TY - JOUR
T1 - Synthesis, characterization, and liposome partition of a novel tetracycline derivative using the ionic liquids framework
AU - Marrucho Ferreira, Isabel Maria
PY - 2013/1/1
Y1 - 2013/1/1
N2 - Recently, efforts have been put on the development of new drug formulations using ionic liquid framework. In this work, two different species of abroad-spectrum polyketide antibiotic, tetracycline, are studied in terms of some important properties for antibiotics such as solubility in water and hydrophilichydrophobic balance. Tetracycline was used as cation, whereas docusate, a biocompatible anion, which enables the tailoring of the hydrophilicity of salts, was chosen as the anion. The developed innovative ion pair, tetracycline docusate, was characterized in terms of its thermal stability, water solubility, octanolwater, and liposomewater partition coefficients, using UVvis spectrophotometry because of the absorbance of tetracycline around 270nm. Egg yolk phosphatidylcholine liposomes were used as cell membrane models, and the interactions of both tetracycline hydrochloride and tetracycline docusate with the liposomes were quantified by determination of the partition coefficient using derivative spectrophotometry. A theoretical model based on simple partition drugs between two different media was used to determine the partition coefficient in liposomes. (c) 2013 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 102:15041512, 2013
AB - Recently, efforts have been put on the development of new drug formulations using ionic liquid framework. In this work, two different species of abroad-spectrum polyketide antibiotic, tetracycline, are studied in terms of some important properties for antibiotics such as solubility in water and hydrophilichydrophobic balance. Tetracycline was used as cation, whereas docusate, a biocompatible anion, which enables the tailoring of the hydrophilicity of salts, was chosen as the anion. The developed innovative ion pair, tetracycline docusate, was characterized in terms of its thermal stability, water solubility, octanolwater, and liposomewater partition coefficients, using UVvis spectrophotometry because of the absorbance of tetracycline around 270nm. Egg yolk phosphatidylcholine liposomes were used as cell membrane models, and the interactions of both tetracycline hydrochloride and tetracycline docusate with the liposomes were quantified by determination of the partition coefficient using derivative spectrophotometry. A theoretical model based on simple partition drugs between two different media was used to determine the partition coefficient in liposomes. (c) 2013 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 102:15041512, 2013
KW - UV-VIS spectroscopy
KW - Synthesis
KW - Solubility
KW - Liposomes
KW - Drug-like properties
KW - Partition Coefficient
KW - Ionic Liquids
KW - Docusate
KW - Tetracycline
U2 - 10.1002/jps.23487
DO - 10.1002/jps.23487
M3 - Article
SN - 0022-3549
VL - 102
SP - 1504
EP - 1512
JO - Journal Of Pharmaceutical Sciences
JF - Journal Of Pharmaceutical Sciences
IS - 5
ER -