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        Pharmaceutical and pharmacokinetic evaluation of novel rectal mucoadhesive hydrogels containing tolmetin sodium

        Afaf A. Ramadan,Asmaa M. Elbakry,Asmaa H. Esmaeil,Sahar A. Khaleel 한국약제학회 2018 Journal of Pharmaceutical Investigation Vol.48 No.6

        The objective of the present study was to develop rectal mucoadhesive hydrogels loaded with Tolmetin Sodium, a nonsteroidal anti-inflammatory drug, for prolonged duration of action and increased bioavailability. Fourteen formulae were prepared with different types and concentrations of polymers as hydroxypropylmethyl cellulose, hydroxylethyl cellulose, carboxymethyl cellulose and sodium alginate. Each formulation contain Tolmetin Sodium equivalent to 5% w/w active drug. The effect of the employed gel bases on pH, gel strength, mucoadhesion, viscosity and the in vitro release profile of drug was examined. In addition, hydrogel formulations were subjected to rheological and stability studies. The physicochemical characterization revealed that all hydrogels had a suitable pH (6.64–7.75) and gel strength (15.5–65.29 s) for rectal application. The in-vitro drug release from the formulations showed a controlled drug release pattern, reaching 72–92.6% after 8 h. The kinetic analysis of the release data revealed that the drug release from all tested hydrogel bases obeyed the diffusion mechanism. The degradation of Tolmetin Sodium from its rectal hydrogel formulations was found to be a zero-order reaction. All formulations except sodium alginate hydrogel were quite stable. Considering the in-vitro release, rheological properties and shelf life, (CMC; 2%w/w) hydrogel formula was the best among the studied formulations. Therefore, further histopathological and bioavailability studies were carried out to detect different pharmacokinetic parameters of the established formulations compared with commercially available capsules. Formula containing 2% CMC showed relative bioavailability 357.93%. Finally, good correlation was observed between in-vitro and in-vivo profile.

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        Development and investigation of timolol maleate niosomal formulations for the treatment of glaucoma

        Afaf A. Ramadan,Shereen A. Eladawy,Amal Saber Mohammed Abu El‑Enin,Zeinab M. Hussein 한국약제학회 2020 Journal of Pharmaceutical Investigation Vol.50 No.1

        The objective of the present study was to develop niosomal gels loaded with Timolol Maleate (TM), Non-selective betaadrenergic receptor antagonist, for prolonged duration and improved bioavailability for glaucoma treatment. TM niosomes were prepared by film hydration method with various mixtures of different non-ionic surfactants including Span 20, 40, 60 and Tween 20, 40, along with cholesterol. The prepared vesicles were evaluated for entrapment efficiency, in vitro drug release, particle size, zeta potential and morphology by optical and transmission electron microscopy (TEM). The selected formulations were incorporated into Sodium carboxymethyl cellulose (CMC Na) and Carbopol 934 gels. Gel formulations were characterized for in vitro drug permeation and ex vivo drug permeation through bovine cornea. In addition, stability study, isotonicity test and in-vivo evaluation of the selected formulations were done. The results showed that, the niosomes formed were white and spherical in shape with uniform particle size. Formulations containing span 60 and that containing mixture of span 60 and tween 40 gave the highest entrapment efficiency (94.6% and 98.8%, respectively) and a sustained release of timolol maleate from the niosomes within 24 h (96% and 97.10%, respectively). The in vitro and ex vivo drug release studies showed that there was a slow and prolonged release of drug from niosomal gel formulations. Considering the in-vitro release, niosomal gel formulae GN5 and GN6 (containing CMC Na 3% w/w) were the best among the studied formulations. Draize test was carried out and the intra-ocular pressure lowering activity of prepared formulations were detected and compared with marketed Timogel. Formula containing 3% CMC Na showed relative bioavailability 1.6 times more than bioavailability of marketed Timogel.

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