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Biomedical subjects

Rosanna Apa

Publications and source records attributed to Rosanna Apa.

7 recordsLinked to original sources

Regulation of vascular endothelial growth factor synthesis and release by human luteal cells in vitro.

CONTEXT: Vascular endothelial growth factor (VEGF) is essential for normal luteal development and function, but little is still known about the regulation of its production by human midluteal phase luteal cells. OBJECTIVE: We investigated whether human chorionic gonadotropin (hCG) or local factors, including chemical hypoxia, IGF-I and IGF-II, prostaglandin (PG)E(2), and PGF(2alpha) prevail in modulating VEGF mRNA and protein production in human midluteal phase luteal cells. The effect of progesterone (P) on luteal VEGF mRNA expression and protein secretion was also evaluated. Finally, we investigated whether VEGF could directly affect luteal P secretion. INTERVENTIONS: In human midluteal phase luteal cells, VEGF mRNA expression was evaluated by semiquantitative RT-PCR, whereas VEGF and P release was evaluated by ELISA and RIA, respectively. RESULTS: hCG was unable to significantly affect luteal VEGF mRNA and protein synthesis, which in turn was significantly increased by both chemical hypoxia and IGFs. Conversely, VEGF mRNA and protein production was reduced by PGs and P. Finally, VEGF did not affect P luteal secretion. CONCLUSIONS: Our results suggest that local ovarian factors, rather than hCG, predominate in regulating VEGF mRNA and protein production by human midluteal phase luteal cells. For VEGF, a lack of a direct luteal steroidogenic effect was also demonstrated.

Cells, Cultured↗

Effects of nicotine on human luteal cells in vitro: a possible role on reproductive outcome for smoking women.

We investigated the effect of nicotine and its methylated metabolite, N-methyl-nicotine (M-nicotine), on human luteal cells by measuring release of progesterone and prostaglandins (PGs) from cultured cells and by testing gene expression of vascular endothelial growth factor (VEGF), an angiogenic factor strictly involved in luteal pathophysiology. Primary cultures of human luteal cells were treated for 24 h with nicotine and M-nicotine (from 10(-6) to 10(-11) M) either alone or combined with hCG (25 ng/ml); progesterone and PGs were assayed in the culture medium. In another group of experiments, luteal cells were treated for 24 h with nicotine and M-nicotine (10(-7) M) to perform reverse transcriptase-polymerase chain reaction on VEGF mRNA. Nicotine and M-nicotine negatively affected basal luteal steroidogenesis at all tested concentrations, but neither was able to affect hCG-induced progesterone release. Both substances were able to significantly increase PGF2alpha release from luteal cells, with a dose-related efficacy for M-nicotine. On the contrary, PGE2 release was significantly inhibited by both nicotine and its metabolite. Finally, nicotine was able to increase VEGF mRNA expression significantly, whereas M-nicotine was not. In conclusion, nicotine and M-nicotine can induce a sort of luteal insufficiency by inhibiting progesterone release, probably through modulation of the PG system.

Adult↗

Effects of insulin-like growth factor I and II on prostaglandin synthesis and plasminogen activator activity in human umbilical vein endothelial cells.

IGFs seem to contribute to the endothelial dysfunction observed in some vascular diseases. Because locally increased IGFs levels were detected in the preeclamptic fetoplacental unit, we hypothesized their involvement in the dysregulation of fibrinolysis and vascular tone typically observed in the fetoplacental compartment in this pregnancy disease. Therefore, in human umbilical vein endothelial cells (HUVECs), the potential effect of IGFs on the synthesis of plasminogen activators (PAs), PA inibitor-1 (PAI-1), and vasodilator and vasoconstrictor prostaglandins (PGs) was investigated. Moreover, in HUVECs treated with IGFs, the expression of cyclooxygenase (COX)-2, the rate-limiting enzyme in PG synthesis, was evaluated.HUVECs were treated for 24 h with IGFs (1-100 ng/ml) or IL-1beta (0.1 ng/ml). PA, PAI-1, and COX-2 mRNA was determined by RT-PCR and PG release and PA activity by RIA and colorimetric assay, respectively.We demonstrated an inhibition of urokinase-type PA activity and a 50% reduction of urokinase-type PA mRNA in HUVECs treated with IGFs. No effect was seen on PAI-1. Finally, both IGFs significantly decreased all PGs tested and COX-2 mRNA, whereas, as expected, IL-1beta had an opposite effect. In conclusion, our results suggest for IGFs a potential involvement in the endothelial dysfunction observed in preeclamptic fetoplacental unit.

Cells, Cultured↗

Endometrial evaluation in superovulation programs: relationship with successful outcome.

It is well known that an adequate endometrial receptivity is required for successful implantation in both natural and assisted reproductive cycles. In particular, a brief "implantation window", during which endometrium undergoes anatomical and molecular changes necessary for embryo implantation, has been observed. The hormonal treatment applied to induce ovulation seems to be able to modify the normal development of the prenidatory endometrium, with possible negative effect on the implantation rate. For this reason, several attempts have been made to identify specific markers of endometrial receptivity, useful for predicting implantation outcome in clinical practice. Even if different histological, immunohistochemical, and ultrasonographic parameters are studied, none unfortunately has been univocally shown to be predictive of pregnancy outcome. Therefore, the evaluation of endometrial receptivity remains a challenge in clinical practice.

Endometrium↗

The effects of nitric oxide on prostanoid production and release by human umbilical vein endothelial cells.

Human umbilical vein endothelial cells (HUVEC) express and synthesize both constitutive and inducible nitric oxide synthase (NOS) and cyclo-oxygenase (COX) enzymes, and have been extensively used as an in vitro model to investigate the role of these enzymes in the patho-physiology of placenta-fetal circulation. In this study we investigated the role of NO in regulating prostanoid production and release from HUVEC. Both untreated and IL-1beta-treated HUVEC were exposed to various NOS inhibitors and NO donors in short-term (1 or 3 hours) experiments, and the effects on prostanoid production were evaluated through the measurement of prostaglandins (PG) I2, E2 and F2alpha released in the incubation medium. We found that the inhibition of inducible NOS but not endothelial NOS antagonizes the IL-1beta-induced increase in PGI2 release. However, NOS inhibitors do not modify baseline PGI2 production. Pharmacological levels of NO, obtained with various NO donors, inhibit basal and IL-1beta-stimulated PG release.

Cells, Cultured↗

Interleukin-1 beta stimulates progesterone production by in vitro human luteal cells: evidence of a mediatory role of prostaglandins.

We have investigated whether IL-1 beta, a cytokine with an important role in ovarian physiology, is also involved in progesterone (P) synthesis in human luteal cells, and whether this effect is mediated via the cyclooxygenase (COX) pathway. Human luteal cells were cultured for 24 h in the presence of IL-1 beta (0.01-10 ng/ml), given alone or in combination with human chorionic gonadotropin (100 ng/ml), indomethacin (1 micro g/ml), or P (100 ng/ml). We observed a significant increase in prostaglandin (PG)release after IL-1 beta treatment; the cytokine was more effective on PGE(2) than PGF(2 alpha) release. The effect of IL-1 beta was abolished by human chorionic gonadotropin, which had no action on basal PG levels when given alone; in contrast, P reduced basal, but not IL-1 beta-stimulated, PG production. Treatment with the human IL-1 receptor antagonist was associated with a decrease in both basal and IL-1 beta-stimulated PG production. Moreover, IL-1 beta induced a concentration-dependent increase in P production and release, an effect counteracted by the COX inhibitor indomethacin. In conclusion, our data show the ability of IL-1 beta to influence P secretion via the COX pathway, thereby suggesting a possible luteotropic role in human ovary based on an autocrine-paracrine mechanism.

Cells, Cultured↗

Pituitary adenylate cyclase-activating polypeptide modulates plasminogen activator expression in rat granulosa cell.

Pituitary adenylate cyclase-activating polypeptide (PACAP) is a bioactive peptide isolated from ovine hypothalamus. It has been demonstrated to be transiently expressed in preovulatory follicles and to positively affect several parameters correlated with the ovulatory process. The aim of the present study was to investigate whether PACAP influences the plasminogen/plasmin system in rat ovary. Plasminogen activators (PAs) are serine proteases, modulated by gonadotropins and several peptides in preovulatory follicles, that appear to be involved in ovulation. Granulosa cells obtained from immature eCG-treated rats were cultured for 24 h in the presence of increasing concentrations of PACAP and vasoactive intestinal peptide (VIP). A significant, dose-dependent increase in tissue-type PA (tPA) activity and decrease in urokinase-type (uPA) PA activity were observed in PACAP-treated cells. These effects were exerted at the mRNA level. The use of cycloheximide, a protein synthesis inhibitor, suggested that PACAP requires an intermediary protein to decrease uPA-mRNA, but not to induce tPA-mRNA. However, no significant modulation of PAs was observed in the presence of VIP. When granulosa cells were stimulated within the intact follicle (i.e., maintaining the three-dimensional structure and in the presence of the theca cell layers), both PACAP and VIP dose-dependently stimulated tPA. These data suggest that, in addition to the PACAP type I receptor present on granulosa cells, different subtypes of PACAP receptors are present in the different ovarian compartments.

Animals↗