Potential application of low molecular weight excipients for amorphization and dissolution enhancement of carvedilol

Author:

Pešić Nikola,Dapčević Aleksandra,Ivković Branka,Kachrimanis Kyriakos,Mitrić Miodrag,Ibrić Svetlana,Medarević Djordje

Funder

Republika Srbija Ministarstvo prosvete nauke i tehnoloskog razvoja

Publisher

Elsevier BV

Subject

Pharmaceutical Science

Reference37 articles.

1. Development of carvedilol-cyclodextrin inclusion complexes using fluid-bed granulation: a novel solid-state complexation alternative with technological advantages;Alonso;J. Pharm. Pharmacol.,2016

2. Potential of solid dispersions to enhance solubility, bioavailability, and therapeutic efficacy of poorly water-soluble drugs: newer formulation techniques, current marketed scenario and patents;Alshehri;Drug. Deliv.,2020

3. Evaluation and correlation of the physicochemical properties of carvedilol;Alves;Pharm. Dev. Technol.,2016

4. Beyer, P., Reinholz, E., 2004. Thermodynamically stable modification of 1-(4-carbazolyloxy-3[2-(2-methoxyphenoxy)-ethylamino]-2-propanol process for its preparation and pharmaceutical compositions containing it. United States Patent 6,730,326 B2.

5. Chen, W., Galop, M., Oh, C.K., 2004. Carvedilol polymorph United States Patent 2004/0152756 A1.

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