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白细胞-内皮细胞识别:中性粒细胞、淋巴细胞及其他白细胞共有的分子机制的证据

Leukocyte-endothelial cell recognition: evidence of a common molecular mechanism shared by neutrophils, lymphocytes, and other leukocytes.

作者信息

Lewinsohn D M, Bargatze R F, Butcher E C

出版信息

J Immunol. 1987 Jun 15;138(12):4313-21.

PMID:3584977
Abstract

The interaction of leukocytes with endothelial cells is intrinsic to the process of leukocyte extravasation, whether during the entry of blood polymorphonuclear leukocytes and monocytes into sites of acute and chronic inflammation, or during the homing of lymphocytes to lymphoid organs. A lymphocyte surface glycoprotein, defined by monoclonal antibody MEL-14, has been described that appears to mediate lymphocyte recognition of postcapillary venules in peripheral lymph nodes, and to control the migration of lymphocytes from the blood into these lymphoid organs. We now report that the antigenic determinant recognized by MEL-14 is present at high levels on other leukocytes as well, including neutrophils, monocytes, and eosinophils; and we demonstrate involvement of the MEL-14 antigen in neutrophil-endothelial cell interactions. MEL-14 immunoprecipitates a neutrophil surface protein of Mr approximately 100,000, similar in m.w. to the 80,000 to 90,000 dalton lymphocyte surface MEL-14 antigen, and it blocks the interaction of neutrophils with endothelial cells in an in vitro model of adhesion to postcapillary venules in lymph node frozen sections. Neutrophil binding to lymph node venules is also inhibited by PPME, a mannose-6-phosphate-rich yeast polysaccharide that is thought to mimic the endothelial cell ligand for the MEL-14-defined lymphocyte receptor. Interestingly, neither MEL-14 nor PPME exhibit a major effect on neutrophil binding to postcapillary venules in Peyer's patches, suggesting that as for lymphocytes, the neutrophil MEL-14 antigen is involved in recognition of tissue-specific endothelial determinants. Finally, we show that MEL-14 inhibits the capacity of neutrophils to migrate from the blood into sites of acute inflammation in the skin. These observations lead us to propose that receptors for tissue-specific endothelial determinants are utilized by neutrophils and lymphocytes and probably other leukocytes during the physiologic process of leukocyte extravasation in vivo.

摘要

白细胞与内皮细胞的相互作用是白细胞渗出过程所固有的,无论是在血液中的多形核白细胞和单核细胞进入急性和慢性炎症部位时,还是在淋巴细胞归巢至淋巴器官的过程中。一种由单克隆抗体MEL - 14所定义的淋巴细胞表面糖蛋白已被描述,它似乎介导淋巴细胞对外周淋巴结中毛细血管后微静脉的识别,并控制淋巴细胞从血液迁移至这些淋巴器官。我们现在报告,MEL - 14识别的抗原决定簇在其他白细胞中也高水平存在,包括中性粒细胞、单核细胞和嗜酸性粒细胞;并且我们证明了MEL - 14抗原参与中性粒细胞与内皮细胞的相互作用。MEL - 14免疫沉淀出一种分子量约为100,000的中性粒细胞表面蛋白,其分子量与80,000至90,000道尔顿的淋巴细胞表面MEL - 14抗原相似,并且在淋巴结冰冻切片中毛细血管后微静脉黏附的体外模型中,它能阻断中性粒细胞与内皮细胞的相互作用。富含甘露糖 - 6 - 磷酸的酵母多糖PPME也能抑制中性粒细胞与淋巴结微静脉的结合,PPME被认为可模拟MEL - 14所定义的淋巴细胞受体的内皮细胞配体。有趣的是,MEL - 14和PPME对派尔集合淋巴结中毛细血管后微静脉的中性粒细胞结合均未表现出主要影响,这表明对于淋巴细胞而言,中性粒细胞的MEL - 14抗原参与对组织特异性内皮决定簇的识别。最后,我们表明MEL - 14抑制中性粒细胞从血液迁移至皮肤急性炎症部位的能力。这些观察结果使我们提出,在体内白细胞渗出的生理过程中,中性粒细胞、淋巴细胞以及可能其他白细胞利用了组织特异性内皮决定簇的受体。

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