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BIOMEDICINE

Pharmacokinetics and Biodistribution of Paclitaxel–Gelatin Nanoparticles

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Pages 500-510 | Received 01 Sep 2012, Accepted 01 Oct 2012, Published online: 20 Mar 2013

REFERENCES

  • Thomas , M. B. and Zhu , A. X. 2005 . Hepatocellular carcinoma: The need for progress . J. Clin. Oncol. , 23 : 2892 – 2899 .
  • Farazi , P. A. and DePinho , R. A. 2006 . Hepatocellular carcinoma pathogenesis: From genes to environment . Nat. Rev. , 6 : 674 – 687 .
  • Allen , T. M. and Cullis , P. R. 2004 . Drug delivery systems: Entering the mainstream . Science , 303 : 1818 – 1822 .
  • Allen , T. M. , Mumbengegwi , D. R. and Charrois , G. J. 2005 . Anti-CD19-targeted liposomal doxorubicin improves the therapeutic efficacy in murine B-cell lymphoma and ameliorates the toxicity of liposomes with varying drug release rates . Clin. Canc. Res. , 11 : 3567 – 3573 .
  • Verma , A. K. 2011 . Potential of negatively charged pectic nanoparticles encapsulating paclitaxel: Preparation and characterization . IEEEXplore Proceedings 2011, December 1–8 , : 1 – 8 . Kumar, A.; Chanchal, A
  • MacDiarmid , J. A. , Mugridge , N. B. and Weiss , J. C. 2007 . Bacterially derived 400 nm particles for encapsulation and cancer cell targeting of chemotherapeutics . Canc. Cell , 11 : 431 – 445 .
  • Lee , T. Y. , Wu , H. C. , Tseng , Y. L. and Lin , C. T. 2004 . A novel peptide specifically binding to nasopharyngeal carcinoma for targeted drug delivery . Canc. Res. , 64 : 8002 – 8008 .
  • Verma , A. K. and Schin , K. 2008 . Novel hydrophilic drug polymer nano-conjugates of cisplatin showing long blood retention profile—Its release kinetics, cellular uptake and bio-distribution . Curr. Drug Deliv. , 5 : 121 – 130 .
  • Harris , J. M. and Chees , R. B. 2003 . Effect of PEGylation on pharmaceuticals . Nat. Rev. Drug Discov. , 2 : 214 – 221 .
  • Pasut , G. , Guiotto , A. and Veronese , F. M. 2004 . Protein, peptide and non-peptide drug PEGylation for therapeutic application . Expert Opin. Ther. Pat. , 14 : 859 – 894 .
  • Duncan , R. 2003 . The dawning era of polymeric therapeutics . Nat. Rev. Drug Discov. , 2 : 347 – 360 .
  • Duncan , R. 2003 . “ Polymer–drug conjugates ” . In Handbook of Anticancer Drug Development , Edited by: Budman , D. 239 – 260 . Lippincott Williams & Wilkins: Philadelphia .
  • Duncan , R. 2005 . “ N-(2-hydroxypropyl)methacrylamide copolymer conjugates ” . In Polymeric Drug Delivery Systems , Edited by: Kwon , G. S. 1 – 92 . Marcel Dekker, Inc.: New York .
  • Galaev , I. Y. and Mattiason , B. 1999 . Smart polymers and what they could do in biotechnology and medicine . Trends Biotechnol. , 17 : 335 – 340 .
  • Balthasar , S. , Michaelis , K. , Dinauer , N. , von Briesen , H. , Kreuter , J. and Langer , K. 2005 . Preparation and characterisation of antibody modified gelatin nanoparticles as drug carrier system for uptake in lymphocytes . Biomaterials , 26 ( 15 ) : 2723 – 2732 .
  • Budavari , S. 1996 . Merck Index, , 12th ed. , Whitehouse Station , NJ : Merck .
  • Miller , R. , Powell , W. R. G. , Smith , C. R. Jr. , Arnold , E. and Clardy , J. 1981 . Anti-leukeamic alkaloids from Taxus wallichinna Zucc . J. Org. Chem. , 46 : 1469 – 1474 .
  • Webster , L. , Linsenmeyer , M. , Millward , M. , Morton , C. , Bishop , J. and Woodcock , D. 1993 . Measurement of Cremophor EL following Taxol—Plasma-levels sufficient to reverse drug exclusion mediated by the multidrug-resistant phenotype . J. Natl. Canc. Inst. , 85 : 1685 – 1690 .
  • Kongshaug , M. , Cheng , L. S. , Moan , J. and Rimington , C. 1991 . Interaction of Cremophor EL with human plasma . Int. J. Biochem. , 23 : 473 – 448 .
  • Tatou , E. , Mossiat , C. , Maupoil , V. , Gabrielle , F. , David , M. and Rochette , L. 1996 . Effects of cyclosporin and Cremophor on working rat heart and incidence of myocardial lipid peroxidation . Pharmacology , 52 : 1 – 7 .
  • Saxena , A. , Sachin , K. , Bohidar , H. B. and Verma , A. K. 2005 . Effect of molecular weight heterogeneity on drug encapsulation efficiency of gelatin nano-particles . Colloids and Surfaces B: Biointerfaces , 45 ( 1 ) : 42 – 48 .
  • Park , A. and Cima , L. G. 1988 . Enzyme digestible swelling hydrogels . Biomaterials , 9 : 435 – 441 .
  • Artursson , P. , Edman , P. , Laakso , T. and Sjoholm , I. 1984 . Characterization of polyacryl starch microparticles as carriers for proteins and drugs . J. Pharm. Sci. , 73 : 1507 – 1513 .
  • Heller , J. , Panghorn , S. H. and Roskos , K. V. 1990 . Controlled drug release from bioerodible hydrophobic ointments . Biomaterials , 11 : 345 – 350 .
  • Sturesson , C. and Wikingsson , L. D. 2005 . Comparison of poly (acryl starch) and poly(lactide-co-glycolide) microspheres as drug delivery system for a rotavirus vaccine . J. Contr. Release , 68 : 441 – 450 .
  • Choi , K. Y. 2009 . Self-assembled hyaluronic acid nanoparticles as a potential drug carrier of cancer therapy: Synthesis, characterization, and in vivo biodistribution . J. Mater. Chem. , 19 : 4102 – 4107 . Min, K. H.; Na, J. H.; Choi, K.; Kim, K.; Park, J. H.; Kwon, I. C.; Jeong, S. Y
  • Verma , A. K. , Sachin , K. , Saxena , A. and Bohidar , H. B. 2005 . Release kinetics from bio-polymeric nanoparticles encapsulating protein synthesis inhibitor-cycloheximide, for possible therapeutic applications . Curr. Pharm. Biotechnol. , 6 ( 2 ) : 121 – 130 .
  • Mosmann , T. 1983 . Rapid colorimetric assay for cellular growth and survival: Application to proliferation and cytotoxicity assays . J. Immunol. Meth. , 65 ( 1–2 ) : 55 – 63 .
  • Rosiak , J. M. and Yoshii , F. 1999 . Hydrogels and their medical applications . Nuclear Instruments and Methods in Physics Research Section B , 151 ( 1–4 ) : 56 – 64 .
  • Verma , A. K. , Chanchal , A. and Chutani , K. 2012 . Augmentation of anti-tumour activity of cisplatin by pectin nano-conjugates in B-16 mouse model: Pharmacokinetics and in-vivo biodistribution of radio-labelled, hydrophilic nano-conjugates . International Journal of Nanotechnology , 9 ( 10–12 ) : 872 – 886 .
  • Maeda , H. , Wu , J. , Sawa , T. , Matsumura , Y. and Hori , K. 2000 . Tumor vascular permeability and the EPR effect in macromolecular therapeutics. A review . J. Contr. Release , 65 ( 1–2 ) : 271 – 284 .
  • Moghimi , S. M. , Hunter , A. C. and Murray , J. C. 2001 . Long-circulating and target-specific nanoparticles: Theory to practice . Pharmacol. Rev. , 53 : 283 – 318 .
  • Gref , R. , Minamitake , Y. , Peracchia , M. T. , Trubetskoy , V. S. , Torchilin , V. P. and Langer , R. 1994 . Biodegradable long-circulating polymeric nanospheres . Science , 263 ( 5153 ) : 1600 – 1603 .
  • Chanchal , A. , Husain , S. A. and Verma , A. K. 2012 . In-vitro physico-chemical evaluation of biopolymeric nanoparticles . J. Pharm. Res. , 5 ( 8 ) : 4042 – 4044 .
  • Kontoyianni , C. , Sideratou , Z. , Theodossiou , T. , Tziveleka , L. A. , Tsiourvas , D. and Paleos , C. M. 2008 . A novel micellar PEGylated hyperbranched polyester as a prospective drug delivery system for paclitaxel . Macromol. Biosci. , 8 ( 9 ) : 871 – 881 .
  • Raghava , G. P. S. , Goel , A. , Singh , M. A. and Varshney , G. C. 1994 . A simple microassay for computing the hemolytic potency of drugs . Biotechniques , 17 ( 6 ) : 1148 – 1153 .
  • Nowotnik , D. P. 1990 . “ Physico-chemical concepts in the preparation of technetium radiopharmaceuticals ” . In Textbook of Radiopharmacy: Theory and Practice , Edited by: Sampson , C. B. 37–55 Gordon and Breach Science Publishers: Australia .
  • Zhang , C. , Qu , G. , Sun , Y. , Wu , X. , Yao , Z. , Guo , Q. , Ding , Q. , Yuan , S. , Shen , Z. , Ping , Q. and Zhou , H. 2008 . Pharmacokinetics, biodistribution, efficacy and safety of N-octyl-O-sulfate chitosan micelles loaded with paclitaxel . Biomaterials , 29 ( 9 ) : 1233 – 1241 .
  • Xu , Z. 2005 . In vitro and in vivo evaluation of actively targetable nanoparticles for paclitaxel delivery . Int. J. Pharm. , 288 : 361 – 368 .

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