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P DiCorleto

Publications and source records attributed to P DiCorleto.

3 recordsLinked to original sources

Interferon-gamma improves muscle flap microcirculation in double-strand RNA-induced inflammation.

Endothelial cell (EC) activation and subsequent expression of leukocyte adhesion molecules are initial events in multiple pathological processes. Viral double-strand ribonucleic acid (dsRNA) induces EC adhesion protein expression and leukocyte adhesion in vitro. Interferon-gamma (IFN-gamma) has been demonstrated to modulate the expression of certain adhesion proteins. The purpose of this study was to measure the inflammatory response to a viral mimetic--a synthetic dsRNA, polyinosinic-polycytidylic acid (poly-I:C)-on the microcirculation of a muscle flap in a rat model and to determine whether IFN-gamma attenuated the response. Two-stage surgery to create a cremaster muscle end-organ tube flap was performed on 18 male Sprague-Dawley rats in three groups. After intra-arterial injection into the abdominal aorta, the reagents (phosphate-buffered saline-bovine serum albumin [PBS-BSA] in groups I and II, and IFN-gamma in group III) were kept for 1 hour in this end-organ system. During the second stage at 16 hours, after injection into the penile vein (PBS-BSA in group I, poly-I:C in groups II and III), the flap was prepared for intravital microscopic measurement. The following parameters were measured: red blood cell velocity; vessel diameter; number of functional capillaries; and number of rolling, sticking, and transmigrating neutrophils and lymphocytes. Wilcoxon's rank sum test was used for statistical comparison. Poly-I:C caused a 70% increase in the main artery diameter and a 7% increase in velocity. But as a consequence of dynamic activation of leukocyte interaction, a 30% drop in functional capillary perfusion was observed. Injury to the entire vascular endothelium was confirmed by a 160% increase in transmigrating leukocytes. Treatment with IFN-gamma inhibited the poly-I:C-induced inflammation, as shown by 88%, 63%, and 85% decreases in rolling, sticking, and transmigrating leukocytes respectively, and by a 28% increase in capillary perfusion. Treating the system with IFN-gamma in advance, inhibited poly-I:C-induced inflammation, shown by marked decreases in rolling, adhering, and transmigrating leukocytes, and a notable increase in perfused capillaries. These observations reflect an inhibitory effect of IFN-gamma on leukocyte adhesion molecule expression in vascular endothelium in response to dsRNA in a muscle flap at the microcirculatory level.

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Production of platelet-derived growth factorlike protein by rat mesangial cells in culture.

Rat mesangial cells (MC) release a factor that competes in a dose-dependent manner with 125I-labeled platelet-derived growth factor (PDGF) for binding to human foreskin fibroblasts (HFF). The competitor activity in mesangial cell conditioned medium (MCCM) is reversible, trypsin sensitive, and inhibited by anti-PDGF IgG. MCCM also expresses potent mitogenic activity to HFF. Anti-PDGF IgG, in concentrations that completely abolished the mitogenic activity of pure PDGF and the competitor activity of MCCM, only partially (33-41%) inhibits this mitogenic activity. The PDGF receptor competing activity as well as the total mitogenic activity, coelutes with labeled pure PDGF on Sephacryl S-200 gel chromatography. Cation exchange chromatography of concentrated MCCM yields a major mitogen peak with little competitor activity and a smaller mitogenic peak with comparable competitor activity, suggestive of the presence of other mitogens in MCCM besides the PDGF-like protein. PDGF is a potent mitogen and may play a role at inflammatory sites. The production of PDGF-like protein by MC may provide insights for understanding the pathogenesis of glomerular diseases.

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An endothelial cell-derived growth factor.

Cell-free plasma-derived serum (PDS) is deficient in the platelet-derived growth factor and will not support the growth of 3T3 cells, fibroblasts, or smooth muscle cells. However, when PDS-containing medium is preincubated with endothelial cells, the medium becomes modified so that it will support growth. The activity produced by the endothelial cells results from a polypeptide of 10,000 to 30,000 daltons which has several features that differ from those of the platelet-derived growth factor, including heat instability and lack of adsorption to CM Sephadex.

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