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首页> 外文期刊>Polymers for advanced technologies >Poly(2-oxazoline) block copolymer based formulations of taxanes: effect of copolymer and drug structure, concentration, and environmental factors
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Poly(2-oxazoline) block copolymer based formulations of taxanes: effect of copolymer and drug structure, concentration, and environmental factors

机译:紫杉烷类基于聚(2-恶唑啉)嵌段共聚物的配方:共聚物和药物结构,浓度和环境因素的影响

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Many current nanoformulations of taxanes are hampered by low drug-loading capacity and unfavorable physicochemical characteristics such as large particles size (>100nm) and/or low size uniformity. We have previously reported on taxane nanoformulations, based on poly(2-oxazoline) polymeric micelles that display an extremely high taxane loading capacity (>40%w/w) and particle size below 50nm. Previous work was based on a triblock copolymer having poly(2-butyl-2-oxazoline) as the hydrophobic block and poly(2-methyl-2-oxazoline) as the hydrophilic blocks. This paper explores the effects of various formulation parameters such as (i) the drug and polymer structure; (ii) the drug and polymer concentration; and (iii) the composition of aqueous medium on the solubilization behavior and physicochemical properties of the resulting formulations. In addition, in vitro anticancer activity is reported. Despite numerous variations of the hydrophobicity, polarity or addition of aromatic residues in the hydrophobic core, the triblock copolymer with the poly(2-butyl-2-oxazoline) block remains the polymer with the highest drug-loading capacity. Notably, the formulation was easily scalable with uncompromised encapsulation efficacy, loading capacity, and physicochemical properties. The taxane formulations were stable upon storage (water, saline, and dextrose solution) for 1-2weeks and could be lyophilized and re-dispersed without compromising the formulation properties. Furthermore, the micelles remained stable upon dilution. The drug-loaded poly(2-oxazoline) micelles showed high toxicity against several cancer cell lines. Taken together, these results underscore the potential of poly(2-oxazoline) micelles as formulation excipient for taxanes and possibly other hydrophobic drugs. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:低载药量和不利的理化特性(例如大粒径(> 100nm)和/或低粒径均匀性)阻碍了紫杉烷的许多当前纳米制剂。我们以前曾报道过基于聚(2-恶唑啉)聚合物胶束的紫杉烷纳米制剂,该胶束显示出极高的紫杉烷负载量(> 40%w / w),粒径小于50nm。先前的工作是基于具有聚(2-丁基-2-恶唑啉)作为疏水性嵌段和聚(2-甲基-2-恶唑啉)作为亲水性嵌段的三嵌段共聚物。本文探讨了各种配方参数的影响,例如:(i)药物和聚合物结构; (ii)药物和聚合物的浓度; (iii)水性介质的组成对所得制剂的增溶行为和理化性质的影响。另外,据报道有体外抗癌活性。尽管疏水性,疏水性或极性或芳香族残基在芳香核中有许多变化,但是具有聚(2-丁基-2-恶唑啉)嵌段的三嵌段共聚物仍然是具有最高载药量的聚合物。值得注意的是,该制剂易于扩展,具有不折不扣的封装功效,负载量和理化性质。紫杉烷制剂在储存(水,盐水和右旋糖溶液)1-2周后是稳定的,并且可以冻干并重新分散而不损害制剂性能。此外,胶束在稀释后保持稳定。载药的聚(2-恶唑啉)胶束对几种癌细胞具有高毒性。综上所述,这些结果强调了聚(2-恶唑啉)胶束作为紫杉烷类和其他疏水性药物制剂的赋形剂的潜力。版权所有(c)2015 John Wiley&Sons,Ltd.

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