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Multifunctional, Tunable Metal–Organic Framework Materials Platform for Bioimaging Applications [A Multifunctional Tunable MOF Materials Platform for Bio-Imaging Applications]

Journal Article · · ACS Applied Materials and Interfaces

Herein, we describe a novel multifunctional metal–organic framework (MOF) materials platform that displays both porosity and tunable emission properties as a function of the metal identity (Eu, Nd, and tuned compositions of Nd/Yb). Their emission collectively spans the deep red to near-infrared (NIR) spectral region (~614–1350 nm), which is highly relevant for in vivo bioimaging. These new materials meet important prerequisites as relevant to biological processes: they are minimally toxic to living cells and retain structural integrity in water and phosphate-buffered saline. To assess their viability as optical bioimaging agents, we successfully synthesized the nanoscale Eu analog as a proof-of-concept system in this series. In vitro studies show that it is cell-permeable in individual RAW 264.7 mouse macrophage and HeLa human cervical cancer tissue culture cells. The efficient discrimination between the Eu emission and cell autofluorescence was achieved with hyperspectral confocal fluorescence microscopy, used here for the first time to characterize MOF materials. Importantly, this is the first report that documents the long-term conservation of the intrinsic emission in live cells of a fluorophore-based MOF to date (up to 48 h). As a result this finding, in conjunction with the materials’ very low toxicity, validates the biocompatibility in these systems and qualifies them as promising for use in long-term tracking and biodistribution studies.

Research Organization:
Argonne National Laboratory (ANL), Argonne, IL (United States). Advanced Photon Source (APS)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES), Scientific User Facilities Division
Grant/Contract Number:
AC02-06CH11357
OSTI ID:
1373947
Alternate ID(s):
OSTI ID: 1429671
Journal Information:
ACS Applied Materials and Interfaces, Journal Name: ACS Applied Materials and Interfaces Journal Issue: 27 Vol. 9; ISSN 1944-8244
Publisher:
American Chemical Society (ACS)Copyright Statement
Country of Publication:
United States
Language:
English

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  • Sava, Dorina F.; Rohwer, Lauren E. S.; Rodriguez, Mark A.
  • Journal of the American Chemical Society, Vol. 134, Issue 9, p. 3983-3986 https://doi.org/10.1021/ja211230p
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Cited By (16)

MOF-Derived Cu@Cu2O Nanocatalyst for Oxygen Reduction Reaction and Cycloaddition Reaction journal February 2018
Nanoscale Metal‐Organic Frameworks: Synthesis, Biocompatibility, Imaging Applications, and Thermal and Dynamic Therapy of Tumors journal March 2020
Zn‐ and Cd‐based Coordination Polymers Offering H‐Bonding Cavities: Highly Selective Sensing of S 2 O 7 2− and Fe 3+ Ions journal October 2019
Metal‐Organic Sheets for Efficient Drug Delivery and Bioimaging journal January 2020
Synthesis, Crystal Structures and Magnetic Properties of Carboxyl Bridged 3d–4f Heterometallic Coordination Polymers Based on Metalloligand and Lanthanide Ions journal March 2019
The effect of size and aspect ratio of Fe-MIL-88B-NH2 metal-organic frameworks on their relaxivity and contrast enhancement properties in MRI: in vitro and in vivo studies journal October 2018
Versatile bimetallic lanthanide metal-organic frameworks for tunable emission and efficient fluorescence sensing journal April 2018
Efficient MOF-based degradation of organophosphorus compounds in non-aqueous environments journal January 2018
Biocompatible MOFs with high absolute quantum yield for bioimaging in the second near infrared window journal January 2018
Amorphous-to-crystalline transition and photoluminescence switching in guest-absorbing metal–organic network thin films journal January 2020
Structure and electronic properties of rare earth DOBDC metal–organic-frameworks journal January 2019
Near-infrared-emissive metal–organic frameworks journal January 2019
A functionalized UiO-66 MOF for turn-on fluorescence sensing of superoxide in water and efficient catalysis for Knoevenagel condensation journal January 2019
2D chain layer versus 1D chain: rigid aromatic benzoate disassembling flexible alicyclic dicarboxylate-based lanthanide coordination polymers with enhanced photoluminescence and characteristic single-molecule magnet behavior journal January 2020
Design of lanthanide-based metal–organic frameworks with enhanced near-infrared emission journal January 2020
In Vitro Toxicity Study of a Porous Iron(III) Metal‒Organic Framework journal March 2019

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