1,389
Views
2
CrossRef citations to date
0
Altmetric
Original Article

Interaction of letrozole and its degradation products with aromatase: chemometric assessment of kinetics and structure-based binding validation

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon show all
Pages 1600-1609 | Received 01 Mar 2022, Accepted 20 May 2022, Published online: 29 May 2022

References

  • Unten Y, Murai M, Koshitaka T, et al. Comprehensive understanding of multiple actions of anticancer drug tamoxifen in isolated mitochondria. Biochimica et Biophysica Acta Bioenergetics 2022;1863:1600.
  • Dutta U, Pant K. Aromatase inhibitors: past, present and future in breast cancer therapy. Med Oncol 2008;25:113–24.
  • Kharb R, Haider K, Neha K, et al. Aromatase inhibitors: role in postmenopausal breast cancer. Archiv Der Pharmazie 2020;353:2000081.
  • Şendur MA, Bilgin B, Hızal M, et al. Do all aromatase inhibitors have similar efficacy and safety? Future Oncol 2017;13:1673–6. 10.2217/fon-2017-0228.
  • Annapurna MM, Mohapatro C, Narendra A. Stability-indicating liquid chromatographic method for the determination of Letrozole in pharmaceutical formulations. J Pharmac Anal 2012;2:298–305.
  • Elkady EF, Fouad MA. Preparation and characterization of two new forced degradation products of letrozole and development of a stability-indicating RP-LC method for its determination. Pak J Pharmac Sci 2015;28:2041–51.
  • Ranganathan HP, Govindrajulu G, Palaniyappan V. Forced degradation study of Letrozole-A validated stability indicating HPLC assay for bulk and tablet dosage form. Inter J Pharm Pharmac Sci 2012;4:582–6.
  • Shaban M, Ghaffary S, Hanaee J, et al. Synthesis and characterization of new surface modified magnetic nanoparticles and application for the extraction of letrozole from human plasma and analysis with HPLC-fluorescence. J Pharmac Biomed Anal 2021;193:113659.
  • Al-Shehri M, Hefnawy M, Abuelizz H, et al. Development and validation of an UHPLC-MS/MS method for simultaneous determination of palbociclib, letrozole and its metabolite carbinol in rat plasma and pharmacokinetic study application. Arab J Chem 2020;13:4024–34.
  • Hegde AR, Padya BS, Soman S, et al. A simple, precise, and sensitive HPLC method for quantification of letrozole in rat plasma: development, validation, and preclinical pharmacokinetics. J Anal Sci Technol 2021;12:8.
  • El-Kosasy AM, Rahman MHA, Abdelaal SH. Spectrofluorimetric Method for Determination of Letrozole: analytical applications to brain tissue samples and alkaline degradation kinetic study. J Appl Spectroscopy 2019;86:848–54.
  • Acharjya SK, Mallick P, Panda P, et al. Spectrophotometric methods for the determination of letrozole in bulk and pharmaceutical dosage forms. J Adv Pharmac Technol Res 2010;1:348–53.
  • Ganesh M, Kamalakannan K, Patil R, et al. A validated UV spectrophotometric method for the determination of letrozole in bulk and solid dosage form. Rasayan J Chem 2008;1:55–8.
  • Bhalla TC, Kumar V, Kumar V, et al. Nitrile Metabolizing Enzymes in Biocatalysis and Biotransformation. Appl Biochem Biotechnol 2018;185:925–46.
  • ICH Q1A 2003. ICH Guideline Q1A(R2) stability testing of new drug substances and products. international conference on harmonization. 2003.
  • Jaumot J, de Juan A, Tauler R. MCR-ALS GUI 2.0: New features and applications. Chem Intell Lab Syst 2015;140:1–12.
  • De Luca M, Ioele G, Spatari C, et al. A single MCR-ALS model for drug analysis in different formulations: Application on diazepam commercial preparations. J Pharma Biomed Anal 2017;134:346–51.
  • De Luca M, Ioele G, Grande F, et al. Photostability study of multicomponent drug formulations via MCR-ALS: The case of the hydrochlorothiazide-amiloride mixture. J Pharmac Biomed Anal 2020;186:113332.
  • Saurina J, Hernández-Cassou S, Tauler R, et al. Multivariate resolution of rank-deficient spectrophotometric data from first-order kinetic decomposition reactions. J Chemometr 1998;12:183–203.
  • Marín-García M, De Luca M, Ragno G, et al. Coupling of spectrometric, chromatographic, and chemometric analysis in the investigation of the photodegradation of sulfamethoxazole. Talanta 2022;239:122953.
  • Ghosh D, Egbuta C, Lo J. Testosterone complex and non-steroidal ligands of human aromatase. J Steroid Biochem Mol Biol 2018;181:11–9.
  • Hanwell MD, Curtis DE, Lonie DC, et al. Avogadro: An advanced semantic chemical editor, visualization, and analysis platform. J Cheminform 2012;4:17.
  • Trott O, Olson AJ. AutoDock Vina: Improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreading. J Comput Chem 2010;31:455–61.
  • Morris GM, Goodsell DS, Halliday RS, et al. Automated docking using a lamarckian genetic algorithm and an empirical binding free energy function. J Comput Chem 1639;19:16391662.
  • Grande F, Rizzuti B, Occhiuzzi MA, Statti G, et al. Identification by molecular docking of homoisoflavones from leopoldia comosa as ligands of estrogen receptors. Molecules 2018;23:894.
  • Ceramella J, Caruso A, Occhiuzzi MA, et al. Benzothienoquinazolinones as new multi-target scaffolds: dual inhibition of human Topoisomerase I and tubulin polymerization. Euro J Med Chem 2019;181:111583.
  • Salentin S, Schreiber S, Haupt VJ, et al. PLIP: fully automated protein-ligand interaction profiler. Nucleic Acids Res 2015;43:W443–W447. [cited 2022 Jan 31]Available from: https://academic.oup.com/nar/article/43/W1/W443/2467865.
  • Razuc M, Garrido M, Caro YS, et al. Hybrid hard- and soft-modeling of spectrophotometric data for monitoring of ciprofloxacin and its main photodegradation products at different pH values. Spectrochim Acta A Mol Biomol Spectrosc 2013;106:146–54.
  • Nardo GD, Breitner M, Bandino A, et al. Evidence for an Elevated Aspartate pK(a) in the active site of human aromatase. J Biol Chem 2015;290:1186–96.
  • Nantasenamat C, Worachartcheewan A, Prachayasittikul S, et al. QSAR modeling of aromatase inhibitory activity of 1-substituted 1,2,3-triazole analogs of letrozole. Euro J Med Chem 2013;69:99–114.