...
首页> 外文期刊>Chemistry and Physics of Lipids >Differential scanning calorimetric evaluation of human meibomian gland secretions and model lipid mixtures: Transition temperatures and cooperativity of melting
【24h】

Differential scanning calorimetric evaluation of human meibomian gland secretions and model lipid mixtures: Transition temperatures and cooperativity of melting

机译:人睑板腺分泌物和模型脂质混合物的差示扫描量热评估:转变温度和融解的协同作用

获取原文
获取原文并翻译 | 示例
           

摘要

Meibomian gland secretions (or meibum) are produced by holocrine meibomian glands and are secreted in melted form onto the ocular surface of humans and animals to form a protective tear film lipid layer (TFLL). Its protective effect strongly depends on the composition and, hence, thermotropic behavior of meibum. The goal of our study was to quantitatively evaluate the melting characteristics of human meibum and model lipid mixtures using differential scanning microcalorimetry. Standard calorimetric parameters, e.g. changes in calorimetric enthalpy, transition temperatures T_m, cooperativity of melting, etc. were assessed. We found that thermotropic behavior of meibum resembled that of relatively simple mixtures of unsaturated wax esters, but showed a lower change in calorimetric enthalpy, which can be indicative of a looser packing of lipids in meibum compared with pure standards and their simple mixtures. The cooperativity of melting of meibomian lipids was comparable to that of an equimolar mixture of four oleic-acid based wax esters. We demonstrated that the phase transitions in meibum start at about 10-15 C and end at 35-36 C, with T_m being about 30 C. The highly asymmetrical shape of the thermotropic peak of meibum is important for the physiology and biophysics of TFLL.
机译:睑板腺分泌物(或睑板腺)由全碱睑板腺产生,并以熔融形式分泌到人和动物的眼表上,形成保护性泪膜脂质层(TFLL)。它的保护作用在很大程度上取决于组成,并因此取决于睑板的热致行为。我们研究的目的是使用差示扫描量热法定量评估人睑板和模型脂质混合物的熔化特性。标准量热参数,例如评估了比热焓,转变温度T_m,熔化的协同性等的变化。我们发现,睑板的热致行为类似于相对简单的不饱和蜡酯混合物的热致行为,但是在热焓上却显示出较低的变化,这表明与纯标准品及其简单混合物相比,睑板中脂质的堆积较松散。睑板脂质熔化的协同性与四种基于油酸的蜡酯的等摩尔混合物的协同性相当。我们证明,睑板的相变始于约10-15 C,终止于35-36 C,T_m约为30C。睑板的热致峰的高度不对称形状对于TFLL的生理和生物物理学很重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号