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对巨噬细胞进行化学处理可增强其对迁移抑制因子(MIF)的反应性。

Chemical treatment of macrophages increases their responsiveness to migration inhibitory factor (MIF).

作者信息

Remold H G

出版信息

J Immunol. 1977 Jan;118(1):1-5.

PMID:187695
Abstract

The response of guinea pig macrophages to migration inhibitory factor (MIF) is altered by several chemical treatments. Treatment of macrophages with the diazonium salt of sulfanilic acid (5 x 10(-6) to 4 x 10(-4) M) significantly increases the response of these cells to MIF. Treatment with acetic anhydride also augments the response of these cells to MIF. The latter finding suggests that alteration of amino, hydroxyl, or sulfhydryl groups is involved in this phenomenon. Treatment of macrophages with sodium periodate (2 x 10(-5) to 10(-3) M) which is known to oxidize cis-glycols and with hydroxylamine (2 x 10(-5) to 2 x 10(-3) M), which reacts with carbonyl groups also increases response to MIF. The following experiments suggest that the significant alteration occurs at the level of the cell surface. Incubation of macrophages with the diazonium salt of sulfanilic acid at 4 degrees C, at which temperature pinocytosis is largely inhibited, is sufficient to increase the MIF response. The activity of the cytoplasmic enzyme aspartate aminotransferase, which in homogenates is susceptible to inactivation by low concentrations of the diazonium salt of sulfanilic acid, is not decreased when intact macrophages are incubated with high concentrations of the diazonium salt of sulfanilic acid. Cumulatively, these findings suggest that modification of different functional groups on the macrophage surface causes the same physiologic effect.

摘要

豚鼠巨噬细胞对迁移抑制因子(MIF)的反应会因几种化学处理而改变。用对氨基苯磺酸重氮盐(5×10⁻⁶至4×10⁻⁴M)处理巨噬细胞会显著增强这些细胞对MIF的反应。用乙酸酐处理也会增强这些细胞对MIF的反应。后一发现表明,氨基、羟基或巯基的改变与这一现象有关。用过碘酸钠(2×10⁻⁵至10⁻³M,已知其可氧化顺式二醇)和羟胺(2×10⁻⁵至2×10⁻³M,可与羰基反应)处理巨噬细胞也会增加对MIF的反应。以下实验表明,显著改变发生在细胞表面水平。在4℃下用对氨基苯磺酸重氮盐孵育巨噬细胞,此时胞饮作用在很大程度上受到抑制,但这足以增加对MIF的反应。细胞质酶天冬氨酸转氨酶在匀浆中易被低浓度的对氨基苯磺酸重氮盐灭活,而当完整的巨噬细胞与高浓度的对氨基苯磺酸重氮盐孵育时,该酶的活性并未降低。总的来说,这些发现表明巨噬细胞表面不同官能团的修饰会产生相同的生理效应。

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