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首页> 外文期刊>Drug delivery and translational research >Rapid Reconstitution Packages (RRPs) implemented by integration of computational fluid dynamics (CFD) and 3D printed microfluidics
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Rapid Reconstitution Packages (RRPs) implemented by integration of computational fluid dynamics (CFD) and 3D printed microfluidics

机译:通过整合计算流体力学(CFD)和3D打印微流体实现的快速重建软件包(RRP)

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摘要

Rapid Reconstitution Packages (RRPs) are portable platforms that integrate microfluidics for rapid reconstitution of lyophilized drugs. Rapid reconstitution of lyophilized drugs using standard vials and syringes is an error-prone process. RRPs were designed using computational fluid dynamics (CFD) techniques to optimize fluidic structures for rapid mixing and integrating physical properties of targeted drugs and diluents. Devices were manufactured using stereo lithography 3D printing for micrometer structural precision and rapid prototyping. Tissue plasminogen activator (tPA) was selected as the initial model drug to test the RRPs as it is unstable in solution. tPA is a thrombolytic drug, stored in lyophilized form, required in emergency settings for which rapid reconstitution is of critical importance. RRP performance and drug stability were evaluated by high-performance liquid chromatography (HPLC) to characterize release kinetics. In addition, enzyme-linked immunosorbent assays (ELISAs) were performed to test for drug activity after the RRPs were exposed to various controlled temperature conditions. Experimental results showed that RRPs provided effective reconstitution of tPA that strongly correlated with CFD results. Simulation and experimental results show that release kinetics can be adjusted by tuning the device structural dimensions and diluent drug physical parameters. The design of RRPs can be tailored for a number of applications by taking into account physical parameters of the active pharmaceutical ingredients (APIs), excipients, and diluents. RRPs are portable platforms that can be utilized for reconstitution of emergency drugs in time-critical therapies.
机译:快速重建软件包(RRP)是便携式平台,集成了微流控技术,可快速重建冻干药物。使用标准小瓶和注射器快速重建冻干药物是容易出错的过程。使用计算流体动力学(CFD)技术设计RRP,以优化流体结构,以快速混合和整合目标药物和稀释剂的物理特性。使用立体光刻3D打印技术制造的设备具有微米级的结构精度和快速的原型制作能力。选择组织纤溶酶原激活剂(tPA)作为初始模型药物来测试RRP,因为它在溶液中不稳定。 tPA是一种溶栓药物,以冻干形式存储,在紧急情况下急需对其进行紧急重建至关重要。 RRP性能和药物稳定性通过高效液相色谱(HPLC)进行评估,以表征释放动力学。另外,在RRP暴露于各种受控温度条件后,进行酶联免疫吸附测定(ELISA)以测试药物活性。实验结果表明,RRP提供了有效的tPA重构,与CFD结果密切相关。仿真和实验结果表明,可以通过调节装置的结构尺寸和稀释剂的物理参数来调节释放动力学。通过考虑活性药物成分(API),赋形剂和稀释剂的物理参数,可以针对多种应用量身定制RRP的设计。 RRP是便携式平台,可用于在时间紧迫的治疗中重建紧急药物。

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