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探索源自糖浆瓶废料和姜黄素的发光碳点,以寻找潜在的抗菌和生物成像应用。

Exploring luminescent carbon dots derived from syrup bottle waste and curcumin for potential antimicrobial and bioimaging applications.

机构信息

Department of Periodontics, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Tamil Nadu, Chennai, 600077, India.

Center for Supramolecular Chemistry & Catalysis and Department of Chemistry, College of Science, Shanghai University, Shanghai, 200444, China.

出版信息

Chemosphere. 2024 Apr;354:141592. doi: 10.1016/j.chemosphere.2024.141592. Epub 2024 Mar 9.

Abstract

In this study, we utilized a navel hybrid material, prepared by fusing fluorescent Carbon Dots SyCDs, derived from syrup bottles, with curcumin. This innovative approach not only offers significant advancements in antimicrobial activity and bioimaging but also represents a stride in sustainable and eco-friendly nanotechnology. The core of our study is the development of an efficient, cost-effective, and environmentally conscious method for synthesizing SyCDs. This is achieved by repurposing waste syrup bottles, thus addressing the pressing issue of plastic waste. The incorporation of curcumin, renowned for its biological properties, enhances the luminescent characteristics of SyCDs and augments their functionality. This combination overcomes the inherent limitations of curcumin when used in isolation. The hybrid material exhibits enhanced antimicrobial properties and proves to be a potent alternative to conventional fluorescent dyes for bioimaging, marking a substantial leap in the field of sustainable nanomaterials. Our work not only demonstrates the versatile applications of luminescent SyCDs in health and environmental science but also underscores the potential of sustainable approaches in addressing global environmental challenges. This study, represents a significant contribution to the domain of sustainable nanotechnology, highlighting the transformative power of integrating waste management with advanced material science.

摘要

在这项研究中,我们利用了一种肚脐混合材料,它是通过将荧光碳点(SyCDs)与姜黄素融合而成的,而荧光碳点是从糖浆瓶中提取的。这种创新方法不仅在抗菌活性和生物成像方面提供了重大进展,而且代表了可持续和环保纳米技术的一个飞跃。我们研究的核心是开发一种高效、经济且环保的方法来合成 SyCDs。通过重新利用废弃的糖浆瓶来实现这一目标,从而解决了塑料废物的紧迫问题。姜黄素的生物特性增强了 SyCDs 的发光特性并提高了其功能,这使得它成为生物成像中替代传统荧光染料的有力选择,这一组合克服了姜黄素单独使用时的固有局限性。这种混合材料表现出增强的抗菌性能,证明了它是一种有前途的可持续纳米材料,在可持续纳米技术领域具有重要意义。我们的工作不仅展示了发光 SyCDs 在健康和环境科学中的多功能应用,还强调了可持续方法在应对全球环境挑战方面的潜力。这项研究代表了可持续纳米技术领域的一项重要贡献,突出了将废物管理与先进材料科学相结合的变革力量。

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