| Literature DB >> 24300187 |
Amr Elshaer1, Peter Hanson, Tony Worthington, Peter Lambert, Afzal R Mohammed.
Abstract
Trimethoprim (Entities:
Year: 2012 PMID: 24300187 PMCID: PMC3834905 DOI: 10.3390/pharmaceutics4010179
Source DB: PubMed Journal: Pharmaceutics ISSN: 1999-4923 Impact factor: 6.321
Figure 1Trimethoprim chemical structure.
Figure 2Phase solubility diagram of Trimethoprim (TMP) in the presence of different concentrations of glutamic acid and aspartic acid at different pH (n = 3).
Figure 3FTIR spectra of (A) trimethoprim D-aspartate, (B) trimethoprim L-aspartate and (C) trimethoprim.
Figure 4FTIR spectra of (A) trimethoprim D-glutamate, (B) trimethoprim L-glutamate and (C) trimethoprim.
Figure 5Thermogravimetric analysis (TGA) and Differential Scanning Calorimetry (DSC) scans for L-glutamic acid and TMP free base.
Figure 6DSC and TGA scans for TMP D-glutamate and TMP L-glutamate salts. 2–5 mg of the sample was heated to 300 °C at rate of 10 °C/min (n = 3).
Figure 7DSC and TGA scans for TMP D-aspartate and TMP L-aspartate. 2–5 mg of the sample was heated to 300 °C at rate of 10 °C/min (n=3).
Figure 81HNMR spectra of trimethoprim free base solubilized in DMSO.
Figure 91HNMR spectra of trimethoprim L-aspartate solubilized in D2O.
Figure 101HNMR spectra of trimethoprim L-glutamate solubilized in D2O.
Figure A1HNMR spectra of trimethoprim D-glutamate solubilized in D2O.
Figure B1HNMR spectra of trimethoprim D-aspartate solubilized in D2O.
Figure 11Solubility of trimethoprim and its prepared L & D aspartate and glutamate salts mean ± SD (n = 3).
Figure 12Dissolution profile for TMP free base and its salts in deionized water. Data are mean ± SD (n = 3).
Figure 13pH solubility profile of TMP and TMP-glutamate salt at ambient conditions using free acid (circles) and TMP-glutamate salt (squares) as starting materials. Points b and a represent the saturation solubility of the salt and TMP free base respectively. [Bs] = 266.35µg/mL and pKa = 7.3.
Zone of inhibition studies of TMP and its prepared salts against Escherichia coli and Pseudomonas aeruginosa.
|
|
| ||
|---|---|---|---|
|
| |||
| TMP | 4.03 ± 0.2 | 18.7 | **** |
| TMP aspartate | 4.6 ± 0.2 | 21.4 | **** |
| TMP glutamate | 4.65 ± 0.2 | 21.6 | **** |
MICs of TMP and its prepared salts against Escherichia coli and Pseudomonas aeruginosa.
|
|
| |
|---|---|---|
| TMP | 0.00048 mM. | >0.5 mM |
| TMP aspartate | 0.00048 mM | >0.5 mM |
|
| 0.00048 mM | >0.5 mM |
pH measurements during solubility and dissolution studies.
| Formulation | ||||
|---|---|---|---|---|
|
| TMP free base | TMP Aspartate | TMP glutamate | |
| Solubility study (Equilibrium) | 7.7 ± 0.05 | 5.075 ± 0.06 | 5.2 ± 0.11 | |
| End of dissolution study | 8.6 ± 0.07 | 5.37 ± 0.08 | 5.88 ± 0.05 | |
Theoretical calculations of pH solubility profile using (Equation 1). [Bs] = 266.35µg/mL and pKa =7.3.
| pH | Solubility (µg/mL) |
|---|---|
| 11.28 | 266.35 |
| 7.7 | 372.35 |
| 6.3 | 2929.63 |
| 6.1 | 4487.37 |
| 5.7 | 10869.11 |
| 4.9 | 67165.4 |