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用于生物传感应用的发光纳米材料。

Luminescence nanomaterials for biosensing applications.

机构信息

School of Natural Science, CT University, Ludhiana, Punjab, India.

Department of Biotechnology, CT Institute of Pharmaceutical Sciences (CTIPS), CT Group of Institutions, Shahpur Campus, Jalandhar, Punjab, India.

出版信息

Luminescence. 2023 Jul;38(7):1011-1025. doi: 10.1002/bio.4373. Epub 2022 Sep 14.

Abstract

Due to their capacity to immobilize more bioreceptor parts at reduced volumes, nanomaterials have emerged as potential tools for increasing the sensitivity to specific molecules. Furthermore, carbon nanotubes, gold nanoparticles, polymer nanoparticles, semiconductor quantum dots, nanodiamonds, and graphene are among the nanomaterials that are under investigation. Due to the fast development of this field of research, this review summarizes the classification of biosensors using the main receptors and design of biosensors. Numerous studies have concentrated on the manipulation of persistent luminescence nanoparticles (PLNPs) in biosensing, cell tracking, bioimaging, and cancer therapy due to the effective removal of autofluorescence interference from tissues and the ultra-long near-infrared afterglow emission. As luminescence has a unique optical property, it can be detected without constant external illumination, preventing autofluorescence and light dispersion through tissues. These successes have sparked an increasing interest in creating novel PLNP types with the desired superior properties and multiple applications. In this review, we emphasize the most recent developments in biosensing, imaging, and image-guided therapy whilst summarizing the research on synthesis methods, bioapplications, biomembrane modification, and the biosafety of PLNPs. Finally, the remaining issues and difficulties are examined together with prospective future developments in the biomedical application field.

摘要

由于纳米材料能够在较小体积内固定更多的生物受体部分,因此它们已成为提高对特定分子的灵敏度的潜在工具。此外,碳纳米管、金纳米粒子、聚合物纳米粒子、半导体量子点、纳米金刚石和石墨烯等纳米材料正在被研究。由于该研究领域的快速发展,本综述总结了使用主要受体的生物传感器分类和生物传感器的设计。由于能够有效消除组织的自发荧光干扰和超长时间近红外余晖发射,持久发光纳米粒子(PLNP)在生物传感、细胞跟踪、生物成像和癌症治疗中的应用受到了广泛关注。由于发光具有独特的光学特性,它可以在没有持续外部照明的情况下进行检测,从而防止自发荧光和光通过组织的分散。这些成功激发了人们对具有所需优异性能和多种应用的新型 PLNP 类型的兴趣。在本综述中,我们强调了生物传感、成像和图像引导治疗方面的最新进展,同时总结了关于合成方法、生物应用、生物膜修饰和 PLNP 生物安全性的研究。最后,还探讨了生物医学应用领域的剩余问题和挑战以及未来的发展方向。

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