Zawar Laxmikant R, Bari Sanjay B
Department of Pharmaceutics, H R Patel Institute of Pharmaceutical Education and Research, Karwand Naka, Shirpur 425405, India.
Principal, H R Patel Institute of Pharmaceutical Education and Research, Karwand Naka, Shirpur 425405, India.
Recent Pat Drug Deliv Formul. 2018;12(3):162-169. doi: 10.2174/1872211312666180713105959.
The objective of the study was to improve the bioavailability of poorly soluble repaglinide (RPG) by preparing nanosuspension with poloxamer 188 using high pressure homogenization (HPH). The recent patents on nanocrystals (US20150337006A1) facilitated selection of drug and polymer.
Suspensions containing dissimilar sized particles were prepared by ultrasonication and HPH. The prepared aqueous suspensions were lyophilized and then characterized. Further, the dried aqueous suspensions were evaluated for drug content, solubility, in vitro dissolution, oral bioavailability study and stability study.
RPG nanoparticles size, polydispersity index (PDI) and zeta potential were found to be 280.8 ± 15 nm, 0.279 ± 0.04 and - 25.81 ± 1.6mV, respectively. DSC and XRD results showed that RPG particles in aqueous suspensions were present in a crystalline state; however, RPG nanoparticles exhibited decreased lattice energy due to smaller particle size. Nanoparticles prepared by HPH exhibited significant improvements in solubility and dissolution rate. Oral bioavailability was found to be enhanced by 1.93 fold in comparison with that of plain RPG. The nanosuspension was found to be stable when stored at 5°C ± 3°C.
The outcomes of the study revealed significant enhancement in dissolution rate and oral bioavailability of RPG due to size reduction to nano range by HPH.
本研究的目的是通过使用高压均质法(HPH)用泊洛沙姆188制备纳米混悬液来提高难溶性瑞格列奈(RPG)的生物利用度。近期关于纳米晶体的专利(US20150337006A1)有助于药物和聚合物的选择。
通过超声处理和高压均质法制备含有不同粒径颗粒的混悬液。将制备的水混悬液冻干,然后进行表征。此外,对冻干的水混悬液进行药物含量、溶解度、体外溶出度、口服生物利用度研究和稳定性研究。
发现RPG纳米颗粒的大小、多分散指数(PDI)和zeta电位分别为280.8±15nm、0.279±0.04和 - 25.81±1.6mV。DSC和XRD结果表明,水混悬液中的RPG颗粒呈结晶状态;然而,由于粒径较小,RPG纳米颗粒的晶格能降低。通过高压均质法制备的纳米颗粒在溶解度和溶出速率方面有显著提高。与普通RPG相比,口服生物利用度提高了1.93倍。发现纳米混悬液在5°C±3°C储存时是稳定的。
研究结果表明,通过高压均质法将RPG粒径减小至纳米范围,其溶出速率和口服生物利用度显著提高。