Literature DB >> 27346432

Design and in vitro characterization of ivermectin nanocrystals liquid formulation based on a top-down approach.

Walter Javier Starkloff1,2, Verónica Bucalá2, Santiago Daniel Palma3, Noelia L Gonzalez Vidal1,4.   

Abstract

The aim of this study was to develop ivermectin (IVM) nanosuspensions (NSs) to improve the dissolution rate of this poorly water-soluble drug. Different NSs combining different stabilizers, i.e. poloxamer 188 (P188), polysorbate 80 (T80), polyvinylpyrrolidone (PVP), and sodium lauryl sulfate (SLS), were prepared by high-pressure homogenization. The stabilizers were selected based on the saturation solubility and IVM stability within 72 h. The screening of formulations was performed by considering the drug content within the nanosize range. The best formulation (IVM:T80:PVP 1:0.5:0.5 wt%) was characterized in terms of the particle size distribution, morphology, crystallinity, drug content, and in vitro dissolution profile. This NS was also evaluated from a stability point of view, by conditioning samples at a constant temperature and relative humidity for six months. The fresh and conditioned best NSs Z-sizes were 174.6 and 215.7 nm, respectively; while both NSs showed low polydispersity indexes. The faster dissolution rate for the IVM NS was attributed to the presence of nanoparticles and changes to the crystal structure (i.e. amorphization) that further improved solubility. The best NS had a 4-fold faster initial dissolution rate than raw IVM, and is thus a promising formulation for the treatment of human and animal parasitic diseases.

Entities:  

Keywords:  Antihelmintics; dissolution rate; high pressure homogenization; nanosuspensions; solubility; stability

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Year:  2016        PMID: 27346432     DOI: 10.1080/10837450.2016.1200078

Source DB:  PubMed          Journal:  Pharm Dev Technol        ISSN: 1083-7450            Impact factor:   3.133


  2 in total

1.  Orally Administrable Therapeutic Synthetic Nanoparticle for Zika Virus.

Authors:  Bapurao Surnar; Mohammad Z Kamran; Anuj S Shah; Uttara Basu; Nagesh Kolishetti; Sapna Deo; Dushyantha T Jayaweera; Sylvia Daunert; Shanta Dhar
Journal:  ACS Nano       Date:  2019-10-11       Impact factor: 15.881

Review 2.  Nanoparticles for antiparasitic drug delivery.

Authors:  Yuzhu Sun; Dongmei Chen; Yuanhu Pan; Wei Qu; Haihong Hao; Xu Wang; Zhenli Liu; Shuyu Xie
Journal:  Drug Deliv       Date:  2019-12       Impact factor: 6.419

  2 in total

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