"Metal Nanoparticles" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
Nanoparticles produced from metals whose uses include biosensors, optics, and catalysts. In biomedical applications the particles frequently involve the noble metals, especially gold and silver.
Descriptor ID |
D053768
|
MeSH Number(s) |
J01.637.512.600.500
|
Concept/Terms |
Metal Nanoparticles- Metal Nanoparticles
- Metal Nanoparticle
- Nanoparticle, Metal
- Nanoparticles, Metal
- Metallic Nanoparticles
- Metallic Nanoparticle
- Nanoparticle, Metallic
- Nanoparticles, Metallic
Metal Nanocrystals- Metal Nanocrystals
- Metal Nanocrystal
- Nanocrystal, Metal
- Nanocrystals, Metal
- Metallic Nanocrystals
- Metallic Nanocrystal
- Nanocrystal, Metallic
- Nanocrystals, Metallic
|
Below are MeSH descriptors whose meaning is more general than "Metal Nanoparticles".
Below are MeSH descriptors whose meaning is more specific than "Metal Nanoparticles".
This graph shows the total number of publications written about "Metal Nanoparticles" by people in this website by year, and whether "Metal Nanoparticles" was a major or minor topic of these publications.
To see the data from this visualization as text,
click here.
Year | Major Topic | Minor Topic | Total |
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2006 | 1 | 0 | 1 |
2007 | 3 | 2 | 5 |
2008 | 8 | 1 | 9 |
2009 | 7 | 0 | 7 |
2010 | 12 | 1 | 13 |
2011 | 9 | 2 | 11 |
2012 | 11 | 1 | 12 |
2013 | 8 | 1 | 9 |
2014 | 11 | 3 | 14 |
2015 | 13 | 1 | 14 |
2016 | 10 | 0 | 10 |
2017 | 8 | 0 | 8 |
2018 | 2 | 1 | 3 |
2019 | 4 | 1 | 5 |
2020 | 9 | 0 | 9 |
2021 | 2 | 1 | 3 |
2022 | 6 | 0 | 6 |
2023 | 5 | 0 | 5 |
2024 | 3 | 0 | 3 |
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click here.
Below are the most recent publications written about "Metal Nanoparticles" by people in Profiles.
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Yuan A, Hao H, Sha R, Xiao H, Yang F, Pang B, Li J, Jin M, Xie W, Zhao L, Wang Y, Zhang Y, Li J, Peng H. In Situ Imaging of Cellular Inflammatory Response to Antibiotic Exposure with a DNAzyme Nanorobot. Environ Sci Technol. 2024 Nov 19; 58(46):20619-20629.
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Wolakiewicz G, Pietrzak M, Szabelski M. Silver Nanoparticles Improve Fluorophore Photostability: Application to a Hypericin Study. Int J Mol Sci. 2024 Sep 15; 25(18).
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Subramani K, Wutthithien P, Saha R, Lindblad P, Incharoensakdi A. Characterization and potentiality of plant-derived silver nanoparticles for enhancement of biomass and hydrogen production in Chlorella sp. under nitrogen deprived condition. Chemosphere. 2024 Aug; 361:142514.
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Meng X, Liu J, Zheng Q, Li S, Xiao H, Huang J, Ma L, Liu Y, Tang J. Gold-Crowned Bismuth-Based Nanocomposites for Sonodynamic, Photothermal, and Chemotherapeutic Cancer Therapy. ACS Appl Mater Interfaces. 2023 Dec 20; 15(50):58041-58053.
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Gupta A, Ndugire W, Hirschbiegel CM, Grigely L, Rotello VM. Interfacing Nanomaterials with Biology through Ligand Engineering. Acc Chem Res. 2023 08 15; 56(16):2151-2169.
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Wu Y, Cao X, Du H, Guo X, Han Y, McClements DJ, Decker E, Xing B, Xiao H. Adverse effects of titanium dioxide nanoparticles on beneficial gut bacteria and host health based on untargeted metabolomics analysis. Environ Res. 2023 07 01; 228:115921.
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Hirschbiegel CM, Zhang X, Huang R, Cicek YA, Fedeli S, Rotello VM. Inorganic nanoparticles as scaffolds for bioorthogonal catalysts. Adv Drug Deliv Rev. 2023 04; 195:114730.
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Ndugire W, Truong D, Hasitha Raviranga NG, Lao J, Ramstr?m O, Yan M. Turning on the Antimicrobial Activity of Gold Nanoclusters Against Multidrug-Resistant Bacteria. Angew Chem Int Ed Engl. 2023 03 06; 62(11):e202214086.
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Ramesh K, Truong A, Wang Y, Rusckowski M, Gkikas M. Ligand-Specific Nano-Contrast Agents Promote Enhanced Breast Cancer CT Detection at 0.5 mg Au. Int J Mol Sci. 2022 Sep 01; 23(17).
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Chen ZY, Yang YC, Wang BJ, Cheng FY, Lee YL, Lee YH, Wang YJ. Comparing different surface modifications of zinc oxide nanoparticles in the developmental toxicity of zebrafish embryos and larvae. Ecotoxicol Environ Saf. 2022 Sep 15; 243:113967.