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Research Article

Methotrexate loaded chitosan and chitin microspheres—in vitro characterization and pharmacokinetics in mice bearing Ehrlich ascites carcinoma

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Pages 581-594 | Received 10 Dec 1996, Accepted 10 Dec 1997, Published online: 27 Sep 2008

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Anna A Alekseeva, Ekaterina V Moiseeva, Natalia R Onishchenko, Ivan A Boldyrev, Alexander S Singin, Andrey P Budko, Zoya S Shprakh, Julian G Molotkovsky & Elena L Vodovozova. (2017) Liposomal formulation of a methotrexate lipophilic prodrug: assessment in tumor cells and mouse T-cell leukemic lymphoma. International Journal of Nanomedicine 12, pages 3735-3749.
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Zulfequar Ahamad Khan, Rahul Tripathi & Brahmeshwar Mishra. (2012) Methotrexate: a detailed review on drug delivery and clinical aspects. Expert Opinion on Drug Delivery 9:2, pages 151-169.
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Sunil Kumar Mandala Rayabandla, Kiran Aithal, Aravind Anandam, Gopal Shavi, Udupa Nayanabhirama, Karthik Arumugam, Prashant Musmade, Krishnamoorthy Bhat & Satish Rao Bola Sadashiva. (2010) Preparation, in vitro characterization, pharmacokinetic, and pharmacodynamic evaluation of chitosan-based plumbagin microspheres in mice bearing B16F1 melanoma. Drug Delivery 17:3, pages 103-113.
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MubarakA. Khan, Rashidul Alam, Md. Arifur Rahman, FarhanaG. Noor & RuhulA. Khan. (2009) Physico-Mechanical and Degradation Properties of Urea-Modified Chitosan Film Photocured with 1-Vinyl-2 Pyrrolidone. Polymer-Plastics Technology and Engineering 48:11, pages 1206-1215.
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Yu Sun, Fude Cui, Kai Shi, Jiamiao Wang, Mengmeng Niu & Ruijing Ma. (2009) The Effect of Chitosan Molecular Weight on the Characteristics of Spray-Dried Methotrexate-Loaded Chitosan Microspheres for Nasal Administration. Drug Development and Industrial Pharmacy 35:3, pages 379-386.
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Jaleh Varshosaz. (2007) The promise of chitosan microspheres in drug delivery systems. Expert Opinion on Drug Delivery 4:3, pages 263-273.
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Makarand V. Risbud, Ramesh R. Bhonde. (2000) Polyacrylamide-Chitosan Hydrogels: In Vitro Biocompatibility and Sustained Antibiotic Release Studies. Drug Delivery 7:2, pages 69-75.
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. (1999) LITERATURE ALERTS. Journal of Microencapsulation 16:4, pages 535-546.
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Manikandan Muthu, Suraj Shiv Charan Pushparaj, Judy Gopal & Iyyakkannu Sivanesan. (2023) A Review on the Antimicrobial Activity of Chitosan Microspheres: Milestones Achieved and Miles to Go. Journal of Marine Science and Engineering 11:8, pages 1480.
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Mousumi Tudu & Amalesh Samanta. (2023) Natural polysaccharides: Chemical properties and application in pharmaceutical formulations. European Polymer Journal 184, pages 111801.
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Md Ishak Khan, M. Imran Hossain, M. Khalid Hossain, M. H. K. Rubel, K. M. Hossain, A. M. U. B. Mahfuz & Muzahidul I. Anik. (2022) Recent Progress in Nanostructured Smart Drug Delivery Systems for Cancer Therapy: A Review. ACS Applied Bio Materials 5:3, pages 971-1012.
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Ahmed A. H. Abdellatif, Ahmed M. Mohammed, Imran Saleem, Mansour Alsharidah, Osamah Al Rugaie, Fatma Ahmed & Shaaban K. Osman. (2022) Smart Injectable Chitosan Hydrogels Loaded with 5-Fluorouracil for the Treatment of Breast Cancer. Pharmaceutics 14:3, pages 661.
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O. I. Bogdanova, A. P. Istomina & S. N. Chvalun. (2021) Composites Based on Chitin Nanoparticles and Biodegradable Polymers for Medical Use: Preparation and Properties. Nanobiotechnology Reports 16:1, pages 42-68.
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Wen-Jun Yu, Dong-Xu Huang, Shuang Liu, Ying-Li Sha, Feng-hui Gao & Hong Liu. (2020) Polymeric Nanoscale Drug Carriers Mediate the Delivery of Methotrexate for Developing Therapeutic Interventions Against Cancer and Rheumatoid Arthritis. Frontiers in Oncology 10.
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Sougata Jana, Kalyan Sen, Arijit Gandhi, Subrata Jana & Chandrani Roy. 2017. Industrial Applications of Marine Biopolymers. Industrial Applications of Marine Biopolymers 305 349 .
Classius Ferreira da Silva, Patrícia Severino, Fernanda Martins, Maria Helena A. Santana & Eliana B. Souto. (2015) Didanosine-loaded chitosan microspheres optimized by surface-response methodology: A modified “Maximum Likelihood Classification” approach formulation for reverse transcriptase inhibitors. Biomedicine & Pharmacotherapy 70, pages 46-52.
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Soumyarwit Manna, James J. Augsburger, Zelia M. Correa, Julio A. Landero & Rupak K. Banerjee. (2014) Development of Chitosan and Polylactic Acid Based Methotrexate Intravitreal Micro-Implants to Treat Primary Intraocular Lymphoma: An In Vitro Study. Journal of Biomechanical Engineering 136:2.
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Yoshiyuki Kimura, Mitsuko Onoyama, Toshiki Sera & Hiromichi Okuda. (2000) Antitumour Activity and Side Effects of Combined Treatment with Chitosan and Cisplatin in Sarcoma 180-Bearing Mice. Journal of Pharmacy and Pharmacology 52:7, pages 883-890.
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Oya Şanlı, İlker Karaca & Nuran Işıklan. (2008) Preparation, characterization, and salicylic acid release behavior of chitosan/poly(vinyl alcohol) blend microspheres. Journal of Applied Polymer Science 111:6, pages 2731-2740.
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Florence Delie & María Blanco-Príeto. (2005) Polymeric Particulates to Improve Oral Bioavailability of Peptide Drugs. Molecules 10:1, pages 65-80.
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V.R Sinha, A.K Singla, S Wadhawan, R Kaushik, R Kumria, K Bansal & S Dhawan. (2004) Chitosan microspheres as a potential carrier for drugs. International Journal of Pharmaceutics 274:1-2, pages 1-33.
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Rajesh R. Dubey & Rajesh H. Parikh. (2009) Two-stage optimization process for formulation of chitosan microspheres. AAPS PharmSciTech 5:1, pages 20-28.
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Rajesh R. Dubey & Rajesh H. Parikh. (2004) Two-stage optimization process for formulation of chitosan microspheres. AAPS PharmSciTech 5:1, pages 20-28.
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A. Lebugle, A. Rodrigues, P. Bonnevialle, J.J. Voigt, P. Canal & F. Rodriguez. (2002) Study of implantable calcium phosphate systems for the slow release of methotrexate. Biomaterials 23:16, pages 3517-3522.
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Amyl Ghanem & Denise Skonberg. (2002) Effect of preparation method on the capture and release of biologically active molecules in chitosan gel beads. Journal of Applied Polymer Science 84:2, pages 405-413.
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Yoshiyuki Kimura & Hiromichi Okuda. (2005) Prevention by Chitosan of Myelotoxicity, Gastrointestinal Toxicity and Immunocompetent Organic Toxicity Induced by 5‐Fluorouracil without Loss of Antitumor Activity in Mice. Japanese Journal of Cancer Research 90:7, pages 765-774.
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