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实验性红细胞自身抗体。V. 注射经大鼠菠萝蛋白酶处理的红细胞的小鼠中红细胞自身抗体的诱导与抑制

Experimental erythrocyte autoantibodies. V. Induction and suppression of red blood cell autoantibodies in mice injected with rat bromelain-treated red blood cells.

作者信息

Cox K O, McAuliffe A

出版信息

Cell Immunol. 1983 Oct 1;81(1):22-7. doi: 10.1016/0008-8749(83)90207-1.

Abstract

Mice injected with rat red blood cells (RBC), or rat bromelain-treated (brom) RBC, produce RBC autoantibodies and suppressor cells that specifically inhibit the autoimmune response without inhibiting the net production of antibodies against rat RBC. It has been investigated whether suppressor cells induced by injections of rat RBC are effective in preventing autoantibody production induced by rat brom RBC and vice versa. Autoantibodies were induced in C3H mice by weekly ip injections, each 0.2 ml, of a 6% suspension of rat RBC or rat brom RBC. Autoantibody production was assayed using Coombs' test. Suppressor cells were present in the spleens of mice positive in Coombs' tests and were shown by intravenous injections of 40 X 10(6) viable cells per mouse into untreated syngeneic mice 18 hr before the first injection of rat RBC or rat brom RBC. Autoantibodies eluted from mice positive in Coombs' tests after injections of rat RBC or brom RBC were absorbed by either type of rat RBC but not by RBC from sheep. This suggests that rat RBC and rat brom RBC display antigens that are similar, if not identical, to autoantigens on the mouse RBC. Spleen cells from mice injected with rat RBC suppressed autoantibodies induced by both rat RBC and rat brom RBC. In contrast, spleen cells from mice injected with rat brom RBC suppressed autoantibodies induced by rat brom RBC but not those induced by unmodified rat RBC. This differential suppression may be due to the removal from rat RBC, by bromelain, of a suppressor site and/or autoantigens of some specificities. Thus rat brom RBC may not induce the total range of specificities of autoantibodies, and of suppressor cells, induced by rat RBC.

摘要

给小鼠注射大鼠红细胞(RBC)或经大鼠菠萝蛋白酶处理(brom)的红细胞后,小鼠会产生红细胞自身抗体和抑制细胞,这些抑制细胞能特异性抑制自身免疫反应,而不抑制针对大鼠红细胞的抗体净生成。研究了注射大鼠红细胞诱导产生的抑制细胞是否能有效预防由经菠萝蛋白酶处理的大鼠红细胞诱导产生的自身抗体生成,反之亦然。通过每周腹腔注射0.2毫升6%的大鼠红细胞或经菠萝蛋白酶处理的大鼠红细胞悬液,在C3H小鼠中诱导产生自身抗体。使用库姆斯试验检测自身抗体生成情况。在库姆斯试验呈阳性的小鼠脾脏中存在抑制细胞,在首次注射大鼠红细胞或经菠萝蛋白酶处理的大鼠红细胞前18小时,通过给未处理的同基因小鼠每只静脉注射40×10⁶个活细胞来证明。注射大鼠红细胞或经菠萝蛋白酶处理的红细胞后,从库姆斯试验呈阳性的小鼠中洗脱的自身抗体可被任何一种大鼠红细胞吸收,但不能被绵羊红细胞吸收。这表明大鼠红细胞和经菠萝蛋白酶处理的大鼠红细胞所呈现的抗原与小鼠红细胞上的自身抗原相似,即便不完全相同。注射大鼠红细胞的小鼠的脾细胞可抑制由大鼠红细胞和经菠萝蛋白酶处理的大鼠红细胞诱导产生的自身抗体。相比之下,注射经菠萝蛋白酶处理的大鼠红细胞的小鼠的脾细胞可抑制由经菠萝蛋白酶处理的大鼠红细胞诱导产生的自身抗体,但不能抑制由未处理的大鼠红细胞诱导产生的自身抗体。这种差异抑制可能是由于菠萝蛋白酶从大鼠红细胞中去除了一个抑制位点和/或某些特异性的自身抗原。因此,经菠萝蛋白酶处理的大鼠红细胞可能不会诱导产生由大鼠红细胞诱导的自身抗体和抑制细胞的全部特异性范围。

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