Department of Pharmaceutical Sciences, College of Pharmacy, Mercer University, Atlanta, GA, 30341, USA.
Luminance Clinic, Mumbai, India.
Drug Deliv Transl Res. 2018 Apr;8(2):450-460. doi: 10.1007/s13346-017-0370-y.
The epidermal skin barrier plays an important role in protecting underlying structures. It allows the passage of low molecular weight lipophilic molecules, but restricts the passage of hydrophilic molecules and macromolecules. The objective of this study was to investigate the feasibility of transdermal delivery of human growth hormone (hGH) through laser-microporated dermatomed porcine ear skin. The permeation of hGH was evaluated at different laser fluences and micropore densities. In vitro permeation studies were performed on vertical Franz diffusion cells using dermatomed porcine ear skin treated with ablative laser (2940 nm; P.L.E.A.S.E®, Pantec Biosolutions AG). The effect of different fluences (34.1, 45.4, and 68.1 J/cm) at 10% pore density as well as different densities of micropores (5, 10, and 15%) at fluence of 34.1 J/cm, on the permeation of hGH was evaluated. After 48 h, 77.12 ± 10.77 μg/cm hGH was delivered into the receptor with the application of fluence of 45.4 J/cm, which was significantly higher than that observed from 34.1 J/cm group (53.13 ± 1.75 μg/cm, p < 0.05). Application of fluence of 68.1 J/cm showed permeation of 90.94 ± 3.93 μg/cm that was significantly higher than that from 34.1 J/cm group (p < 0.05), but not as compared to the 45.4 J/cm group (p > 0.05). With the increase in density of micropores from 5 to 15%, permeation of hGH increased significantly from 7.1 ± 2.63 μg/cm to 95.89 ± 13.43 μg/cm after 48 h (p < 0.05). Thus, overall, the variations in the fluence as well as micropore density of the laser were observed to influence hGH permeation, through laser-microporated dermatomed porcine skin.
表皮皮肤屏障在保护下层结构方面起着重要作用。它允许低分子量亲脂分子通过,但限制亲水分子和大分子的通过。本研究的目的是研究通过激光微穿孔去皮猪耳皮肤经皮传递人生长激素 (hGH) 的可行性。在不同的激光能量密度和微孔密度下评估 hGH 的渗透。在垂直 Franz 扩散细胞上进行体外渗透研究,使用经皮激光(2940nm;P.L.E.A.S.E®,Pantec Biosolutions AG)处理去皮猪耳皮肤。评估了不同能量密度(34.1、45.4 和 68.1 J/cm)在 10%孔密度以及在 34.1 J/cm 能量密度下不同微孔密度(5、10 和 15%)对 hGH 渗透的影响。在 48 小时后,在应用 45.4 J/cm 的能量密度时,有 77.12 ± 10.77 μg/cm 的 hGH 传递到受体中,这明显高于观察到的 34.1 J/cm 组(53.13 ± 1.75 μg/cm,p < 0.05)。应用 68.1 J/cm 的能量密度显示出 90.94 ± 3.93 μg/cm 的渗透,明显高于 34.1 J/cm 组(p < 0.05),但与 45.4 J/cm 组相比没有差异(p > 0.05)。随着微孔密度从 5%增加到 15%,hGH 的渗透在 48 小时后从 7.1 ± 2.63 μg/cm 显著增加到 95.89 ± 13.43 μg/cm(p < 0.05)。因此,总体而言,观察到激光的能量密度和微孔密度的变化会影响经皮激光微穿孔去皮猪耳皮肤中 hGH 的渗透。