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Profound atrophy of the bone marrow reflecting major histocompatibility complex class II-restricted destruction of stem cells by CD4+ cells

机译:骨髓的严重萎缩反映了主要的组织相容性复合物II类限制CD4 +细胞对干细胞的破坏

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摘要

The effector functions of CD4+ cells in vivo are presumed to reflect a combination of lymphokine-mediated bystander reactions and direct cytotoxic T lymphocyte activity. To assess the relative importance of these two mechanisms, we studied the effects of transferring small doses of purified unprimed CD4+ cells to lightly irradiated (600 cGy) recipients expressing major histocompatibility complex class II (Ia) differences. Within the first week after transfer, the host marrow was rapidly repopulated with hemopoietic cells. Thereafter, however, the donor CD4+ cells caused massive destruction of hemopoietic cells, both in marrow and spleen. Marrow aplasia did not affect stromal cells and was prevented by coinjecting donor but not host bone marrow. The use of allotypic markers and fluorescence-activated cell sorter analysis indicated that the destructive effects of CD4+ cells were directed selectively to host Ia+ hemopoietic cells, including stem cells; donor hemopoietic cells and Ia- host T cells were spared. No evidence could be found that the ongoing destruction of host cells impaired the capacity of donor stem cells to repopulate marrow, spleen, or thymus. Moreover, CD4+ cells failed to destroy host-type hemopoietic cells from Ia-deficient mice. Tissue destruction by CD4+ cells thus did not seem to reflect a bystander reaction. We conclude that, under defined conditions, CD4+ cells can manifest extremely potent Ia-restricted CTL activity in vivo, probably through recognition of covert Ia expression on stem cells and/or their immediate progeny.
机译:假定体内CD4 +细胞的效应子功能反映了淋巴因子介导的旁观者反应和直接的细胞毒性T淋巴细胞活性的结合。为了评估这两种机制的相对重要性,我们研究了将小剂量的纯净未引发CD4 +细胞转移至表达主要组织相容性复合物II类(Ia)主要差异的轻度辐射(600 cGy)受体的作用。在转移后的第一周内,宿主骨髓迅速被造血细胞填充。然而,此后,供体的CD4 +细胞在骨髓和脾脏中引起造血细胞的大量破坏。骨髓发育不全不会影响基质细胞,可以通过共注射供体来预防,但不能宿主骨髓。使用同种异型标记和荧光激活的细胞分选分析表明,CD4 +细胞的破坏作用选择性地针对宿主Ia +造血细胞,包括干细胞。供体造血细胞和Ia宿主T细胞被幸免。没有证据表明宿主细胞的持续破坏会破坏供体干细胞重新繁殖骨髓,脾脏或胸腺的能力。此外,CD4 +细胞无法破坏Ia缺陷型小鼠的宿主造血细胞。因此,CD4 +细胞对组织的破坏似乎并不反映旁观者反应。我们得出的结论是,在确定的条件下,CD4 +细胞可能在体内表现出极强的Ia限制性CTL活性,这可能是通过识别干细胞和/或其直接后代的隐性Ia表达而实现的。

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