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首页> 外文期刊>International Journal of Polymer Science >Controlled Release of Ropivacaine from Single-Armed (1-PCL) and Four-Armed PCL (4-PCL) Microspheres
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Controlled Release of Ropivacaine from Single-Armed (1-PCL) and Four-Armed PCL (4-PCL) Microspheres

机译:来自单臂(1-PCL)和四臂PCL(4-PCL)微球的Ropivacaine的控制释放

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Sustained release of anesthesia has shown great promise in the treatment of chronic pain in patients. In this research, we used neutralized ropivacaine as an anesthesia and poly(ε-caprolactone) (PCL) with different architectures to systematically study how these architectures affect the release of ropivacaine. After optimizing the parameters of the preparation of microspheres, ropivacaine-loaded 1-PCL microspheres and 4-PCL microspheres were obtained. Fourier Transform infrared spectra (FT-IR) and X-ray diffraction spectra (XRD) confirmed that ropivacaine was encapsulated within the microsphere rather than inserted on the surface of the microsphere. Ropivacaine was found to be buried deeper in the 1-PCL microsphere than in the 4-PCL microsphere. In vitro release assay revealed that small crystalline grains interfered with ropivacaine release in 4-PCL microspheres during the initial release period, but then two kinds of microspheres showed a similar ropivacaine release rate. We basically proved that the architecture of PCL has a negligible effect on ropivacaine release. Cell proliferation test revealed that the release of products from the microspheres resulted in insignificant toxicity towards mammalian cells.
机译:持续释放麻醉在治疗患者慢性疼痛时表现出了很大的希望。在这项研究中,我们使用中和的罗哌卡因作为一种麻醉和聚(ε-己内酯)(PCL),具有不同的架构,以系统地研究这些架构如何影响Ropivacaine的释放。优化微球的制备参数后,获得Ropivacaine负载的1-PCL微球和4-PCL微球。傅里叶变换红外光谱(FT-IR)和X射线衍射光谱(XRD)证实罗哌卡因包封在微球内,而不是插入微球的表面。发现Ropivacaine在1-PCL微球中埋入的比4-PCL微球更深。体外释放测定显示,在初始释放期间,在4-PCL微球中干扰了小晶粒在4-PCL微球中干扰,但随后两种微球显示出类似的罗比卡因释放速率。我们基本证明了PCL的结构对罗哌卡因释放的影响可忽略不计。细胞增殖试验显示,来自微球的产品释放导致对哺乳动物细胞的微不足道的毒性。

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