PubMed Health⌕ Search

Biomedical subjects

A W Nap

Publications and source records attributed to A W Nap.

5 recordsLinked to original sources

Vascular development in endometriosis.

Endometriosis, defined as the presence of endometrial tissue outside the uterus, is an estrogen-dependent disease which causes pelvic pain and subfertility in women of reproductive age. The condition has a dramatic impact on the professional, social and marital life of sufferers. Direct and indirect evidence suggests that angiogenesis is required for the development and persistence of endometriosis. In this review the state-of-the-art with regard to our understanding of the role of angiogenesis in the ectopic implantation and survival of menstrual endometrial tissue will be discussed.

Blood Vessels↗

Menstrual effluent induces epithelial-mesenchymal transitions in mesothelial cells.

BACKGROUND: Menstrual effluent affects mesothelial cell (MC) morphology. We evaluated whether these changes were consistent with epithelial-mesenchymal transitions (EMT). METHODS: Monolayer cultures of MC were incubated overnight in conditioned media, prepared from cells isolated form menstrual effluent, with or without kinase and ATP inhibitors. Changes in cell morphology were monitored using time-lapse video microscopy and immunohistochemistry. Effects on the expression of EMT-associated molecules were evaluated using real-time RT-PCR and/or Western blot analysis. RESULTS: Incubation in conditioned media disrupted cell-cell contacts, and increased MC motility. The changes were reversible. During the changes the distribution of cytokeratins, fibrillar actin and alpha-tubulin changed. Sodium azide, an inhibitor of ATP production, and Genistein, a general tyrosine kinase inhibitor, antagonized these effects. Wortmannin, a phosphatidylinositol 3-kinase inhibitor, and SU6656, an Src tyrosine kinase inhibitor, only partially antagonized the effect. The expression of Snail and vimentin was markedly up-regulated, whereas the expression of E-cadherin was decreased and cytokeratins were altered. CONCLUSIONS: In MC, menstrual effluent initiates a reversible, energy-dependent transition process from an epithelial to a mesenchymal phenotype. Involvement of the (Src) tyrosine kinase signalling pathway and the changes in the expression of cytokeratins, Snail, vimentin and E-cadherin demonstrate that the morphological changes are EMT.

Actins↗

Activated protein C resistance during in vitro fertilization treatment.

Acquired resistance to the anticoagulant action of activated protein C (APC) has been proposed to explain the increased risk of venous thrombosis associated with pregnancy, hormone replacement therapy and the use of oral contraceptives. In this study, we have investigated whether the hormonal changes induced during in vitro fertilization (IVF) treatment are also associated with acquired APC resistance. Twenty-nine women, who were planned for an IVF cycle, donated blood at four time points during treatment, i.e. at baseline, down-regulation, hyperstimulation and luteal support. In the plasma samples, APC sensitivity ratios (APCsr) and the levels of progesterone and estradiol were measured. The changes in plasma concentrations of hormones were in accordance with literature. The APCsr increased significantly during hyperstimulation and remained high during luteal support. The extent of APC resistance occurring during IVF treatment was comparable to that observed during the use of second generation OC and was less pronounced than that occurring during pregnancy. The change in estradiol between baseline and hyperstimulation correlated with the change in APCsr. Although this suggests that plasma estrogen levels are an important determinant for acquired APC resistance, it remains to be established which plasma proteins are responsible for estrogen-induced APC resistance.

Activated Protein C Resistance↗

Effect of in vitro fertilization treatment and subsequent pregnancy on the protein C pathway.

Thirty-three women who were planned for an in vitro fertilization (IVF) cycle donated blood at four time points during treatment: at baseline, after downregulation, hyperstimulation and luteal support. Levels of progesterone, 17beta-oestradiol and indicators of the protein C pathway, i.e. activated protein C sensitivity ratios (APCsr), protein C, protein C inhibitor and protein S were measured. Compared with baseline, oestradiol decreased twofold at downregulation and increased 40-fold at hyperstimulation. Progesterone was elevated 2.5-fold at hyperstimulation and 40-fold at luteal support. The APCsr increased slightly at downregulation, significantly increased during hyperstimulation and remained high during luteal support. The plasma levels of the anticoagulant proteins did not change or changed moderately during treatment. During downregulation, progesterone correlated negatively with APCsr (r = -0.398, P = 0.024). At hyperstimulation oestradiol correlated with the APCsr (r =0.615, P < 0.0005). Moreover, there was a significant correlation (r = 0.599, P < 0.0005) between the difference in baseline and hyperstimulation values of oestradiol (Delta E2 = 6.6 nmol/l) and the APCsr (Delta APCsr = 0.30). Six women who participated in this study became pregnant. Compared with baseline, the APCsr was increased 1.9-fold (Delta APCsr = 1.48) and free protein S free level decreased 30% at 7 weeks of pregnancy. This study demonstrates that despite the considerable changes in endogenous oestradiol and progesterone during an IVF cycle, changes in plasma levels of anticoagulant proteins are moderate. The significant increase in the APCsr during hyperstimulation indicates that acquired APC resistance observed during sex steroid hormone changes in women is at least partially caused by high oestrogen levels. Our findings demonstrate that IVF treatment is accompanied by the development of a mild prothrombotic condition.

Activated Protein C Resistance↗

Reproductive decisions of men with microdeletions of the Y chromosome: the role of genetic counselling.

Couples dealing with microdeletions of the Y chromosome have to make decisions about their reproductive future. Do they opt for intracytoplasmic sperm injection (ICSI), artificial insemination with donor insemination (AID) or no treatment? We analysed this decision in 28 couples and investigated the role of the counsellor and the counselling process on the final decision of the couple. Ten counsellors from six fertility clinics in The Netherlands and Belgium were interviewed about their genetic counselling of couples dealing with microdeletions. The answers to the questionnaire were converted to 11 dichotomous variables. Of the 1627 tested men in the six centres, 37 (2.3%) had a microdeletion in the AZFc region, a subregion of the AZF region on the Y chromosome important for normal spermatogenesis. The decisions of 28 of them could be analysed. Most couples chose ICSI (79%). The remaining couples chose donor insemination (7%) or refrained from treatment (14%). Several variables, including the counselling procedure, the counsellor and the available treatments in the fertility centre, influenced the decision of the couple. In conclusion, most couples dealing with microdeletions in the AZF region choose ICSI. Several aspects of the process of genetic counselling appear to be related to the final decision.

Adult↗