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Preclinical development of sodium fusidate antibiotic cutaneous spray based on water-free lipid formulation system.
Holmbäck, Jan; Rinwa, Vibhu; Johansson, Jenny; Håkansson, Joakim; Rinwa, Puneet; Carlsson, Anders; Herslöf, Bengt.
Affiliation
  • Holmbäck J; Department of Materials and Environmental Chemistry, Stockholm University, Svante Arrhenius väg 16C, Stockholm SE-106 91, Sweden; Lipidor AB, Svärdvägen 13, Danderyd SE-182 33, Sweden. Electronic address: jan.holmback@mmk.su.se.
  • Rinwa V; Department of Materials and Environmental Chemistry, Stockholm University, Svante Arrhenius väg 16C, Stockholm SE-106 91, Sweden; Lipidor AB, Svärdvägen 13, Danderyd SE-182 33, Sweden.
  • Johansson J; RISE Research Institutes of Sweden AB, Brinellgatan 4, Borås SE-504 62, Sweden.
  • Håkansson J; RISE Research Institutes of Sweden AB, Brinellgatan 4, Borås SE-504 62, Sweden; Department of Laboratory Medicine, Institute of Biomedicine, Gothenburg University, Gothenburg SE- 405 30, Sweden.
  • Rinwa P; Lipidor AB, Svärdvägen 13, Danderyd SE-182 33, Sweden.
  • Carlsson A; MediGelium AB, Hornsbergs strand 49, Stockholm SE-112 16, Sweden.
  • Herslöf B; Lipidea AB, Brunbärsvägen 2, Stockholm SE-114 21, Sweden.
Eur J Pharm Sci ; 176: 106250, 2022 Sep 01.
Article in En | MEDLINE | ID: mdl-35779822
ABSTRACT
Topical antibiotics are a key component in the management of mild to moderate skin and soft tissue infections. There are, however, concerns about the emerging bacterial resistance against topical antibacterial agents such as fusidic acid, due to the prolonged treatment period of its marketed dosage forms. Improving the efficacy of topical formulations could potentially shorten the treatment period and avoid the resistance growth. To provide a more effective drug delivery, a water-free lipid-based formulation system (AKVANO®) which can be applied by spraying, has been developed. In the current paper, different formulations containing sodium fusidate were evaluated for their in vitro skin permeability using artificial skin mimicking membranes and antibacterial properties using ex vivo and in vivo skin wound infection models. The novel formulations containing sodium fusidate showed a much higher skin permeation (up to 60% of nominal amount) than the commercially available Fucidin® cream (3%). These formulations also gave a significantly stronger antibacterial effect than Fucidin cream showing a clear dose-response relationship for the sodium fusidate content. A spray product based on the described formulation technology would therefore require a shorter treatment time and thereby lower the risk for the development of bacterial resistance. Spray administration of these formulations provides an even layer on the skin surface from which the solvent quickly evaporates and thereby facilitates a non-touch application where no rubbing is required.
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Full text: 1 Database: MEDLINE Main subject: Fusidic Acid / Anti-Bacterial Agents Language: En Year: 2022 Type: Article

Full text: 1 Database: MEDLINE Main subject: Fusidic Acid / Anti-Bacterial Agents Language: En Year: 2022 Type: Article