a Department of Pharmacy , 302 Military Hospital , Beijing , China.
b Pharmacy College, Chengdu University of Traditional Chinese Medicine , Chengdu , China , and.
Drug Deliv. 2016 Oct;23(8):2643-2650. doi: 10.3109/10717544.2015.1044051. Epub 2015 May 26.
The aim of this study was to evaluate the effect of therapeutic ultrasound (TUS) on dermal delivery and therapeutic effect for frostbite of nanogel containing triterpenoids isolated from Ganoderma lucidum (GLT).
GLT nanosuspension (GLT-NS) was prepared by high pressure homogenization and then suitably gelled to obtain GLT nanogel. The effects of TUS on GLT releasing from GLT nanogel and GLT permeation through the excised rat abdominal skin were evaluated. Moreover, a comparative study was also undertaken between different treatments of frostbite in rats: topical application of GLT nanogel (alone), TUS (alone) and GLT nanogel + TUS (plus).
In the in vitro release study, TUS has no influence on drug release from the nanogel. Results of the in vitro transdermal study indicated that TUS significantly increased the cumulative amount of GLT permeating across and into the skin and reduced the lag time in comparison with passive diffusion (without TUS). As evidenced by the significant increase of wound healing area and the improvement in frostbite, TUS applied with simultaneous treatment method could improve the therapeutic effect of the GLT nanogel for frostbite.
The present study revealed that the TUS can be effectively used to actively enhance topical delivery of GLT from nanogel and improve the therapeutic effect for frostbite in rats.
本研究旨在评估治疗性超声(TUS)对灵芝三萜类化合物纳米凝胶经皮给药和冻伤治疗效果的影响。
采用高压匀质法制备灵芝纳米混悬剂(GLT-NS),然后适当凝胶化得到 GLT 纳米凝胶。评价 TUS 对 GLT 从 GLT 纳米凝胶中释放和 GLT 通过大鼠离体腹部皮肤渗透的影响。此外,还对大鼠冻伤的不同治疗方法进行了比较研究:GLT 纳米凝胶(单独)、TUS(单独)和 GLT 纳米凝胶+TUS(联合)的局部应用。
在体外释放研究中,TUS 对纳米凝胶中药物的释放没有影响。体外透皮研究结果表明,与被动扩散(无 TUS)相比,TUS 显著增加了 GLT 渗透穿过皮肤的累积量,并减少了滞后时间。由于伤口愈合面积的显著增加和冻伤的改善,同时应用 TUS 的治疗方法可以提高 GLT 纳米凝胶治疗冻伤的疗效。
本研究表明,TUS 可有效用于主动增强纳米凝胶中 GLT 的经皮给药,并提高大鼠冻伤的治疗效果。