Department of Bioengineering, Therapeutic Sciences and Pharmaceutical Chemistry, University of California, San Francisco , California 94143-0912, United States.
Bioconjug Chem. 2011 Apr 20;22(4):617-24. doi: 10.1021/bc100400u. Epub 2011 Mar 4.
We describe a six-step synthesis to water-soluble doxorubicin (DOX)-loaded biodegradable PEGylated star-comb polymers with favorable pharmaceutical properties by atom transfer radical polymerization (ATRP) starting with a commercially available tripentaerythritol carrying eight reactive sites. The low polydispersity polymers degrade in a stepwise manner into lower molecular weight (MW) fragments by 15 days at 37 °C at either pH 5.0 or pH 7.4. The half-life of the star-comb polymers in blood is dependent upon the molecular weight; the 44 kDa star-comb has a t(1/2, β) of 30.5 ± 2.1 h, which is not significantly changed (28.6 ± 2.7 h) when 6.6 wt % of DOX is attached to it via a pH-sensitive hydrazone linker. The star-comb polymers have low accumulation in organs but a high accumulation in C26 flank tumors implanted in Balb/C mice. The hydrodynamic diameter of polymer-DOX conjugates measured by dynamic light scattering increases from 8 to 35 to 41 nm as the loading is increased from 6.6 to 8.4 to 10.2 wt %. Although there is no significant difference in the t(1/2, β) or in the accumulation of polymer-DOX in C-26 tumors, the uptake of polymer in the spleen is significantly higher for polymers with DOX loadings greater than 6.6 wt %. Polymer accumulation in other vital organs is independent of the DOX loading. The facile synthesis, biodegradability, long circulation time, and high tumor accumulation of the attached drug suggests that the water-soluble star-comb polymers have promise in therapeutic applications.
我们描述了一种六步合成方法,通过原子转移自由基聚合(ATRP),以市售的八官能度三季戊四醇为起始原料,合成了具有良好药学性质的水溶性阿霉素(DOX)负载可生物降解 PEG 化星型梳状聚合物。低多分散性聚合物在 37°C 下,在 pH 5.0 或 pH 7.4 条件下,以逐步方式降解为低分子量(MW)片段,15 天内降解。星型梳状聚合物在血液中的半衰期取决于分子量;44 kDa 的星型梳状聚合物的 t(1/2,β)为 30.5 ± 2.1 h,当通过 pH 敏感腙键将 6.6wt%的 DOX 连接到其上时,其半衰期没有明显变化(28.6 ± 2.7 h)。星型梳状聚合物在器官中的积累较低,但在植入 Balb/C 小鼠的 C26 侧腹肿瘤中的积累较高。通过动态光散射测量的聚合物-DOX 缀合物的水动力直径随着载药量从 6.6wt%增加到 8.4wt%再增加到 10.2wt%,从 8nm 增加到 35nm 再增加到 41nm。尽管聚合物-DOX 在 C-26 肿瘤中的 t(1/2,β)或积累没有显著差异,但对于 DOX 载药量大于 6.6wt%的聚合物,聚合物在脾脏中的摄取量明显更高。聚合物在其他重要器官中的积累与 DOX 载药量无关。附着药物的合成简单、可生物降解、长循环时间和高肿瘤积累表明,水溶性星型梳状聚合物在治疗应用中有很大的应用潜力。