Compatibility studies with pharmaceutical excipients for aripiprazole-heptakis (2,6-di-O-methyl)-β-cyclodextrin supramolecular adduct

被引:5
|
作者
Tanase, Ionut-Mihai [1 ]
Sbarcea, Laura [2 ]
Ledeti, Adriana [3 ]
Barvinschi, Paul [4 ]
Circioban, Denisa [3 ]
Vlase, Gabriela [5 ]
Varut, Renata-Maria [6 ]
Ledeti, Ionut [1 ,7 ]
机构
[1] Politehn Univ Timisoara, Fac Ind Chem & Environm Engn, Vasile Parvan St 6, Timisoara 300223, Romania
[2] Victor Babes Univ Med & Pharm, Dept Drug Anal, Fac Pharm, Eftimie Murgu Sq 2, Timisoara 300041, Romania
[3] Victor Babes Univ Med & Pharm, Dept Analyt Chem, Fac Pharm, Eftimie Murgu Sq 2, Timisoara 300041, Romania
[4] West Univ Timisoara, Fac Phys, 4 Vasile Parvan Blvd, Timisoara 300223, Romania
[5] West Univ Timisoara, Res Ctr Thermal Anal Environm Problems, Fac Chem Biol Geog, 16 Pestalozzi St, Timisoara, Romania
[6] Univ Med & Pharm Craiova, Dept Phys Chem, Fac Pharm, 2-4 Petru Rares Str, Craiova 200349, Romania
[7] Victor Babes Univ Med & Pharm, Dept Phys Chem, Fac Pharm, Eftimie Murgu Sq 2, Timisoara 300041, Romania
关键词
Aripiprazole; Cyclodextrin; Inclusion complex; Thermal analysis; Excipient; Compatibility study; CYCLODEXTRIN INCLUSION COMPLEXES; HYDROXYPROPYL-BETA-CYCLODEXTRIN; PHYSICOCHEMICAL PROPERTIES; THERMAL-ANALYSIS; DISSOLUTION; SOLUBILITY; HOST; ENHANCEMENT; QUERCETIN; STABILITY;
D O I
10.1007/s10973-020-09901-7
中图分类号
O414.1 [热力学];
学科分类号
摘要
Aripiprazole (ARP) is one of the newest antipsychotic drugs, exhibiting very low aqueous solubility and high lipophilicity. Considering the necessity of improvement of ARP physicochemical properties and its biopharmaceutical profile, cyclodextrin complexation of the drug substance was performed. As selected cyclodextrin, a functionalized beta-cyclodextrin was used, namely heptakis(2,6-di-O-methyl)-beta-cyclodextrin (DIMEB), and the supramolecular adduct ARP/DIMEB was prepared by kneading technique and characterized using thermoanalytical tools (TG-thermogravimetry/DTG-derivative thermogravimetry/HF-heat flow), powder X-ray diffractometry patterns (PXRD), universal-attenuated total reflectance Fourier transform infrared (UATR-FTIR) and UV (ultraviolet) spectroscopy and, as well, saturation solubility studies. Job's method was used for the stoichiometry of APR/DIMEB inclusion complex determination, which was found to be 1:2. Molecular modeling studies were complementary realized as to get a view over the way that ARP is hosted inside the cyclodextrin. The compatibility between the inclusion complex and some common pharmaceutical excipients, namely starch, magnesium stearate, lactose monohydrate, microcrystalline cellulose and methylcellulose, has been evaluated by means of thermal methods of analysis (TG/DTG/HF), UATR-FTIR spectroscopy and PXRD pattern. The preformulation data regarding the compatibility of ARP/DIMEB complex with selected excipients suggested that under ambient conditions, chemical interactions are observed solely between ARP/DIMEB inclusion complex and magnesium stearate, as indicated by the UATR-FTIR spectroscopy. The incompatibility in the system ARP/DIMEB + MgS is also confirmed by the PXRD study, this second investigational technique revealing also the advanced amorphization of components during mixing of complex with starch, microcrystalline cellulose and methylcellulose, but without indicating interactions. Later on, under thermal stress, thermally induced interactions occur between the components in the systems containing magnesium stearate and methylcellulose, while starch, microcrystalline cellulose and lactose can be safely used as excipients in developing solid formulations containing ARP/DIMEB inclusion complex as active pharmaceutical ingredient.
引用
收藏
页码:1963 / 1976
页数:14
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