Literature DB >> 24935093

Silver carboxylate metal-organic frameworks with highly antibacterial activity and biocompatibility.

Xinyi Lu1, Junwei Ye1, Dekui Zhang2, Ruixia Xie3, Raji Feyisa Bogale1, Yuan Sun1, Limei Zhao1, Qi Zhao4, Guiling Ning5.   

Abstract

Two novel Ag-based metal-organic frameworks (MOFs) [Ag2(O-IPA)(H2O)·(H3O)] (1) and [Ag5(PYDC)2(OH)] (2) were synthesized under the hydrothermal conditions using aromatic-carboxylic acids containing hydroxyl and pyridyl groups as ligands (HO-H2IPA=5-hydroxyisophthalic acid and H2PYDC=pyridine-3, 5-dicarboxylic acid). Single crystal X-ray diffraction indicated that two compounds exhibit three-dimensional frameworks constructed from different rod-shaped molecular building blocks. Both compounds favor slow release of Ag(+) ions leading to excellent and long-term antimicrobial activities towards Gram-negative bacteria, Escherichia coli (E. coli) and Gram-positive bacteria, Staphylococcus aureus (S. aureus). Their antibacterial potency was evaluated by using a minimal inhibition concentration (MIC) benchmark and an inhibition zone testing. High-resolution transmission electron microscope images indicate that the Ag-based MOFs could rupture the bacterial membrane resulting in cell death. Hematological study showed that these MOFs exhibit good biocompatibility in mice. In addition, good thermal stability and optical stability under UV-visible and visible light are beneficial for their antibacterial application.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Ag(+) release; Antibacterial activity; Biocompatibility; Metal–organic frameworks; Silver

Mesh:

Substances:

Year:  2014        PMID: 24935093     DOI: 10.1016/j.jinorgbio.2014.05.005

Source DB:  PubMed          Journal:  J Inorg Biochem        ISSN: 0162-0134            Impact factor:   4.155


  13 in total

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8.  A Stable Coordination Polymer Based on Rod-Like Silver(I) Nodes with Contiguous Ag-S Bonding.

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Journal:  ACS Appl Mater Interfaces       Date:  2020-07-31       Impact factor: 9.229

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Journal:  Nanomaterials (Basel)       Date:  2021-03-12       Impact factor: 5.076

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