Hanafy A, Spahn-Langguth H, Vergnault G, Grenier P, Tubic Grozdanis M, Lenhardt T, Langguth P
Department of Pharmacology, Faculty of Veterinary Medicine, Kafrelsheikh University, Egypt.
Adv Drug Deliv Rev. 2007 Jul 10;59(6):419-26. doi: 10.1016/j.addr.2007.04.005. Epub 2007 May 3.
An increasing number of newly developed drugs show bioavailability problems due to poor water solubility. Formulating the drugs as nanosuspensions may help to overcome these problems by increasing saturation solubility and dissolution velocity. In the present study the bioavailability of the poorly soluble fenofibrate following oral administration was investigated in rats. Four formulations were tested: a nanosuspension type DissoCube(R), one solid lipid nanoparticle (SLN) preparation and two suspensions of micronized fenofibrate as reference formulations, one suspension in sirupus simplex and a second in a solution of hydroxyethy-cellulose in physiological saline. Both colloidal drug delivery systems showed approximately two-fold bioavailability enhancements in terms of rate and extent compared to the reference formulations. No significant differences were found in AUC(0-22 h) as well as in C(max) and t(max) between the two colloidal delivery systems. In conclusion, nanosuspensions may be a suitable delivery system to improve the bioavailability of drugs with low water solubility.
由于水溶性差,越来越多新开发的药物存在生物利用度问题。将药物制成纳米混悬剂可能有助于通过提高饱和溶解度和溶解速度来克服这些问题。在本研究中,对大鼠口服难溶性非诺贝特后的生物利用度进行了研究。测试了四种制剂:一种纳米混悬剂类型的DissoCube(R)、一种固体脂质纳米粒(SLN)制剂以及两种微粉化非诺贝特混悬剂作为参比制剂,一种是在单糖浆中的混悬剂,另一种是在羟乙基纤维素生理盐溶液中的混悬剂。与参比制剂相比,两种胶体药物递送系统在速率和程度方面均显示出约两倍的生物利用度提高。两种胶体递送系统之间在AUC(0 - 22 h)以及C(max)和t(max)方面均未发现显著差异。总之,纳米混悬剂可能是一种合适的递送系统,可提高低水溶性药物的生物利用度。