4.8 Article

Amino acid derivatives as transdermal permeation enhancers

Journal

JOURNAL OF CONTROLLED RELEASE
Volume 165, Issue 2, Pages 91-100

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jconrel.2012.11.003

Keywords

Transdermal drug delivery; in vitro/in vivo skin absorption; Penetration enhancer; Amino acid; Stratum corneum

Funding

  1. Czech Science Foundation [207/11/0365]
  2. Charles University [SVV 265 001]

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Transdermal permeation enhancers are compounds that temporarily decrease skin barrier properties to promote drug flux. In this study, we investigated enhancers with amino acids (proline, sarcosine, alanine, beta-alanine, and glycine) attached to hydrophobic chain(s) via a biodegradable ester link. The double-chain lipid-like substances displayed no enhancing effect, whereas single-chain substances significantly increased skin permeability. The proline derivative L-Pro2 reached enhancement ratios of up to 40 at 1% concentration, which is higher than that of thewell-established and standard enhancers Azone, DDAIP, DDAK, and Transkarbam 12. No stereoselectivity was observed. L-Pro2 acted synergistically with propylene glycol. Infrared studies revealed that L-Pro2 forms a separate liquid ordered phase in the stratum corneum lipids and has no significant effect on proteins. L-Pro2 action was at least partially reversible as measured by skin electrical impedance. Toxicity in keratinocyte (HaCaT) and fibroblast (3T3) cell lines showed IC50 values ranging fromtens to hundreds of mu M, which is comparable with standard enhancers. Furthermore, L-Pro2 was rapidly decomposed in plasma. In vivo transdermal absorption studies in rats confirmed the enhancing activity of L-Pro2 and suggested its negligible skin toxicity and minimal effect on transepidermal water loss. These properties make L-Pro2 a promising candidate for potential clinical use. (C) 2012 Elsevier B.V. All rights reserved.

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