Plant A L, Benson D M, Trusty G L
Biomolecular Engineering Branch, Naval Research Laboratory, Washington, D.C. 20375-5000.
Biophys J. 1990 May;57(5):925-33. doi: 10.1016/S0006-3495(90)82612-6.
Novel lipid structures called tubules can be prepared from diacetylenic phospholipids. We have prepared fluorescent tubules from mixtures of 1,2-bis(10,12-tricosadiynoyl)-sn-glycero-3-phosphatidylcholine and 1 mol% fluorescent lipophiles to study the characteristics of the tubule lipid matrix. We have found that once formed, tubules do not incorporate lipophiles from the aqueous phase into their lipid matrix. The spectral characteristics of the fluorophore laurodan in tubules, and the lack of diffusion of N-nitrobenzoxydiazol phosphatidylethanolamine in tubules, have allowed us to characterize the microenvironment of these structures as being extremely rigid and tightly packed. Despite their rigid characteristic, tubules are formed from intact liposomes as demonstrated by the formation of doubly labeled tubules from two populations of liposomes, each of which contained a different nonexchangeable fluorescent lipophile.
一种名为微管的新型脂质结构可由二乙炔基磷脂制备而成。我们已通过1,2 - 双(10,12 - 二十三碳二炔酰基)-sn-甘油-3 - 磷脂酰胆碱与1摩尔%荧光亲脂剂的混合物制备出荧光微管,以研究微管脂质基质的特性。我们发现,微管一旦形成,就不会将水相中的亲脂剂纳入其脂质基质。微管中荧光团月桂丹的光谱特征,以及N - 硝基苯并二唑磷脂酰乙醇胺在微管中缺乏扩散,使我们能够将这些结构的微环境表征为极其刚性且紧密堆积。尽管微管具有刚性特征,但它们是由完整的脂质体形成的,这一点通过由两组脂质体形成双标记微管得到证明,每组脂质体都含有不同的不可交换荧光亲脂剂。