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制备无水反胶束递药系统以提高小檗碱的口服生物利用度和抗糖尿病疗效。

Preparation of an anhydrous reverse micelle delivery system to enhance oral bioavailability and anti-diabetic efficacy of berberine.

机构信息

Department of Pharmacy, Jining Medical College, 669 Xueyuan Road, Sunshine City, Shandong Province, China.

出版信息

Eur J Pharm Sci. 2011 Sep 18;44(1-2):127-35. doi: 10.1016/j.ejps.2011.06.015. Epub 2011 Jul 1.

Abstract

To enhance oral bioavailability and anti-diabetic efficacy of berberine (BER), an anhydrous reverse micelle (ARM) delivery system was prepared through lyophilization of water-in-oil (W/O) emulsions. Using soy phosphatidylcholine as emulsifiers, BER-containing W/O emulsions were prepared and then lyophilized to form dry products which, upon addition of oil, formed clear ARMs containing amorphous BER nanoparticles. BER-loaded ARMs or free BER solutions were administered to streptozocin-induced diabetic mice. In vivo measurements demonstrated that the blood glucose levels (BGLs) of diabetic mice reduced on average to 22% of the initial values 4h after intravenous injection of BER solution at the dose of 2.5mg/kg body weight, while the average BGL reduction was 57% in the group gavaged with ARMs at the dose of 100mg/kg body weight. No significant BGL reduction was noticed in mice orally received BER solutions. Compared to BER solutions, the oral bioavailability of BER-loaded ARMs was enhanced 2.4-fold, and the maximum blood concentration of BER was enhanced 2.1-fold with a 2-h time lag leading to a prolonged efficacy. Thus, this novel ARM delivery system provides a valid method to improve oral bioavailability and anti-diabetic efficacy of BER, offering a promising product alternative to other hypoglycemic drugs for diabetes therapy.

摘要

为了提高黄连素(BER)的口服生物利用度和抗糖尿病疗效,通过油包水(W/O)乳液的冻干制备了无水反胶束(ARM)传递系统。使用大豆卵磷脂作为乳化剂,制备了含有 BER 的 W/O 乳液,然后冻干形成干燥产物,加入油后形成含有无定形 BER 纳米颗粒的澄清 ARM。将载有 BER 的 ARM 或游离 BER 溶液施用于链脲佐菌素诱导的糖尿病小鼠。体内测量表明,静脉注射 2.5mg/kg 体重剂量的 BER 溶液 4 小时后,糖尿病小鼠的血糖水平(BGL)平均降低到初始值的 22%,而在 100mg/kg 体重剂量下用 ARM 灌胃的组平均 BGL 降低 57%。口服接受 BER 溶液的小鼠未观察到明显的 BGL 降低。与 BER 溶液相比,载有 BER 的 ARM 的口服生物利用度提高了 2.4 倍,最大 BER 血药浓度提高了 2.1 倍,时间滞后 2 小时,疗效延长。因此,这种新型 ARM 传递系统为提高 BER 的口服生物利用度和抗糖尿病疗效提供了一种有效方法,为糖尿病治疗提供了一种有前途的替代其他降血糖药物的产品。

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