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Noninvasive evaluation of the vascular response to transplantation of alginate encapsulated islets using the dorsal skin-fold model

机译:使用背侧皮肤折叠模型对海藻酸盐包裹的胰岛移植的血管反应进行无创评估

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摘要

Alginate encapsulation reduces the risk of transplant rejection by evading immune-mediated cell injury and rejection; however, poor vascular perfusion results in graft failure. Since existing imaging models are incapable of quantifying the vascular response to biomaterial implants after transplantation, in this study, we demonstrate the use of in vivo laser speckle imaging (LSI) and wide-field functional imaging (WiFI) to monitor the microvascular environment surrounding biomaterial implants. The vascular response to two islet-containing biomaterial encapsulation devices, alginate microcapsules and a high-guluronate alginate sheet, was studied and compared after implantation into the mouse dorsal window chamber (N = 4 per implant group). Images obtained over a 14-day period using LSI and WiFI were analyzed using algorithms to quantify blood flow, hemoglobin oxygen saturation and vascular density. Using our method, we were able to monitor the changes in the peri-implant microvasculature non-invasively without the use of fluorescent dyes. Significant changes in blood flow, hemoglobin oxygen saturation and vascular density were noted as early as the first week post-transplant. The dorsal window chamber model enables comparison of host responses to transplanted biomaterials. Future experiments will study the effect of changes in alginate composition on the vascular and immune responses.
机译:海藻酸盐封装可避免免疫介导的细胞损伤和排斥反应,从而降低移植排斥的风险。但是,不良的血管灌注会导致移植失败。由于现有的成像模型无法量化移植后对生物材料植入物的血管反应,因此在本研究中,我们演示了使用体内激光散斑成像(LSI)和宽视野功能成像(WiFI)来监视生物材料周围的微血管环境植入物。在植入小鼠背窗腔中后,研究并比较了对两种含胰岛的生物材料包封设备(藻酸盐微囊和高古龙酸盐藻酸盐片)的血管反应(每个植入物组N = 4)。使用算法分析了使用LSI和WiFI在14天的时间内获得的图像,以量化血流量,血红蛋白氧饱和度和血管密度。使用我们的方法,我们能够在不使用荧光染料的情况下非侵入性地监测植入物周围微血管的变化。早在移植后第一周就注意到血流,血红蛋白氧饱和度和血管密度发生了显着变化。背窗室模型能够比较宿主对移植生物材料的反应。未来的实验将研究藻酸盐组成变化对血管和免疫反应的影响。

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