Lauterbach Andreas, Müller-Goymann Christel C
Eur J Pharm Biopharm. 2014 Nov;88(3):614-24. doi: 10.1016/j.ejpb.2014.10.001.
A novel adapalene-loaded solid lipid microparticle (SLMA) dispersion as a topical drug delivery system (TDDS) for follicular penetration has been introduced. The objective of the present study was to investigate the rheological properties, the follicular penetration with differential tape stripping on porcine ear skin, the drug release in sebum and stratum corneum (SC) lipid mixtures, and the permeation behavior across human SC in comparison with a commercially available cream as standard. Physicochemical characterization reveals that adapalene is homogeneously distributed within the SLMA dispersion and chemically stable for at least 24 weeks. The SLMA dispersion shows a lower complex viscosity at 20 °C and a higher one at 32 °C than the cream, while the phase angle of the dispersion is always larger at both temperatures. Both formulations feature an equivalent potential for follicular penetration and deposition. However, the superiority of the SLMA dispersion is based on the preferential drug release in sebum while there is no or just a slight release in SC lipids and no permeation for both formulations. Due to the similarity of the glyceride matrix of the SLMA to sebum components, a targeted drug delivery into sebum and thereby an increased follicular penetration may be facilitated.
一种新型的载有阿达帕林的固体脂质微粒(SLMA)分散体作为用于毛囊渗透的局部给药系统(TDDS)已被引入。本研究的目的是研究其流变学性质、在猪耳皮肤上用胶带剥离法进行的毛囊渗透、在皮脂和角质层(SC)脂质混合物中的药物释放以及与市售乳膏作为标准相比在人SC上的渗透行为。物理化学表征表明,阿达帕林在SLMA分散体中均匀分布且化学稳定性至少为24周。与乳膏相比,SLMA分散体在20℃时表现出较低的复数粘度,在32℃时表现出较高的复数粘度,而在两个温度下分散体的相角总是更大。两种制剂在毛囊渗透和沉积方面具有同等潜力。然而,SLMA分散体的优势在于其在皮脂中的优先药物释放,而在SC脂质中没有或仅有轻微释放,并且两种制剂均无渗透。由于SLMA的甘油酯基质与皮脂成分相似,可能有助于将药物靶向递送至皮脂,从而增加毛囊渗透。