Institute of Applied Research, Aalen University, 73430 Aalen, Germany.
Int J Mol Sci. 2022 Apr 30;23(9):5015. doi: 10.3390/ijms23095015.
Due to their unique properties-coherent radiation, diffraction limited focusing, low spectral bandwidth and in many cases short light pulses-lasers play an increasing role in live cell microscopy. Lasers are indispensable tools in 3D microscopy, e.g., confocal, light sheet or total internal reflection microscopy, as well as in super-resolution microscopy using wide-field or confocal methods. Further techniques, e.g., spectral imaging or fluorescence lifetime imaging (FLIM) often depend on the well-defined spectral or temporal properties of lasers. Furthermore, laser microbeams are used increasingly for optical tweezers or micromanipulation of cells. Three exemplary laser applications in live cell biology are outlined. They include fluorescence diagnosis, in particular in combination with Förster Resonance Energy Transfer (FRET), photodynamic therapy as well as laser-assisted optoporation, and demonstrate the potential of lasers in cell biology and-more generally-in biomedicine.
由于其独特的性质——相干辐射、衍射极限聚焦、低光谱带宽,在许多情况下还有短光脉冲——激光在活细胞显微镜技术中发挥着越来越重要的作用。激光是 3D 显微镜技术(如共聚焦、光片或全内反射显微镜)以及使用广角或共聚焦方法的超分辨率显微镜技术中不可或缺的工具。进一步的技术,例如光谱成像或荧光寿命成像(FLIM),通常依赖于激光的明确的光谱或时间特性。此外,激光微光束越来越多地用于光学镊子或细胞的微操作。本文概述了激光在活细胞生物学中的三个典型应用。它们包括荧光诊断,特别是与Förster 共振能量转移(FRET)相结合的诊断、光动力疗法以及激光辅助的光穿孔,展示了激光在细胞生物学中的潜力——更广泛地说——在生物医学中的潜力。