REQUIMTE/LAQV, Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade do Porto, Rua do Campo Alegre, 4169-007 Porto, Portugal.
Biomolecules. 2022 Oct 21;12(10):1534. doi: 10.3390/biom12101534.
Biomimetic models are valuable platforms to improve our knowledge on the molecular mechanisms governing membrane-driven processes in (patho)physiological conditions, including membrane permeability, transport, and fusion. However, current membrane models are over simplistic and do not include the membrane's lipid remodelling in response to extracellular stimuli. Our study describes the synthesis of glycated dimyristoyl-phosphatidylethanolamine (DMPE-glyc), which was structurally characterised by mass spectrometry (ESI-MS) and quantified by NMR spectroscopy to be further incorporated in a complex phospholipid (PL) membrane model enriched in cholesterol (Chol) and (glyco)sphingolipids (GSL) designed to mimic epithelial membranes (PL/Chol/GSL) under hyperglycaemia conditions. Characterisation of synthesised DMPE-glyc adducts by tandem mass spectrometry (ESI-MS/MS) show that synthetic DMPE-glyc adducts correspond to Amadori products and quantification by H NMR spectroscopy show that the yield of glycation reaction was 8%. The biophysical characterisation of the epithelial membrane model shows that excess glucose alters the thermotropic behaviour and fluidity of epithelial membrane models likely to impact permeability of solutes. The epithelial membrane models developed to mimic normo- and hyperglycaemic scenarios are the basis to investigate (poly)phenol-lipid and drug-membrane interactions crucial in nutrition, pharmaceutics, structural biochemistry, and medicinal chemistry.
仿生模型是提高我们对(病理)生理条件下膜驱动过程的分子机制的认识的有价值的平台,包括膜通透性、转运和融合。然而,目前的膜模型过于简单化,不包括膜对细胞外刺激的脂质重塑。我们的研究描述了糖化二肉豆蔻酰磷脂酰乙醇胺(DMPE-glyc)的合成,其结构通过质谱(ESI-MS)进行了表征,并通过 NMR 光谱进行了定量,以进一步掺入富含胆固醇(Chol)和(糖)鞘脂(GSL)的复杂磷脂(PL)膜模型中,该模型设计用于模拟高血糖条件下的上皮膜(PL/Chol/GSL)。串联质谱(ESI-MS/MS)对合成的 DMPE-glyc 加合物的表征表明,合成的 DMPE-glyc 加合物对应于 Amadori 产物,并且通过 H NMR 光谱定量表明糖化反应的产率为 8%。上皮膜模型的生物物理特性表明,过量的葡萄糖改变了上皮膜模型的热致变性行为和流动性,这可能会影响溶质的通透性。开发的模拟正常和高血糖情况的上皮膜模型是研究多酚-脂质和药物-膜相互作用的基础,这些相互作用在营养、药剂学、结构生物化学和药物化学中至关重要。