首页> 外文期刊>International Journal of Pharmaceutics >Novel self-associating poly(ethylene oxide)-b-poly(epsilon-caprolactone) based drug conjugates and nano-containers for paclitaxel delivery.
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Novel self-associating poly(ethylene oxide)-b-poly(epsilon-caprolactone) based drug conjugates and nano-containers for paclitaxel delivery.

机译:新型自缔合聚(环氧乙烷)-b-聚(ε-己内酯)的药物结合物和紫杉醇递送的纳米容器。

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Poly(ethylene oxide)-block-poly(epsilon-caprolactone) (PEO-b-PCL) copolymers bearing paclitaxel (PTX) side groups on PCL (PEO-b-P(CL-PTX) were synthesized and assembled to particles of 123 nm average diameter. At 20% (w/w) PTX to polymer conjugation, PEO-b-P(CL-PTX) demonstrated only 5.0 and 6.7% PTX release after 72 h incubation at pH 7.4 and 5.0, respectively, but revealed signs of chain cleavage at pH 5.0. The cytotoxicity of PEO-b-P(CL-PTX) against MDA-MB-435 cancer cells increased as incubation time was raised from 72 to 96 h (IC(50) of 680 and 475 ng/mL, respectively), but it was still significantly lower than the cytotoxicity of free PTX (IC(50) of 3.5 ng/mL at 72 h). In further studies, micelles of PEO-b-PCL and those bearing benzyl or PTX on PCL were used for physical encapsulation of PTX, where maximum level of loading was achieved by PEO-b-P(CL-PTX) (2.22%, w/w). The release of PTX from this carrier was rapid; however. The in vitro cytotoxicity of physically loaded PTX was independent of carrier and similar to that of free PTX. This was attributed to the low concentration of polymers which fell below their critical micellar concentration in the cytotoxicity study. The results point to the potential of chemically tailored PEO-b-PCL for optimum PTX solubilization and delivery.
机译:合成在PCL上带有紫杉醇(PTX)侧基的聚(环氧乙烷)-嵌段-聚(ε-己内酯)(PEO-b-PCL)共聚物(PEO-bP(CL-PTX)并组装成平均123 nm的颗粒在20%(w / w)PTX与聚合物结合的情况下,PEO-bP(CL-PTX)在pH 7.4和5.0孵育72小时后,PTX释放分别仅为5.0和6.7%,但在60°C时显示出链断裂的迹象。 pH 5.0:PEO-bP(CL-PTX)对MDA-MB-435癌细胞的细胞毒性随着孵育时间从72小时增加到96小时(IC(50)分别为680和475 ng / mL)而增加,但是它仍显着低于游离PTX的细胞毒性(72 h时IC(50)为3.5 ng / mL),在进一步的研究中,使用PEO-b-PCL胶束和在PCL上带有苄基或PTX的胶束进行物理包封。 PTX的最大载量是通过PEO-bP(CL-PTX)达到的(2.22%,w / w)。从该载体中释放的PTX很快;但是物理负载的PTX的体外细胞毒性是与载体无关,与自由PTX相似。这归因于在细胞毒性研究中低浓度的聚合物低于其临界胶束浓度。结果表明,化学定制的PEO-b-PCL具有实现最佳PTX增溶和递送的潜力。

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