Angelova Angelina, Angelov Borislav, Drechsler Markus, Bizien Thomas, Gorshkova Yulia E, Deng Yuru
Institut Galien Paris-Saclay UMR8612, Université Paris-Saclay, CNRS, Châtenay-Malabry, France.
Institute of Physics, ELI Beamlines, Academy of Sciences of the Czech Republic, Prague, Czech.
Front Cell Dev Biol. 2021 Feb 11;9:617984. doi: 10.3389/fcell.2021.617984. eCollection 2021.
Structural properties of plasmenyl-glycerophospholipids (plasmalogens) have been scarcely studied for plasmalogens with long polyunsaturated fatty acid (PUFA) chains, despite of their significance for the organization and functions of the cellular membranes. Elaboration of supramolecular assemblies involving PUFA-chain plasmalogens in nanostructured mixtures with lyotropic lipids may accelerate the development of nanomedicines for certain severe pathologies (e.g., peroxisomal disorders, cardiometabolic impairments, and neurodegenerative Alzheimer's and Parkinson's diseases). Here, we investigate the spontaneous self-assembly of bioinspired, custom-produced docosapentaenoyl (DPA) plasmenyl (ether) and ester phospholipids in aqueous environment (pH 7) by synchrotron small-angle X-ray scattering (SAXS) and cryogenic transmission electron microscopy (cryo-TEM). A coexistence of a liquid crystalline primitive cubic phase and an inverted hexagonal (H) phase is observed for the DPA-ethanolamine plasmalogen (C16:1p-22:5n6 PE) derivative. A double-diamond cubic phase is formed in mixed assemblies of the phosphoethanolamine plasmalogen (C16:1p-22:5n6 PE) and monoolein (MO), whereas a coexistence of cubic and lamellar liquid crystalline phases is established for the DPA-plasmenyl phosphocholine (C16:1p-22:5n6 PC)/MO mixture at ambient temperature. The DPA-diacyl phosphoinositol (22:5n6-22:5n6 PI) ester lipid displays a propensity for a lamellar phase formation. Double membrane vesicles and multilamellar onion topologies with inhomogeneous distribution of interfacial curvature are formed upon incorporation of the phosphoethanolamine plasmalogen (C16:1p-22:5n6 PE) into dioleoylphosphocholine (DOPC) bilayers. Nanoparticulate formulations of plasmalogen-loaded cubosomes, hexosomes, and various multiphase cubosome- and hexosome-derived architectures and mixed type nano-objects (e.g., oil droplet-embedding vesicles or core-shell particles with soft corona) are produced with PUFA-chain phospholipids and lipophilic antioxidant-containing membrane compositions that are characterized by synchrotron SAXS and cryo-TEM imaging. The obtained multiphase nanostructures reflect the changes in the membrane curvature induced by the inclusion of DPA-based PE and PC plasmalogens, as well as DPA-PI ester derivative, and open new opportunities for exploration of these bioinspired nanoassemblies.
尽管长链多不饱和脂肪酸(PUFA)链的缩醛磷脂对细胞膜的组织和功能具有重要意义,但对其结构特性的研究却很少。精心制备包含PUFA链缩醛磷脂与溶致液晶脂质的纳米结构混合物中的超分子组装体,可能会加速针对某些严重病症(如过氧化物酶体疾病、心脏代谢障碍以及神经退行性阿尔茨海默病和帕金森病)的纳米药物的开发。在此,我们通过同步加速器小角X射线散射(SAXS)和低温透射电子显微镜(cryo-TEM),研究了在水相环境(pH 7)中,具有生物启发性的定制二十二碳五烯酰(DPA)缩醛磷脂(醚)和酯磷脂的自发自组装。观察到DPA-乙醇胺缩醛磷脂(C16:1p-22:5n6 PE)衍生物存在液晶原始立方相和反相六方(H)相的共存。在磷酸乙醇胺缩醛磷脂(C16:1p-22:5n6 PE)和单油酸甘油酯(MO)的混合组装体中形成了双菱形立方相,而在室温下,DPA-缩醛磷脂酰胆碱(C16:1p-22:5n6 PC)/MO混合物存在立方相和层状液晶相的共存。DPA-二酰基磷酸肌醇(22:5n6-22:5n6 PI)酯脂质表现出形成层状相的倾向。将磷酸乙醇胺缩醛磷脂(C16:1p-22:5n6 PE)掺入二油酰磷脂酰胆碱(DOPC)双层中时,会形成具有不均匀界面曲率分布的双膜囊泡和多层洋葱拓扑结构。用PUFA链磷脂和亲脂性抗氧化剂包含的膜组合物制备了负载缩醛磷脂的立方液晶纳米粒、六方液晶纳米粒以及各种多相立方液晶和六方液晶衍生结构和混合型纳米物体(如包埋油滴的囊泡或具有软冠层核壳颗粒),并用同步加速器SAXS和cryo-TEM成像对其进行了表征。所获得的多相纳米结构反映了由于包含基于DPA的PE和PC缩醛磷脂以及DPA-PI酯衍生物而引起的膜曲率变化,并为探索这些具有生物启发性的纳米组装体开辟了新机会。