Institute of Crystallography (IC), National Research Council of Italy (CNR), Via Salaria km 29.300, 00015 Monterotondo Scalo, Rome, Italy.
Institute of Crystallography (IC), National Research Council of Italy (CNR), Via Salaria km 29.300, 00015 Monterotondo Scalo, Rome, Italy.
Biosens Bioelectron. 2015 Dec 15;74:1076-86. doi: 10.1016/j.bios.2015.07.078. Epub 2015 Aug 1.
Biosensors are powerful tunable systems able to switch between an ON/OFF status in response to an external stimulus. This extraordinary property could be engineered by adopting synthetic biology or biomimetic chemistry to obtain tailor-made biosensors having the desired requirements of robustness, sensitivity and detection range. Recent advances in both disciplines, in fact, allow to re-design the configuration of the sensing elements - either by modifying toggle switches and gene networks, or by producing synthetic entities mimicking key properties of natural molecules. The present review considered the role of synthetic biology in sustaining biosensor technology, reporting examples from the literature and reflecting on the features that make it a useful tool for designing and constructing engineered biological systems for sensing application. Besides, a section dedicated to bioinspired synthetic molecules as powerful tools to enhance biosensor potential is reported, and treated as an extension of the concept of biomimetic chemistry, where organic synthesis is used to generate artificial molecules that mimic natural molecules. Thus, the design of synthetic molecules, such as aptamers, biomimetics, molecular imprinting polymers, peptide nucleic acids, and ribozymes were encompassed as "products" of biomimetic chemistry.
生物传感器是一种强大的可调系统,能够对外界刺激做出开/关状态的切换。通过采用合成生物学或仿生化学的方法,可以获得定制的生物传感器,使其具有所需的稳健性、灵敏度和检测范围。事实上,这两个领域的最新进展允许重新设计传感元件的结构 - 要么通过修改开关和基因网络,要么通过产生模拟天然分子关键特性的合成实体。本综述考虑了合成生物学在维持生物传感器技术方面的作用,报告了文献中的实例,并思考了使其成为用于设计和构建用于传感应用的工程生物系统的有用工具的特征。此外,还报告了专门用于生物启发合成分子作为增强生物传感器潜力的强大工具的部分,并将其视为仿生化学概念的延伸,其中有机合成用于生成模拟天然分子的人工分子。因此,设计合成分子,如适体、仿生分子、分子印迹聚合物、肽核酸和核酶,被包含在仿生化学的“产物”中。