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独特的白血病非T/非B淋巴样细胞系(REH和KM-3):缺乏混合淋巴细胞反应刺激物(MLR-S),对正常T细胞反应具有抑制细胞活性。

Unique leukemic non-T/non-B lymphoid cell lines (REH and KM-3): absence of MLR-S and presence of suppressor cell activity for normal T-cell response.

作者信息

Han T, Dadey B, Minowada J

出版信息

J Clin Lab Immunol. 1978 Nov;1(3):237-43.

PMID:159361
Abstract

The present study unequivocally demonstrates that leukemic non-T/non-B lymphod cells from three cell lines (NALL-1, NALM-6 and NALM-16) possess a strong stimulating capacity in "one-way" mixed lymphocyte reaction (MLR-S), while leukemic cells from two non-T/non-B cell lines (REH and KM-3) possess no MLR-S. It is speculated that leukemic non-T/non-B lymphoid cells with MLR-S may represent less differentiated leukemic B cells and leukemic non-T/B lymphoid cells without MLR-S may represent less differentiated leukemic T cells. The REH or KM-3 cells without MLR-S also act as suppressor cells on normal T lymphocyte response to mitogen and allogeneic cells by secreting a potent suppressor activity. The MOLT-4 leukemic T lymphoid cells with no MLR-S, on the other hand, do not act as suppressor cells on T lymphocyte response. The soluble factor(s) secreted by the REH or KM-3 cell line is non-toxic to T lymphocytes and heat-sensitive. A significant suppression of T lymphocyte response is still observed, even when the active material is only present for one hour prior to the addition of PHA or it is added several days after the beginning of cultures. The biological and physico-chemical nature of this active material has not been defined. Further studies are currently in progress for biological and physico-chemical characterization and isolation of the active material.

摘要

本研究明确表明,来自三种细胞系(NALL-1、NALM-6和NALM-16)的白血病非T/非B淋巴细胞在“单向”混合淋巴细胞反应(MLR-S)中具有强大的刺激能力,而来自两种非T/非B细胞系(REH和KM-3)的白血病细胞则不具备MLR-S。据推测,具有MLR-S的白血病非T/非B淋巴细胞可能代表分化程度较低的白血病B细胞,而不具有MLR-S的白血病非T/B淋巴细胞可能代表分化程度较低的白血病T细胞。没有MLR-S的REH或KM-3细胞还通过分泌一种强大的抑制活性,对正常T淋巴细胞对丝裂原和同种异体细胞的反应起到抑制细胞的作用。另一方面,没有MLR-S的MOLT-4白血病T淋巴细胞对T淋巴细胞反应不起抑制细胞的作用。REH或KM-3细胞系分泌的可溶性因子对T淋巴细胞无毒且对热敏感。即使活性物质在添加PHA之前仅存在一小时,或者在培养开始几天后添加,仍能观察到T淋巴细胞反应受到显著抑制。这种活性物质的生物学和物理化学性质尚未明确。目前正在进行进一步的研究,以对活性物质进行生物学和物理化学特性鉴定及分离。

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