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自身免疫性新西兰小鼠骨髓B细胞前体的年龄依赖性丧失是由有丝分裂活性降低所致,而非固有基质细胞缺陷所致。

The age-dependent loss of bone marrow B cell precursors in autoimmune NZ mice results from decreased mitotic activity, but not from inherent stromal cell defects.

作者信息

Kruger M G, Riley R L

机构信息

Department of Microbiology and Immunology, University of Miami School of Medicine, FL 33136.

出版信息

J Immunol. 1990 Jan 1;144(1):103-10.

PMID:2295786
Abstract

The formation of B lymphocytes is abnormal in autoimmune NZB and (NZB x NZW)F1 mice. With age, the proportion of sIg- Ly-5(220)+ pre-B cells and less mature B cell progenitors in the bone marrow progressively declines, reaching only approximately one-third of normal levels in 20-wk-old NZ mice. To determine the mechanisms responsible for the deficiency of NZ B lineage precursors, the mitotic activity of sIg- Ly-5(220)+ bone marrow cells in vivo was determined in NZ and conventional inbred mice as a function of age. The proportion of sIg- Ly-5(220)+ B cell precursors in (S + G2/M) stages of the cell cycle steadily decreased with age in NZ autoimmune mice. Furthermore, upon metaphase arrest, the rate of entry of sIg- Ly-5(220)+ bone marrow cells into G2/M also decreased with age in NZ mice. Therefore, the mitotic activity of sIg- Ly-5(220)+ B cell precursors is substantially decreased in NZ mice greater than or equal to 20 wk of age. The capacity of the bone marrow stromal microenvironment of NZ mice to support B lineage precursor growth was tested in two ways: 1) the capacity of preformed NZ bone marrow stroma to support B lineage cell growth in long term bone marrow cell culture under lymphopoietic conditions was assessed and 2) the capacity of NZ bone marrow B lineage precursors to expand in vivo after sublethal (200 rad) whole body irradiation was determined. Stroma derived from adult NZ mice supported the growth and development of B lineage lymphocytes in long term bone marrow cell culture to a greater extent than did age-matched conventional murine stroma. Furthermore, sublethal irradiation of older adult NZ mice resulted in some expansion of bone marrow sIg- Ly-5(220)+ B cell precursors in vivo. Therefore, the deficiency of B cell progenitors in the bone marrow of older NZ autoimmune mice is associated with diminished mitotic activity. However, this does not result from defects in the capacity of NZ bone marrow stroma to permit B lineage cell expansion as determined by both in vitro and in vivo experiments. In the absence of a detectable stromal cell defect, it is possible that an active inhibitory process within the bone marrow influences the mitotic activity of B cell precursors in NZ mice.

摘要

在自身免疫性NZB和(NZB×NZW)F1小鼠中,B淋巴细胞的形成异常。随着年龄增长,骨髓中sIg-Ly-5(220)+前B细胞和较不成熟的B细胞祖细胞的比例逐渐下降,在20周龄的NZB小鼠中仅达到正常水平的约三分之一。为了确定导致NZB B系前体细胞缺乏的机制,在NZB小鼠和传统近交系小鼠中,测定了体内sIg-Ly-5(220)+骨髓细胞的有丝分裂活性随年龄的变化。在NZB自身免疫小鼠中,处于细胞周期(S + G2/M)期的sIg-Ly-5(220)+ B细胞前体的比例随着年龄的增长而稳步下降。此外,在中期停滞时,NZB小鼠中sIg-Ly-5(220)+骨髓细胞进入G2/M期的速率也随着年龄的增长而降低。因此,在20周龄及以上的NZB小鼠中,sIg-Ly-5(220)+ B细胞前体的有丝分裂活性显著降低。通过两种方式测试了NZB小鼠骨髓基质微环境支持B系前体细胞生长的能力:1)评估预先形成的NZB骨髓基质在淋巴细胞生成条件下长期骨髓细胞培养中支持B系细胞生长的能力;2)确定NZB骨髓B系前体细胞在亚致死剂量(200拉德)全身照射后在体内扩增的能力。与年龄匹配的传统小鼠基质相比,成年NZB小鼠来源的基质在长期骨髓细胞培养中更能支持B系淋巴细胞的生长和发育。此外,对成年老龄NZB小鼠进行亚致死照射后,体内骨髓sIg-Ly-5(220)+ B细胞前体出现了一定程度的扩增。因此,老龄NZB自身免疫小鼠骨髓中B细胞祖细胞的缺乏与有丝分裂活性降低有关。然而,如体外和体内实验所确定的,这并非源于NZB骨髓基质允许B系细胞扩增的能力存在缺陷。在没有可检测到的基质细胞缺陷的情况下,骨髓内可能存在一种活跃的抑制过程影响NZB小鼠中B细胞前体的有丝分裂活性。

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