CSF或CSF诱导的生物反应调节剂对骨髓生成的调节。

E Schlick, R Ruffmann, K Hartung, M A Chirigos
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引用次数: 7

摘要

我们比较了2-氰氮吡啶化合物Azimexone和bm41.332与马来酸酐二乙烯基醚共聚物(MVE-2)或粒细胞-巨噬细胞集落刺激因子(GM-CSF)对骨髓祖细胞和外周血效应细胞数量和功能的影响。在腹腔注射Azimexone或bm41.332后的几小时内,血清CSF水平、单核骨髓细胞(BMC)和巨噬细胞(M phi)分泌CSF呈剂量依赖性增加,随后粒细胞-M phi干细胞(GM-CFU-C)、有核BMC和外周血白细胞增加。50 mg/kg Azimexone或25 mg/kg bm41.332用药3 d效果最佳。经环磷酰胺(CY) (150 mg/kg)预处理的小鼠,三次腹腔注射Azimexone 50 mg/kg能够显著恢复被抑制的骨髓细胞(GM-CFU-C和有核BMC)。Azimexone还增加了正常或cy处理小鼠的外周M phi的数量,但没有诱导可检测到的杀肿瘤活性。然而,这些m.phi保留了通过适当的激活信号(如IFN或LPS)完全激活(细胞毒性)的能力。类似于2-氰氮嘧啶。MVE-2 (25 mg/kg)对正常小鼠骨髓功能有类似的刺激作用。此外,MVE-2诱导M phi和NK细胞的细胞毒性显著增强。相比之下,单次或多次向正常小鼠注射半纯化的GM-CSF(每只小鼠1000 U或5000 U)不能明显刺激骨髓生长和分化。因此,2-氰氮吡啶化合物有可能选择性地增强正常和骨髓抑制小鼠骨髓单核细胞的生长和分化,而不会明显影响其免疫状态。
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Modulation of myelopoiesis by CSF or CSF-inducing biological response modifiers.

We have compared the effects on number and function of bone marrow progenitors and peripheral effector cells of the myelomonocytic lineage of treatment with the 2-cyanaziridine compounds Azimexone and BM 41.332 to those of maleic anhydride divinyl ether copolymer (MVE-2) or granulocyte-macrophage colony stimulation factor (GM-CSF). Within a few hours after i.p. injection of either Azimexone or BM 41.332, there was a dose-dependent increase in serum CSF levels, CSF secretion by mononuclear bone marrow cells (BMC) and macrophages (M phi), which was followed by an increase in granulocyte-M phi committed stem cells (GM-CFU-C), nucleated BMC, and peripheral blood leukocytes. Optimal effects occurred 3 days after 50 mg/kg Azimexone or 25 mg/kg BM 41.332. Three i.p. injections of 50 mg/kg Azimexone into mice pretreated with cyclophosphamide (CY) (150 mg/kg) were able to significantly restore suppressed bone marrow cellularity (GM-CFU-C and nucleated BMC). Azimexone also increased the number of peripheral M phi in normal or CY-treated mice, without inducing detectable tumoricidal activity. These M phi, however, retained their capacity to become fully activated (cytotoxic) by appropriate activation signals such as IFN or LPS. Analogous to the 2-cyanaziridines. MVE-2 (at 25 mg/kg) had similar stimulatory effects on myeloid functions in normal mice. MVE-2 induced, in addition, a significant augmentation of cytoxicity by both M phi and NK cells. In contrast, single or multiple injections of semipurified GM-CSF into normal mice (1000 U or 5000 U per mouse) failed to detectably stimulate myelopoietic growth and differentiation. 2-cyanaziridine compounds thus offer the potential of selectively augmenting growth and differentiation of myelomonocytic cells in normal and bone marrow-depressed mice without appreciably affecting their immunological status.

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