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Shape effects of filaments versus spherical particles in flow and drug delivery

机译:长丝与球形颗粒在流动和药物输送中的形状效应

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摘要

Interaction of spherical particles with cells and within animals has been studied extensively, but the effects of shape have received little attention. Here we use highly stable, polymer micelle assemblies known as filomicelles to compare the transport and trafficking of flexible filaments with spheres of similar chemistry. In rodents, filomicelles persisted in the circulation up to one week after intravenous injection. This is about ten times longer than their spherical counterparts and is more persistent than any known synthetic nanoparticle. Under fluid flow conditions, spheres and short filomicelles are taken up by cells more readily than longer filaments because the latter are extended by the flow. Preliminary results further demonstrate that filomicelles can effectively deliver the anticancer drug paclitaxel and shrink human-derived tumours in mice. Although these findings show that long-circulating vehicles need not be nanospheres, they also lend insight into possible shape effects of natural filamentous viruses.
机译:球形颗粒与细胞以及动物体内的相互作用已经得到了广泛的研究,但是形状的影响却很少受到关注。在这里,我们使用高度稳定的聚合物胶束组件(称为丝状细胞)来比较具有相似化学性质的柔性丝的运输和运输。在啮齿动物中,丝虫细胞在静脉内注射后可持续至循环一周。这大约是其球形对应物的十倍,并且比任何已知的合成纳米粒子都更持久。在流体流动的条件下,球形和短纤丝细胞比长丝更容易被细胞吸收,因为长丝会因流动而伸长。初步结果进一步证明,丝状细胞可以有效地递送抗癌药紫杉醇并缩小小鼠中的人源性肿瘤。尽管这些发现表明长效运输工具不一定是纳米球,但它们也有助于洞察天然丝状病毒的可能形状效应。

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