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首页> 外文期刊>Journal of pharmaceutical sciences. >The development of heated tip force-distance measurements as a novel approach to site-specific characterization of pharmaceutical materials.
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The development of heated tip force-distance measurements as a novel approach to site-specific characterization of pharmaceutical materials.

机译:加热尖端力-距离测量技术的发展是一种针对药物材料进行特定位置表征的新颖方法。

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The study describes the development of a novel approach to surface analysis whereby thermal probes are used to perform scanning probe microscopy pull-off force measurements as a function of tip rather than sample temperature. The initial impetus for the investigation was the study of a poorly understood phenomenon associated with microthermal analysis (MTA) whereby the thermal probe is pulled into the surface of a sample following temperature-induced softening. Localized thermomechanical analysis experiments were performed on a range of pharmaceutical materials using TA Instruments 2990 Microthermal Analyzer equipped with a TM Microscopes Explorer atomic force microscope. The system was then interfaced with a second instrument to allow simultaneous probe temperature control and pull-off force measurement. It was found that the pull-in effect is due to the adhesion of the probe to the material at elevated (softening) temperatures. However, it was also noted that for paracetamol tablets the pull-off force increased at temperatures well below the softening associated with melting. This behavior was ascribed to surface polymorphic changes caused by the compression process. The temperature-controlled pull-off force method therefore represents a novel and potentially widely applicable means of detecting surface changes that are not easily observed using isothermal pull-off force measurements or indeed standard MTA studies. (c) 2007 Wiley-Liss, Inc. and the American Pharmacists Association J Pharm Sci 97:2768-2779, 2008.
机译:这项研究描述了一种新的表面分析方法的发展,该方法使用热探针执行扫描探针显微镜拉拔力的测量,该测量是针尖而不是样品温度的函数。研究的最初动力是研究与微热分析(MTA)相关的不为人知的现象,该现象是在温度诱导的软化之后将热探针拉入样品的表面。使用配备有TM Microscopes Explorer原子力显微镜的TA Instruments 2990微热分析仪,对多种药物材料进行了局部热力学分析实验。然后将该系统与第二台仪器连接,以允许同时进行探头温度控制和拉力测量。已经发现,拉入效应是由于探针在高温(软化)下与材料的粘附。但是,还应注意,对于扑热息痛片,其拉力在远低于与熔化相关的软化温度下增加。此行为归因于压缩过程导致的表面多态性变化。因此,温度控制的拉拔力方法代表了一种新颖的方法,可能会广泛应用,用于检测表面变化,这些方法使用等温拉拔力测量或实际上是标准MTA研究不容易观察到。 (c)2007 Wiley-Liss,Inc.和美国药剂师协会J Pharm Sci 97:2768-2779,2008。

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