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Application of Fiber-Optic Attenuated Total Reflection-FT-IR Methods for In Situ Characterization of Protein Delivery Systems in Real Time

机译:光纤衰减全反射-FT-IR方法在蛋白质递送系统实时实时表征中的应用

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摘要

A fiber-optic coupled attenuated total reflection (ATR)-FT-IR spectroscopy technique was applied to the study of two different therapeutic delivery systems, acid degradable hydrogels and nanoparticles. Real time exponential release of a model protein, human serum albumin (HSA), was observed from two different polymeric hydrogels formulated with a pH sensitive cross-linker. Spectroscopic examination of nanoparticles formulated with an acid degradable polymer shell and encapsulated HSA exhibited vibrational signatures characteristic of both particle and payload when exposed to lowered pH conditions, demonstrating the ability of this methodology to simultaneously measure phenomena arising from a system with a mixture of components. In addition, thorough characterization of these pH sensitive delivery vehicles without encapsulated protein was also accomplished in order to separate the effects of the payload during degradation. When in situ, real time detection in combination with the ability to specifically identify different components in a mixture without involved sample preparation and minimal sample disturbance is provided, the versatility and suitability of this type of experiment for research in the pharmaceutical field is demonstrated.
机译:光纤耦合衰减全反射(ATR)-FT-IR光谱技术被用于研究两种不同的治疗性递送系统,酸可降解水凝胶和纳米颗粒。从用pH敏感的交联剂配制的两种不同的聚合物水凝胶中观察到了模型蛋白即人血清白蛋白(HSA)的实时指数释放。用酸可降解的聚合物外壳和封装的HSA配制的纳米颗粒的光谱检查显示,当暴露于较低的pH条件时,颗粒和有效载荷均具有振动特征,这表明该方法能够同时测量由混合组分的系统引起的现象。此外,还完成了对这些pH敏感的,没有包封蛋白的递送载体的全面表征,以分离降解过程中有效负载的影响。当就地使用时,结合了实时检测功能和能够在不涉及样品制备的情况下特异性识别混合物中不同成分的能力,并提供了最小的样品干扰,证明了这种类型的实验在制药领域的多功能性和适用性。

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