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Research Article

Development of doxorubicin loaded novel core shell structured nanocapsules for the intervention of visceral leishmaniasis

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Pages 441-450 | Received 26 Apr 2012, Accepted 13 Nov 2012, Published online: 27 Mar 2013

References

  • Anton N, Benoit JP, Saulnier P. Design and production of nanoparticles formulated from nano-emulsion templates – A review. J Control Release 2008; 128: 185–99
  • Beijnen JH, van der Houwen OAGJ, Underberg WJM. Aspects of the degradation kinetics of doxorubicin in aqueous solution. Int J Pharm 1986; 32: 123–31
  • Berth G, Voigt A, Dautzenberg H, Donath E, Mohwald H. Polyelectrolyte complexes and layer-by-layer capsules from chitosan/chitosan sulfate. Biomacromolecules 2002; 3: 579–90
  • Chen G, Tao D. An experimental study of stability of oil–water emulsion. Fuel Process Technol 2005; 86: 499–508
  • Crespy D, Landfester K. Preparation of nylon 6 nanoparticles and nanocapsules by two novel miniemulsion/solvent displacement hybrid techniques. Macromol Chem Phys 2007; 208: 457–66
  • Decher G. Fuzzy nanoassemblies: Toward layered polymeric multicomposites. Science 1997; 277: 1232–7
  • Eksborg S. Extraction of daunorubicin and doxorubicin and their hydroxyl metabolites: Self-association in aqueous aolution. J Pharm Sci 1978; 67: 782–5
  • Fujimoto K, Toyoda T, Fukui Y. Preparation of bionanocapsules by the layer-by-layer deposition of polypeptides onto a liposome. Macromolecules 2007; 40: 5122–8
  • Gille L, Nohl H. Analyses of the molecular mechanism of adriamycin-induced cardiotoxicity. Free Radical Biol Med 1997; 23: 775–82
  • Gupta GK, Kansal S, Misra P, Dube A, Mishra PR. Uptake of biodegradable gel-assisted LBL nanomatrix by Leishmania donovani – Infected macrophages. AAPS Pharma Sci Tech 2009; 10: 1343–7
  • Hartmann G. Impact of endotoxin-induced changes in P-glycoprotein expression on disposition of doxorubicin in mice. Drug Metab Dispos 2005; 33: 820–8
  • Hillaireau H, Le Doan T, Chacun H, Janin J, Couvreur P. Encapsulation of mono- and oligo-nucleotides into aqueous-core nanocapsules in presence of various water-soluble polymers. Int J Pharm 2007; 331: 148–52
  • Janssen MJH, Crommelin DJA, Storm G, Hulshoff A. Doxorubicin decomposition on storage. Effect of Ph, type of buffer and liposome encapsulation. Int J Pharm 1985; 23: 1–11
  • Khopade AJ, Caruso F. Two-component, ultrathin microcapsules prepared by a core-mediated layer-by-layer approach. Chem Mater 2004; 16: 2107–12
  • Liu W, Sun D, Li C, Liu Q, Xu J. Formation and stability of paraffin oil-in-water nano-emulsions prepared by the emulsion inversion point method. J Colloid Interface Sci 2006; 303: 557–63
  • Mclennan IJ, Lenkinski RE, Yanuka Y. A nuclear magnetic resonance study of the self-association of adriamycin and daunomycin in aqueous solution. Can J Chem 1985; 63: 1233–8
  • Menozzi M, Valentini L, Vannini E, Arcamone F. Self-association of doxorubicin and related compounds in aqueous solution. J Pharm Sci 1984; 73: 766–70
  • Morales D, Gutiérrez JM, García-Celma MJ, Solans YC. A study of the relation between bicontinuous microemulsions and oil/water nano-emulsion formation. Langmuir 2003; 19: 7196–200
  • Némati F, Dubernet C, Fessi H, Colin De Verdière A, Poupon MF, Puisieux F, Couvreur P. Reversion of multidrug resistance using nanoparticles in vitro: Influence of the nature of the polymer. Int J Pharm 1996; 138: 237–46
  • Ogawa S, Decker EA, Mcclements DJ. Production and characterization of o/w emulsions containing droplets stabilized by lecithin−chitosan−pectin mutilayered membranes. J Agric Food Chem 2004; 52: 3595–600
  • Pal R, Anuradha, Rizvi SY, Kundu B, Mathur KB, Katiyar JC. Leishmania donovani in hamsters: Stimulation of non-specific resistance by some novel glycopeptides and impact on therapeutic efficacy. Experientia 1991; 47: 486–90
  • Paul M, Durand R, Boulard Y, Fusaï T, Fernandez C, Rivollet D, Deniau M, Astier A. Physicochemical characteristics of pentamidine-loaded polymethacrylate nanoparticles: Implication in the intracellular drug release in leishmania major infected mice. J Drug Target 1998; 5: 481–90
  • Preetz C, Rübe A, Reiche I, Hause G, Mäder K. Preparation and characterization of biocompatible oil-loaded polyelectrolyte nanocapsules. Nanomedicine 2008; 4: 106–14
  • Righetti PG, Menozzi M, Gianazza E, Valentini L. Protolytic equilibria of doxorubicin as determined by isoelectric focusing and ‘electrophoretic titration curves’. FEBS Lett 1979; 101: 51–5
  • Rübe A, Hause G, Mäder K, Kohlbrecher J. Core-shell structure of miglyol/poly(D,L-lactide)/poloxamer nanocapsules studied by small-angle neutron scattering. J Controlled Release 2005; 107: 244–52
  • Sanchez-Brunete JA, Dea MA, Rama S, Bolas F, Alunda JM, Raposo R, Mendez MT, Torrado-Santiago S, Torrado JJ. Treatment of experimental visceral leishmaniasis with amphotericin B in stable albumin microspheres. Antimicrob Agents Chemother 2004; 48: 3246–52
  • Saphiannikova M, Radtchenko I, Sukhorukov G, Shchukin D, Yakimansky A, Ilnytskyi J. Molecular-dynamics simulations and X-ray analysis of dye precipitates in the polyelectrolyte microcapsules. J Chem Phys 2003; 118: 9007–14
  • Sett R, Basu N, Ghosh AK, Das PK. Potential of doxorubicin as an antileishmanial agent. J Parasitol 1992; 78: 350–4
  • Shenoy DB, Antipov AA, Sukhorukov GB, Möhwald H. Layer-by-layer engineering of biocompatible, decomposable core−shell structures. Biomacromolecules 2003; 4: 265–72
  • Shukla P, Gupta G, Singodia D, Shukla R, Verma AK, Dwivedi P, Kansal S, Mishra PR. Emerging trend in nano-engineered polyelectrolyte-based surrogate carriers for delivery of bioactives. Expert Opin Drug Del 2010; 7: 993–1011
  • Shukla A, Patra S, Dubey V. Evaluation of selected antitumor agents as subversive substrate and potential inhibitor of trypanothione reductase: An alternative approach for chemotherapy of leishmaniasis. Mol Cell Biochem 2011; 352: 261–70
  • Sukhorukov GB, Donath E, Davis S, Lichtenfeld H, Caruso F, Popov VI, Möhwald H. Stepwise polyelectrolyte assembly on particle aurfaces: A novel approach to colloid design. Polym Adv Technol 1998; 9: 759–67
  • Sundar S, Rai M. Advances in the treatment of leishmaniasis. Curr Opin Infect Dis 2002; 15: 593–8
  • Tiuman TS, Santos AO, Ueda-Nakamura T, Filho BPD, Nakamura CV. Recent advances in leishmaniasis treatment. Int J Infect Dis 2011; 15: E525–32
  • Vdović N, Kralj D. Electrokinetic properties of spontaneously precipitated calcium carbonate polymorphs: The influence of organic substances. Colloids Surf A 2000; 161: 499–505
  • Wang JJ, Sung KC, Hu OYP, Yeh CH, Fang JY. Submicron lipid emulsion as a drug delivery system for nalbuphine and its prodrugs. J Controlled Release 2006; 115: 140–9
  • Wu PC, Wang WS, Huang YT, Sheu HS, Lo YW, Tsai TL, Shieh DB, Yeh CS. Porous iron oxide based nanorods developed as delivery nanocapsules. Chem Eur J 2007; 13: 3878–85
  • Yaghmur A, Aserin A, Mizrahi Y, Nerd A, Garti N. Argan oil-in-water emulsions: Preparation and stabilization. J Am Oil Chem Soc 1999; 76: 15–18

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