Search PubMed⌕ Search

Biomedical subjects

Simona Cardaropoli

Publications and source records attributed to Simona Cardaropoli.

2 recordsLinked to original sources

Intrauterine growth restriction and genetic predisposition to thrombophilia.

BACKGROUND AND OBJECTIVES: Intrauterine growth restriction is an important cause of morbidity and mortality. Its pathogenesis is still a matter of debate. The aim of this study was to evaluate the association between intrauterine growth restriction (diagnosed in utero by serial ultrasound examinations and characterized by abnormal umbilical arterial Doppler velocimetry) and thrombophilic polymorphisms (factor V Leiden, prothrombin G20210A) or methylenetetrahydrofolate reductase C677T carried by mothers and/or neonates. DESIGN AND METHODS: This was a case-control study with prospective enrollment. Fetuses with intrauterine growth restriction were included if they had three characteristics: 1) reduced intrauterine growth (measured in utero by ultrasound); 2) birth weight below the 10th percentile; 3) abnormal Doppler velocimetry of the umbilical artery. The three polymorphisms were evaluated in 48 cases and in 98 controls by polymerase chain reaction (PCR) and restriction analysis. RESULTS: Factor V Leiden was present in 2/48 (4%) mothers or neonates among cases and 7/98 (7%) among controls. Prothrombin G20210A was present in 0/48 (0%) mothers or neonates among cases and 4/98 (4%) among controls. Methylenetetrahydrofolate reductase C677T was present in 16/48 (33%) mothers or neonates among cases and 22/98 (22%) controls. Overall the prevalence of the polymorphisms in mothers and/or neonates was 18/48 (37%) in cases and 33/98 (34%) in controls. INTERPRETATION AND CONCLUSIONS: No association was found in this study between intrauterine growth restriction with abnormal umbilical blood flow and thrombophilic polymorphisms or methylenetetrahydrofolate reductase C677T.

Adolescent↗

Infectious and inflammatory stimuli decrease endothelial nitric oxide synthase activity in vitro.

BACKGROUND: Perturbation of iron metabolism, especially the increase of serum ferritin levels, is often associated with both inflammation and hypertension. Changes in iron availability can affect an important regulator of vascular tone, the endothelial nitric oxide synthase (eNOS), activated by a heme-dependent dimerization. OBJECTIVE: To study the regulation of the anti-hypertensive eNOS in human endothelial cells, in correlation with iron metabolism alterations and stimuli triggering them in vivo, such as inflammation or infection. DESIGN: Cells were treated with stimuli mimicking infection or inflammation [lipopolysaccharide (LPS) and/or tumor necrosis factor alpha (TNFalpha)]. and iron shortage (succinylacetone and desferrioxamine). The effect on eNOS expression and activation was evaluated, as well as ferritin content. METHODS: eNOS protein expression was evaluated by separating the monomeric from the active dimeric form by low-temperature sodium dodecyl sulphate poly-acrylamide gel electrophoresis (SDS-PAGE), and mRNA was analyzed by semi-quantitative reverse transcriptase (RT)-polymerase chain reaction (PCR). As for LPS and TNFalpha, eNOS monomer decreased already after a 72-h treatment and further at 144 h, whereas the down-regulation of the dimer was slower, peaking at 144 h. Succinylacetone and desferrioxamine were effective only at 144 h. The mRNA levels were increasingly reduced after incubation, more markedly by LPS and TNFalpha together, whereas succinylacetone and desferrioxamine had no effect on transcription. We found that endothelial cells are not the source of increased ferritin production. CONCLUSIONS: The results of this study suggest a down-regulating effect of infectious and inflammatory stimuli on eNOS expression, both at the mRNA level and protein expression or stability and dimerization, enhanced by heme and iron shortage, and indicate eNOS as a possible link between infection and hypertension.

Bacterial Infections↗