Department of Chemical Engineering, Center for Bioengineering, University of California, Santa Barbara, 93106, USA.
Convoy Therapeutics, Inc., Oro Valley, Arizona, USA.
J Control Release. 2014 Jan 10;173:67-74. doi: 10.1016/j.jconrel.2013.10.007. Epub 2013 Oct 12.
Topical penetration of macromolecules into the skin is limited by their low permeability. Here, we report the use of a skin penetrating peptide, SPACE peptide, to enhance topical delivery of a macromolecule, hyaluronic acid (HA, MW: 200-325kDa). The peptide was conjugated to phospholipids and used to prepare an ethosomal carrier system (~110nm diameter), encapsulating HA. The SPACE-ethosomal system (SES) enhanced HA penetration into porcine skin in vitro by 7.8+/-1.1-fold compared to PBS. The system also enhanced penetration of HA in human skin in vitro, penetrating deep into the epidermis and dermis in skin of both species. In vivo experiments performed using SKH1 hairless mice also confirmed increased dermal penetration of HA using the delivery system; a 5-fold enhancement in penetration was found compared to PBS control. Concentrations of HA in skin were about 1000-fold higher than those in blood; confirming the localized nature of HA delivery into skin. The SPACE-ethosomal delivery system provides a formulation for topical delivery of macromolecules that are otherwise difficult to deliver into the skin.
大分子经皮渗透受到其低通透性的限制。本文报告了一种透皮肽(SPACE 肽)在增强大分子透明质酸(HA,MW:200-325kDa)经皮传递中的应用。该肽与磷脂缀合,用于制备包封 HA 的醇质体载体系统(~110nm 直径)。与 PBS 相比,SPACE-醇质体系统(SES)使 HA 在体外猪皮中的渗透增加了 7.8+/-1.1 倍。该系统还增强了 HA 在体外人皮肤上的渗透,在两种物种的皮肤中渗透到表皮和真皮深处。使用 SKH1 无毛小鼠进行的体内实验也证实了该递送系统可增加 HA 的真皮渗透;与 PBS 对照组相比,渗透增强了 5 倍。皮肤中的 HA 浓度比血液中的浓度高约 1000 倍;证实了 HA 递送至皮肤的局部性质。SPACE-醇质体递送系统为其他难以递送至皮肤的大分子的经皮给药提供了一种制剂。