Leslie Dan Faculty of Pharmacy, University of Toronto, 144 College Street, Ontario M5S 3M2, Canada.
Pendant BioSciences Inc., JLabs Toronto, 661 University Avenue, Suite 1300, Ontario M5G 0B7, Canada.
J Pharm Sci. 2021 Jul;110(7):2771-2777. doi: 10.1016/j.xphs.2021.03.009. Epub 2021 Mar 16.
A novel polymeric material, poly(δ-valerolactone-co-allyl-δ-valerolactone) (PVL-co-PAVL), was used to manufacture microparticles (MPs) for sustained drug delivery. PVL-co-PAVL MPs were formulated using a modified oil-in-water approach, followed by a UV-initiated cross-linking process. Prepared MPs had a smooth spherical morphology and cross-linking of the copolymer was found to improve the integrity and thermal stability of the MPs. Paclitaxel (PTX) was successfully loaded into the MPs at a high drug loading capacity, using a post-loading swelling-equilibrium method. In vitro evaluation showed that the PVL-co-PAVL MPs provide sustained release of PTX, which exhibited first-order release kinetics. A subsequent pilot pharmacokinetic study was carried out on the PTX-loaded PVL-co-PAVL MPs. During this study, serum levels of PTX were monitored following subcutaneous administration of the MPs to Sprague-Dawley rats. Overall, the in vivo release of PTX from the MPs was lower than expected based on the in vitro release studies. Detectable serum levels of PTX suggest that sustained release of drug was achieved in vivo. Minimal changes in subcutaneous tissue were observed at the site of injection. Future studies will further examine the localized and systemic distribution of drug following administration in this new polymer-based MP system.
一种新型聚合材料,聚(δ-戊内酯-共-烯丙基-δ-戊内酯)(PVL-co-PAVL),被用于制造用于持续药物输送的微球(MPs)。PVL-co-PAVL MPs 通过改良的油包水方法进行配方设计,随后进行 UV 引发的交联过程。制备的 MPs 具有光滑的球形形态,共聚物的交联被发现提高了 MPs 的完整性和热稳定性。紫杉醇(PTX)通过后加载溶胀平衡法成功地以高载药能力载入 MPs 中。体外评估表明,PVL-co-PAVL MPs 提供了 PTX 的持续释放,表现出一级释放动力学。随后在 Sprague-Dawley 大鼠中进行了载有 PTX 的 PVL-co-PAVL MPs 的初步药代动力学研究。在这项研究中,监测了 MPs 皮下给药后血清中 PTX 的水平。总的来说, MPs 中 PTX 的体内释放低于基于体外释放研究的预期。可检测到的血清中 PTX 水平表明在体内实现了药物的持续释放。在注射部位观察到皮下组织的微小变化。未来的研究将进一步研究在这种新的聚合物基 MPs 系统中给药后药物的局部和全身分布。