Marchianò Verdiana, Tricase Angelo, Cimino Alessandra, Cassano Blanca, Catacchio Michele, Macchia Eleonora, Torsi Luisa, Bollella Paolo
Department of Pharmacy-Pharmaceutical Science, University of Bari Aldo Moro, Via E. Orabona, 4 - 70125 Bari, Italy; Centre for Colloid and Surface Science, University of Bari Aldo Moro, Via E. Orabona, 4 - 70125 Bari, Italy.
Department of Pharmacy-Pharmaceutical Science, University of Bari Aldo Moro, Via E. Orabona, 4 - 70125 Bari, Italy.
Bioelectrochemistry. 2025 Feb;161:108830. doi: 10.1016/j.bioelechem.2024.108830. Epub 2024 Sep 27.
Edible biosensors can measure a wide range of physiological and biochemical parameters, including temperature, pH, gases, gastrointestinal biomarkers, enzymes, hormones, glucose, and drug levels, providing real-time data. Edible biocatalytic biosensors represent a new frontier within healthcare technology available for remote medical diagnosis. The main challenges to develop edible biosensors are: i) finding edible materials (i.e. redox mediators, conductive materials, binders and biorecognition elements such as enzymes) complying with Food and Drug Administration (FDA), European Food Safety Authority (EFSA) and European Medicines Agency (EMEA) regulations; ii) developing bioelectronics able to operate in extreme working conditions such as low pH (∼pH 1.5 gastric fluids etc.), body temperature (between 37 °C and 40 °C) and highly viscous bodily fluids that may cause surface biofouling issues. Nowadays, advanced printing techniques can revolutionize the design and manufacturing of edible biocatalytic biosensors. This review outlines recent research on biomaterials suitable for creating edible biocatalytic biosensors, focusing on their electrochemical properties such as electrical conductivity and redox potential. It also examines biomaterials as substrates for printing and discusses various printing methods, highlighting challenges and perspectives for edible biocatalytic biosensors.
可食用生物传感器能够测量广泛的生理和生化参数,包括温度、pH值、气体、胃肠道生物标志物、酶、激素、葡萄糖和药物水平,并提供实时数据。可食用生物催化生物传感器代表了医疗技术中可用于远程医疗诊断的一个新领域。开发可食用生物传感器面临的主要挑战包括:i)寻找符合美国食品药品监督管理局(FDA)、欧洲食品安全局(EFSA)和欧洲药品管理局(EMEA)规定的可食用材料(即氧化还原介质、导电材料、粘合剂和生物识别元件如酶);ii)开发能够在极端工作条件下运行的生物电子器件,如低pH值(约pH 1.5的胃液等)、体温(37°C至40°C之间)以及可能导致表面生物污垢问题的高粘性体液环境。如今,先进的印刷技术能够彻底改变可食用生物催化生物传感器的设计和制造。本综述概述了近期关于适用于制造可食用生物催化生物传感器的生物材料的研究,重点关注其电化学性质,如电导率和氧化还原电位。还研究了作为印刷基材的生物材料,并讨论了各种印刷方法,突出了可食用生物催化生物传感器面临的挑战和前景。