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Near-Infrared Analysis of Hydrogen-Bonding in Glass- and Rubber-State Amorphous Saccharide Solids

机译:玻璃态和橡胶态非晶糖固体中氢键合的近红外分析

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摘要

Near-infrared (NIR) spectroscopic analysis of noncrystalline polyols and saccharides (e.g., glycerol, sorbitol, maltitol, glucose, sucrose, maltose) was performed at different temperatures (30–80°C) to elucidate the effect of glass transition on molecular interaction. Transmission NIR spectra (4,000–12,000 cm?1) of the liquids and cooled-melt amorphous solids showed broad absorption bands that indicate random configuration of molecules. Heating of the samples decreased an intermolecular hydrogen-bonding OH vibration band intensity (6,200–6,500 cm?1) with a concomitant increase in a free and intramolecular hydrogen-bonding OH group band (6,600–7,100 cm?1). Large reduction of the intermolecular hydrogen-bonding band intensity at temperatures above the glass transition (T g) of the individual solids should explain the higher molecular mobility and lower viscosity in the rubber state. Mixing of the polyols with a high T g saccharide (maltose) or an inorganic salt (sodium tetraborate) shifted both the glass transition and the inflection point of the hydrogen-bonding band intensity to higher temperatures. The implications of these results for pharmaceutical formulation design and process monitoring (PAT) are discussed.
机译:在不同温度(30–80°C)下对非晶态多元醇和糖类(例如甘油,山梨糖醇,麦芽糖醇,葡萄糖,蔗糖,麦芽糖)进行了近红外(NIR)光谱分析,以阐明玻璃化转变对分子相互作用的影响。液体和冷却熔融的无定形固体的透射NIR光谱(4,000-12,000 cm?1 )显示宽的吸收带,表明分子是随机构型的。样品的加热降低了分子间氢键OH的振动带强度(6,200–6,500 cm?1 ),同时伴随着自由和分子内氢键OH基带的增加(6,600–7,100 cm?1 )。 sup>)。在高于单个固体的玻璃化转变温度(T g )的温度下,分子间氢键能带强度的大幅降低应解释了在橡胶态下较高的分子迁移率和较低的粘度。多元醇与高T g糖(麦芽糖)或无机盐(四硼酸钠)的混合将玻璃化转变和氢键能带强度的拐点转移到更高的温度。讨论了这些结果对药物制剂设计和过程监控(PAT)的影响。

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  • 来源
    《AAPS PharmSciTech》 |2009年第2期|524-529|共6页
  • 作者单位

    National Institute of Health Sciences Kamiyoga 1-18-1 Setagaya Tokyo 158-8501 Japan;

    National Institute of Health Sciences Kamiyoga 1-18-1 Setagaya Tokyo 158-8501 Japan;

    National Institute of Health Sciences Kamiyoga 1-18-1 Setagaya Tokyo 158-8501 Japan;

    National Institute of Health Sciences Kamiyoga 1-18-1 Setagaya Tokyo 158-8501 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    amorphous; glass transition; hydrogen-bonding; NIR; PAT;

    机译:非晶态;玻璃化转变;氢键;近红外;PAT;

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