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Original Articles

DETERMINATION OF PACLITAXEL BY 3D VIEW LC-DIODE ARRAY UV: ITS APPLICATION TO AN IN SITU CLOSED LOOP RE-CIRCULATING INTESTINE ABSORPTION STUDY IN RATS

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Pages 2698-2730 | Published online: 01 Aug 2013

REFERENCES

  • Vasanthakumar , S. ; Srinath , S. ; Saha , R. N. A Simple and Rapid 3D View Method for Selective and Sensitive Determination of Paclitaxel in Micro Volume Rat Plasma by LC-Diode Array UV and Its Pharmacokinetic Application . J. Chro. Sci. 2012 , 50 ( 3 ), 259 – 270 .
  • Rowinsky , K. ; Donehower , R. Paclitaxel (Taxol) . N. Engl. J. Med. 1995 , 332 ( 15 ), 1004 – 1014 .
  • Singla , A. ; Garg , A. ; Aggarwal , D. Paclitaxel and Its Formulations . Int. J. Pharm. 2002 , 235 ( 1–2 ), 179 – 192 .
  • Sivacharan , K. ; Bende , G. ; Snehalatha , M. ; Saha , R. N. Application of Rotatable Central Composite Design in the Preparation and Optimization of Poly (lactic-co-glycolic acid) Nanoparticles for Controlled Delivery of Paclitaxel . Drug Dev. Ind. Pharm. 2010 , 36 ( 11 ), 1377 – 1387 .
  • Saha , R. N. ; Vasanthakumar , S. ; Snehalatha , M. ; Bende , G. Nanoparticulate Drug Delivery Systems for Chemotheraphy . Mol. Membr. Biol. 2010 , 27 ( 7 ), 215 – 223 .
  • Li , M. ; Feng , S. PLGA/TPGS Nanoparticles for Controlled Release of Paclitaxel: Effects of the Emulsifier and Drug Loading Ratio . Pharm. Res. 2003 , 20 ( 11 ), 1864 – 1872 .
  • Zhao , L. ; Feng , S. Enhanced Oral Bioavailability of Paclitaxel Formulated in Vitamin E-TPGS Emulsified Nanoparticles of Biodegradable Polymers: In-vitro and In- vivo Studies . J. Pharm. Sci. 2010 , 99 ( 8 ), 3552 – 3560 .
  • Fonseca , C. ; Simoes , S. ; Gaspar , R. Paclitaxel-loaded PLGA Nanoparticles: Preparation, Physicochemical Characterization and In-vitro Anti-tumorl Activity . J. Control Release 2002 , 83 ( 2 ), 273 – 286 .
  • Xie , J. ; Wang , C. Self-assembled Biodegradable Nanoparticles Developed by Direct Dialysis for the Delivery of Paclitaxel . Pharm. Res. 2005 , 22 ( 12 ), 2079 – 2090 .
  • Saha , R. N. ; Sajeev , C. ; Jadhav , P. R. ; Patil , S. P. ; Srinivasan , N. Determination of Celecoxib in Pharmaceutical Formulations Using UV Spectrophotometry and Liquid Chromatography . J. Pharm. Biomed. Anal. 2002 , 28 ( 3–4 ), 741 – 751 .
  • Bende , G. ; Sivacharan , K. ; Venugopal , K. ; Saha , R. N. Development and Validation of a Stability Indicating RP-LC Method for Determination of Imatinib Mesylate . Chromatographia 2007 , 66 ( 11/12 ), 859 – 866 .
  • Bende , G. ; Sivacharan , K. ; Snehalatha , M. ; Ganesh , M. ; Saha , R. N. Validation of an HPLC Method for Determination of Imatinib Mesylate in Rat Serum and Its Application in a Pharmacokinetic Study . J. Chro. Sci. 2010 , 48 ( 5 ), 334 – 341 .
  • Bakshi , M. ; Singh , S. Development of Validated Stability-Indicating Assay Methods —Critical Review . J. Pharm. Biomed. Anal. 2002 , 28 ( 6 ), 1011 – 1040 .
  • Anupama , M. C. ; Deepak , A. ; Neeraj , K. HPLC Method for the Determination of Carboplatin and Paclitaxel with Cremophorel in an Amphiphilic Polymer Matrix . J. Chromatogr. B 2007 , 855 ( 2 ), 211 – 219 .
  • Neue , U. D. ; Mazzeo , J. R. A Theoretical Study of the Optimization of Gradient at Elevated Temperature . J. Sep. Sci. 2001 , 24 ( 12 ), 921 – 929 .
  • Nornoo , A. O. ; Chow , D. S.L. Cremophor-free Intravenous Microemulsions for Paclitaxel II. Stability, In-vitro Release and Pharmacokinetic. Int. J. Pharm. 2008, 349 (1–2), 117–123.
  • Shao , L. K. ; Locke , D. C. Determination of Paclitaxel and Related Taxanes in Bulk Drug and Injectable Dosage Forms by Reversed Phase Liquid Chromatography . Anal. Chem. 1997 , 69 ( 11 ), 2008 – 2016 .
  • De , S. ; Miller , D. W. ; Robinson , D. H. Effect of Particle Size of Nanospheres and Microspheres on the Cellular-Association and Cytotoxicity of Paclitaxel in 4T1 Cells . Pharm. Res. 2005 , 22 ( 5 ), 766 – 775 .
  • Liggins , R. T. ; D'Amours , S. ; Demetrick , J. S. ; Machan , L. S. ; Burt , H. M. Paclitaxel Loaded Poly (L-lactic acid) Microspheres for the Prevention of Intraperitoneal Carcinomatosis after a Surgical Repair and Tumor Cell Spill . Biomaterials 2000 , 21 ( 19 ), 1959 – 1969 .
  • Badea , L. ; Ciutaru , D. ; Lazar , L. ; Nicolescu , D. ; Tudose , A. Rapid HPLC Method for the Determination of Paclitaxel in Pharmaceutical Forms without Separation . J. Pharm. Biomed. Anal. 2004 , 34 ( 3 ), 501 – 507 .
  • Sang-Hyum , P. ; Jin-Suk , C. ; Ho-Joon , C. ; Byung-Hee , H. Evaluation of Paclitaxel Rearrangement Involving Opening of the Oxetane Ring and Migration of Acetyl and Benzoyl Groups . J. Pharm. Biomed. Anal. 2007 , 43 ( 3 ), 1141 – 1145 .
  • Aboul-Enein , H. Y. ; Serignese , V. Liquid Chromatographic Determination of Taxol and Related Derivatives Using a New Polyfluorinated Reversed-Phase Column . Anal. Chim. Act 1996 , 319 ( 1 ), 187 – 190 .
  • Zhang , Y. ; Tang , L. ; Sun , L. ; Bao , J. ; Song , C. ; Huang , L. ; Liu , K. ; Tian , Y. ; Tian , Ge. ; Li , Z. ; Sun , H. ; Mei , L. A Novel Paclitaxel-Loaded Poly (ϵ-caprolactone)/Poloxamer 188 Blend Nanoparticles Overcoming Multidrug Resistance for Cancer Treatment . Acta Biomater. 2010 , 6 ( 6 ), 2045 – 2052 .
  • Pulkkinen , M. ; Pikkarainen , J. ; Wirth , T. ; Tarvainen , T. ; Haapa-aho , V. ; Korhonen , H. ; Seppala , J. ; Jarvinen , K. Three-Step Tumor Targeting of Paclitaxel Using Biotinylated PLA-PEG Nanoparticles and Avidin-Biotin Technology: Formulation Development and In-Vitro Anticancer Activity . Eur. J. Pharm. Biopharm. 2008 , 70 ( 1 ), 66 – 74 .
  • Chakravarthi , S. S. ; De , S. ; Miller , D. W. ; Robinson , D. H. Comparison of Anti-Tumor Efficacy of Paclitaxel Delivery in Nano- and Microparticles . Int. J. Pharm. 2010 , 383 ( 1–2 ), 37 – 44 .
  • Xu , Z. ; Gu , W. ; Huang , J. ; Sui , H. ; Zhou , Z. ; Yang , Y. ; Yan , Z. ; Li , Y. In- vitro and In-vivo Evaluation of Actively Targetable Nanoparticles for Paclitaxel Delivery . Int. J. Pharm. 2005 , 288 ( 2 ), 361 – 368 .
  • Fonseca , C. ; Simoes , S. ; Gaspar , R. Paclitaxel-Loaded PLGA Nanoparticles: Preparation, Physiochemical Characterization and In-Vitro Anti-Tumoral Activity . J. Control Release 2002 , 83 ( 2 ), 273 – 286 .
  • Dong , Y. ; Feng , S. In-vitro and In-vivo evaluation of Methoxy Polyethylene Glycol-Polylactide (MPEG-PLA) Nanoparticles for Small-Molecule Drug Chemotherapy . Biomaterials 2007 , 28 ( 28 ), 4154 – 4160 .
  • Chavanpatil , M. D. ; Patil , Y. ; Panyam , J. Susceptibility of Nanoparticle-Encapsulated Paclitaxel to P-Glycoprotein-Mediated Drug Efflux . Int. J. Pharm. 2006 , 320 ( 1–2 ), 150 – 156 .
  • Mitra , A. ; Lin , S. Effect of Surfactant on Fabrication and Characterization of Paclitaxel-Loaded Polybutylcyanoacrylate Nanoparticulate Delivery Systems . J. Pharm. Pharmacol. 2003 , 55 ( 7 ), 895 – 902 .
  • Trickler , W. J. ; Nagvekar , A. A. ; Dash , A. K. The In-vitro Sub-Cellular Localization and In vivo Efficacy of Novel Chitosan/GMO Nanostructure Containing Paclitaxel . Pharm. Res. 2009 , 26 ( 8 ), 1963 – 1973 .

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