Tailored calix[4]arene-gold nanoconjugate as a ultra-sensitive immunosensing nanolabel

IF 3 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Nidhi Verma, Pinkesh Sutariya, Tvarit Patel, Malvika Shukla, Alok Pandya
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引用次数: 3

Abstract

The construction of highly sensitive and specific immunosensing nanolabels have attracted tremendous attention in the development of reliable point-of-care disease diagnostics. However, there are still challenges with traditional immunoassays, such as complicated and time-consuming procedure, the use of enzyme label, non-specificity, and require readers for detection. Therefore, we have designed and developed site-directed antibody-immobilized calix[4]arene-gold nanoconjugate based colorimetric immunosensing nanolabel to offer high sensitivity. The prepared nanolabel enabled oriented binding of the antibodies by providing full accessibility of Fab domain for antigen binding. The improved sensitivity of the developed nanolabel was evaluated using vertical flow immunoassay (VFIA) for detecting C-reactive protein (CRP) with a lower detection limit up to 1 ng/ml. Our developed nanolabel was found to be highly specific, easy, quick, and appropriate for onsite detection. The nanolabel is validated with spiked blood samples which exhibited ~90% recovery having a relative error of ~2%. Furthermore, the nanolabel was also used for screening of human blood real samples which showed relative error of ~0.6%. The developed nanolabel can be utilized as a potential nanolabel for the quantitative detection of various biomolecules in clinical samples.

Graphical Abstract

Abstract Image

定制杯[4]芳烃-金纳米缀合物作为超灵敏免疫传感纳米标记物
构建高灵敏度和特异性的免疫传感纳米标签在开发可靠的即时疾病诊断方面引起了极大的关注。然而,传统的免疫分析方法仍然存在一些挑战,如程序复杂且耗时,使用酶标记,非特异性,需要阅读器检测。因此,我们设计并开发了位点定向抗体固定化杯[4]芳烃-金纳米共轭基比色免疫传感纳米标签,以提供高灵敏度。制备的纳米标签通过提供Fab结构域的完全可及性来实现抗体的定向结合。采用垂直流动免疫分析法(VFIA)检测c -反应蛋白(CRP),检测限低至1 ng/ml。我们开发的纳米标签被发现是高度特异性,简单,快速,适合现场检测。该纳米标签用加标血液样品进行验证,回收率为90%,相对误差为2%。此外,纳米标签也用于人血真实样品的筛选,其相对误差为~0.6%。所开发的纳米标签可作为一种潜在的纳米标签用于临床样品中各种生物分子的定量检测。图形抽象
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来源期刊
Biomedical Microdevices
Biomedical Microdevices 工程技术-工程:生物医学
CiteScore
6.90
自引率
3.60%
发文量
32
审稿时长
6 months
期刊介绍: Biomedical Microdevices: BioMEMS and Biomedical Nanotechnology is an interdisciplinary periodical devoted to all aspects of research in the medical diagnostic and therapeutic applications of Micro-Electro-Mechanical Systems (BioMEMS) and nanotechnology for medicine and biology. General subjects of interest include the design, characterization, testing, modeling and clinical validation of microfabricated systems, and their integration on-chip and in larger functional units. The specific interests of the Journal include systems for neural stimulation and recording, bioseparation technologies such as nanofilters and electrophoretic equipment, miniaturized analytic and DNA identification systems, biosensors, and micro/nanotechnologies for cell and tissue research, tissue engineering, cell transplantation, and the controlled release of drugs and biological molecules. Contributions reporting on fundamental and applied investigations of the material science, biochemistry, and physics of biomedical microdevices and nanotechnology are encouraged. A non-exhaustive list of fields of interest includes: nanoparticle synthesis, characterization, and validation of therapeutic or imaging efficacy in animal models; biocompatibility; biochemical modification of microfabricated devices, with reference to non-specific protein adsorption, and the active immobilization and patterning of proteins on micro/nanofabricated surfaces; the dynamics of fluids in micro-and-nano-fabricated channels; the electromechanical and structural response of micro/nanofabricated systems; the interactions of microdevices with cells and tissues, including biocompatibility and biodegradation studies; variations in the characteristics of the systems as a function of the micro/nanofabrication parameters.
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