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- Chiral separation and a molecular modeling study of eight azole antifungals on the cellulose tris(3,5-dichlorophenylcarbamate) chiral stationary phase. Bolin Zhu, Fan Zhao, Jia Yu, Zhaokun Wang, Yongbo Song, Qing Li
, New J. Chem.
, 2018
, 42
, 13421
- Study of the forced degradation of isoconazole nitrate in bulk drug and cream formulations. Alessandra Von Ahn, João Henrique Z. Dos Santos
, Anal. Methods
, 2012
, 4
, 2404
- Enantiomeric separation and molecular docking study of seven imidazole antifungal drugs on a cellulose tris-(3,5-dimethylphenylcarbamate) chiral stationary phase. Yanru Liu, Liangzhao Cai, Jia Lun, Min Zhao, Xingjie Guo
, New J. Chem.
, 2020
, 44
, 18337
- A new method for the study of G-quadruplex ligands. De-Ming Kong, Jing Wu, Yong-E Ma, Han-Xi Shen
, Analyst
, 2008
, 133
, 1158
- Chemometric modeling of the lowest observed effect level (LOEL) and no observed effect level (NOEL) for rat toxicity. Ankur Kumar, Probir Kumar Ojha, Kunal Roy
, Environ. Sci.: Adv.
, 2024
, 3
, 686
- Continuous photochemical benzylic bromination using in situ generated Br2: process intensification towards optimal PMI and throughput. Alexander Steiner, Jason D. Williams, Oscar de Frutos, Juan A. Rincón, Carlos Mateos, C. Oliver Kappe
, Green Chem.
, 2020
, 22
, 448
- CaCO3-based carriers with prolonged release properties for antifungal drug delivery to hair follicles. Mariia S. Saveleva, Ekaterina V. Lengert, Roman A. Verkhovskii, Anatolii A. Abalymov, Anton M. Pavlov, Alexey V. Ermakov, Ekaterina S. Prikhozhdenko, Sergei N. Shtykov, Yulia I. Svenskaya
, Biomater. Sci.
, 2022
, 10
, 3323
- Pharmacologically active compounds in the environment and their chirality. Barbara Kasprzyk-Hordern
, Chem. Soc. Rev.
, 2010
, 39
, 4466
- Imidazolium salts as antifungal agents: activity against emerging yeast pathogens, without human leukocyte toxicity. Henri S. Schrekker, Ricardo K. Donato, Alexandre M. Fuentefria, Vanessa Bergamo, Luís Flávio Oliveira, Michel M. Machado
, Med. Chem. Commun.
, 2013
, 4
, 1457