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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A systemic approach toward optimization of the hot embossing of poly-L-lactic acid for biomedical applications.
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A systemic approach toward optimization of the hot embossing of poly-L-lactic acid for biomedical applications.

机译:一种针对生物医学应用优化聚L-乳酸热压花的系统方法。

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摘要

Poly L-lactic acid (PLLA) is a popular biodegradable polymer that is used extensively for many biological applications. A limitation of using PLLA is the difficulty in forming the polymer in complex shapes and forms for applications that include drug delivery and tissue engineering. This study focuses on PLLA replication using hot embossing technology. In this study hot embossing process parameters were identified, replication quality was examined, and crystallinity of PLLA was analyzed. The replication quality of micropillars and microreservoirs was examined using optical microscopy and scanning electron microscopy, with good replication obtained using a hot embossing pressure of 18 MPa at a temperature of 85 degrees C and holding time of 120 s. The material properties were examined using differential scanning calorimetry and infrared spectroscopy that indicated no substantial crystallinity or structural changes during hot embossing of PLLA. The study presented in this article concludes with the assessment that hot embossing technology could be used as a viable micromanufacturing process for the fabrication of inexpensive PLLA-based microdevices, with possible applications to controlled drug delivery, growth factors pathways, or other therapeutic applications.
机译:聚L-乳酸(PLLA)是一种流行的生物可降解聚合物,已广泛用于许多生物学应用。使用PLLA的局限性在于难以形成复杂形状和形式的聚合物以用于包括药物递送和组织工程的应用。这项研究的重点是使用热压印技术的PLLA复制。在这项研究中,确定了热压花工艺参数,检查了复制质量,并分析了PLLA的结晶度。使用光学显微镜和扫描电子显微镜检查微柱和微储层的复制质量,在温度为85℃,保持时间为120 s的18 MPa热压花压力下,复制质量良好。使用差示扫描量热法和红外光谱法检查了材料性能,表明在PLLA的热压花过程中没有明显的结晶度或结构变化。本文介绍的研究得出的评估结论是,热压花技术可以用作制造廉价的基于PLLA的微型设备的可行的微制造工艺,并可能应用于受控药物输送,生长因子途径或其他治疗应用。

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