Bagatolli L A, Parasassi T, Fidelio G D, Gratton E
Laboratory for Fluorescence Dynamics, University of Illinois at Urbana-Champaign 61801, USA.
Photochem Photobiol. 1999 Oct;70(4):557-64.
Although 6-lauroyl-2-(N,N-dimethylamino)naphthalene (LAURDAN) is now widely used as a probe for lipid systems, most studies focus on the effect of the lipid environment on its emission properties but not on the excitation properties. The present study is intended to investigate the excitation properties of LAURDAN in diverse lipid environments. To this end, the fluorescence properties of LAURDAN were studied in synthetic ester and ether phosphatidylcholines and sphingomyelin vesicles below, at and above the corresponding lipid main phase-transition temperature. The excitation spectra of LAURDAN in these environments always show at least two well-resolved bands. In the different lipid vesicles the behavior of the red band in the LAURDAN excitation spectra is sensitive to the lipid chemical environment near the probe fluorescent moiety and to the packing of the different lipid phases (gel and liquid crystalline). We propose that the interaction between the LAURDAN dimethylamino group and the ester linkage of ester phospholipids is responsible for the strong stabilization of LAURDAN's red excitation band in the gel phase of ester phospholipid vesicles. We discuss the consequence of these proposed ground-state interactions on LAURDAN's emission generalized polarization function. In the context of variable excitation wavelengths, information concerning solvent dipolar relaxation through excitation generalized polarization function is also discussed.
尽管6-月桂酰基-2-(N,N-二甲基氨基)萘(LAURDAN)目前被广泛用作脂质体系的探针,但大多数研究集中于脂质环境对其发射特性的影响,而非激发特性。本研究旨在探究LAURDAN在不同脂质环境中的激发特性。为此,研究了LAURDAN在合成酯和醚磷脂酰胆碱以及鞘磷脂囊泡中的荧光特性,这些囊泡处于相应脂质的主相变温度以下、温度时以及温度以上。LAURDAN在这些环境中的激发光谱总是显示至少两个分辨良好的谱带。在不同的脂质囊泡中,LAURDAN激发光谱中红色谱带的行为对探针荧光部分附近的脂质化学环境以及不同脂质相(凝胶相和液晶相)的堆积敏感。我们提出,LAURDAN二甲基氨基与酯磷脂的酯键之间的相互作用是导致LAURDAN红色激发谱带在酯磷脂囊泡凝胶相中强烈稳定的原因。我们讨论了这些提出的基态相互作用对LAURDAN发射广义极化函数的影响。在可变激发波长的背景下,还讨论了通过激发广义极化函数获得的有关溶剂偶极弛豫的信息。