matrix system
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2022 ◽  
Vol 245 ◽  
pp. 103950
Author(s):  
Renjie Zhou ◽  
Hongbin Zhan ◽  
Yinuo Wang




Author(s):  
Luka Negrojević ◽  
Aleksandar Lončar ◽  
Jelena Maksimović ◽  
Slobodan Anić ◽  
Željko Čupić ◽  
...  


2021 ◽  
pp. 127333
Author(s):  
Yingtao Hu ◽  
Wenjie Xu ◽  
Liangtong Zhan ◽  
Liangchao Zou ◽  
Yunmin Chen


2021 ◽  
Vol 14 (9) ◽  
pp. 929
Author(s):  
Mosab Arafat ◽  
Muhammad Sarfraz ◽  
Mohammad F. Bostanudin ◽  
Anna Esmaeil ◽  
Aisha Salam ◽  
...  

Diltiazem hydrochloride is a calcium channel blocker, which belongs to the family of benzothiazepines. It is commonly used to treat hypertension and atrial fibrillation. Even though the drug has high solubility, its high permeability and rapid metabolism in the liver can limit the bioavailability and increase the dose frequencies for up to four times per day. This study focused on a polymer matrix system not only to control the drug release but also to prolong the duration of bioavailability. The polymer matrices were prepared using different ratios of poloxamer-188, hydroxypropyl methylcellulose, and stearyl alcohol. In vitro and in vivo assessments took place using 24 rabbits and the results were compared to commercially available product Tildiem® (60 mg tablet) as reference. Overall, the rate of drug release was sustained with the gradual increase of poloxamer-188 incorporated with hydroxypropyl methylcellulose and stearyl alcohol in the matrix system, achieving a maximum release period of 10 h. The oral bioavailability and pharmacokinetic parameters of diltiazem hydrochloride incorporated in polymer matrix system were similar to commercial reference Tildiem®. In conclusion, the combination of polymers can have a substantial effect on controlling and prolonging the drug release pattern. The outcomes showed that poloxamer-188 combined with hydroxypropyl methylcellulose and stearyl alcohol is a powerful matrix system for controlling release of diltiazem hydrochloride.





2021 ◽  
Vol 14 (5) ◽  
pp. 479
Author(s):  
Mosab Arafat ◽  
Muhammad Sarfraz ◽  
Salahdein AbuRuz

Sildenafil is the active substance in Viagra® tablets, which is approved by the FDA to treat sexual dysfunction in men. Poor solubility and short half-life, however, can limit the span of its effectiveness. Therefore, this study focused on an oral controlled release matrix system with the aim to improve solubility, control the drug release, and sustain the duration of drug activity. The controlled release matrices were prepared with poloxamer-188, hydroxypropyl methylcellulose, and magnesium stearate. Various formulations of different ratios were developed, evaluated in vitro, and assessed in silico. Poloxamer-188 appeared to have a remarkable influence on the release profile of sildenafil citrate. In general, the rate of drug release decreased as the amount of polymer was gradually increased in the matrix system, achieving a maximum release period over 12 h. The in silico assessment by using the GastroPlus™ PBPK modeling software predicted a significant variation in Cmax, tmax, t½, and AUC0-t among the formulations. In conclusion, the combination of polymers in matrix systems can have substantial impact on controlling and modifying the drug release pattern.



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