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AAPS PharmSciTech ; 22(5): 196, 2021 Jun 28.
Article in English | MEDLINE | ID: mdl-34184149

ABSTRACT

In a formulation, traces of peroxides in copovidone can impact the stability of drug substances that are prone to oxidation. The present study aimed to investigate the impact of peroxides in novel Plasdone™ S630 Ultra and compare it with regular Plasdone™ S630 on the oxidative degradation of quetiapine fumarate amorphous solid dispersions prepared via hot-melt extrusion technique. The miscibility of copovidones with drug was determined using the Hansen solubility parameter, and the results indicated a miscible drug-polymer system. Melt viscosity as a function of temperature was determined for the drug-polymer physical mixture to identify the suitable hot-melt extrusion processing temperature. The binary drug and polymer (30:70 weight ratio) amorphous solid dispersions were prepared at a processing temperature of 160°C. Differential scanning calorimetry and Fourier transform infrared spectroscopy studies of amorphous solid dispersions revealed the formation of a single-phase amorphous system with intermolecular hydrogen bonding between the drug and polymer. The milled extrudates were compressed into tablets by using extragranular components and evaluated for tabletability. Stability studies of the milled extrudates and tablet formulations were performed to monitor the oxidative degradation impurity (N-oxide). The N-oxide impurity levels in the quetiapine fumarate - Plasdone™ S630 Ultra milled extrudates and tablet formulations were reduced by 2- and 3-folds, respectively, compared to those in quetiapine fumarate - Plasdone™ S630. The reduced oxidative degradation and improved hot-melt extrusion processability of Plasdone™ S630 Ultra make it a better choice for oxidation-labile drugs over Plasdone™ S630 copovidone.


Subject(s)
Hot Melt Extrusion Technology/methods , Pharmaceutic Aids/chemical synthesis , Povidone/chemical synthesis , Pyrrolidines/chemical synthesis , Quetiapine Fumarate/chemical synthesis , Vinyl Compounds/chemical synthesis , Calorimetry, Differential Scanning/methods , Chemistry, Pharmaceutical/methods , Drug Compounding/methods , Hot Temperature , Oxidation-Reduction , Pharmaceutic Aids/pharmacokinetics , Povidone/pharmacokinetics , Pyrrolidines/pharmacokinetics , Quetiapine Fumarate/pharmacokinetics , Solubility , Spectroscopy, Fourier Transform Infrared/methods , Vinyl Compounds/pharmacokinetics
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