University of Lübeck, Institute of Biomedical Optics, Lübeck, Germany.
J Biomed Opt. 2011 Nov;16(11):116025. doi: 10.1117/1.3655587.
Spectrally resolved two-photon excited autofluorescence imaging is used to distinguish different cell types and functional areas during dynamic processes in the living gut. Excitation and emission spectra of mucosal tissue and tissue components are correlated to spectra of endogenous chromophores. We show that selective excitation with only two different wavelengths within the tuning range of a Ti:sapphire femtosecond laser system yields excellent discrimination between enterocytes, antigen presenting cells and lysosomes based on the excitation and emission properties of their autofluorescence. The method is employed for time-lapse microscopy over up to 8 h. Changes of the spectral signature with the onset of photodamage are demonstrated, and their origin is discussed.
光谱分辨双光子激发自体荧光成像是用于在活体肠道的动态过程中区分不同的细胞类型和功能区域的方法。黏膜组织和组织成分的激发和发射光谱与内源性色团的光谱相关联。我们表明,在钛宝石飞秒激光系统的调谐范围内仅使用两个不同波长进行选择性激发,可以根据其自体荧光的激发和发射特性,极好地区分肠细胞、抗原呈递细胞和溶酶体。该方法可用于长达 8 小时的时程显微镜观察。本文展示了随着光损伤的发生,光谱特征的变化,并讨论了其起源。