4.8 Review

Metal-organic frameworks as photoluminescent biosensing platforms: mechanisms and applications

期刊

CHEMICAL SOCIETY REVIEWS
卷 50, 期 7, 页码 4484-4513

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0cs00955e

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资金

  1. National Natural Science Foundation of China [21731002, 21975104]
  2. Guangdong Major Project of Basic and Applied Research [2019B030302009]
  3. Guangdong Basic and Applied Basic Research Foundation [2020A1515011005]

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Biosensing plays a crucial role in monitoring abnormalities in biological systems and advancing public health, with MOF materials offering immense feasibility in the construction of biosensing platforms.
Biosensing is of vital importance for advancing public health through monitoring abnormalities in biological systems, which may be potentially associated with certain body dysfunctions. A wide range of luminescent materials have been actively pursued in the fabrication of biosensing platforms, particularly ones that can function in complex biological fluids with high selectivity and sensitivity. Recently, metal-organic frameworks (MOFs) have experienced rapid growth due to their tunable structures, large surface area, and being prone to surface engineering, etc. These virtues endow MOF materials with immense feasibility in the target-oriented construction of sensing platforms for specific applications. In this review, we extrapolated six sensing mechanisms for MOF-based photoluminescent biosensing platforms, including photoelectron transfer (PET), resonance energy transfer (RET), competition absorption (CA), structural transformation (ST), chemical conversion (CC), and quencher detachment (QD). Accordingly, recent progress of MOF-based materials in photoluminescence sensing of biomolecules, biomarkers, drugs, and toxins was highlighted. The objective of this review is to provide readers with an extensive overview of the design and synthesis of MOF materials for photoluminescence biosensing. The challenges and outlook are briefly discussed at the end.

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