The Impact of Various Poly(vinylpyrrolidone) Polymers on the Crystallization Process of Metronidazole.
Pharmaceutics
; 16(1)2024 Jan 19.
Article
in En
| MEDLINE
| ID: mdl-38276506
ABSTRACT
In this paper, we propose one-step synthetic strategies for obtaining well-defined linear and star-shaped polyvinylpyrrolidone (linPVP and starPVP). The produced macromolecules and a commercial PVP K30 with linear topology were investigated as potential matrices for suppressing metronidazole (MTZ) crystallization. Interestingly, during the formation of binary mixtures (BMs) containing different polymers and MTZ, we found that linear PVPs exhibit maximum miscibility with the drug at a 5050 weight ratio (w/w), while the star-shaped polymer mixes with MTZ even at a 3070 w/w. To explain these observations, comprehensive studies of MTZ-PVP formulations with various contents of both components were performed using Fourier-transform infrared spectroscopy, differential scanning calorimetry, and X-ray diffraction. The obtained results clearly showed that the polymer's topology plays a significant role in the type of interactions occurring between the matrix and MTZ. Additionally, we established that for MTZ-PVP 5050 and 7525 w/w BMs, linear polymers have the most substantial impact on inhibiting the crystallization of API. The star-shaped macromolecule turned out to be the least effective in stabilizing amorphous MTZ at these polymer concentrations. Nevertheless, long-term structural investigations of the MTZ-starPVP 3070 w/w system (which is not achievable for linear PVPs) demonstrated its complete amorphousness for over one month.
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Collection:
01-internacional
Database:
MEDLINE
Language:
En
Journal:
Pharmaceutics
Year:
2024
Document type:
Article
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