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Research Article

Preparation of spray-dried microspheres of indomethacin and examination of the effects of coating on dissolution rates

Pages 315-324 | Published online: 29 Sep 2008

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M. N. Prabhakar, P. Sudhakara, M. C. S. Subha, K. Chowdoji Rao & Jung Il Song. (2015) Novel Thermoresponsive Biodegradable Nanocomposite Hydrogels for Dual Function in Biomedical Applications. Polymer-Plastics Technology and Engineering 54:16, pages 1704-1714.
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Naveen K. Bejugam, Akm N. Uddin, Sanjay G. Gayakwad & Martin J. D'Souza. (2008) Formulation and evaluation of albumin microspheres and its enteric coating using a spray-dryer. Journal of Microencapsulation 25:8, pages 577-583.
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Saleh Wikarsa, Denis Durand, Jean-Louis Delarbre, Gilles Baylac & Bernard Bataille. (2008) The Improvement of Ibuprofen Dissolution Rate Through Microparticles Spray Drying Processed in an Aqueous System. Drug Development and Industrial Pharmacy 34:5, pages 485-491.
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Maria-Inês Ré. (2006) Formulating Drug Delivery Systems by Spray Drying. Drying Technology 24:4, pages 433-446.
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Letícia S. Koester, Paulo Mayorga & Valquiria L. Bassani. (2003) Carbamazepine/βCD/HPMC Solid Dispersions. I. Influence of the Spray-Drying Process and βCD/HPMC on the Drug Dissolution Profile. Drug Development and Industrial Pharmacy 29:2, pages 139-144.
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M. D. L. Moretti, E. Gavini, C. Juliano, G. Pirisino, P. Giunchedi. (2001) Spray-dried microspheres containing ketoprofen formulated into capsules and tablets. Journal of Microencapsulation 18:1, pages 111-121.
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. (2000) LITERATURE ALERTS. Journal of Microencapsulation 17:2, pages 253-262.
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Articles from other publishers (8)

Hemayat Shekaari, Mohammed Taghi Zafarani-Moattar & Masumeh Mokhtarpour. (2022) Therapeutic deep eutectic solvent-based ion-gel as a neoteric drug delivery carrier for 5-fluorouracil. Journal of the Iranian Chemical Society 19:10, pages 4275-4286.
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Siddhant Bhutkar & Kadhiravan Shanmuganathan. 2022. Micro- and Nano-containers for Smart Applications. Micro- and Nano-containers for Smart Applications 1 37 .
Siva Sankar Sana, Sai Kumar Arla, Venkataramana Badineni & Vijaya Kumar Naidu Boya. (2019) Development of poly (acrylamide-co-diallyldimethylammoniumchloride) nanogels and study of their ability as drug delivery devices. SN Applied Sciences 1:12.
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K. Madhusudana Rao, B. Mallikarjuna, K.S.V. Krishna Rao, S. Siraj, K. Chowdoji Rao & M.C.S. Subha. (2013) Novel thermo/pH sensitive nanogels composed from poly(N-vinylcaprolactam) for controlled release of an anticancer drug. Colloids and Surfaces B: Biointerfaces 102, pages 891-897.
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K. Madhusudana Rao, B. Mallikarjuna, K. S. V. Krishna Rao, M. N. Prabhakar, K. Chowdoji Rao & M. C. S. Subha. (2011) Preparation and characterization of pH sensitive poly(vinyl alcohol)/sodium carboxymethyl cellulose IPN microspheres for in vitro release studies of an anti-cancer drug. Polymer Bulletin 68:7, pages 1905-1919.
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V. Ramesh Babu, Malladi Sairam, Kallappa M. Hosamani & Tejraj M. Aminabhavi. (2006) Development of 5-fluorouracil loaded poly(acrylamide-co-methylmethacrylate) novel core-shell microspheres: In vitro release studies. International Journal of Pharmaceutics 325:1-2, pages 55-62.
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S. Freiberg & X.X. Zhu. (2004) Polymer microspheres for controlled drug release. International Journal of Pharmaceutics 282:1-2, pages 1-18.
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Brian C. Anderson, Aurelia Amanda & Surya K. Mallapragada. 2002. Methods of Tissue Engineering. Methods of Tissue Engineering 835 839 .

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