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Research Article

Matrix Tablets of Carrageenans. I. A Compaction Study*

Pages 329-337 | Published online: 22 Feb 1999

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Guixia Ling, Tianhong Zhang, Peng Zhang, Jin Sun & Zhonggui He. (2016) Nanostructured lipid–carrageenan hybrid carriers (NLCCs) for controlled delivery of mitoxantrone hydrochloride to enhance anticancer activity bypassing the BCRP-mediated efflux. Drug Development and Industrial Pharmacy 42:8, pages 1351-1359.
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M. Thommes, D. R. Ely & P. Kleinebudde. (2009) The water binding behavior of κ-Carrageenan determined by three different methods. Pharmaceutical Development and Technology 14:3, pages 249-258.
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Katharina M. Picker. (2004) “Soft Tableting”: A New Concept to Tablet Pressure Sensitive Materials. Pharmaceutical Development and Technology 9:1, pages 107-121.
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Nery L. Rosario & Evone S. Ghaly. (2002) Matrices of Water-Soluble Drug Using Natural Polymer and Direct Compression Method. Drug Development and Industrial Pharmacy 28:8, pages 975-988.
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J. Garcia & E. S. Ghaly. (2001) Evaluation of Bioadhesive Glipizide Spheres and Compacts from Spheres Prepared by Extruder/Marumerizer Technique. Pharmaceutical Development and Technology 6:3, pages 407-417.
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Katharina M. Picker. (2001) Time Dependence of Elastic Recovery for Characterization of Tableting Materials. Pharmaceutical Development and Technology 6:1, pages 61-70.
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Tilak R. Bhardwaj, Meenakshi Kanwar, Roshan Lal & Anubha Gupta. (2000) Natural Gums and Modified Natural Gums as Sustained-Release Carriers. Drug Development and Industrial Pharmacy 26:10, pages 1025-1038.
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Buddhadev Layek & Sanchita Mandal. (2020) Natural polysaccharides for controlled delivery of oral therapeutics: a recent update. Carbohydrate Polymers 230, pages 115617.
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Joao A.C. Barbosa, Malaz S.E. Abdelsadig, Barbara R. Conway & Hamid A. Merchant. (2019) Using zeta potential to study the ionisation behaviour of polymers employed in modified-release dosage forms and estimating their pKa. International Journal of Pharmaceutics: X 1, pages 100024.
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Bakti B. Sedayu, Marlene J. Cran & Stephen W. Bigger. (2019) A Review of Property Enhancement Techniques for Carrageenan-based Films and Coatings. Carbohydrate Polymers 216, pages 287-302.
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Abida Kalsoom Khan, Ain Us Saba, Shamyla Nawazish, Fahad Akhtar, Rehana Rashid, Sadullah Mir, Bushra Nasir, Furqan Iqbal, Samina Afzal, Fahad Pervaiz & Ghulam Murtaza. (2017) Carrageenan Based Bionanocomposites as Drug Delivery Tool with Special Emphasis on the Influence of Ferromagnetic Nanoparticles. Oxidative Medicine and Cellular Longevity 2017, pages 1-13.
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Matias Cardoso, Rui Costa & João Mano. (2016) Marine Origin Polysaccharides in Drug Delivery Systems. Marine Drugs 14:2, pages 34.
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George Dan Mogoşanu & Alexandru Mihai Grumezescu. 2015. Handbook of Polymers for Pharmaceutical Technologies. Handbook of Polymers for Pharmaceutical Technologies 477 519 .
Jingjing Liu, Xiudan Zhan, Jianbo Wan, Yitao Wang & Chunming Wang. (2015) Review for carrageenan-based pharmaceutical biomaterials: Favourable physical features versus adverse biological effects. Carbohydrate Polymers 121, pages 27-36.
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Ghadeer F. Mehyar, Khalid M. Al-Isamil, Hana'a M. Al-Ghizzawi & Richard A. Holley. (2014) Stability of Cardamom ( Elettaria Cardamomum ) Essential Oil in Microcapsules Made of Whey Protein Isolate, Guar Gum, and Carrageenan . Journal of Food Science 79:10, pages C1939-C1949.
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Se-Kwon KimHéctor Prado, María Matulewicz, Pablo Bonelli & Ana Cukierman. 2013. Marine Biomaterials. Marine Biomaterials 603 632 .
Rajesh. N, Uma. N & Valluru Ravi. 2011. Renewable Polymers. Renewable Polymers 429 472 .
C.A. García-González, M. Alnaief & I. Smirnova. (2011) Polysaccharide-based aerogels—Promising biodegradable carriers for drug delivery systems. Carbohydrate Polymers 86:4, pages 1425-1438.
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Linda Salbu, Annette Bauer-Brandl & Ingunn Tho. (2009) Direct Compression Behavior of Low- and High-Methoxylated Pectins. AAPS PharmSciTech 11:1, pages 18-26.
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Alberto J. Granero, Joselito M. Razal, Gordon G. Wallace & Marc in het Panhuis. (2010) Conducting gel-fibres based on carrageenan, chitosan and carbon nanotubes. Journal of Materials Chemistry 20:37, pages 7953.
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Carien Beneke, Alvaro Viljoen & Josias Hamman. (2009) Polymeric Plant-derived Excipients in Drug Delivery. Molecules 14:7, pages 2602-2620.
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Wolfgang Schmid & Katharina M. Picker-Freyer. (2009) Tableting and tablet properties of alginates: Characterisation and potential for Soft Tableting. European Journal of Pharmaceutics and Biopharmaceutics 72:1, pages 165-172.
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Katharina Picker-Freyer. 2008. Pharmaceutical Dosage Forms - Tablets. Pharmaceutical Dosage Forms - Tablets 469 492 .
Katharina Picker-Freyer. 2008. Pharmaceutical Dosage Forms - Tablets, Third Edition. Pharmaceutical Dosage Forms - Tablets, Third Edition 1100 1123 .
Syed Naim, Betty Samuel, Bhaskar Chauhan & Anant Paradkar. (2004) Effect of potassium chloride and cationic drug on swelling, erosion and release from κ-carrageenan matrices. AAPS PharmSciTech 5:2, pages 1-8.
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Andrea G. Schmidt, Siegfried Wartewig & Katharina M. Picker. (2004) Polyethylene oxides: protection potential against polymorphic transitions of drugs?. Journal of Raman Spectroscopy 35:5, pages 360-367.
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Katharina M. Picker. (2003) The 3-D model: Does time plasticity represent the influence of tableting speed?. AAPS PharmSciTech 4:4, pages 523-530.
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Andrea G. Schmidt, Siegfried Wartewig & Katharina M. Picker. (2003) Potential of carrageenans to protect drugs from polymorphic transformation. European Journal of Pharmaceutics and Biopharmaceutics 56:1, pages 101-110.
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Katharina M Picker. (2002) Influence of tableting on the enzymatic activity of different α-amylases using various excipients. European Journal of Pharmaceutics and Biopharmaceutics 53:2, pages 181-185.
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P Kaliannan, M.Michael Gromiha & M Elanthiraiyan. (2001) Solvent accessibility studies on polysaccharides. International Journal of Biological Macromolecules 28:2, pages 135-141.
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S Ramakrishnan & R.K Prud'homme. (2000) Behavior of κ-carrageenan in glycerol and sorbitol solutions. Carbohydrate Polymers 43:4, pages 327-332.
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Katharina M. Picker. (1999) The use of carrageenan in mixture with microcrystalline cellulose and its functionality for making tablets. European Journal of Pharmaceutics and Biopharmaceutics 48:1, pages 27-36.
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