Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.
Department of Chemistry, Indian Institute of Technology Delhi, New Delhi 110016, India.
Biosens Bioelectron. 2017 Oct 15;96:246-259. doi: 10.1016/j.bios.2017.05.001. Epub 2017 May 1.
Personalized health care (PHC) is being appreciated globally to combat clinical complexities underlying various metabolic or infectious disorders including diabetes, cardiovascular, communicable diseases etc. Effective diagnoses majorly depend on initial identification of the causes which are nowadays being practiced in disease-oriented approach, where personal health profile is often overlooked. The adoption of PHC has shown significantly improved diagnoses in various conditions including emergency, ambulatory, and remote area. PHC includes personalized health monitoring (PHM), which is its integral part and may provide valuable information's on various clinical conditions. In PHC, bio-fluids are analyzed using various diagnostic devices including lab based equipment and biosensors. Among all types of biosensing systems, paper based biosensors are commercially attracted due to its portability, easy availability, cheaper manufacturing cost, and transportability. Not only these, various intrinsic properties of paper has facilitated the development of paper based miniaturized sensors, which has recently gained ASSURED (Affordable, Sensitive, Specific, User-friendly, Rapid and Robust, Equipment free, Deliverable to all end-users) status for point of care diagnosis in miniaturized settings. In this review, importance of paper based biosensors and their compatibility for affordable and low cost diagnostics has been elaborated with various examples. Limitations and strategies to overcome the challenges of paper biosensor have also been discussed. We have provided elaborated tables which describe the types, model specifications, sensing mechanisms, target biomarkers, and analytical performance of the paper biosensors with their respective applications in real sample matrices. Different commercial aspects of paper biosensor have also been explained using SWOT (Strength, Weakness, Opportunities, Threats) analysis.
个性化医疗保健(PHC)在全球范围内受到重视,以应对各种代谢或传染病的临床复杂性,包括糖尿病、心血管疾病、传染病等。有效的诊断主要取决于对病因的初步识别,而目前正在采用以疾病为导向的方法,个人健康状况往往被忽视。PHC 的采用已在各种情况下显著提高了诊断效果,包括急诊、门诊和偏远地区。PHC 包括个性化健康监测(PHM),这是其组成部分,可提供各种临床情况下的有价值信息。在 PHC 中,生物液使用各种诊断设备进行分析,包括基于实验室的设备和生物传感器。在所有类型的生物传感系统中,基于纸张的生物传感器因其便携性、易于获取、更便宜的制造成本和可运输性而受到商业关注。不仅如此,纸张的各种固有特性还促进了基于纸张的微型传感器的发展,这些传感器最近在微型化设置中的即时诊断方面获得了 ASSURED(负担得起、敏感、特异、用户友好、快速、稳健、无设备、可交付给所有最终用户)地位。在这篇综述中,详细阐述了基于纸张的生物传感器的重要性及其对负担得起和低成本诊断的兼容性,并通过各种实例进行了说明。还讨论了克服纸张生物传感器挑战的策略和局限性。我们提供了详细的表格,其中描述了纸张生物传感器的类型、模型规格、传感机制、目标生物标志物以及在真实样本基质中的分析性能及其各自的应用。还使用 SWOT(优势、劣势、机会、威胁)分析解释了纸张生物传感器的不同商业方面。