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首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >VIABILITY ANALYSIS OF CRYOPRESERVED RAT PANCREATIC ISLETS USING LASER SCANNING CONFOCAL MICROSCOPY
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VIABILITY ANALYSIS OF CRYOPRESERVED RAT PANCREATIC ISLETS USING LASER SCANNING CONFOCAL MICROSCOPY

机译:激光扫描共聚焦显微镜分析冷冻保存的大鼠胰岛的可行性

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We have developed a digital image analysis technique to assay the viability of frozen-thawed pancreatic islets by using laser scanning confocal microscopy (LSCM) in conjunction with double fluorescent staining [acridine orange/propidium iodide (AO/PI)]. Freshly isolated rat pancreatic islets were cultured for 18-24 h and then brought to a 2 M concentration of dimethyl sulfoxide (Me(2)SO) by serial addition at decreasing temperatures. Ice was nucleated in the islet suspension at a defined temperature (-10 degrees C), followed by a controlled period for equilibration and then cooling in a programmable bulk freezer at rates of 0.3, 1, 3, 10, and 30 degrees C/min to -70 degrees C. Samples were then stored in liquid nitrogen. Subsequent to rapid thawing and serial dilution with sucrose solution to remove Me(2)SO, AO/PI-stained individual islets were prepared for imaging on the LSCM. A series of optical sections through individual stained islets were obtained and processed to obtain high-contrast images at two different wavelengths; 488 nm and 514 nm for viable and damaged tissue, respectively. Image analysis algorithms consisted of template masking, generation of histograms of the pixel intensity profile, and gray level thresholding to obtain binary images. The total percentages of both types of tissue in the islet were computed by summing the two populations in each serial section. The spatial distributions of viable and damaged tissue were calculated from the three-dimensional (3-D) data base for both cultured (control) and cryopreserved islets. The 3-D spatial distributions of damaged and viable tissue in the islets were computed by determining the normalized distance of each viable/damaged voxel from the centroid of the islet volume to a mathematically estimated 3-D superquadric surface used to estimate the outer boundary of the islet. Further, each isolated damaged cell was identified and its volume determined. These studies indicate that cryopreserved islets exhibit shape distortion and a decrease in the numerical density of cells in comparison to unfrozen controls. Maximal survival was observed at the slower cooling rates. Accordingly, damage was found to occur throughout the 3-D islet volume in distinct spatial distributions for islets frozen at the slower and the faster cooling rates. Further, it was found that the volume of the majority of damaged cells identified was consistent with that of cells ranging in diameter from 5 to 9 mu m.
机译:我们已经开发了一种数字图像分析技术,通过使用激光扫描共聚焦显微镜(LSCM)结合双荧光染色[ac啶橙/碘化丙啶(AO / PI)],可以测定冻融胰岛的生存能力。将新鲜分离的大鼠胰岛培养18-24小时,然后在降低的温度下通过连续添加使其浓度达到2 M的二甲基亚砜(Me(2)SO)。冰在胰岛悬浮液中在规定的温度(-10摄氏度)下成核,然后控制平衡时间,然后在可编程的大容量冷冻机中以0.3、1、3、10和30摄氏度/分钟的速度冷却至-70℃。然后将样品储存在液氮中。快速解冻并用蔗糖溶液进行系列稀释以除去Me(2)SO之后,准备了AO / PI染色的单个胰岛,用于在LSCM上成像。获得了通过各个染色的胰岛的一系列光学切片,并进行了处理,以得到两个不同波长的高对比度图像。 488 nm和514 nm用于活组织和受损组织。图像分析算法包括模板遮罩,像素强度轮廓直方图的生成以及灰度阈值以获得二进制图像。通过将每个连续切片中的两个种群相加,计算出胰岛中两种组织的总百分比。从培养的(对照)和冷冻保存的胰岛的三维(3-D)数据库中计算出存活和受损组织的空间分布。通过确定每个活体/受损体素从胰岛体积的质心到用于数学估计的3-D超二次曲面的标准化距离,来计算胰岛中受损和有活力的组织的3-D空间分布。胰岛。此外,鉴定出每个分离的受损细胞并确定其体积。这些研究表明,与未冷冻的对照相比,冷冻保存的胰岛表现出形状变形和细胞数量密度降低。在较慢的冷却速率下观察到最大的存活率。因此,对于在较慢和较快的冷却速率下冷冻的胰岛,发现在整个3-D胰岛的整个空间中都存在明显的空间分布破坏。此外,发现发现的大多数受损细胞的体积与直径为5至9μm的细胞的体积一致。

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