Stiebing Clara, Meyer Tobias, Rimke Ingo, Matthäus Christian, Schmitt Michael, Lorkowski Stefan, Popp Jürgen
Leibniz Institute of Photonic Technology (IPHT), Albert-Einstein-Straße 9, 07745, Jena, Germany.
Institute of Physical Chemistry and Abbe Center of Photonics, Friedrich Schiller University Jena, Helmholtzweg 4, 07743, Jena, Germany.
J Biophotonics. 2017 Sep;10(9):1217-1226. doi: 10.1002/jbio.201600279. Epub 2017 Feb 6.
Monitoring living cells in real-time is important in order to unravel complex dynamic processes in life sciences. In particular the dynamics of initiation and progression of degenerative diseases is intensely studied. In atherosclerosis the thickening of arterial walls is related to high lipid levels in the blood stream, which trigger the lipid uptake and formation of droplets as neutral lipid reservoirs in macrophages in the arterial wall. Unregulated lipid uptake finally results in foam cell formation, which is a hallmark of atherosclerosis. In previous studies, the uptake and storage of different fatty acids was monitored by measuring fixed cells. Commonly employed fluorescence staining protocols are often error prone because of cytotoxicity and unspecific fluorescence backgrounds. By following living cells with Raman spectroscopic imaging, lipid uptake of macrophages was studied with real-time data acquisition. Isotopic labeling using deuterated palmitic acid has been combined with spontaneous and stimulated Raman imaging to investigate the dynamic process of fatty acid storage in human macrophages for incubation times from 45 min to 37 h. Striking heterogeneity in the uptake rate and the total concentration of deuterated palmitic acid covering two orders of magnitude is detected in single as well as ensembles of cultured human macrophages. SRS signal of deuterated palmitic acid measured at the CD vibration band after incorporation into living macrophages.
实时监测活细胞对于揭示生命科学中的复杂动态过程至关重要。特别是对退行性疾病的起始和进展动态进行了深入研究。在动脉粥样硬化中,动脉壁增厚与血流中的高血脂水平有关,这会触发脂质摄取并在动脉壁巨噬细胞中形成作为中性脂质储存库的液滴。不受控制的脂质摄取最终导致泡沫细胞形成,这是动脉粥样硬化的一个标志。在先前的研究中,通过测量固定细胞来监测不同脂肪酸的摄取和储存。由于细胞毒性和非特异性荧光背景,常用的荧光染色方案往往容易出错。通过拉曼光谱成像跟踪活细胞,利用实时数据采集研究了巨噬细胞的脂质摄取。使用氘代棕榈酸的同位素标记已与自发和受激拉曼成像相结合,以研究人巨噬细胞中脂肪酸储存的动态过程,孵育时间为45分钟至37小时。在单个以及培养的人巨噬细胞集合中检测到氘代棕榈酸摄取率和总浓度的显著异质性,其覆盖两个数量级。氘代棕榈酸掺入活巨噬细胞后在CD振动带处测量的SRS信号。