Investigation of solvolysis kinetics of new synthesized fluocinolone acetonide C-21 esters-an in vitro model for prodrug activation

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Abstract

In this study the solvolysis of newly synthesized fluocinolone acetonide C-21 esters was analysed in comparison with fluocinonide during a 24-hour period of time. The solvolysis was performed in an ethanol-water (90:10 v/v) mixture using the excess of NaHCO3. The solvolytic mixtures of each investigated ester have been assayed by a RPHPLC method using isocratic elution with methanol-water (75:25 v/v); flow rate 1 mL/min; detection at 238 nm; temperature 25 °C. Solvolytic rate constants were calculated from the obtained data. Geometry optimizations and charges calculations were carried out by Gaussian W03 software. A good correlation (R = 0.9924) was obtained between solvolytic rate constants and the polarity of the C-O2 bond of those esters. The established relation between solvolytic rate constant (K) and lipophilicity (cLogP) with experimental anti-inflammatory activity could be indicative for topical corticosteroid prodrug activation. © 2011.

Figures

  • Figure 1. Solvolysis of six fluocinolone acetonide esters.
  • Table 1. Solvolytic rate constants (K) and descriptor values.
  • Table 1. Cont.
  • Figure 2. Correlation between polarity of C-O2 bond (B3LYP/STO-3G SCRF(COSMO, ethanol)) and solvolytic rate constant.
  • Figure 3. A. Experimental anti-inflammatory activity versus solvolytic rate constant. B. Predicted versus experimental anti-inflammatory activity of fluocinolone acetonide C-21 esters.

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APA

Markovic, B. D., Dobricic, V. D., Vladimirov, S. M., Cudina, O. A., Savic, V. M., & Karljikovic-Rajic, K. D. (2011). Investigation of solvolysis kinetics of new synthesized fluocinolone acetonide C-21 esters-an in vitro model for prodrug activation. Molecules, 16(3), 2658–2671. https://doi.org/10.3390/molecules16032658

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