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首页> 外文期刊>Journal of Analytical Methods in Chemistry >Automated System for Kinetic Analysis of Particle Size Distributions for Pharmaceutically Relevant Systems
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Automated System for Kinetic Analysis of Particle Size Distributions for Pharmaceutically Relevant Systems

机译:制药相关系统粒度分布动力学分析的自动化系统

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摘要

Detailing the kinetics of particle formation for pharmaceutically relevant solutions is challenging, especially when considering the combination of formulations, containers, and timescales of clinical importance. This paper describes a method for using commercial software Automate with a stream-selector valve capable of sampling container solutions from within an environmental chamber. The tool was built to monitor changes in particle size distributions via instrumental particle counters but can be adapted to other solution-based sensors. The tool and methodology were demonstrated to be highly effective for measuring dynamic changes in emulsion globule distributions as a function of storage and mixing conditions important for parenteral nutrition. Higher levels of agitation induced the fastest growth of large globules (>= 5 mu m) while the gentler conditions actually showed a decrease in the number of these large globules. The same methodology recorded calcium phosphate precipitation kinetics as a function of [Ca2+] and pH. This automated system is readily adaptable to a wide range of pharmaceutically relevant systems where the particle size is expected to vary with time. This instrumentation can dramatically reduce the time and resources needed to probe complex formulation issues while providing new insights for monitoring the kinetics as a function of key variables.
机译:详细说明与药物相关的溶液的颗粒形成动力学是一项挑战,特别是在考虑到具有临床重要性的制剂,容器和时标的组合时。本文介绍了一种使用带有流选择阀的自动化软件Automate的方法,该选流阀能够从环境室内采样容器溶液。该工具旨在通过仪器式粒子计数器监控粒径分布的变化,但可适用于其他基于溶液的传感器。事实证明,该工具和方法对于测量乳剂小球分布的动态变化(作为肠外营养重要的储存和混合条件的函数)非常有效。较高的搅拌速度会导致大球团(> = 5μm)的最快生长,而温和的条件实际上表明这些大球团的数量减少了。相同的方法记录了磷酸钙沉淀动力学与[Ca2 +]和pH的关系。该自动化系统很容易适用于预期粒径随时间变化的各种药学相关系统。这种仪器可以显着减少探测复杂配方问题所需的时间和资源,同时提供新的见解来监测作为关键变量的动力学。

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