Liu Yu, Yang Fujin, Feng Linglin, Yang Long, Chen Lingyun, Wei Gang, Lu Weiyue
Key Laboratory of Smart Drug Delivery, Ministry of Education, Fudan University, Shanghai 201203, China.
Department of Pharmaceutics, School of Pharmacy, Fudan University, Shanghai 201203, China.
Acta Pharm Sin B. 2017 Jul;7(4):502-509. doi: 10.1016/j.apsb.2017.03.003. Epub 2017 May 9.
The purpose of this study is to evaluate the retention capabilities of poloxamer-based hydrogels for vaginal application with nonoxinol-9 as the model drug. Two hydrogel formulations, which contained 18% poloxamer 407 plus 1% poloxamer 188 (GEL1, relative hydrophobic) or 6% poloxamer 188 (GEL2, relative hydrophilic), were compared with respect to the rheological properties, hydrogel erosion and drug release. The vaginal retention capabilities of these hydrogel formulations were further determined in two small animal models, including drug quantitation of vaginal rinsing fluid in mice and isotope tracing with Tc in rats. The two formulations exhibited similar phase transition temperatures ranging from 27 to 32 °C. Increasing the content of poloxamer 188 resulted in higher rheological moduli under body temperature, but slightly accelerated hydrogel erosion and drug release. When compared , GEL1 was eliminated significantly slower in rat vagina than GEL2, while the vaginal retention of these two hydrogel formulations behaved similarly in mice. In conclusion, increases in the hydrophilic content of formulations led to faster hydrogel erosion, drug release and intravaginal elimination. Rats appear to be a better animal model than mice to evaluate the hydrogel for vaginal application.
本研究的目的是以壬苯醇醚 -9 作为模型药物,评估用于阴道给药的泊洛沙姆基水凝胶的保留能力。将两种水凝胶制剂进行比较,一种含有 18% 的泊洛沙姆 407 加 1% 的泊洛沙姆 188(GEL1,相对疏水),另一种含有 6% 的泊洛沙姆 188(GEL2,相对亲水),比较其流变学性质、水凝胶侵蚀和药物释放情况。在两种小动物模型中进一步测定这些水凝胶制剂的阴道保留能力,包括小鼠阴道冲洗液的药物定量和大鼠中用锝进行同位素示踪。两种制剂表现出相似的相变温度,范围为 27 至 32°C。增加泊洛沙姆 188 的含量会导致体温下更高的流变模量,但会稍微加速水凝胶侵蚀和药物释放。相比之下,GEL1 在大鼠阴道中的消除明显比 GEL2 慢,而这两种水凝胶制剂在小鼠中的阴道保留情况相似。总之,制剂亲水含量的增加导致水凝胶侵蚀、药物释放和阴道内消除加快。在评估用于阴道给药的水凝胶方面,大鼠似乎是比小鼠更好的动物模型。