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可持续分析物检测综述:生物传感器技术中的仿生灵感。

A review towards sustainable analyte detection: Biomimetic inspiration in biosensor technology.

作者信息

Bhagat Pratistha, Upadhyay Lata Sheo Bachan

机构信息

National Institute of Technology, Raipur, Department of Biotechnology, Raipur, Chhattisgarh 492010, India.

出版信息

J Biotechnol. 2025 Feb;398:51-65. doi: 10.1016/j.jbiotec.2024.11.015. Epub 2024 Nov 28.

Abstract

The branch of biomimetics has witnessed a profound impact on the field of biosensor technology, reflected in sustainable analyte detection. A vast array of biosensor platforms with improved/upgraded performance have been developed and reported. No wonder the motivation from the field of biomimetics has a huge impact on generating detection systems with escalated degrees of manipulation and tunability at different levels. More recently, biomimetic biosensor technology has found potential in constructing bio-inspired materials such as aptamers, MIPs, nanozymes, DNAzymes, Synzymes, etc. to be integrated with biosensor fabrication. The establishment of a sensing setup is not limited to the bioreceptor fabrication; the construction of transducing element using biomimetic material have been reported too. Moreover, to serve a biosensing of target analyte from a fatal diseased sample different biomimetic architectures can be designed that mimic in-vivo microenvironmental surroundings to get an exact microenvironment equivalent to natural conditions leading towards designing of a precise treatment strategy. This research area is ever-evolving as there is a scope for upgradation and refinement due to advancing technologies including nanotechnology, biomimetic nanomaterials, microfluidics, optical sensors, etc. This review is an attempt to comprehend and juxtapose the very primary innovations in the field of biomimetic biosensor technology to realize its comprehensive and wide-range scope and possibilities.

摘要

仿生学分支在生物传感器技术领域产生了深远影响,这体现在可持续的分析物检测方面。大量性能得到改进/升级的生物传感器平台已被开发并报道。难怪来自仿生学领域的推动对生成在不同层面具有更高程度操控性和可调性的检测系统有巨大影响。最近,仿生生物传感器技术在构建受生物启发的材料(如适体、分子印迹聚合物、纳米酶、脱氧核酶、合成酶等)以集成到生物传感器制造中发现了潜力。传感装置的建立不仅限于生物受体的制造;使用仿生材料构建传感元件的报道也有。此外,为了对来自致命疾病样本的目标分析物进行生物传感,可以设计不同的仿生结构,这些结构模仿体内微环境,以获得与自然条件等效的精确微环境,从而设计出精确的治疗策略。由于包括纳米技术、仿生纳米材料、微流体、光学传感器等在内的技术不断进步,这个研究领域不断发展,有升级和完善的空间。这篇综述旨在理解并并列仿生生物传感器技术领域的一些最主要创新,以认识其全面且广泛的范围和可能性。

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