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A Molecular Rotor that Measures Dynamic Changes of Lipid Bilayer Viscosity Caused by Oxidative Stress

机译:测量由氧化应激引起的脂质双层粘度动态变化的分子转子。

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Oxidation of cellular structures is typically an undesirable process that can be a hallmark of certain diseases. On the other hand, photooxidation is a necessary step of photodynamic therapy (PDT), a cancer treatment causing cell death upon light irradiation. Here, the effect of photooxidation on the microscopic viscosity of model lipid bilayers constructed of 1,2-dioleoyl-sn-glycero-3-phosphocholine has been studied. A molecular rotor has been employed that displays a viscosity-dependent fluorescence lifetime as a quantitative probe of the bilayer's viscosity. Thus, spatially-resolved viscosity maps of lipid photooxidation in giant unilamellar vesicles (GUVs) were obtained, testing the effect of the positioning of the oxidant relative to the rotor in the bilayer. It was found that PDT has a strong impact on viscoelastic properties of lipid bilayers, which 'travels' through the bilayer to areas that have not been irradiated directly. A dramatic difference in viscoelastic properties of oxidized GUVs by Type I (electron transfer) and Type II (singlet oxygen-based) photosensitisers was also detected.
机译:细胞结构的氧化通常是不希望有的过程,可能是某些疾病的标志。另一方面,光氧化是光动力疗法(PDT)的必要步骤,光动力疗法是一种因光照射而导致细胞死亡的癌症治疗方法。在这里,研究了光氧化对由1,2-二油酰基-sn-甘油-3-磷酸胆碱构成的模型脂质双层的微观粘度的影响。已经使用显示出粘度依赖性荧光寿命的分子转子作为双层粘度的定量探针。因此,获得了巨大的单层囊泡(GUV)中脂质光氧化的空间分辨粘度图,测试了氧化剂在双层中相对于转子的定位效果。已经发现,PDT对脂质双层的粘弹性具有很强的影响,脂质双层会“游走”穿过双层到达尚未直接照射的区域。还检测到I型(电子转移)和II型(基于单氧的)光敏剂对氧化型GUV的粘弹性有显着差异。

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