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Ray J Carson

Publications and source records attributed to Ray J Carson.

3 recordsLinked to original sources

Lipopolysaccharide induces nitric oxide synthase expression and platelet-activating factor increases nitric oxide production in human fetal membranes in culture.

BACKGROUND: Platelet-activating factor and nitric oxide may be involved in the initiation of human labour as inflammatory mediators. The aim of this study was to test whether platelet-activating factor and lipopolysaccharide were able to induce nitric oxide synthase expression and stimulate the production of nitric oxide in human fetal membrane explants in culture. METHODS: Fetal membranes were collected from Caesarean sections at term. RNA was extracted from membranes and subjected to a qualitative RT-PCR to assess the baseline expression of iNOS. Discs of fetal membranes were cultured for 24 hours in the presence of platelet-activating factor at a dose range of 0.1 nanomolar--1 micomolar or 1 microgram/ml lipopolysaccharide. Nitric oxide production was measured via nitrite ions in the culture medium and mRNA for iNOS was detected by RT-PCR. RESULTS: Culturing the membrane discs in medium containing serum induced nitric oxide synthase expression and platelet-activating factor significantly stimulated the production of nitric oxide under these conditions. When cultured without serum inducible nitric oxide synthase expression was induced by lipopolysaccharide, but not by platelet-activating factor. CONCLUSION: Platelet-activating factor may have a role in the initiation of labour, at term or preterm, via the increased local production of nitric oxide as an inflammatory mediator. In this model of intrauterine infection, lipopolysaccharide was found to induce iNOS expression by fetal membranes, and this mechanism could be involved in preterm labour.

Culture Techniques↗

Detection and prevention of premature labour.

Preterm birth is a major public health problem, affecting up to 10% of pregnancies. The cause of premature labour in humans is not known, although some risk factors have been identified. Currently it is not possible to predict which women will go into labour prematurely or deliver preterm. New possible methods for the detection of premature labour are the measurement of biochemical markers in cervical or vaginal secretions, the measurement of collagen in cervical tissue and the recording of electrical properties of contractions of the uterus. Agents used to prevent premature labour include beta-agonist drugs, magnesium sulphate, calcium channel blockers, nitric oxide donors and prostaglandin synthesis inhibitors. A new approach is the use of oxytocin antagonists. Premature labour is still not completely understood, but some advances are being made, arising from basic research.

Female↗

Human sperm cells express CD44.

OBJECTIVE: To determine whether CD44 is expressed by human sperm cells. DESIGN: Prospective study. SETTING: Assisted conception unit and university research laboratory. PATIENT(S): Fourteen normal fertile donors. INTERVENTION(S): None. MAIN OUTCOME MEASURE(S): Enzyme-linked immunoassay was used to measure the concentration of CD44 in samples of human sperm cells. Immunocytochemistry using a fluorescent antibody system was used to confirm and localize the expression of CD44 on sperm membranes. Western blotting was used to identify CD44 protein in extracts of lysed sperm cells. RESULT(S): The presence of CD44 was identified in suspensions of pure sperm cells by ELISA. The mean sperm count was 66 million per milliliter (range, 60 million-75 million per milliliter) and the mean concentration of CD44 was 0.013 ng per 10(6) sperm (range, 0.012 ng-0.015 ng per 10(6) sperm). Use of a fluorescently labeled antibody to CD44 confirmed the presence of CD44 on sperm membranes. CD44 expression was mostly localized in the acrosome region. Western blotting using a specific monoclonal antibody to CD44 identified a variant of CD44 with an approximate molecular weight of 73 kDa. CONCLUSION(S): The expression of CD44 on the surface of human sperm membranes was confirmed by three independent methods.

Blotting, Western↗