荧光
光化学
化学
吸收(声学)
荧光光谱法
血红蛋白
双光子激发显微术
光谱学
原卟啉
分析化学(期刊)
材料科学
光学
卟啉
生物化学
物理
色谱法
量子力学
复合材料
作者
Mihajlo D. Radmilović,Ivana Drvenica,Mihailo D. Rabasović,Vesna Ilić,Danica Pavlović,Sho Oasa,Vladana Vukojević,Mina Perić,Stanko N. Nikolić,Aleksandar J. Krmpot
标识
DOI:10.1016/j.ijbiomac.2023.125312
摘要
Hemoglobin (Hb), a life-sustaining and highly abundant erythrocyte protein, is not readily fluorescent. A few studies have already reported Two-Photon Excited Fluorescence (TPEF) of Hb, however, the mechanisms through which Hb becomes fluorescent upon interaction with ultrashort laser pulses are not completely understood. Here, we characterized photophysically this interaction on Hb thin film and erythrocytes using fluorescence spectroscopy upon single-photon/two-photon absorption, and UV-VIS single-photon absorption spectroscopy. A gradual increase of the fluorescence intensity, ending up with saturation, is observed upon prolonged exposure of Hb thin layer and erythrocytes to ultrashort laser pulses at 730 nm. When compared to protoporphyrin IX (PpIX) and oxidized Hb by H2O2, TPEF spectra from a thin Hb film and erythrocytes showed good mutual agreement, broad peaking at 550 nm, supporting hemoglobin undergoes degradation and that same fluorescent specie(s) originating from the heme moiety are generated. The uniform square shaped patterns of the fluorescent photoproduct exhibited the same level of the fluorescence intensity even after 12 weeks from the formation, indicating high photoproduct stability. We finally demonstrated the full potential of the formed Hb photoproduct with TPEF scanning microscopy towards spatiotemporally controlled micropatterning in HTF and single human erythrocyte labelling and tracking in the whole blood.
科研通智能强力驱动
Strongly Powered by AbleSci AI