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首页> 外文期刊>Macromolecular materials and engineering >Controlled‐Release LCST‐Type Nonwoven Depots via Squeezing‐Out Thermal Response
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Controlled‐Release LCST‐Type Nonwoven Depots via Squeezing‐Out Thermal Response

机译:控制量释放LCST非织造仓库通过类型压缩量热响应

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摘要

Abstract A novel thermoresponsive fibrous matrix as controlled release depots upon heating is described. The matrix is composed of electrospun fibers of a lower critical solution temperature (LCST)‐type poly(methacrylamide‐ co ‐ N‐tert ‐butylacrylamide‐ co ‐4‐acryloylbenzophenone) P(MAAm‐NtbAAm‐ABP) copolymer. Spherical particles, simulating depots of drugs, are embedded with liquid‐filled inter‐fiber spaces (pores). On heating above 25?°C up to 45?°C, the nanofibers undergo a contraction of about 40%. This solid deformation is attributed to the LCST transition. Fibrous matrix contraction drives expulsion of depots and water solution stored in the pores of the matrix, as evidenced by in situ observations. The liquid flow in the deformable porous medium demonstrates liquid drainage from the matrix as a function of temperature. Experimental results reveal that 70% of the particles are expelled from the matrix upon heating to 45?°C from room temperature. The presented particles encapsulation and release model system using LCST‐type fibrous matrix can be used as a transdermal patch.
机译:小说thermoresponsive纤维矩阵控制加热时释放仓库。实际上电纺纤维的组成的矩阵低临界溶解温度(LCST)类型共聚物。与液体药物,嵌入量国际米兰的纤维空间(孔)。25 ?约40%的收缩。是归因于LCST过渡。矩阵驱动驱逐仓库和收缩水溶液中存储矩阵的毛孔,原位观察就证明了这一点。在可变形多孔介质流所示液态排水的矩阵的函数温度。的粒子被驱逐出矩阵在加热到45 ?提出了颗粒封装和释放模型系统使用LCST检测类型纤维矩阵被用作皮肤药贴。

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