Kepley Christopher L, Andrews Ronald P, Brown David C, Chigaev Alexandre, Sklar Larry A, Oliver Janet M, Larson Richard S
Department of Pathology, University of New Mexico Health Sciences Center, Albuquerque, USA.
J Allergy Clin Immunol. 2002 Sep;110(3):469-75. doi: 10.1067/mai.2002.126462.
Although soluble mediators released by basophils in tissue sites contribute to the chronic injury that occurs in hypersensitivity diseases, only limited information is available about how circulating basophils are recruited to tissues. In particular, the interaction of basophils with endothelium under conditions that mimic physiologic flow has not been explored.
We sought to identify adhesion molecules regulating the attachment of human basophils to IL-4-activated human umbilical vein endothelial cells (HUVECs) under flow conditions.
A parallel-plate flow chamber and blocking mAbs were used to define the adhesion molecules involved in the interactions of peripheral blood basophils (PBBs) and cord blood-derived basophils (CBDBs) with IL-4-activated HUVECs and with Chinese hamster ovary (CHO) cell transfectants expressing specific adhesion molecules. A fluorescent ligand specific for very late antigen 4 (VLA-4) was used to directly examine the VLA-4 affinity state of basophils.
Flowing PBBs and CBDBs attached to activated HUVECs and to CHO cells expressing P- or E-selectin. However, only CBDBs attached to vascular cell adhesion molecule 1 (VCAM-1)-transfected CHO cells under flow conditions. The attachment of CBDBs to CHO cells was blocked by mAbs directed against E-selectin, P-selectin, and VCAM-1, whereas attachment of PBBs was blocked by E-selectin and P-selectin mAbs. Activating VLA-4 with Mn(2+) on PBBs resulted in adhesion to the VCAM-1-transfected CHO cells, indicating that VLA-4 activity on PBBs can be regulated, at least in part, through affinity changes. The Mn(2+)-induced upregulation of basophil VLA-4 affinity was demonstrated directly by using a fluorescent ligand for VLA-4 and flow cytometry.
The interaction of human CBDBs and PBBs with endothelium under flow conditions is mediated in part by both P- and E-selectin. VLA-4 additionally contributes to the adhesion of flowing CBDBs. However, the affinity of VLA-4 is too low to support the adhesion under flow conditions of unstimulated PBBs.
尽管嗜碱性粒细胞在组织部位释放的可溶性介质会导致超敏反应疾病中出现的慢性损伤,但关于循环嗜碱性粒细胞如何被招募到组织中的信息却十分有限。特别是,尚未探讨在模拟生理流动条件下嗜碱性粒细胞与内皮细胞之间的相互作用。
我们试图确定在流动条件下调节人嗜碱性粒细胞与白细胞介素-4激活的人脐静脉内皮细胞(HUVECs)黏附的黏附分子。
使用平行板流动腔和阻断性单克隆抗体来确定参与外周血嗜碱性粒细胞(PBBs)和脐血来源的嗜碱性粒细胞(CBDBs)与白细胞介素-4激活的HUVECs以及与表达特定黏附分子的中国仓鼠卵巢(CHO)细胞转染体相互作用的黏附分子。使用针对极迟抗原4(VLA-4)的荧光配体直接检测嗜碱性粒细胞的VLA-4亲和力状态。
流动的PBBs和CBDBs黏附于激活的HUVECs以及表达P-或E-选择素的CHO细胞。然而,在流动条件下,只有CBDBs黏附于血管细胞黏附分子1(VCAM-1)转染的CHO细胞。针对E-选择素、P-选择素和VCAM-1的单克隆抗体可阻断CBDBs与CHO细胞的黏附,而PBBs的黏附则被E-选择素和P-选择素单克隆抗体阻断。用Mn(2+)激活PBBs上的VLA-4会导致其黏附于VCAM-1转染的CHO细胞,这表明PBBs上的VLA-4活性至少部分可通过亲和力变化来调节。通过使用VLA-4荧光配体和流式细胞术直接证明了Mn(2+)诱导的嗜碱性粒细胞VLA-4亲和力上调。
在流动条件下,人CBDBs和PBBs与内皮细胞的相互作用部分由P-和E-选择素介导。VLA-4也有助于流动的CBDBs的黏附。然而,VLA-4的亲和力过低,无法支持未刺激的PBBs在流动条件下的黏附。