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Gastroretentive drug delivery systems

Umamaheshwari, R.B., S. Jain, and N.K. Jain. 2003. A new approach in gastroretentive drug delivery system using cholestyramine. Drug Deliv 10 151... [Pg.81]

Ali J, Hasan S, Ali M. Formulation and development of gastroretentive drug delivery system for ofloxacin. Methods and Findings in Experimental and Clinical Pharmacology. September 2006 28(7) 433-439. PubMed PMID 17003848. [Pg.1032]

Shadab, Ahuja A, Khar RK, Baboota S, Chuttani K, Mishra AK et al. Gastroretentive drug delivery system of acyclovir-loaded alginate mucoadhesive microspheres Formulation and evaluation. Drug Delivery. May 2011 18(4) 255-264. PubMed PMID 21110695. [Pg.1032]

R. Chen, H. Ho, C. Yu, M. Sheu, Development of swelUng/floating gastroretentive drug delivery system based on a combination of hy-droxyethyl cellulose and sodium carboxymethyl cellulose for losar-tan and its clinical relevance in healthy volunteers with CYP2C9 polymorphism. Fur. J. Pharm. Sci. 39 (1) (2010) 82-89. [Pg.90]

N.H. Foda and S.M. Ali, Gastroretentive drug delivery systems as a potential tool for enhancing the efficacy of antibiotics A review. International Journal of Pharma and Bio Sciences, 2 94-104, 2011. [Pg.18]

Rajamma AJ, Yogesha HN, Sateesha SB. Natural gums as sustained release carriers Development of gastroretentive drug delivery system of ziprasidone HCl. Daru J Pharm Sci. 20 (1) 58, 2012. [Pg.510]

FIGURE 22.15 Pharmacokinetic parameters for the Spherazole CR tablet, 100 mg, compared with the Sporanc IR capsule. (Note Types A and B differed in levels of rate-controlling excipients.) (Adapted from Jacob, J. Gastroretentive, bioadhesive drug delivery system for controlled release of itraconazole pharmacokinetics of Spherazole CR in healthy human volunteers. Controlled Release Society 34th Annual Meeting and... [Pg.631]

Jacob, J., Gastroretentive, bioadhesive drug delivery system for controlled release of itraconazole pharmacokinetics of Spherazole CR in healthy human volunteers. Controlled Release Society 34th Annual Meeting and Exposition, 2006. [Pg.636]

Awasthi, R. Kulkarni, G.T. Development of novel gastroretentive floating particulate drug delivery system of gliclazide. Curr. Drug Deliv. 2012, 9 (5), 437-451. [Pg.613]

Sarparanta MP, Bimbo LM, Makila EM, Salonen JJ, Laaksonen PH, Helariutta AMK, Linder MB, Hirvonen JT, Laaksonen TJ, Santos HA, Airaksinen AJ (2012) The mucoadhesive and gastroretentive properties of hydrophobin-coated porous silicon nanoparticle oral drug delivery systems. Biomaterials 33(ll) 3353-3362... [Pg.12]

Talukder, R., Eassihi, R., 2004. Gastroretentive delivery systems a mini review. Drug Dev. Ind. Pharm. 30, 1019-1028. [Pg.114]

Poly(acrylic acid)-cysteine and chitosan-4-thiobulylamidine were evaluated as anionic and cationic polymers for the preparation of a DDS for riboflavin-S -monophosphate sodium salt dihydrate as a model drug. The particles had a mean diameter of 336.5 16.5 and 396.3 17.0 nm and a zeta potential of - 20.0 1.0 and -I- 27.2 0.5 mV, respectively. It was found that glutathione in combination with thiomers has a significant influence for increasing permeation, and that thiolated particles of both anionic and cationic polymers had improved mucoadhesive and controlled release properties. Therefore, they can be potentially applied as gastroretentive delivery systems. ... [Pg.300]


See other pages where Gastroretentive drug delivery systems is mentioned: [Pg.70]    [Pg.282]    [Pg.539]    [Pg.105]    [Pg.489]    [Pg.39]    [Pg.70]    [Pg.282]    [Pg.539]    [Pg.105]    [Pg.489]    [Pg.39]    [Pg.632]    [Pg.70]    [Pg.271]    [Pg.493]    [Pg.183]    [Pg.285]    [Pg.1177]    [Pg.1850]    [Pg.578]   
See also in sourсe #XX -- [ Pg.70 ]




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Drug delivery gastroretentive

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