Karavassili Fotini, Valmas Alexandros, Fili Stavroula, Georgiou Christos D, Margiolaki Irene
Section of Genetics, Cell Biology and Development, Department of Biology, University of Patras, GR-26500 Patras, Greece.
Biomolecules. 2017 Aug 22;7(3):63. doi: 10.3390/biom7030063.
Human insulin (HI) is a well-characterized natural hormone which regulates glycose levels into the blood-stream and is widely used for diabetes treatment. Numerous studies have manifested that despite significant efforts devoted to structural characterization of this molecule and its complexes with organic compounds (ligands), there is still a rich diagram of phase transitions and novel crystalline forms to be discovered. Towards the improvement of drug delivery, identification of new insulin polymorphs from polycrystalline samples, simulating the commercially available drugs, is feasible today via macromolecular X-ray powder diffraction (XRPD). This approach has been developed, and is considered as a respectable method, which can be employed in biosciences for various purposes, such as observing phase transitions and characterizing bulk pharmaceuticals. An overview of the structural studies on human insulin complexes performed over the past decade employing both synchrotron and laboratory sources for XRPD measurements, is reported herein. This review aims to assemble all of the recent advances in the diabetes treatment field in terms of drug formulation, verifying in parallel the efficiency and applicability of protein XRPD for quick and accurate preliminary structural characterization in the large scale.
人胰岛素(HI)是一种特性明确的天然激素,它可调节血液中的葡萄糖水平,被广泛用于糖尿病治疗。大量研究表明,尽管人们为该分子及其与有机化合物(配体)的复合物的结构表征付出了巨大努力,但仍有丰富的相变图和新型晶体形式有待发现。为了改进药物递送,如今通过大分子X射线粉末衍射(XRPD)从多晶样品中鉴定新的胰岛素多晶型物(模拟市售药物)是可行的。这种方法已经得到发展,并且被认为是一种可靠的方法,可用于生物科学的各种目的,例如观察相变和表征原料药。本文报道了过去十年中利用同步加速器和实验室光源进行XRPD测量对人胰岛素复合物进行的结构研究综述。本综述旨在汇集糖尿病治疗领域在药物制剂方面的所有最新进展,同时验证蛋白质XRPD在大规模快速准确初步结构表征方面的效率和适用性。