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利用核磁共振技术解决实际配方底盘中的稳定性问题——在消费级口腔保健中的应用

Using Nuclear Magnetic Resonance to Troubleshoot a Stability Issue in a Real-World Formulation Chassis-Application to Consumer Oral Healthcare.

作者信息

Coban Tomris, Sykes Hannah, Kulkarni Shreedhar, Lucas Robert A, Robertson Cameron, Le Gresley Adam

机构信息

Life Sciences, Pharmacy and Chemistry, HSSCE Faculty, Kingston University, Kingston upon Thames KT1 2EE, UK.

Haleon PLC, Weybridge KT13 0DE, UK.

出版信息

Pharmaceutics. 2024 Feb 24;16(3):320. doi: 10.3390/pharmaceutics16030320.

Abstract

With direct application to current and future consumer healthcare products, this research sheds light on the importance of packaging and its potential effects on both Active Pharmaceutical Ingredient (API) delivery and stability. Industrially sourced, proprietary experimental formulations (PEFs), specifically oral cleansers, based on salicylic acid and hydrogen peroxide, discolored over time at different rates, depending on packaging type used. This discoloration stemmed from an interplay of two factors, involving both spontaneous formulation degradation and the interaction of both degradants and salicylic acid with the internal surface of the packaging. This manuscript reports on the investigation to uncover the origins of discoloration. To investigate this real-world, industrial pipeline problem, we exploited the high dimensionality and simple sample preparation uniquely afforded by NMR. Using a combination of 1D/2D NMR and diffusion-ordered NMR spectroscopy (DOSY) to leverage molecular mass estimations from, we not only quickly confirmed the identities of these degradants, but also assessed their formation as a function of temperature and pH, providing insight into the mechanisms underlying their formation. We were able to identify catechol as the main source of discoloration over a period of several weeks, being formed at the ppm level. Furthermore, we evaluated the formulation-container interaction, employing NMR, ICP-MS, and ATR-IR. Despite this comprehensive analysis, the root causes of discoloration could only tentatively be assigned to a surface Ti complex of salicylic acid and other hydroxy carboxylic acids. Through the understanding of formulation degradation pathways, we were able to support further toxicology assessment, vital to both consumer safety and the manufacturer. This work underscores the invaluable role of NMR in the analysis of intricate proprietary mixtures with a consumer-centric purpose. Our findings demonstrate that conventional analytical techniques falter in the face of such complexity, requiring extensive preparation and pre-analytical processing, highlighting the novelty and crucial relevance of NMR research to manufacturers and consumers. Such an analysis is of value in the pursuit of materials within the consumer-healthcare space, which meet the requirements for successful recycling or re-use.

摘要

通过直接应用于当前和未来的消费者保健产品,本研究揭示了包装的重要性及其对活性药物成分(API)递送和稳定性的潜在影响。工业来源的、专有的实验配方(PEF),特别是基于水杨酸和过氧化氢的口腔清洁剂,会随着时间的推移以不同的速率变色,这取决于所使用的包装类型。这种变色源于两个因素的相互作用,既包括配方的自发降解,也包括降解产物和水杨酸与包装内表面的相互作用。本手稿报告了关于揭示变色根源的调查。为了研究这个实际的工业生产流程问题,我们利用了核磁共振(NMR)独特提供的高维度和简单的样品制备方法。结合使用一维/二维核磁共振和扩散排序核磁共振光谱(DOSY)来利用分子量估计,我们不仅快速确认了这些降解产物的身份,还评估了它们随温度和pH值的形成情况,从而深入了解其形成的潜在机制。我们能够确定邻苯二酚是数周内变色的主要来源,其形成量处于ppm级别。此外,我们采用核磁共振、电感耦合等离子体质谱(ICP-MS)和衰减全反射红外光谱(ATR-IR)评估了配方与容器的相互作用。尽管进行了全面分析,但变色的根本原因只能暂时归因于水杨酸和其他羟基羧酸的表面钛络合物。通过了解配方降解途径,我们能够支持进一步的毒理学评估,这对消费者安全和制造商都至关重要。这项工作强调了核磁共振在以消费者为中心的复杂专有混合物分析中的重要作用。我们的研究结果表明,面对这种复杂性,传统分析技术会陷入困境,需要大量的样品制备和分析前处理,凸显了核磁共振研究对制造商和消费者的新颖性和关键相关性。这种分析对于在消费者保健领域寻找符合成功回收或再利用要求的材料具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23ed/10974615/3fcf30a693a8/pharmaceutics-16-00320-g001.jpg

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