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Research Article

Quinapyramine Sulfate-Loaded Sodium Alginate Nanoparticles Show Enhanced Trypanocidal Activity

, , , , , , , , & show all
Pages 1625-1634 | Received 18 Dec 2012, Accepted 18 Jul 2013, Published online: 16 Oct 2014

References

  • Pathak KML , SinghN. African trypanosomosis. Intas polivet6(II), 194–199 (2005).
  • Roy N , NageshanRK, PallaviR, ChakravarthyH, ChandranSet al. Proteomics of Trypanosoma evansi infection in rodents. PLoS ONE 5(3), e9796 (2010).
  • Yadav SC , KumarR, ManujaA, GoyalL, GuptaAK. Early detection of Trypanosoma evansi infection and monitoring of antibody levels by ELISA following treatment. J. Parasit. Dis. doi 10.1007/s12639-012-0204-0202 (2012) (Epub ahead of print).
  • Tarello W . Trypanosoma evansi infection in three cats. Revue Méd. Vét.156(3), 133–134 (2005).
  • Joshi PP , ShegokarVR, PowarRM, HerderS, KattiR. Human trypanosomiasis caused by Trypanosoma evansi in India: the first case report. Am. J. Trop. Med. Hyg.73, 491–495 (2005).
  • Auty H , MundyA, FyumagwaRD, PicozziK, WelburnS, HoareR. Health management of horses under high challenge from trypanosomes: a case study from Serengeti, Tanzania. Vet. Parasitol.154(3), 233–241 (2008).
  • Finelle P . FAO animal production and health paper. In: African Animal Trypanosomiasis, World Animal Review. FAO UN, Rome, Italy, 37, 12–20 (1983).
  • De Jong WH , BormPJA. Drug delivery and nanoparticles: applications and hazards. Int. J. Nanomedicine3(2), 133–149 (2008).
  • Iskakov RM , KikuchiA, OkanoT. Time-programmed pulsatile release of dextran from calcium alginate gel beads coated with carboxy-n-propylacrylamide copolymers. J. Control. Release80, 57–68 (2002).
  • De S , RobinsonDH. Polymer relationships during preparation of chitosan–alginate and poly-l-lysine–alginate nanospheres. J. Control. Release89, 101–112 (2003).
  • Chavanpatil MD , KhdairA, PatilY, HandaH, MaoG. Polymer surfactant nanoparticles for sustained release of water-soluble drugs. J. Pharm. Sci.96, 3369–3389 (2007).
  • Sangeetha S , VenkateshDN, AdhiyamanR, SanthiK, SureshB. Formulation of sodium alginate nanospheres containing amphotericin B for the treatment of systemic candidiasis. Trop. J. Pharm. Res.6, 653–659 (2007).
  • Das S , BanerjeeR, BellareJ. Aspirin loaded albumin nanoparticles by coacervation: implications in drug delivery. Trends Biomater. Artif. Organs18, 203–212 (2005).
  • Marchal HL , MaincentP, HoffmanM, SpittlerJ, CouvreurP. Antiglaucomatous activity of betaxolol chlorhydrate sorbed onto different isobutyl cyanoacrylate nanoparticles preparations. Int. J. Pharm.58, 115–122 (1990).
  • Siepmann J , PeppasNA. Modeling of drug release from delivery systems based on hydroxypropyl methylcellulose (HPMC). Adv. Drug Deliv. Rev.48, 139–157 (2001).
  • Peppas NA . Analysis of Fickian and non-Fickian drug release from polymers. Pharm. Acta Helv.60, 110–111 (1985).
  • Higuchi T . Mechanism of sustained-action medication. Theoretical analysis of rate of release of solid drugs dispersed in solid matrices. J. Pharm. Sci.52, 1145–1149 (1963).
  • Korsmeyer RW , GurnyR, DoelkerE, BuriP, PeppasNA. Mechanism of solute release from porous hydrophilic polymers. Int. J. Pharm.15, 23–25 (1983).
  • Lanham SM , GodfreyDG. Isolation of salivarian trypanosomes from man and other mammals using DEAE-cellulose. Exp. Parasitol.28, 521–534 (1970).
  • Manuja A , KumarB, SinghRK. Nanotechnology developments: opportunities for animal health and production. Nanotech. Dev.2(1), e4 (2012).
  • Müller RH , JacobsC, KayserO. Nanosuspensions as particulate drug formulations in therapy rationale for development and what we can expect for the future. Adv. Drug Deliv. Rev.47, 3–19 (2001).
  • Ghosh D , PramanikA, SikdarN, GhoshSK, PramanikP. Amelioration studies on optimization of low molecular weight chitosan nanoparticle preparation, characterization with potassium per sulphate and silver nitrate combined action with aid of drug delivery to tetracycline resistant bacteria. Int. J. Pharm. Sci. Drug Res.2, 247–253 (2010).
  • Verma VK , RamA. Preparation, characterization and in vitro release of piroxicam loaded solid lipid nanoparticles. Int. J. Pharm Sci. Nanotech.3, 1136–1146 (2010).
  • Costa P , LoboJMS. Modeling and comparison of dissolution profiles. Eur. J. Pharm. Sci.13, 123–133 (2001).
  • Singhvi G , SinghM. Review: in vitro drug release characterization models. Int. J. Pharm. Stud. Res.2, 77–84 (2011).
  • Huq AKM , AhmedSU, RahmanMM, IslamSMR, JalilR. Preparation and in vitro pharmacokinetic evaluation of compressed kollidon SR based salbutamol sulphate microcapsules: effect of pigments. Der Pharmacia Sinica2, 177–184 (2011).
  • Patil BS , KulkarniU, BhavikP. Formulation and evaluation of diclofenac potassium matrix tablets. Int. J. Pharm. Sci. Drug Res.1, 88–92 (2010).
  • Shoaib M , TazeenJ, MerchantH, YousufI. Evaluation of drug release kinetics from ibuprofen matrix tablets using HPMC. Pak. J. Pharm. Sci.19, 119–124 (2006).
  • Kumar S , BhanjanaG, DilbaghiN, ManujaA. Comparative investigation of cellular response of nanoparticles. Adv. Mat. Lett.3(4), 345–349 (2012).

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