Recent Progress in Multi-Analytes Recognition Reinforced by Graphene Derivatives for Cardio Health Assessments.

IF 4.2 2区 化学 Q1 CHEMISTRY, ANALYTICAL
M A H Suhaimi, S Taniselass, M K Md Arshad, Subash C B Gopinath, M F M Fathil, M M Ramli, I H Hasan
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Abstract

The escalating prevalence of cardiovascular diseases globally call for a low-cost monitoring technology for an immediate intervene and diagnoses. Advance multiplexed biosensors reinforced by graphene derivatives marks a significant progression in the field of cardiovascular health assessments. The graphene derived biosensors are designed specifically for fast detection of cardiac biomarkers with high precision to evaluate cardiovascular health. The graphene biocompatibility and fast signal transduction electronic properties provide an ideal foundation for the multiplexed technology. Despite the substantial potential of this multiplexed technologies, there remains a pressing need for further research and development to fully harness their capabilities in clinical environments. This study underscores the critical role of these biosensors in point of care applications and reviews the current landscape of research, highlighting significant progress made in graphene-based transduction and the recent trends in graphene production which give impact on biosensors performance. Key components are discussed include the assessment of vital cardiac biomarkers and the evolution of multiplex biosensing strategies that utilizes graphene nanomaterials. In summary, this review provides a comprehensive overview of the latest advancements in multi-analyte detection for cardiac healthcare. It outlines the key challenges encountered while proposing potential strategies to improve the effectiveness of multiplex biosensing platforms, thereby supporting the advancement of cardiac diagnostics. The potential of multiplexed biosensing technology leads to enhance diagnostic capabilities while reducing healthcare costs represents a significant advancement in cardiovascular healthcare, particularly for point-of-care applications.

石墨烯衍生物增强多分析物识别用于心脏健康评估的最新进展。
全球心血管疾病的发病率不断上升,需要一种低成本的监测技术,以便立即进行干预和诊断。石墨烯衍生物增强的先进多路生物传感器标志着心血管健康评估领域的重大进展。石墨烯衍生的生物传感器专为快速检测心脏生物标志物而设计,具有高精度,以评估心血管健康。石墨烯的生物相容性和快速信号转导的电子特性为多路复用技术提供了理想的基础。尽管这种多路复用技术具有巨大的潜力,但仍迫切需要进一步的研究和开发,以充分利用其在临床环境中的能力。本研究强调了这些生物传感器在护理点应用中的关键作用,并回顾了当前的研究前景,强调了石墨烯转导方面取得的重大进展以及石墨烯生产的最新趋势,这对生物传感器的性能产生了影响。讨论的关键组成部分包括重要心脏生物标志物的评估和利用石墨烯纳米材料的多重生物传感策略的演变。综上所述,本文综述了心脏保健中多分析物检测的最新进展。它概述了在提出提高多重生物传感平台有效性的潜在策略时遇到的关键挑战,从而支持心脏诊断的进步。多路生物传感技术的潜力可以增强诊断能力,同时降低医疗保健成本,这是心血管医疗保健领域的重大进步,特别是在护理点应用方面。
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来源期刊
CiteScore
12.00
自引率
4.00%
发文量
137
审稿时长
6 months
期刊介绍: Critical Reviews in Analytical Chemistry continues to be a dependable resource for both the expert and the student by providing in-depth, scholarly, insightful reviews of important topics within the discipline of analytical chemistry and related measurement sciences. The journal exclusively publishes review articles that illuminate the underlying science, that evaluate the field''s status by putting recent developments into proper perspective and context, and that speculate on possible future developments. A limited number of articles are of a "tutorial" format written by experts for scientists seeking introduction or clarification in a new area. This journal serves as a forum for linking various underlying components in broad and interdisciplinary means, while maintaining balance between applied and fundamental research. Topics we are interested in receiving reviews on are the following: · chemical analysis; · instrumentation; · chemometrics; · analytical biochemistry; · medicinal analysis; · forensics; · environmental sciences; · applied physics; · and material science.
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