Dorati Rosella, Genta Ida, Colzani Barbara, Tripodo Giuseppe, Conti Bice
Department of Drug Sciences, University of Pavia , Pavia , Italy.
Drug Dev Ind Pharm. 2015;41(7):1182-92. doi: 10.3109/03639045.2014.935395. Epub 2014 Jul 4.
The aim was to design sterile biodegradable microparticulate drug delivery systems based on poly(dl-lactide) (PLA) and poly(ε-caprolactone) (PCL) and containing ivermectin (IVM), an antiparasitic drug, for subcutaneous administration in dogs. The drug delivery system should: (i) ensure a full 12-month protection upon single dose administration; (ii) be safe with particular attention regarding IVM dosage and its release, in order to prevent over dosage side effects. This preliminary work involves: polymer selection, evaluation of the effects of γ-irradiation on the polymers and IVM, investigation and set up of suitable microparticle preparation process and parameters, IVM-loaded microparticles in vitro release evaluation. Results of gel permeation chromatography analysis on the irradiated polymers and IVM mixtures showed that combination of IVM with the antioxidant α-tocopherol (TCP) reduces the damage extent induced by irradiation treatment, independently on the polymer type. Solvent evaporation process was successfully used for the preparation of PLA microparticles and appropriately modified; it was recognized as suitable for the preparation of PCL microparticles. Good process yields were achieved ranging from 76.08% to 94.72%; encapsulation efficiency was between 85.76% and 91.25%, independently from the polymer used. The type of polymer and the consequent preparation process parameters affected microparticle size that was bigger for PCL microparticles (480-800 µm) and solvent residual that was >500 ppm for PLA microparticles. In vitro release test showed significantly faster IVM release rates from PCL microparticles, with respect to PLA microparticles, suggesting that a combination of the polymers could be used to obtain the suitable drug release rate.
目的是设计基于聚(dl-丙交酯)(PLA)和聚(ε-己内酯)(PCL)的无菌可生物降解微粒药物递送系统,其含有抗寄生虫药物伊维菌素(IVM),用于犬的皮下给药。该药物递送系统应:(i)单次给药后确保12个月的全面保护;(ii)安全,尤其要关注IVM剂量及其释放,以防止过量副作用。这项初步工作包括:聚合物选择、γ射线辐照对聚合物和IVM影响的评估、合适微粒制备工艺和参数的研究与建立、载IVM微粒的体外释放评估。对辐照后的聚合物和IVM混合物进行凝胶渗透色谱分析的结果表明,IVM与抗氧化剂α-生育酚(TCP)的组合可降低辐照处理引起的损伤程度,与聚合物类型无关。溶剂蒸发法成功用于制备PLA微粒并进行了适当改性;它被认为适用于制备PCL微粒。工艺产率良好,范围在76.08%至94.72%之间;包封效率在85.76%至91.25%之间,与所用聚合物无关。聚合物类型及相应的制备工艺参数影响微粒大小,PCL微粒(480 - 800 µm)更大,PLA微粒的溶剂残留>500 ppm。体外释放试验表明,相对于PLA微粒,PCL微粒的IVM释放速率明显更快,这表明聚合物组合可用于获得合适的药物释放速率。