Takao F, Yasumizu R, Than S, Ohnishi-Inoue Y, Sigiura K, Inaba M, Ikehara S
First Department of Pathology, Kansai Medical University, Osaka, Japan.
Immunobiology. 1995 Nov;194(4-5):376-89. doi: 10.1016/S0171-2985(11)80105-1.
To examine the possibility that the bone marrow cells of BALB/c genotype interfere with the development of insulitis and diabetes in NOD mice, we transplanted BALB/c bone marrow cells mixed with NOD bone marrow cells into NOD mice. The [(NOD + BALB/c) --> NOD] chimeras developed insulitis and diabetes, indicating that BALB/c bone marrow cells do not interfere with the development of the disease in NOD mice. Surprisingly, these mice have been reconstituted with only NOD hematolymphoid cells. When the pancreatic tissues from newborn NOD and BALB/c mice were grafted into [(NOD + BALB/c) --> NOD] chimeras, the BALB/c pancreatic tissues were rejected, whereas the NOD graft showed insulitis. Furthermore, the spleen cells of the chimeras showed responsiveness to BALB/c spleen cells in mixed lymphocyte reaction and generated cytotoxic T lymphocytes specific for the H-2d and third party targets. These findings indicate that the hematolymphoid cells (including hemopoietic stem cells) of NOD mice are more resilient than those of normal BALB/c mice, and that insulin-dependent diabetes mellitus will recur after bone marrow transplantation unless the hematolymphoid cells of NOD mice are completely destroyed by irradiation.
为了研究BALB/c基因型的骨髓细胞是否会干扰NOD小鼠中胰岛炎和糖尿病的发展,我们将BALB/c骨髓细胞与NOD骨髓细胞混合后移植到NOD小鼠体内。[(NOD + BALB/c)→NOD]嵌合体小鼠出现了胰岛炎和糖尿病,这表明BALB/c骨髓细胞不会干扰NOD小鼠疾病的发展。令人惊讶的是,这些小鼠仅由NOD造血淋巴细胞重建。当将新生NOD和BALB/c小鼠的胰腺组织移植到[(NOD + BALB/c)→NOD]嵌合体小鼠体内时,BALB/c胰腺组织被排斥,而NOD移植组织出现了胰岛炎。此外,嵌合体小鼠的脾细胞在混合淋巴细胞反应中对BALB/c脾细胞有反应,并产生了针对H-2d和第三方靶标的细胞毒性T淋巴细胞。这些发现表明,NOD小鼠的造血淋巴细胞(包括造血干细胞)比正常BALB/c小鼠的更具韧性,并且除非通过辐射完全破坏NOD小鼠的造血淋巴细胞,否则骨髓移植后胰岛素依赖型糖尿病将会复发。