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1
Copper microenvironments in the human body define patterns of copper adaptation in pathogenic bacteria.
PLoS Pathog. 2022 Jul 21;18(7):e1010617. doi: 10.1371/journal.ppat.1010617. eCollection 2022 Jul.
2
Copper transport and trafficking at the host-bacterial pathogen interface.
Acc Chem Res. 2014 Dec 16;47(12):3605-13. doi: 10.1021/ar500300n. Epub 2014 Oct 13.
3
Copper tolerance in bacteria requires the activation of multiple accessory pathways.
Mol Microbiol. 2020 Sep;114(3):377-390. doi: 10.1111/mmi.14522. Epub 2020 May 19.
4
Copper Resistance of the Emerging Pathogen Acinetobacter baumannii.
Appl Environ Microbiol. 2016 Sep 30;82(20):6174-6188. doi: 10.1128/AEM.01813-16. Print 2016 Oct 15.
5
Pathogenic adaptations to host-derived antibacterial copper.
Front Cell Infect Microbiol. 2014 Feb 3;4:3. doi: 10.3389/fcimb.2014.00003. eCollection 2014.
7
Copper tolerance and virulence in bacteria.
Metallomics. 2015 Jun;7(6):957-64. doi: 10.1039/c4mt00327f.
8
Copper in infectious disease: Using both sides of the penny.
Semin Cell Dev Biol. 2021 Jul;115:19-26. doi: 10.1016/j.semcdb.2020.12.003. Epub 2021 Jan 7.
9
Demonstration of ,-Dimethyldithiocarbamate as a Copper-Dependent Antibiotic against Multiple Upper Respiratory Tract Pathogens.
Microbiol Spectr. 2021 Oct 31;9(2):e0077821. doi: 10.1128/Spectrum.00778-21. Epub 2021 Sep 1.
10
A Copper Peroxide Fenton Nanoagent-Hydrogel as an pH-Responsive Wound Dressing for Effectively Trapping and Eliminating Bacteria.
ACS Appl Bio Mater. 2022 Apr 18;5(4):1779-1793. doi: 10.1021/acsabm.2c00138. Epub 2022 Mar 23.

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1
Bioinorganic chemistry: where from and where to?
J Biol Inorg Chem. 2025 Jun 8. doi: 10.1007/s00775-025-02112-1.
2
A primer on copper biology in the brain.
Neurobiol Dis. 2025 Aug;212:106974. doi: 10.1016/j.nbd.2025.106974. Epub 2025 May 23.
3
The molecular mechanism and therapeutic landscape of copper and cuproptosis in cancer.
Signal Transduct Target Ther. 2025 May 9;10(1):149. doi: 10.1038/s41392-025-02192-0.
4
SHLP6: a novel NLRP3 and Cav1 modulating agent in Cu-induced oxidative stress and neurodegeneration.
Front Mol Neurosci. 2025 Apr 1;18:1553308. doi: 10.3389/fnmol.2025.1553308. eCollection 2025.
6
Ferroptosis and cuproptosis in periodontitis: recent biological insights and therapeutic advances.
Front Immunol. 2025 Feb 24;16:1526961. doi: 10.3389/fimmu.2025.1526961. eCollection 2025.
7
Cuproptosis Cell Death Molecular Events and Pathways to Liver Disease.
J Inflamm Res. 2025 Jan 20;18:883-894. doi: 10.2147/JIR.S498340. eCollection 2025.
8
Programmed cardiomyocyte death in myocardial infarction.
Apoptosis. 2025 Apr;30(3-4):597-615. doi: 10.1007/s10495-025-02075-3. Epub 2025 Jan 20.
9
Bacterial Metallostasis: Metal Sensing, Metalloproteome Remodeling, and Metal Trafficking.
Chem Rev. 2024 Dec 25;124(24):13574-13659. doi: 10.1021/acs.chemrev.4c00264. Epub 2024 Dec 10.

本文引用的文献

1
Copper Induces Protein Aggregation, a Toxic Process Compensated by Molecular Chaperones.
mBio. 2022 Apr 26;13(2):e0325121. doi: 10.1128/mbio.03251-21. Epub 2022 Mar 15.
3
From Copper Tolerance to Resistance in towards Patho-Adaptation and Hospital Success.
Genes (Basel). 2022 Feb 4;13(2):301. doi: 10.3390/genes13020301.
4
Acquisition of ionic copper by the bacterial outer membrane protein OprC through a novel binding site.
PLoS Biol. 2021 Nov 11;19(11):e3001446. doi: 10.1371/journal.pbio.3001446. eCollection 2021 Nov.
5
Dynamic and cell-specific transport networks for intracellular copper ions.
J Cell Sci. 2021 Nov 1;134(21). doi: 10.1242/jcs.240523. Epub 2021 Nov 4.
6
Copper Resistance Promotes Fitness of Methicillin-Resistant Staphylococcus aureus during Urinary Tract Infection.
mBio. 2021 Oct 26;12(5):e0203821. doi: 10.1128/mBio.02038-21. Epub 2021 Sep 7.
9
Co-selection of antibiotic resistance genes, and mobile genetic elements in the presence of heavy metals in poultry farm environments.
Sci Total Environ. 2021 Feb 10;755(Pt 2):142702. doi: 10.1016/j.scitotenv.2020.142702. Epub 2020 Oct 2.
10
Copper Homeostasis in Mammals, with Emphasis on Secretion and Excretion. A Review.
Int J Mol Sci. 2020 Jul 13;21(14):4932. doi: 10.3390/ijms21144932.

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