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Thermodynamics of Water-Solid Interactions in Crystalline and Amorphous Pharmaceutical Materials

机译:晶体和非晶态药物材料中水固相互作用的热力学

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摘要

Pharmaceutical materials, crystalline and amorphous, sorb water from the atmosphere, which affects critical factors in the development of drugs, such as the selection of drug substance crystal form, compatibility with excipients, dosage form selection, packaging, and product shelf-life. It is common practice to quantify the amount of water that a material sorbs at a given relative humidity ( RH), but the results alone provide minimal to no physicochemical insight into water-solid interactions, without which pharmaceutical scientists cannot develop an understanding of their materials, so as to anticipate and circumvent potential problems. This research was conducted to advance the science of pharmaceutical materials by examining the thermodynamics of solids with sorbed water. The compounds studied include nonhygroscopic drugs, a channel hydrate drug, a stoichiometric hydrate excipient, and an amorphous excipient. The water sorption isotherms were measured over a range of temperature to extract the partial molar enthalpy and entropy of sorbed water as well as the same quantities for some of the solids. It was found that water-solid interactions spanned a range of energy and entropy as a function of RH, which was unique to the solid, and which could be valuable in identifying batch-to-batch differences and effects of processing in material performance. (C) 2013 Wiley Periodicals, Inc. and the American Pharmacists Association
机译:结晶的和无定形的药物材料从大气中吸收水,这会影响药物开发中的关键因素,例如药物晶型的选择,与赋形剂的相容性,剂型的选择,包装和产品的保质期。通常的做法是量化材料在给定的相对湿度(RH)下吸收的水量,但是仅凭结果无法提供对水-固体相互作用的物理化学了解,甚至无法提供,因此,药物科学家无法对材料进行深入的了解。 ,以预测和避免潜在的问题。通过检查固体与吸附水的热力学,进行了这项研究以提高药物材料的科学性。研究的化合物包括非吸湿性药物,通道水合药物,化学计量水合赋形剂和无定形赋形剂。在一定温度范围内测量吸水等温线,以提取所吸附水的部分摩尔焓和熵,以及对某些固体的等摩尔焓和熵。已发现,水与固体之间的相互作用涵盖了相对于RH的能量和熵的范围,这是固体所独有的,对于识别批次之间的差异以及加工对材料性能的影响可能是有价值的。 (C)2013 Wiley Periodicals,Inc.和美国药剂师协会

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