauterine devices (IUDs). Compared to conventional IUDs, here the CuQC-PU nanocomposite reduces the burst release of the Cu2+, and the release rates can be tuned by changing the composition of the materials. These results suggest that the CuQC-PU nanocomposites have great potential to replace current commercial intrauterine devices.

摘要

荧光铜量子点 (CuQCs) 因其具有水溶性、成本低、铜资源丰富、生物相容性好等优点,近年来受到了极大的关注。最近,人们致力于 CuQCs 的制备和应用。在此,我们报告了一种简单的一锅法绿色方法,使用植物来源的蛋白质——面筋作为稳定剂制备荧光 CuQCs。面筋是一种天然丰富、低成本和可持续的植物蛋白,来源于小麦,它既可以作为还原剂,也可以作为稳定剂,用于制备蓝色发射的 CuQCs。CuQCs 通过紫外-可见吸收、荧光、FT-IR、TEM 和 XPS 进行了表征。我们进一步将 CuQCs 掺入聚合物中,以研究 CuQC-聚合物复合材料中 Cu2+离子的释放速率,因为铜离子以其杀菌特性和铜-T(CuT)的避孕作用而闻名。CuQCs 通过熔融共混掺入模型聚合物——聚氨酯(PU)中,并将混合物挤出成线材。观察到 CuQCs 在聚合物基质中均匀分散。进行了体外实验以定量评估避孕应用中 Cu(ii)离子的潜在释放。该纳米复合材料在 90 天内释放 Cu(ii)离子,这表明 CuQCs 在医学领域如短期宫内节育器(IUD)的开发方面具有潜在应用。与传统 IUD 相比,这里的 CuQC-PU 纳米复合材料减少了 Cu2+的爆发式释放,并且可以通过改变材料的组成来调节释放速率。这些结果表明,CuQC-PU 纳米复合材料具有替代当前商业宫内节育器的巨大潜力。

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