Doras Camille, Taupier Gregory, Barsella Alberto, Mager Loïc, Boeglin Alex, Bulou Hervé, Bousquet Pascal, Dorkenoo Kokou D
LNPCV EA 4438, Faculté de médecine, 11 rue Humann, 67 000 Strasbourg, France.
Opt Express. 2011 Aug 1;19(16):15062-8. doi: 10.1364/OE.19.015062.
We have performed multi-photon image reconstructions as well as polarization state analyses inside an artery wall affected by atherosclerosis to investigate the changes in collagen structure. Mice, either healthy or affected by spontaneous atherosclerosis, have been used for this purpose. A two-photon imaging system has been used to investigate atherosclerotic lesions in the ascending aorta of mice. Second harmonic imaging has been performed alternatively on healthy samples and on affected region. The reconstructed images show that the spatial distribution of the collagen network seems disorganized by the disease. The polarization state studies reveal however that the apparent disorganization of the collagen is related to its spatially diffuse distribution and that the internal structure of the collagen fibers is not affected by the disease. In addition, a theoretical simulation of the second harmonic polarization states shows that they are consistent with the known 3D structure of the collagen network.
我们对受动脉粥样硬化影响的动脉壁进行了多光子图像重建以及偏振态分析,以研究胶原蛋白结构的变化。为此使用了健康或患有自发性动脉粥样硬化的小鼠。已使用双光子成像系统研究小鼠升主动脉中的动脉粥样硬化病变。在健康样本和受影响区域交替进行二次谐波成像。重建图像显示,胶原蛋白网络的空间分布似乎因疾病而紊乱。然而,偏振态研究表明,胶原蛋白的明显紊乱与其空间扩散分布有关,并且胶原蛋白纤维的内部结构不受疾病影响。此外,二次谐波偏振态的理论模拟表明,它们与胶原蛋白网络已知的三维结构一致。