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用于循环游离核酸的石墨烯量子点的生物分析应用:综述

Bioanalytical Applications of Graphene Quantum Dots for Circulating Cell-Free Nucleic Acids: A Review.

作者信息

Ratre Pooja, Jain Bulbul, Kumari Roshani, Thareja Suresh, Tiwari Rajnarayan, Srivastava Rupesh Kumar, Goryacheva Irina Yu, Mishra Pradyumna Kumar

机构信息

Department of Molecular Biology, ICMR-National Institute for Research in Environmental Health, Bhopal, 462030, India.

Department of Pharmaceutical Sciences and Natural Products, Central University of Punjab, Bathinda, 151401, India.

出版信息

ACS Omega. 2022 Oct 26;7(44):39586-39602. doi: 10.1021/acsomega.2c05414. eCollection 2022 Nov 8.

Abstract

Graphene quantum dots (GQDs) are carbonaceous nanodots that are natural crystalline semiconductors and range from 1 to 20 nm. The broad range of applications for GQDs is based on their unique physical and chemical properties. Compared to inorganic quantum dots, GQDs possess numerous advantages, including formidable biocompatibility, low intrinsic toxicity, excellent dispensability, hydrophilicity, and surface grating, thus making them promising materials for nanophotonic applications. Owing to their unique photonic compliant properties, such as superb solubility, robust chemical inertness, large specific surface area, superabundant surface conjugation sites, superior photostability, resistance to photobleaching, and nonblinking, GQDs have emerged as a novel class of probes for the detection of biomolecules and study of their molecular interactions. Here, we present a brief overview of GQDs, their advantages over quantum dots (QDs), various synthesis procedures, and different surface conjugation chemistries for detecting cell-free circulating nucleic acids (CNAs). With the prominent rise of liquid biopsy-based approaches for real-time detection of CNAs, GQDs-based strategies might be a step toward early diagnosis, prognosis, treatment monitoring, and outcome prediction of various non-communicable diseases, including cancers.

摘要

石墨烯量子点(GQDs)是一种碳质纳米点,属于天然晶体半导体,尺寸范围在1至20纳米之间。GQDs广泛的应用基于其独特的物理和化学性质。与无机量子点相比,GQDs具有许多优势,包括强大的生物相容性、低固有毒性、出色的分散性、亲水性和表面光栅,因此使其成为纳米光子学应用中很有前景的材料。由于其独特的光子顺应特性,如极高的溶解度、强大的化学惰性、大比表面积、大量的表面共轭位点、优异的光稳定性、抗光漂白性和不闪烁性,GQDs已成为一类新型的用于检测生物分子及其分子相互作用研究的探针。在此,我们简要概述GQDs、它们相对于量子点(QDs)的优势、各种合成方法以及用于检测无细胞循环核酸(CNAs)的不同表面共轭化学。随着基于液体活检的方法在实时检测CNAs方面的显著兴起,基于GQDs的策略可能是朝着包括癌症在内的各种非传染性疾病的早期诊断、预后、治疗监测和结果预测迈出的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b813/9648045/5d426a1d10cb/ao2c05414_0001.jpg

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