Division of Biotechnology, The Catholic University of Korea, 43-1 Yeokgok 2-dong, Wonmi-gu, Bucheon-si, Gyeonggi-do 420-743, Republic of Korea.
Colloids Surf B Biointerfaces. 2011 Jan 1;82(1):190-5. doi: 10.1016/j.colsurfb.2010.08.033. Epub 2010 Sep 17.
Pluronics with different structural compositions and properties are used for several applications, including drug delivery systems. We developed a binary mixing system with two Pluronics, L121/P123, as a nano-sized drug delivery carrier. The lamellar-forming Pluronic L121 (0.1 wt%) was incorporated with Pluronic P123 to produce nano-sized dispersions (in case of 0.1 and 0.5 wt% P123) with high stability due to Pluronic P123 and high solubilization capacity due to Pluronic L121. The binary systems were spherical and less than 200-nm diameter, with high thermodynamic stability (at least 2 weeks) in aqueous solution. The CMC of the binary system was located in the middle of the CMC of each polymer. In particular, the solubilization capacity of the binary system (0.1/0.1 wt%) was higher than mono-systems of P123. The main advantage of binary systems is overcoming limitations of mono systems to allow tailored mixing of block copolymers with different physicochemical characteristics. These nano-sized systems may have potential as anticancer drug delivery systems with simple preparation method, high stability, and high loading capacity.
不同结构组成和性能的 Pluronics 可用于多种应用,包括药物传递系统。我们开发了一种由两种 Pluronics(L121/P123)组成的二元混合体系,用作纳米级药物传递载体。层状形成的 Pluronic L121(0.1wt%)与 Pluronic P123 结合,产生具有高稳定性(在 0.1 和 0.5wt% P123 的情况下)的纳米级分散体,这是由于 Pluronic P123 的存在和 Pluronic L121 的高增溶能力。二元体系为球形,直径小于 200nm,在水溶液中具有高热力学稳定性(至少 2 周)。二元体系的 CMC 位于每种聚合物 CMC 的中间。特别是,二元体系(0.1/0.1wt%)的增溶能力高于 P123 的单体系。二元体系的主要优势在于克服单体系的限制,允许具有不同物理化学特性的嵌段共聚物进行定制混合。这些纳米级系统可能具有作为抗癌药物传递系统的潜力,具有简单的制备方法、高稳定性和高载药能力。