Roeinfard M, Zahedifar M, Darroudi M, Khorsand Zak A, Sadeghi E
Institute of Nanoscience and Nanotechnology, University of Kashan, Kashan, I.R, Iran.
Physics Department, University of Kashan, Kashan, I.R., Iran.
Luminescence. 2020 Sep;35(6):891-896. doi: 10.1002/bio.3798. Epub 2020 Mar 13.
Graphene quantum dots (GQDs) was synthesized using a simple, rapid and affordable method and decorated with selenium at different molar ratios for the first time to obtain an efficient sample for use in photodynamic therapy. Surface modification of GQDs was carried out using polyethylene glycol (PEG) for conjugation with protoporphyrin IX (PpIX). Synthesized GQDs (Se: 0.3%) at 180°C had an emission spectrum that fairly coincided with the absorption profile of PpIX. A relative decrease of about 62.48% in the emission intensity of anthracene was recorded under illumination with UVC light in the presence of GQDs (Se: 0.3%) and the reduction for clung GQDs (Se: 0.3%) and PpIX during 90 min was about 70.68%. Singlet oxygen ( O ) generation was examined using a chemical method that showed significant enhancement in decomposition rate constant in clung GQDs-PEG-PpIX compared with GQDs and PpIX alone. Afterglow over 600 s showed that GQDs (Se: 0.3%) could be effective for near skin and even deep tumours.
采用一种简单、快速且经济实惠的方法合成了石墨烯量子点(GQDs),并首次以不同摩尔比用硒进行修饰,以获得用于光动力疗法的高效样品。使用聚乙二醇(PEG)对GQDs进行表面修饰,使其与原卟啉IX(PpIX)共轭。在180°C下合成的GQDs(硒含量:0.3%)的发射光谱与PpIX的吸收曲线相当吻合。在存在GQDs(硒含量:0.3%)的情况下,用UVC光照射时,蒽的发射强度相对降低了约62.48%,在90分钟内,附着的GQDs(硒含量:0.3%)和PpIX的还原率约为70.68%。使用化学方法检测单线态氧(O)的生成,结果表明,与单独的GQDs和PpIX相比,附着的GQDs-PEG-PpIX的分解速率常数有显著提高。超过600秒的余辉表明,GQDs(硒含量:0.3%)对接近皮肤甚至深部肿瘤可能有效。