Advances in pH Sensing: From Traditional Approaches to Next‐Generation Sensors in Biological Contexts

Author:

Hassan Akhtar Mahmood12ORCID,Azhar Hayat Nawaz Muhammad234,Abbas Manzar56,Liu Ning23,Han Wenzhao23,Lv Yan1,Yu Cong23

Affiliation:

1. College of Animal Science Jilin University Changchun 130062 China

2. State Key Laboratory of Electroanalytical Chemistry Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun 130022 China

3. University of Science and Technology of China Hefei 230026 China

4. Interdisciplinary Research Centre in Biomedical Materials (IRCBM) COMSATS University Islamabad 54000 Lahore Campus Pakistan

5. Department of Chemistry Khalifa University of Science and Technology P.O. Box 127788 Abu Dhabi UAE

6. Functional Biomaterials Group Khalifa University of Science and Technology P.O. Box 127788 Abu Dhabi UAE

Abstract

AbstractpH has been considered one of the paramount factors in bodily functions because most cellular tasks exclusively rely on precise pH values. In this context, the current techniques for pH sensing provide us with the futuristic insight to further design therapeutic and diagnostic tools. Thus, pH‐sensing (electrochemically and optically) is rapidly evolving toward exciting new applications and expanding researchers’ interests in many chemical contexts, especially in biomedical applications. The adaptation of cutting‐edge technology is subsequently producing the modest form of these biosensors as wearable devices, which are providing us the opportunity to target the real‐time collection of vital parameters, including pH for improved healthcare systems. The motif of this review is to provide insight into trending tech‐based systems employed in real‐time or in‐vivo pH‐responsive monitoring. Herein, we briefly go through the pH regulation in the human body to help the beginners and scientific community with quick background knowledge, recent advances in the field, and pH detection in real‐time biological applications. In the end, we summarize our review by providing an outlook; challenges that need to be addressed, and prospective integration of various pH in vivo platforms with modern electronics that can open new avenues of cutting‐edge techniques for disease diagnostics and prevention.

Funder

Jilin University

Publisher

Wiley

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