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Quantum dot-aluminum phthalocyanine conjugates perform photodynamic reactions to kill cancer cells via fluorescence resonance energy transfer

机译:量子点铝酞菁结合物执行光动力学反应通过荧光共振能量转移杀死癌细胞

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摘要

Sulfonated aluminum phthalocyanines (AlPcSs), commonly used photosensitizers for photodynamic therapy of cancers (PDT), were conjugated with amine-dihydrolipoic acid-coated quantum dots (QDs) by electrostatic binding, achieving 70 AlPcSs per QD. The AlPcS-QD conjugates can utilize the intense light absorptions of conjugated QDs to indirectly excite AlPcSs producing singlet oxygen via fluorescence resonance energy transfer (FRET), demonstrating a new excitation model for PDT. The AlPcS-QD conjugates easily penetrated into human nasopharyngeal carcinoma cells and carried out the FRET in cells, with efficiency around 80%. Under the irradiation of a 532-nm laser, which is at the absorption region of QDs but not fit for the absorption of AlPcSs, the cellular AlPcS-QD conjugates can destroy most cancer cells via FRET-mediated PDT, showing the potential of this new strategy for PDT.
机译:磺化铝酞菁(AlPcSs)是常用的光敏剂,用于癌症(PDT)的光敏剂,通过静电结合与胺-二氢硫辛酸涂层的量子点(QD)结合,每个QD达到70 AlPcSs。 AlPcS-QD共轭物可以利用共轭QD的强光吸收来通过荧光共振能量转移(FRET)间接激发产生单线态氧的AlPcSs,证明了PDT的新激发模型。 AlPcS-QD缀合物很容易渗入人鼻咽癌细胞并在细胞中进行FRET,效率约为80%。在处于QDs吸收区域但不适合AlPcSs吸收的532 nm激光照射下,细胞中的AlPcS-QD共轭物可以通过FRET介导的PDT破坏大多数癌细胞,显示出这种新技术的潜力PDT策略。

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