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Research Article

Development and evaluation of sustained-release propranolol wax microspheres

Pages 277-284 | Published online: 29 Sep 2008

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Read on this site (4)

Y. A. Gomaa, I. A. Darwish, N. A. Boraei & L. K. El-Khordagui. (2010) Formulation of wax oxybenzone microparticles using a factorial approach. Journal of Microencapsulation 27:7, pages 628-639.
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Aida Gifani, Mojtaba Taghizadeh, Ali A. Seifkordi & Mehdi Ardjmand. (2009) Preparation and investigation the release behaviour of wax microspheres loaded with salicylic acid. Journal of Microencapsulation 26:6, pages 485-492.
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Mohammad Barzegar-Jalali, Khosro Adibkia, Ghobad Mohammadi, Mahdi Zeraati, Behnaz Aghaee Ghare Bolagh & Ali Nokhodchi. (2007) Propranolol Hydrochloride Osmotic Capsule with Controlled Onset of Release. Drug Delivery 14:7, pages 461-468.
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Narasimhan Mani, M. O. Park & H. W. Jun. (2005) Effects of Formulation Variables and Characterization of Guaifenesin Wax Microspheres for Controlled Release. Pharmaceutical Development and Technology 10:1, pages 71-83.
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Articles from other publishers (10)

Akhtar Rasul, Safirah Maheen, Hafeez Ullah Khan, Maria Rasool, Shahid Shah, Ghulam Abbas, Khurram Afzal, Fatima Tariq, Irum Shahzadi & Muhammad Hassham Hassan Bin Asad. (2021) Formulation, Optimization, In Vitro and In Vivo Evaluation of Saxagliptin-Loaded Lipospheres for an Improved Pharmacokinetic Behavior. BioMed Research International 2021, pages 1-17.
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Safirah Maheen, Akhtar Rasul, Muhammad Hanif & Hafeez Ullah Khan. (2020) Lipospheres for Simultaneous Controlled Release and Improved Pharmacokinetic Profiles of Saxagliptin-Enalapril: Formulation, Optimization, and Comparative In Vitro-In Vivo Evaluation. AAPS PharmSciTech 21:5.
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Bhupinder Singh, Sumant Saini, Shikha Lohan & Sarwar Beg. 2017. Nanotechnology-Based Approaches for Targeting and Delivery of Drugs and Genes. Nanotechnology-Based Approaches for Targeting and Delivery of Drugs and Genes 110 148 .
Nikhil Biswas & Ranjan Kumar Sahoo. (2016) Tapioca starch blended alginate mucoadhesive-floating beads for intragastric delivery of Metoprolol Tartrate. International Journal of Biological Macromolecules 83, pages 61-70.
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A.K. Hussein & G. Fetih. (2011) Novel optimization of shape, swelling and release behaviors of tolmetin sodium loaded alginate microbeads. Journal of Drug Delivery Science and Technology 21:2, pages 165-174.
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Nazar M. Ranjha, Hafeezullah Khan & Shahzad Naseem. (2010) Encapsulation and characterization of controlled release flurbiprofen loaded microspheres using beeswax as an encapsulating agent. Journal of Materials Science: Materials in Medicine 21:5, pages 1621-1630.
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S. Green, M. Roldo, D. Douroumis, N. Bouropoulos, D. Lamprou & D.G. Fatouros. (2009) Chitosan derivatives alter release profiles of model compounds from calcium phosphate implants. Carbohydrate Research 344:7, pages 901-907.
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Argyrios Nochos, Dionysios Douroumis & Nikolaos Bouropoulos. (2008) In vitro release of bovine serum albumin from alginate/HPMC hydrogel beads. Carbohydrate Polymers 74:3, pages 451-457.
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Hagalavadi Shivakumar, Pragnesh Patel, Bapusaheb Desai, Purnima Ashok & Sinnathambi Arulmozhi. (2007) Design and statistical optimization of glipizide loaded lipospheres using response surface methodology. Acta Pharmaceutica 57:3.
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I. El-Gibaly & S.K. Abdel-Ghaffar. (2005) Effect of hexacosanol on the characteristics of novel sustained-release allopurinol solid lipospheres (SLS): factorial design application and product evaluation. International Journal of Pharmaceutics 294:1-2, pages 33-51.
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