Vol. 283, Issue 6, H2676-H2686, December 2002
Bradykinin-induced proinflammatory signaling mechanisms
Sakuji
Shigematsu,
Shuji
Ishida,
Dean C.
Gute, and
Ronald J.
Korthuis
Department of Molecular and Cellular Physiology, Louisiana State
University Health Sciences Center, School of Medicine in
Shreveport, Shreveport, Louisiana 71130
Intravital microscopic techniques were
used to examine the mechanisms underlying bradykinin-induced
leukocyte/endothelial cell adhesive interactions (LECA) and venular
protein leakage (VPL) in single postcapillary venules of the rat
mesentery. The effects of bradykinin superfusion to increase LECA and
VPL were prevented by coincident topical application of either a
bradykinin-B2 receptor antagonist, a cell-permeant
superoxide dismutase (SOD) mimetic or antioxidant, or inhibitors of
cytochrome P-450 epoxygenase (CYPE) or protein kinase C
(PKC) but not by concomitant treatment with either SOD, a mast cell
stabilizer, or inhibitors of nitric oxide synthase, cyclooxygenase,
xanthine oxidase, NADPH oxidase, or platelet-activating factor.
Immunoneutralizing P-selectin or intercellular adhesion molecule-1
(ICAM-1) completely prevented bradykinin-induced leukocyte adhesion and
emigration but did not affect VPL. On the other hand, stabilization of
F-actin with phalloidin prevented bradykinin-induced leukocyte
emigration and VPL but did not alter leukocyte adhesion. These data
indicate that bradykinin induces LECA in rat mesenteric venules via a
B2-receptor-initiated, CYPE-, oxidant- and PKC-mediated,
P-selectin- and ICAM-1-dependent mechanism. Bradykinin also produced
VPL, an effect that was initiated by stimulation of B2
receptors and involved CYPE and PKC activation, oxidant generation, and
cytoskeletal reorganization but was independent of leukocyte adherence
and emigration.
leukocyte adhesion; leukocyte emigration; protein leakage; postcapillary venules; B2 receptor; platelet-activating
factor; nitric oxide; cyclooxygenase; mast cells; oxidants; superoxide; cytochrome P-450 epoxygenase; protein kinase C; P-selectin; intercellular adhesion molecule-1; cytoskeleton