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R Cabello-Passini

Publications and source records attributed to R Cabello-Passini.

2 recordsLinked to original sources

Hypertonic saline infusion: can it regulate human neutrophil function?

The down-regulation of neutrophil adhesion molecule expression after hemorrhagic shock may reduce neutrophil-mediated organ injury. Hypertonic saline (HS) blocks neutrophil activation, and HS infusion in animals reduces organ injury. In this study, we investigated whether HS infusion in healthy human volunteers can affect neutrophil function. Healthy human volunteers were administered either 4 mL/kg of a 7.5% HS (n = 6) or normal saline (NS, 0.9%; n = 5) over 15 min. Mean arterial pressure (MAP) and plasma sodium levels were measured. Blood samples were obtained before and 1 h after fluid administration. Cells were stimulated with fMLP or left untreated. Neutrophil phagocytosis and expression of CD11b and L-selectin was determined with flow cytometry. HS infusion caused a 7 +/- 2 mM rise in plasma Na+ levels that was sustained at 6 +/- 1 mM for 60 min. MAP was affected only in one subject. HS and NS infusion had little effect on neutrophil phagocytosis. After HS infusion, CD1lb expression of unstimulated neutrophils was 26 +/- 6% lower than before HS infusion, and that of fMLP-stimulated cells was 12 +/- 2% lower compared to pre-infusion values. NS infusion had no significant effects on neutrophil CD11b expression. L-selectin expression of unstimulated cells after HS infusion was 9 +/- 3% higher than in the pre-infusion samples. These data suggest that HS infusion could indeed affect human neutrophils by suppressing CD11b expression. Although modest in healthy subjects, this effect may be more pronounced in trauma patients where reduced neutrophil-endothelial cell interactions might lessen neutrophil-mediated tissue damage.

Adolescent↗

Hypertonic saline resuscitation reduces neutrophil margination by suppressing neutrophil L selectin expression.

UNLABELLED: Hypertonic saline (HS) reduces hemorrhage-induced lung injury by suppressing the neutrophil oxidative burst and reducing lung neutrophil influx. This study investigated whether this is caused by the effects of HS on endothelial adhesion molecule expression, the production of chemoattractants in the lung, or a direct effect of HS on neutrophil selectin expression. METHODS: BALB/c mice were made to hemorrhage to 40 mm Hg for 1 hour and resuscitated with shed blood and either 4 mL/kg 7.5% HS or two times the shed blood volume of lactated Ringer's solution (LRS). Neutrophil L selectin expression was determined by flow cytometry, total neutrophil counts were obtained by differential staining, and pulmonary endothelial P and E selectin expression was evaluated by immunohistochemistry. Chemoattractants in lung lavages were determined with a modified Boyden chamber migration assay. RESULTS: Chemotactic activity of lavage fluid of HS-treated animals was not significantly different from that of LRS-treated animals, and endothelial P and E selectin expression was not altered by HS resuscitation. Neutrophils of HS-treated animals, however, expressed significantly less L selectin than those of LRS-treated mice. Concomitantly, circulating neutrophil counts of LRS-treated animals were significantly decreased compared with those of HS-treated mice. CONCLUSION: HS had little effect on endothelial selectin expression and chemoattractant production in the lung. HS significantly decreased neutrophil L selectin expression, however. This suggests that HS resuscitation may reduce lung injury by preventing neutrophil L selectin expression and endothelial adhesion.

Animals↗