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Biotherapeutic Formulation Factors Affecting Metal Leachables from Stainless Steel Studied by Design of Experiments

机译:通过实验设计研究影响不锈钢金属浸出物的生物治疗配方因素

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摘要

Trace amounts of metals are inevitably present in biotherapeutic products. They can arise from various sources. The impact of common formulation factors such as protein concentration, antioxidant, metal chelator concentration and type, surfactant, pH, and contact time with stainless steel on metal leachables was investigated by a design of experiments approach. Three major metal leachables, iron, chromium, and nickel were monitored by inductively coupled plasma-mass spectrometry. It was observed that among all the tested factors, contact time, metal chelator concentration, and protein concentration were statistically significant factors with higher temperature resulting in higher levels of leached metals. Within a pH range of 5.5–6.5, solution pH played a minor role for chromium leaching at 25°C. No statistically significant difference was observed due to type of chelator, presence of antioxidant, or surfactant. In order to optimize a biotherapeutic formulation to achieve a target drug product shelf life with acceptable quality, each formulation component must be evaluated for its impact.
机译:生物治疗产品中不可避免地存在痕量金属。它们可能来自各种来源。通过实验方法的设计,研究了常见的配方因素,例如蛋白质浓度,抗氧化剂,金属螯合剂浓度和类型,表面活性剂,pH值以及与不锈钢的接触时间对金属浸出液的影响。通过电感耦合等离子体质谱法监测了三种主要的金属可浸出物铁,铬和镍。据观察,在所有测试因素中,接触时间,金属螯合剂浓度和蛋白质浓度是统计学上显着的因素,温度越高,导致沥滤金属的含量越高。在5.5-6.5的pH范围内,溶液的pH在25°C时对铬的浸出作用较小。由于螯合剂类型,抗氧化剂或表面活性剂的存在,未观察到统计学上的显着差异。为了优化生物治疗制剂以达到可接受质量的目标药物产品保质期,必须评估每种制剂成分的影响。

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