| Literature DB >> 35189015 |
Maliha Marzana1, Zinnat Morsada2, Md Omar Faruk3, Abbas Ahmed4, Md Manirul Alam Khan5, Mohammad Abdul Jalil6, Md Milon Hossain7, Mohammed Muzibur Rahman8.
Abstract
Recently, nanostructured carbon-based soft bioelectronics and biosensors have received tremendous attention due to their outstanding physical and chemical properties. The ultrahigh specific surface area, high flexibility, lightweight, high electrical conductivity, and biocompatibility of 1D and 2D nanocarbons, such as carbon nanotubes (CNT) and graphene, are advantageous for bioelectronics applications. These materials improve human life by delivering therapeutic advancements in gene, tumor, chemo, photothermal, immune, radio, and precision therapies. They are also utilized in biosensing platforms, including optical and electrochemical biosensors to detect cholesterol, glucose, pathogenic bacteria (e. g., coronavirus), and avian leucosis virus. This review summarizes the most recent advancements in bioelectronics and biosensors by exploiting the outstanding characteristics of nanocarbon materials. The synthesis and biocompatibility of nanocarbon materials are briefly discussed. In the following sections, applications of graphene and CNTs for different therapies and biosensing are elaborated. Finally, the key challenges and future perspectives of nanocarbon materials for biomedical applications are highlighted.Entities:
Keywords: Biosensors; CNTs; Graphene; Nanostructured materials; Soft-bioelectronics; Theraputics
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Year: 2022 PMID: 35189015 DOI: 10.1002/tcr.202100319
Source DB: PubMed Journal: Chem Rec ISSN: 1528-0691 Impact factor: 6.935