Faculty of Pharmaceutical Science, Sojo University, Kumamoto, Japan; Department of Nanoscience, School of Engineering, Sojo University, Kumamoto, Japan.
Faculty of Pharmaceutical Science, Sojo University, Kumamoto, Japan.
Int J Pharm. 2018 Jan 30;536(1):108-115. doi: 10.1016/j.ijpharm.2017.11.011. Epub 2017 Nov 10.
We have developed a tumor environment-responsive polymeric anticancer prodrug containing pirarubicin (THP) conjugated to N-(2-hydroxypropyl) methacrylamide copolymer (PHPMA), [P-THP], through a spacer containing pH-sensitive hydrazone bond, that showed remarkable therapeutic effect against various tumor models and in a human pilot study. Toward clinical development, here we report THP release profile from its HPMA copolymer conjugate, the conjugate stability, protein and cell-binding and solubility of P-THP. Size exclusion chromatography of P-THP (molecular weight 38 kDa) showed similar hydrodynamic volume as bovine serum albumin (BSA) in aqueous solution, with no apparent interactions with BSA, nor aggregation by itself. pH-responsive release of free THP was reconfirmed at pHs 6.5 and lower. The drug release was significantly affected by a type of used buffer. Phosphate buffer seems to facilitate faster hydrazone bond cleavage at pH 7.4 whereas higher stability was achieved in L-arginine solution which yielded only little cleavage and THP release, approx. 15% within 2 weeks at the same pH at 25 °C. Furthermore, ex vivo study using sera of different animal species showed very high stability of P-THP. Incubation with blood showed high stability of P-THP during circulation, without binding to blood cells. These findings revealed that L-arginine solution provides appropriate media for formulation of P-THP infusion solution as tumor-targeted polymeric anticancer drug based on EPR effect.
我们开发了一种肿瘤环境响应性聚合物抗癌前药,其中包含通过含有 pH 敏感腙键的间隔臂连接的吡柔比星(THP)和 N-(2-羟丙基)甲基丙烯酰胺共聚物(PHPMA)[P-THP],该前药在各种肿瘤模型和人体初步研究中显示出显著的治疗效果。为了进行临床开发,我们在此报告了从其 HPMA 共聚物缀合物中释放 THP 的情况、缀合物的稳定性、P-THP 的蛋白和细胞结合以及溶解度。P-THP(分子量 38 kDa)的尺寸排阻色谱法显示,其在水溶液中的流体力学体积与牛血清白蛋白(BSA)相似,与 BSA 无明显相互作用,也不会自身聚集。在 pH 6.5 及更低时,重新确认了游离 THP 的 pH 响应性释放。药物释放明显受到所用缓冲液类型的影响。磷酸盐缓冲液似乎在 pH 7.4 下促进更快的腙键断裂,而在 L-精氨酸溶液中则实现了更高的稳定性,在相同 pH 和 25°C 下,2 周内仅发生少量断裂和 THP 释放,约为 15%。此外,使用不同动物物种的血清进行的离体研究表明 P-THP 非常稳定。与血液孵育表明,P-THP 在血液循环期间具有很高的稳定性,不会与血细胞结合。这些发现表明,L-精氨酸溶液为基于 EPR 效应的肿瘤靶向聚合物抗癌药物的 P-THP 输注溶液制剂提供了合适的介质。