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量子点在生物传感和成像中的多种应用方法。

Versatile Approaches of Quantum Dots in Biosensing and Imaging.

机构信息

School of Biochemical Engineering, Indian Institute of Technology (BHU), Varanasi, India.

Department of Biosciences and Bioengineering, Indian Institute of Technology (IIT) Bombay, Powai, Mumbai, India.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2024 Sep-Oct;16(5):e1998. doi: 10.1002/wnan.1998.

Abstract

Cancer is considered a formidable global health threat, despite substantial strides in diagnosis, detection, and therapeutic strategies. Remarkable progress has been achieved in these realms, yet the survival rates for cancer patients have persisted at suboptimal levels over decades. Acknowledging the need to address the ongoing challenges in cancer survival rates, research efforts are being made to push the boundaries of innovation in diagnostic techniques, bioimaging, and drug delivery technologies. Over the past few years, nano(bio)technology-based approaches have been applied for biosensing and imaging applications to detect biochemical substances in various matrices. Among various nanoengineered particulates, quantum dots (QDs) have been recognized as versatile agents for these applications. QDs, often called artificial atoms, are characterized by the remarkable optical and electrical features which are essential for cytosensing, localized bioimaging and therapeutics. Here in this review, we have discussed various QDs as sensitive and selective agents for precise sensing and imaging of cancer cells. Both electrochemical and optical approaches have been used to describe the cytosensing detection methods. Furthermore, the bioimaging of malignant tumor cells and the drug delivery with therapeutic responses of QDs have also been highlighted. This review also lists the several kinds of QDs that are frequently used for such kinds of applications, such as carbon, graphene, zinc, and other types of hybrid-based QDs. Finally, to shed insight on prospective research, the advantages and potential of QDs are also highlighted. In this article, we also emphasize the limitations and address the difficulties associated with QDs in clinical applications in order to provide insights for potential solutions.

摘要

癌症被认为是一种严重的全球健康威胁,尽管在诊断、检测和治疗策略方面取得了重大进展。在这些领域已经取得了显著的进步,但几十年来癌症患者的生存率一直处于不理想的水平。认识到需要解决癌症生存率方面的持续挑战,研究工作正在推动诊断技术、生物成像和药物输送技术创新的突破。在过去的几年中,基于纳米(生物)技术的方法已被应用于生物传感和成像应用中,以检测各种基质中的生化物质。在各种纳米工程颗粒中,量子点 (QD) 已被认为是这些应用的多功能试剂。QD 通常被称为人工原子,其具有显著的光学和电学特性,这对于细胞传感、局部生物成像和治疗至关重要。在这篇综述中,我们讨论了各种 QD 作为用于精确感测和成像癌细胞的灵敏和选择性试剂。电化学和光学方法都已被用于描述细胞传感检测方法。此外,还强调了恶性肿瘤细胞的生物成像以及 QD 的药物输送和治疗反应。本文还列出了常用于此类应用的几种 QD,如碳、石墨烯、锌和其他类型的混合 QD。最后,为了深入了解未来的研究,还强调了 QD 的优势和潜力。在本文中,我们还强调了 QD 在临床应用中的局限性和所面临的困难,以便为潜在的解决方案提供思路。

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