| Literature DB >> 29324660 |
Eleonore Haltner-Ukomadu1, Svitlana Gureyeva2, Oleksii Burmaka3, Andriy Goy4, Lutz Mueller5, Grygorii Kostyuk6, Victor Margitich7.
Abstract
An investigation into the biopharmaceutics classification and a study of the in vitro bioavailability (permeability and solubility) of the antiviral compound enisamium iodide (4-(benzylcarbamoyl)-1-methylpyridinium iodide) were carried out. The solubility of enisamium iodide was determined in four different buffers. Apparent intestinal permeability (Papp) of enisamium iodide was assessed using human colon carcinoma (Caco-2) cells at three concentrations. The solubility of enisamium iodide in four buffer solutions from pH 1.2 to 7.5 is about 60 mg/mL at 25 °C, and ranges from 130 to 150 mg/mL at 37 °C, depending on the pH. Based on these results, enisamium iodide can be classified as highly soluble. Enisamium iodide demonstrated low permeability in Caco-2 experiments in all tested concentrations of 10-100 μM with permeability coefficients between 0.2 × 10-6 cm s-1 and 0.3 × 10-6 cm s-1. These results indicate that enisamium iodide belongs to class III of the Biopharmaceutics Classification System (BCS) due to its high solubility and low permeability. The bioavailability of enisamium iodide needs to be confirmed in animal and human studies.Entities:
Keywords: bioavailability; biopharmaceutics classification system; permeability; solubility
Year: 2018 PMID: 29324660 PMCID: PMC5874533 DOI: 10.3390/scipharm86010003
Source DB: PubMed Journal: Sci Pharm ISSN: 0036-8709
Figure 1Chemical structure of enisamium iodide.
Solubility of enisamium iodide in different standard media (mg/mL). Results for relative standard deviation are based on three separate experiments.
| Batch No. | pH 1.2 | pH 4.5 | pH 6.8 | pH 7.5 | ||||
|---|---|---|---|---|---|---|---|---|
| 25 °C | 37 °C | 25 °C | 37 °C | 25 °C | 37 °C | 25 °C | 37 °C | |
| 170215 | 63.2 | 151.5 | 59.7 | 132.2 | 60.8 | 131.3 | 58.9 | 126.7 |
| 180215 | 63.5 | 155.0 | 59.3 | 132.7 | 59.5 | 128.0 | 59.2 | 129.9 |
| 190315 | 63.2 | 154.7 | 60.9 | 135.5 | 60.2 | 131.4 | 59.1 | 125.8 |
| Mean | 63.3 | 153.7 | 60.0 | 133.5 | 60.2 | 130.3 | 59.1 | 127.5 |
| RSD % | 0.22 | 1.26 | 1.34 | 1.32 | 1.07 | 1.47 | 0.27 | 1.70 |
RSD: Relative standard deviation.
Figure 2(a) Apical to basolateral transport of enisamium iodide at three different concentrations through Caco-2 cell monolayers. Shown values are the individual values from each Transwell® insert and the relevant arithmetic means value (n = 3) ± standard deviation (SD). The cumulative transport into the acceptor compartment is expressed in μg per 1.13 cm2 cell monolayer; (b) Apparent permeability coefficients for the apical to basolateral transport of enisamium iodide through Caco-2 cell monolayers calculated using the data points indicated in Figure 2a. Data shown are arithmetic mean values (n = 3) ± SD. Papp for 10 µM was not calculated since there is no steady-state flux.
Figure 3(a) Bi-directional cumulative transport of enisamium iodide in the presence or absence of the P-glycoprotein (P-gp) inhibitor cyclosporin A (CsA, 12 μmol·L−1) through Caco-2 cell monolayers. Data shown are arithmetic mean values (n = 3) ± SD, except the data from ba transport without cyclosporin A as there was one outlier (data performed in parallel only). (b) The cumulative transport for the bi-directional transport of enisamium iodide (10 μmol·L−1) in the presence or absence of the P-gp inhibitor cyclosporin A (CsA, 12 μmol·L−1) through Caco-2 cell monolayers. Data shown are arithmetic mean values (n = 3) ± SD, except the data from ba transport without cyclosporin A as there was one outlier (data performed in parallel only).
Figure 4(a) Bi-directional cumulative transport of [3H]-digoxin (1 μmol·L−1) in the presence of the putative P-gp inhibitor enisamium iodide (10 μmol·L−1) through Caco-2 cell monolayers. Data shown are arithmetic mean values (n = 3) ± SD. (b) Apparent permeability coefficients for the bi-directional transport of [3H]-digoxin (1 μmol·L−1) in the presence of enisamium iodide (10 μmol·L−1) through Caco-2 cell monolayers. Data shown are arithmetic mean values (n = 3) ± SD.