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Advances in Metal-organic Frameworks (MOFs) Based Biosensors for Diagnosis: An Update

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Specialty Chemistry
Date 2022 Aug 31
PMID 36043769
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Abstract

Metal-organic frameworks (MOFs) have significant advantages over other candidate classes of chemo-sensory materials owing to their extraordinary structural tunability and characteristics. MOF-based biosensing is a simple and convenient method for identifying various species. Biomarkers are molecular or cellular processes that link environmental exposure to a health outcome. Biomarkers are important in understanding the links between environmental chemical exposure and the development of chronic diseases, as well as in identifying disease-prone subgroups. Until now, several species, including nanoparticles (NPs) and their nanocomposites, small molecules, and unique complex systems, have been used for the chemical sensing of biomarkers. Following the overview of the field, we discussed the various fabrication methods for MOFs development in this review. We provide a thorough overview of the previous five years of progress to broaden the scope of analytes for future research. Several enzymatic and non-enzymatic sensors are offered, together with a mandatory measuring method that includes detection range and dynamic range. In addition, we reviewed the comparison of enzymatic and non-enzymatic biosensors, inventive edges, and the difficulties that need to be solved. This work might open up new possibilities for material production, sensor development, medical diagnostics, and other sensing fields.

Citing Articles

The Roadmap of Graphene-Based Sensors: Electrochemical Methods for Bioanalytical Applications.

Ashraf G, Aziz A, Iftikhar T, Zhong Z, Asif M, Chen W Biosensors (Basel). 2022; 12(12).

PMID: 36551150 PMC: 9775289. DOI: 10.3390/bios12121183.

References
1.
Ashraf G, Asif M, Aziz A, Wang Z, Qiu X, Huang Q . Nanocomposites consisting of copper and copper oxide incorporated into MoS4 nanostructures for sensitive voltammetric determination of bisphenol A. Mikrochim Acta. 2019; 186(6):337. DOI: 10.1007/s00604-019-3406-9. View

2.
Asif M, Aziz A, Wang Z, Ashraf G, Wang J, Luo H . Hierarchical CNTs@CuMn Layered Double Hydroxide Nanohybrid with Enhanced Electrochemical Performance in HS Detection from Live Cells. Anal Chem. 2019; 91(6):3912-3920. DOI: 10.1021/acs.analchem.8b04685. View

3.
Asif M, Aziz A, Azeem M, Wang Z, Ashraf G, Xiao F . A review on electrochemical biosensing platform based on layered double hydroxides for small molecule biomarkers determination. Adv Colloid Interface Sci. 2018; 262:21-38. DOI: 10.1016/j.cis.2018.11.001. View

4.
Asif M, Aziz A, Ashraf G, Wang Z, Wang J, Azeem M . Facet-Inspired Core-Shell Gold Nanoislands on Metal Oxide Octadecahedral Heterostructures: High Sensing Performance toward Sulfide in Biotic Fluids. ACS Appl Mater Interfaces. 2018; 10(43):36675-36685. DOI: 10.1021/acsami.8b12186. View

5.
Aziz A, Asif M, Ashraf G, Azeem M, Majeed I, Ajmal M . Advancements in electrochemical sensing of hydrogen peroxide, glucose and dopamine by using 2D nanoarchitectures of layered double hydroxides or metal dichalcogenides. A review. Mikrochim Acta. 2019; 186(10):671. DOI: 10.1007/s00604-019-3776-z. View