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Mechanistic Approach to Stability Studies as a Tool for the Optimization and Development of New Products Based on L. rhamnosus Lcr35® in Compliance with Current Regulations

机译:机械稳定性研究方法作为鼠李糖乳杆菌Lcr35®的新产品优化和开发的工具符合现行法规

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摘要

Probiotics are of great current interest in the pharmaceutical industry because of their multiple effects on human health. To beneficially affect the host, an adequate dosage of the probiotic bacteria in the product must be guaranteed from the time of manufacturing to expiration date. Stability test guidelines as laid down by the ICH-Q1A stipulate a minimum testing period of 12 months. The challenge for producers is to reduce this time. In this paper, a mechanistic approach using the Arrhenius model is proposed to predict stability. Applied for the first time to laboratory and industrial probiotic powders, the model was able to provide a reliable mathematical representation of the effects of temperature on bacterial death (R2>0.9). The destruction rate (k) was determined according to the manufacturing process, strain and storage conditions. The marketed product demonstrated a better stability (k = 0.08 months−1) than the laboratory sample (k = 0.80 months−1). With industrial batches, k obtained at 6 months of studies was comparable to that obtained at 12 months, evidence of the model’s robustness. In addition, predicted values at 12 months were greatly similar (±30%) to those obtained by real-time assessing the model’s reliability. This method could be an interesting approach to predict the probiotic stability and could reduce to 6 months the length of stability studies as against 12 (ICH guideline) or 24 months (expiration date).
机译:益生菌由于其对人体健康的多重影响而在制药行业引起了广泛的关注。为了有益地影响宿主,从生产到有效期,必须保证产品中足够的益生菌剂量。 ICH-Q1A制定的稳定性测试指南规定了至少12个月的测试时间。生产者面临的挑战是减少这一时间。本文提出了一种使用Arrhenius模型的机械方法来预测稳定性。该模型首次应用于实验室和工业用益生菌粉中,能够提供温度对细菌死亡的影响的可靠数学表示(R 2 -1 )比实验室样品(k = 0.80个月 -1 )更好。对于工业批次,在研究6个月时获得的k与在12个月时获得的k相当,这证明了该模型的鲁棒性。此外,在12个月时的预测值与通过实时评估模型的可靠性获得的预测值非常相似(±30%)。该方法可能是预测益生菌稳定性的一种有趣方法,并且可以将稳定性研究的时间减少到6个月,而不是12个月(ICH指南)或24个月(失效日期)。

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