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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >State of the Art and Perspectives on the Biofunctionalization of Fluorescent Metal Nanoclusters and Carbon Quantum Dots for Targeted Imaging and Drug Delivery
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State of the Art and Perspectives on the Biofunctionalization of Fluorescent Metal Nanoclusters and Carbon Quantum Dots for Targeted Imaging and Drug Delivery

机译:荧光金属纳米团簇和碳量子点用于靶向成像和药物递送的生物功能化的最新进展和展望

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The interface of nanobio science and cancer nanomedicine is one of the most important current frontiers in research, being full of opportunities and challenges. Ultrasmall fluorescent metal nanoclusters (MNCs) and carbon quantum dots (CQDs) have emerged as promising fluorescent nanomaterials due to their unique physicochemical and optical properties, facile surface functionalization, good photostability, biocompatibility, and aqueous dispersity. These characteristics make them advantageous over conventional fluorophores such as organic dye molecules and semiconductor quantum dots (QDs) for the detection, diagnosis, and treatment of various diseases including cancer. Recently, researchers have focused on the biofunctionalization strategy of the MNCs and CQDs which can tailor their physicochemical and biological properties and, in turn, can empower these biofunctionalized nanoprobes for diverse applications including imaging, drug delivery, theranostics, and other biomedical applications. In this invited feature article, we first discuss some fundamental structural and physicochemical characteristics of the fluorescent biocompatible quantum-sized nanomaterials which have some outstanding features for the development of multiplexed imaging probes, delivery vehicles, and cancer nanomedicine. We then demonstrate the diverse surface engineering of these fluorescent nanomaterials with reactive target specific functional groups which can help to construct multifunctional nanoprobes with improved targeting capabilities having minimal toxicity. The promising future of the biofunctionalized fluorescent quantum-sized nanomaterials in the field of bioanalytical and biomedical research is elaborately demonstrated, showing selected recent works with relevant applications. This invited feature article finally ends with a short discussion of the current challenges and future prospects of the development of these bioconjugated/biofunctionalized nanomaterials to provide insight into t
机译:纳米生物科学与癌症纳米医学的界面是当前最重要的研究前沿之一,充满了机遇和挑战。超小型荧光金属纳米团簇(MNCs)和碳量子点(CQDs)因其独特的物理化学和光学性质、简单的表面功能化、良好的光稳定性、生物相容性和水分散性而成为有前途的荧光纳米材料。这些特性使它们在检测、诊断和治疗包括癌症在内的各种疾病方面优于有机染料分子和半导体量子点 (QD) 等传统荧光基团。最近,研究人员专注于MNC和CQD的生物功能化策略,这些策略可以定制它们的理化和生物学特性,进而使这些生物功能化的纳米探针能够用于各种应用,包括成像、药物递送、治疗诊断学和其他生物医学应用。在这篇特邀专题文章中,我们首先讨论了荧光生物相容性量子纳米材料的一些基本结构和物理化学特征,这些特征对于多重成像探针、递送载体和癌症纳米药物的开发具有一些突出的特点。然后,我们展示了这些荧光纳米材料的多样化表面工程,这些材料具有反应性靶向特异性官能团,这有助于构建具有改进靶向能力的多功能纳米探针,具有最小的毒性。详细阐述了生物功能化荧光量子纳米材料在生物分析和生物医学研究领域的发展前景,并展示了近年来的相关应用成果。最后,这篇特邀专题文章简要讨论了这些生物共轭/生物功能化纳米材料发展的当前挑战和未来前景,以提供对

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