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Am J Physiol Lung Cell Mol Physiol 282: L796-L802, 2002. First published November 16, 2001; doi:10.1152/ajplung.00298.2001
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Vol. 282, Issue 4, L796-L802, April 2002

Time-dependent reversal of sepsis-induced PMN uptake and lung vascular injury by expression of CD18 antagonist

Ning Xu1, Xiao-Pei Gao1, Richard D. Minshall1,2, Arshad Rahman1, and Asrar B. Malik1

Departments of 1 Pharmacology and 2 Anesthesiology, College of Medicine, The University of Illinois, Chicago, Illinois 60612

We determined the time-dependent effects of conditional expression of neutrophil inhibitory factor (NIF), a specific 41-kDa CD18 integrin antagonist, on the time course of NIF expression and lung PMN (polymorphonuclear leukocyte) infiltration and vascular injury in a model of Escherichia coli-induced sepsis in mice. Studies were made in mice transduced with the E-selectin (ES) promoter-NIF construct (using liposomes) in which the NIF cDNA was driven by the inflammation- and endothelial cell-specific ES promoter. We observed time-dependent expression of NIF in pulmonary vascular endothelium that paralleled the ES expression. Expression of both was evident at 1 h after E. coli challenge, peaked at 3-6 h, and returned to basal level within 48 h. We observed that increases in PMN uptake and transalveolar PMN migration induced by E. coli challenge were reversed in a time-dependent manner following NIF expression in mice. NIF expression also prevented the progression of lung vascular injury and edema formation following E. coli challenge. Thus the conditional expression of NIF using the ES promoter can reverse, in a time-dependent manner, lung PMN infiltration and vascular injury induced by gram-negative sepsis. The results support the model that initial engagement of CD18 integrins enables the further recruitment of additional PMN into lung tissues such that PMN continue to sequester and migrate after E. coli challenge.

E-selectin promoter; gram-negative sepsis; CD18 blockade; polymorphonuclear leukocyte migration and uptake; lung vascular permeability


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