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首页> 外文期刊>International Journal of Environmental Research and Public Health >Computer Optimization of Biodegradable Nanoparticles Fabricated by Dispersion Polymerization
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Computer Optimization of Biodegradable Nanoparticles Fabricated by Dispersion Polymerization

机译:分散聚合制备可生物降解纳米粒子的计算机优化

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Quality by design (QbD) in the pharmaceutical industry involves designing and developing drug formulations and manufacturing processes which ensure predefined drug product specifications. QbD helps to understand how process and formulation variables affect product characteristics and subsequent optimization of these variables vis-à-vis final specifications. Statistical design of experiments (DoE) identifies important parameters in a pharmaceutical dosage form design followed by optimizing the parameters with respect to certain specifications. DoE establishes in mathematical form the relationships between critical process parameters together with critical material attributes and critical quality attributes. We focused on the fabrication of biodegradable nanoparticles by dispersion polymerization. Aided by a statistical software, d-optimal mixture design was used to vary the components (crosslinker, initiator, stabilizer, and macromonomers) to obtain twenty nanoparticle formulations (PLLA-based nanoparticles) and thirty formulations (poly-?-caprolactone-based nanoparticles). Scheffe polynomial models were generated to predict particle size (nm), zeta potential, and yield (%) as functions of the composition of the formulations. Simultaneous optimizations were carried out on the response variables. Solutions were returned from simultaneous optimization of the response variables for component combinations to (1) minimize nanoparticle size; (2) maximize the surface negative zeta potential; and (3) maximize percent yield to make the nanoparticle fabrication an economic proposition.
机译:制药行业的设计质量(QbD)涉及设计和开发可确保预定义药品规格的药品配方和制造工艺。 QbD有助于了解工艺和配方变量如何影响产品特性,以及如何针对最终规格优化这些变量。实验的统计设计(DoE)确定了药物剂型设计中的重要参数,然后针对某些规格对参数进行了优化。美国能源部以数学形式建立了关键工艺参数与关键材料属性和关键质量属性之间的关系。我们专注于通过分散聚合制备可生物降解的纳米颗粒。在统计软件的辅助下,使用d-最佳混合物设计来改变组分(交联剂,引发剂,稳定剂和大分子单体),以获得二十种纳米颗粒制剂(基于PLLA的纳米颗粒)和三十种制剂(基于聚-ε-己内酯的纳米颗粒) )。生成了谢菲多项式模型,以预测粒径(nm),ζ电位和产率(%)随配方组成的变化。同时对响应变量进行了优化。从同时优化组分组合的响应变量中返回解决方案,以(1)最小化纳米颗粒尺寸; (2)最大化表面负ζ电势; (3)最大化产率百分比以使纳米颗粒制造成为经济命题。

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