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The eye as a novel imaging site in diabetes research

机译:眼睛作为糖尿病研究的新型成像部位

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Diabetes develops due to deficient functional beta cell mass, insulin resistance, or both. Yet, various challenges in understanding the mechanisms underlying diabetes development in vivo remain to be overcome owing to the lack of appropriate intravital imaging technologies. To meet these challenges, we have exploited the anterior chamber of the eye (ACE) as a novel imaging site to understand diabetes basics and clinics in vivo. We have developed a technology platform transplanting pancreatic islets into the ACE where they later on can be imaged non-invasively for long time. It turns out that the ACE serves as an optimal imaging site and provides implanted islets with an oxygen-rich milieu and an immune-privileged niche where they undergo optimal engraftment, rich vascularization and dense innervation, preserve organotypic features and live with satisfactory viability and functionality. The ACE technology has led to a series of significant observations. It enables in vivo microscopy of islet cytoarchitecture, function and viability in the physiological context and intravital imaging of a variety of pathological events such as autoimmune insulitis, defects in beta cell function and mass and insulin resistance during diabetes development in a real-time manner. Furthermore, application of the ACE technology in humanized mice and non-human primates verifies translational and clinical values of the technology. In this article, we describe the ACE technology in detail, review accumulated knowledge gained by means of the ACE technology and delineate prospective avenues for the ACE technology. (C) 2019 The Author(s). Published by Elsevier Inc. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:由于缺乏功能性β细胞质量,胰岛素抵抗或两者,糖尿病因缺乏缺乏。然而,由于缺乏适当的流体影像学技术,在体内患有糖尿病发展的机制的各种挑战仍然克服。为了满足这些挑战,我们已经利用了眼睛前房(ACE)作为一种新型成像网站,以了解糖尿病基础和体内诊所。我们已经开发了一种将胰岛素移植到ACE中的技术平台,以便在那里可以长时间地造成成像。事实证明,ACE用作最佳成像部位,并提供富含富含氧气的植入胰岛和一种免疫特权的利基,在那里他们经历最佳的植入,丰富的血管化和密集的内脏,保持有机型特征,并以满意的存活和功能生活。 ACE技术导致了一系列重要的观察结果。它能够在生理背景下的胰岛细胞建筑,功能和可行性的体内显微镜,以及在糖尿病发展期间的自身免疫性胰岛炎等各种病理事件的嗜睡性和缺血性和质量和胰岛素抵抗力。此外,在人源化小鼠和非人类原始化动物中的应用验证了技术的平移和临床价值。在本文中,我们详细描述了ACE技术,审查了通过ACE技术和ACE技术的删除预期途径获得的累积知识。 (c)2019年作者。由elsevier Inc.发布这是CC By-NC-ND许可下的开放式访问文章(http://creativecommons.org/licenses/by-nc-nd/4.0/)。

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