Division of Developmental and Translational Diabetes and Endocrinology Research, Department of Diabetes and Metabolic Research, Beckman Research Institute of City of Hope, Duarte, CA, USA.
Am J Transplant. 2018 Apr;18(4):832-842. doi: 10.1111/ajt.14497. Epub 2017 Oct 5.
Subcutaneous tissue is a promising site for islet transplantation, due to its large area and accessibility, which allows minimally invasive procedures for transplantation, graft monitoring, and removal of malignancies as needed. However, relative to the conventional intrahepatic transplantation site, the subcutaneous site requires a large number of islets to achieve engraftment success and diabetes reversal, due to hypoxia and low vascularity. We report that the efficiency of subcutaneous islet transplantation in a Lewis rat model is significantly improved by treating recipients with inhaled 50% oxygen, in conjunction with prevascularization of the graft bed by agarose-basic fibroblast growth factor. Administration of 50% oxygen increased oxygen tension in the subcutaneous site to 140 mm Hg, compared to 45 mm Hg under ambient air. In vitro, islets cultured under 140 mm Hg oxygen showed reduced central necrosis and increased insulin release, compared to those maintained in 45 mm Hg oxygen. Six hundred syngeneic islets subcutaneously transplanted into the prevascularized graft bed reversed diabetes when combined with postoperative 50% oxygen inhalation for 3 days, a number comparable to that required for intrahepatic transplantation; in the absence of oxygen treatment, diabetes was not reversed. Thus, we show oxygen inhalation to be a simple and promising approach to successfully establishing subcutaneous islet transplantation.
皮下组织是胰岛移植的一个很有前途的部位,因为它面积大且易于接近,可以进行微创程序移植、移植物监测和恶性肿瘤的切除。然而,与传统的肝内移植部位相比,由于缺氧和低血管性,皮下部位需要大量的胰岛才能实现移植物的成功植入和糖尿病的逆转。我们报告说,通过用 50%氧气处理受体,并结合琼脂糖-碱性成纤维细胞生长因子使移植物床预先血管化,可以显著提高 Lewis 大鼠模型中皮下胰岛移植的效率。与在环境空气中相比,50%氧气的施用将皮下部位的氧分压提高到 140mmHg。在体外,与在 45mmHg 氧中培养的胰岛相比,在 140mmHg 氧中培养的胰岛显示出中心坏死减少和胰岛素释放增加。将 600 个同基因胰岛经皮下移植到预先血管化的移植物床中,与术后 3 天吸入 50%氧气相结合可逆转糖尿病,这一数量与肝内移植所需的数量相当;如果没有氧气治疗,糖尿病则不会逆转。因此,我们表明,吸氧是一种简单而有前途的方法,可以成功地建立皮下胰岛移植。