脂质头群电荷效应引起脂质双层内量子点比半径的变化

S. Sung, H. Pak, J. Kwak, Sang Weon Lee, Young Ha Kim, B. Hur, Seong Jin Jin, G. Kim
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引用次数: 2

摘要

我们研究了量子点-脂质体复合物(QLC),它是一种巨大的单层囊泡,其脂质双层中含有量子点(QDs)。自旋镀膜方法结合电形成技术产生了具有高度均匀的单层结构的囊泡。我们观察到QD大小对QLC形成的依赖性:QLC形成有蓝色、绿色和黄色发射的QD(核半径~1.05 nm、1.25 nm和1.65 nm),而不与红色发射的QD(核半径~2.5 nm)形成。为了解释这种尺寸依赖性,我们建立了一个简单的模型,从分子堆积参数和脂质构象变化的角度来解释QD尺寸对QLC形成的影响。该模型预测,小于某一临界尺寸(半径≈1.8 nm)的量子点可以稳定地驻留在厚度为4 - 5nm的蛋- pc脂质双分子层中。这与我们之前的实验结果是一致的。在红发射量子点的情况下,量子点聚集只在荧光显微镜上观察到,而不是在量子点色谱上观察到。我们预期填料参数(P)的减小会导致比量子点半径的变化。这一预测可以通过我们的实验观察来验证,通过混合DOPG,我们可以观察到特定量子点尺寸的变化。
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Specific Radius Change of Quantum Dot inside the Lipid Bilayer by Charge Effect of Lipid Head-Group
We studied the quantum dot-liposome complex (QLC), which is the giant unilamellar vesicle with quantum dots (QDs) incorporated in its lipid bilayer. A spin coating method in conjunction with the electroformation technique yielded vesicles with highly homogeneous unilamellar structure. We observed QD size dependence of the QLC formation: QLCs form with blue, green and yellow-emission QD (core radius ~1.05 nm, 1.25 nm and 1.65 nm) but not with red-emission QD (core radius ~2.5 nm). In order to explain this size dependence, we made a simple model explaining the QD size effect on QLC formation in terms of the molecular packing parameter and the lipid conformational change. This model predicts that QDs below a certain critical size (radius ≈ 1.8 nm) can stably reside in a lipid bilayer of 4 - 5 nm in thickness for Egg-PC lipids. This is consistent with our previous experimental results. In the case of red-emission QD, QD-aggregations are only observed on the fluorescent microscopy instead of QLC. We expected that the reduction of packing parameter (P) would lead to the change of specific QD radius. This prediction could be verified by our experimental observation of the shift of the specific QD size by mixing DOPG.
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