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Microfluidic manufacturing of tioconazole loaded keratin nanocarriers: Development and optimization by design of experiments.
Khorshid, Shiva; Goffi, Rosita; Maurizii, Giorgia; Benedetti, Serena; Sotgiu, Giovanna; Zamboni, Roberto; Buoso, Sara; Galuppi, Roberta; Bordoni, Talita; Tiboni, Mattia; Aluigi, Annalisa; Casettari, Luca.
Affiliation
  • Khorshid S; Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento, 6, 61029 Urbino (PU), Italy.
  • Goffi R; Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento, 6, 61029 Urbino (PU), Italy.
  • Maurizii G; Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento, 6, 61029 Urbino (PU), Italy.
  • Benedetti S; Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento, 6, 61029 Urbino (PU), Italy.
  • Sotgiu G; Institute of Organic Synthesis and Photoreactivity - Italian National Research Council, Via P. Gobetti, 101, Bologna, 40129, Italy; Kerline srl, Via Piero Gobetti 101, Bologna, 40129, Italy. Electronic address: giovanna.sotgiu@isof.cnr.it.
  • Zamboni R; Institute of Organic Synthesis and Photoreactivity - Italian National Research Council, Via P. Gobetti, 101, Bologna, 40129, Italy; Kerline srl, Via Piero Gobetti 101, Bologna, 40129, Italy.
  • Buoso S; Kerline srl, Via Piero Gobetti 101, Bologna, 40129, Italy.
  • Galuppi R; Department of Veterinary Medical Sciences, University of Bologna, Ozzano dell'Emilia, Bologna, 40064, Italy.
  • Bordoni T; Department of Veterinary Medical Sciences, University of Bologna, Ozzano dell'Emilia, Bologna, 40064, Italy.
  • Tiboni M; Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento, 6, 61029 Urbino (PU), Italy.
  • Aluigi A; Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento, 6, 61029 Urbino (PU), Italy; Kerline srl, Via Piero Gobetti 101, Bologna, 40129, Italy. Electronic address: Annalisa.aluigi@uniurb.it.
  • Casettari L; Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento, 6, 61029 Urbino (PU), Italy.
Int J Pharm ; 647: 123489, 2023 Nov 25.
Article in En | MEDLINE | ID: mdl-37805150
ABSTRACT
Fungal infections of the skin, nails, and hair are a common health concern affecting a significant proportion of the population worldwide. The current treatment options include topical and systematic agents which have low permeability and prolonged treatment period, respectively. Consequently, there is a growing need for a permeable, effective, and safe treatment. Keratin nanoparticles are a promising nanoformulation that can improve antifungal agent penetration, providing sustainable targeted drug delivery. In this study, keratin nanoparticles were prepared using a custom-made 3D-printed microfluidic chip and the manufacturing process was optimized using the design of experiments (DoE) approach. The total flow rate (TFR), flow rate ratio (FRR), and keratin concentration were found to be the most influential factors of the size and polydispersity index (PDI) of the nanoparticles. The crosslinking procedure by means of tannic acid as safe and biocompatible compound was also optimized. Keratin nanoparticles loaded with a different amount of tioconazole showed a size lower than 200 nm, a PDI lower than 0.2 and an encapsulation efficiency of 91 ± 1.9 %. Due to their sustained drug release, the formulations showed acceptable in vitro biocompatibility. Furthermore, a significant inhibitory effect compared to the free drug against Microsporum canis.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Microfluidics / Nanoparticles Language: En Journal: Int J Pharm Year: 2023 Document type: Article Affiliation country: Italy

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Microfluidics / Nanoparticles Language: En Journal: Int J Pharm Year: 2023 Document type: Article Affiliation country: Italy
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