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Intracellular Uptake and Photodynamic Activity of Water-Soluble [60]- and [70]Fullerenes Incorporated in Liposomes

机译:溶于脂质体的水溶性[60]-和[70]富勒烯的细胞内摄取和光动力活性

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摘要

Water-soluble fullerenes have attracted attention compounds that have been used to forge new paths in the field of photobiochemistry. To prepare water-soluble fullerenes, we employed lipid-membrane-incorporated fullerenes (LMICx;,; x=60 or 70) by using the fullerene exchange method from a gamma-cyclodextrin (gamma-CD) cavity to vesicles. LMIC60 have low toxicity in the dark and engender cell death by photoirradiation (lambda> 350 nm). Furthermore, the photodynamic activity of LMIC70 is 4.7-fold that of LMIC60 for the same photon flux (lambda >400nm). One of the reasons for the higher phototoxicity of LMIC70 is the higher generation of singlet oxygen (O-1(2)) in LMIC70 than in LMIC60. The difference between LMIC60 and LMIC70 is considered to be simply derived from the amount of light absorption in the 400-700nm region that is suitable for photodynamic therapy (PDT). To the best of our knowledge, this is the first case in which biological activity Of CM and its derivatives toward HeLa cells has been assayed.
机译:水溶性富勒烯引起了人们的注意,这些化合物已被用来在光生物化学领域开辟新的道路。为了制备水溶性富勒烯,我们通过使用从γ-环糊精(γ-CD)腔到囊泡的富勒烯交换方法,采用了脂质膜结合的富勒烯(LMICx ;; x = 60或70)。 LMIC60在黑暗中毒性低,并通过光辐照导致细胞死亡(λ> 350 nm)。此外,对于相同的光子通量(λ> 400nm),LMIC70的光动力学活性是LMIC60的4.7倍。 LMIC70较高光毒性的原因之一是LMIC70中的单线态氧(O-1(2))的生成量高于LMIC60。 LMIC60和LMIC70之间的差异被认为是简单地从适用于光动力疗法(PDT)的400-700nm区域的光吸收量得出的。据我们所知,这是第一种测定CM及其衍生物对HeLa细胞的生物学活性的情况。

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