Leijon K, Hillörn V, Bergqvist I, Holmberg D
Department of Cell and Molecular Biology, Umeå University, Sweden.
J Autoimmun. 1995 Jun;8(3):347-56. doi: 10.1006/jaut.1995.0027.
We have tested the hypothesis that allelic differences in the antigens expressed by the beta-cells of the islets of Langerhans influence the development of insulitis in the non-obese diabetic (NOD) mouse. Islets of Langerhans from NOD, C57BL/6 and C3H/Tif mice were transplanted under the kidney capsule of NOD<-->C57BL/6 and NOD<-->C3H/Tif embryo aggregation (EA) chimeras and the infiltration was scored 5-7 weeks later. Mononuclear cell infiltration of pancreatic islets was observed in 60% of the NOD<-->C57BL/6 and in 55% of the NOD<-->C3H/Tif EA chimeras. All transplanted EA chimeras that developed insulitis also displayed mononuclear cell infiltrates in the transplants, irrespective of the origin of the transplanted islets. In contrast, no infiltration of transplants was detected in EA chimeras scoring negative for insulitis. These results demonstrate that the specific destruction of islet transplants does not require the expression of NOD specific antigens by the islets. Moreover, the beta-cell destruction appears not to be restricted to NOD-MHC. The correlation between insulitis and transplant beta-cell destruction suggests the possibility that the development of insulitis is a prerequisite for transplant specific destruction. MHC restricted destruction may, therefore, precede the beta-cell destruction of transplanted islets. The chimerism among the mononuclear cells infiltrating the islet transplants was found to correlate with the overall haematopoetic chimerism in each of the individual EA chimeras. This observation suggests that NOD bone marrow, as well as non-NOD bone marrow, generates cells contributing to the beta-cell destruction process.
我们已经验证了一个假设,即胰岛β细胞所表达抗原的等位基因差异会影响非肥胖糖尿病(NOD)小鼠胰岛炎的发展。将来自NOD、C57BL/6和C3H/Tif小鼠的胰岛移植到NOD<-->C57BL/6和NOD<-->C3H/Tif胚胎聚集(EA)嵌合体的肾被膜下,5 - 7周后对浸润情况进行评分。在60%的NOD<-->C57BL/6和55%的NOD<-->C3H/Tif EA嵌合体中观察到胰岛有单核细胞浸润。所有发生胰岛炎的移植EA嵌合体的移植部位也都出现了单核细胞浸润,而与移植胰岛的来源无关。相比之下,在胰岛炎评分呈阴性的EA嵌合体中未检测到移植部位有浸润。这些结果表明,胰岛移植的特异性破坏并不需要胰岛表达NOD特异性抗原。此外,β细胞破坏似乎并不局限于NOD - MHC。胰岛炎与移植β细胞破坏之间的相关性提示,胰岛炎的发展可能是移植特异性破坏的前提条件。因此,MHC限制性破坏可能先于移植胰岛的β细胞破坏。发现浸润胰岛移植部位的单核细胞中的嵌合现象与每个个体EA嵌合体中的总体造血嵌合现象相关。这一观察结果表明,NOD骨髓以及非NOD骨髓都会产生参与β细胞破坏过程的细胞。