Vigneshvar S, Sudhakumari C C, Senthilkumaran Balasubramanian, Prakash Hridayesh
VIT University Chennai Campus , Chennai , India.
Department of Animal Biology, University of Hyderabad, Hyderabad, India; School of Life Sciences, University of Hyderabad, Hyderabad, India.
Front Bioeng Biotechnol. 2016 Feb 16;4:11. doi: 10.3389/fbioe.2016.00011. eCollection 2016.
Imperative utilization of biosensors has acquired paramount importance in the field of drug discovery, biomedicine, food safety standards, defense, security, and environmental monitoring. This has led to the invention of precise and powerful analytical tools using biological sensing element as biosensor. Glucometers utilizing the strategy of electrochemical detection of oxygen or hydrogen peroxide using immobilized glucose oxidase electrode seeded the discovery of biosensors. Recent advances in biological techniques and instrumentation involving fluorescence tag to nanomaterials have increased the sensitive limit of biosensors. Use of aptamers or nucleotides, affibodies, peptide arrays, and molecule imprinted polymers provide tools to develop innovative biosensors over classical methods. Integrated approaches provided a better perspective for developing specific and sensitive biosensors with high regenerative potentials. Various biosensors ranging from nanomaterials, polymers to microbes have wider potential applications. It is quite important to integrate multifaceted approaches to design biosensors that have the potential for diverse usage. In light of this, this review provides an overview of different types of biosensors being used ranging from electrochemical, fluorescence tagged, nanomaterials, silica or quartz, and microbes for various biomedical and environmental applications with future outlook of biosensor technology.
生物传感器的迫切应用在药物发现、生物医学、食品安全标准、国防、安全和环境监测领域已变得至关重要。这促使人们发明了以生物传感元件作为生物传感器的精确且强大的分析工具。利用固定化葡萄糖氧化酶电极对氧气或过氧化氢进行电化学检测的血糖仪开启了生物传感器的发现历程。涉及从荧光标记到纳米材料的生物技术和仪器的最新进展提高了生物传感器的灵敏限度。适体或核苷酸、亲和体、肽阵列以及分子印迹聚合物的使用为开发超越传统方法的创新型生物传感器提供了工具。综合方法为开发具有高再生潜力的特异性和灵敏性生物传感器提供了更好的视角。从纳米材料、聚合物到微生物的各种生物传感器具有更广泛的潜在应用。整合多方面方法来设计具有多种用途潜力的生物传感器非常重要。有鉴于此,本综述概述了用于各种生物医学和环境应用的不同类型生物传感器,包括电化学、荧光标记、纳米材料、二氧化硅或石英以及微生物生物传感器,并展望了生物传感器技术的未来发展前景。