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Evaluation of Biodegradable PVA-Based 3D Printed Carriers during Dissolution

机译:基于可生物降解的PVA的3D印刷载流子在溶解期间评价

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摘要

The presence of additive manufacturing, especially 3D printing, has the potential to revolutionize pharmaceutical manufacturing owing to the distinctive capabilities of personalized pharmaceutical manufacturing. This study’s aim was to examine the behavior of commonly used polyvinyl alcohol (PVA) under in vitro dissolution conditions. Polylactic acid (PLA) was also used as a comparator. The carriers were designed and fabricated using computer-aided design (CAD). After printing the containers, the behavior of PVA under in vitro simulated biorelevant conditions was monitored by gravimetry and dynamic light scattering (DLS) methods. The results show that in all the dissolution media PVA carriers were dissolved; the particle size was under 300 nm. However, the dissolution rate was different in various dissolution media. In addition to studying the PVA, as drug delivery carriers, the kinetics of drug release were investigated. These dissolution test results accompanied with UV spectrophotometry tracking indirectly determine the possibilities for modifying the output of quality by computer design.
机译:由于个性化药物制造的独特能力,存在添加剂制造,尤其是3D印刷的存在潜力旨在彻底改变药物制造。本研究的目的是在体外溶解条件下检查常用的聚乙烯醇(PVA)的行为。聚乳酸(PLA)也用作比较剂。使用计算机辅助设计(CAD)设计和制造载体。在印刷容器后,通过重量测定和动态光散射(DLS)方法监测体外模拟生物拉伸条件下PVA的行为。结果表明,在所有溶解培养基PVA载体中溶解;粒度低于300nm。然而,各种溶解介质中溶出速率不同。除了研究PVA之外,作为药物递送载体,还研究了药物释放的动力学。这些溶出结果伴随着UV分光光度法跟踪间接确定通过计算机设计改变质量输出的可能性。

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