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Biomedical subjects

A Meisser

Publications and source records attributed to A Meisser.

28 records · Page 2Linked to original sources

CA 125 in seminal plasma: correlation with semen parameters.

Ovarian cancer marker CA 125 was measured in human seminal plasma, and the concentrations ranged between 22 and 1149 U/ml, and between 39 and 4711 U/ejaculate. This very high patient-to-patient variability was in contrast to a much lower within-patient variability, which was comparable to that of other semen parameters. No significant differences in CA 125 concentration were found in seminal plasma from normospermic patients, patients with male factors, vasectomized men, and in aliquots of samples which led to a pregnancy, via artificial insemination or in-vitro fertilization. The seminal plasma CA 125 concentration was not correlated with sperm count, motility and morphology. In contrast, seminal plasma CA 125 concentrations correlated with the age of the patient (P < 0.001) and inversely with the volume of the ejaculate (P < 0.001). These correlations were independent of each other. CA 125 did not correlate with the prostatic marker zinc, but did do so with the seminal vesicle marker fructose and the epididymal marker carnitine.

Adult↗

Investigations on the cell type responsible for the endometrial secretion of complement component 3 (C3).

It has been shown that rat and human endometria have the capacity to produce complement component 3 (C3). In rats, endometrial C3 is an oestrogen-dependent protein produced and secreted by glandular cells. The cell responsible for the synthesis and secretion of human endometrial C3 has not been clearly defined. Our study was aimed at answering this question. Samples of endometrium obtained from hysterectomies were either immunostained for C3 or digested with collagenase; then the stromal and glandular cells were separated and immunopurified (or not) with an antibody to CD45 coupled to magnetic beads to eliminate the endometrial lymphomyeloid cells. Cells were cultured for 2 weeks and C3 measured in the medium by an in-house radioimmunoassay. Glandular as well as stromal cells stained positively for C3 and released C3 in vitro. The release of C3 from both cell types could be inhibited by cycloheximide. Epithelial cells produced significantly more C3 than stromal cells, and endometrial C3 production was higher for both cell types when these were obtained from secretory as compared to proliferative endometria. Lymphomyeloid cells were possibly a source of C3 since after immunoadsorption of these cells, the remaining stromal or glandular cells produced significantly less C3. We conclude that endometrial stromal, glandular and lymphomyeloid cells all produce C3.

Adult↗

Pregnancy-associated plasma protein-A-induced inhibition of human leukocyte elastase: an artifact.

Pregnancy-associated plasma protein A (PAPP-A), was reported to be an inhibitor in many in vitro systems. Since it was shown that the inhibition of coagulation and complement activity attributed to PAPP-A was in fact due to a contamination by heparin occurring during the purification process, we undertook the present study to see whether the reported PAPP-A-induced inhibition of human leukocyte elastase (HLE) could also be attributed to heparin contamination. PAPP-A was purified from maternal pregnancy EDTA plasma by a method which was previously shown to eliminate contaminating heparin: this preparation was inactive in the HLE assay. But PAPP-A isolated by heparin-Sepharose chromatography, or a PAPP-A-free washing of the heparin-Sepharose column were both inhibitors of HLE. Furthermore the inactive PAPP-A preparation, when incubated with the PAPP-A-free washing of the heparin-Sepharose column, yielded a high molecular weight preparation which inhibited HLE. It is concluded that PAPP-A is not an inhibitor of HLE and that the inhibition of HLE previously attributed to PAPP-A was due to contaminating heparin.

Chromatography, Gel↗

Immunological heterogeneity of pregnancy-associated plasma protein-A (PAPP-A). Effects on the radioimmunoassay of PAPP-A.

Pregnancy-associated plasma protein-A (PAPP-A) is a macromolecular glycoprotein produced by the trophoblast during pregnancy. Because the presence of PAPP-A in non-pregnant females is controversial, we re-evaluated our own radioimmunoassay technique for PAPP-A in the light of new observations about its immunological heterogeneity. Irrespective of the antibody (Geneva anti-PAPP-A or Dako anti-PAPP-A) the use of EDTA pregnancy plasma instead of pregnancy serum as a standard yielded different slopes of the standard curves and estimated significantly different amounts of PAPP-A in test samples. Moreover, highly purified tracers, isolated from maternal EDTA pregnancy plasma or pregnancy serum also produced significantly different results. So that the use of a tracer purified from EDTA plasma and EDTA pregnancy plasma as a standard will yield measurable levels of PAPP-A in non-pregnant female serum whereas the use of a tracer purified from maternal pregnancy serum and maternal pregnancy serum as a standard will not detect PAPP-A in the same samples. We conclude that, irrespective of the antiserum used, but depending on the biological origin of the tracer and the standard, different results will be obtained. PAPP-A is clearly immunologically heterogeneous, and the immunorecognition of PAPP-A will depend on whether or not blood coagulation has taken place.

Blotting, Western↗

In vitro effects of pregnancy-associated plasma protein-A: artifacts due to heparin.

Pregnancy-associated plasma protein-A (PAPP-A) has been reported to inhibit elastase activity, lymphoblastogenesis, complement activity, and thrombin-induced coagulation of fibrinogen. Since some of these results are controversial, we reevaluate here the effects of PAPP-A in these last two systems. By molecular sieve chromatography, PAPP-A immunoreactivity and inhibitory activity on thrombin and complement were dissociated. A PAPP-A-free washing of the heparin-Sepharose column used during the purification of PAPP-A showed inhibitory activities similar to those of purified PAPP-A. Furthermore, a preparation of PAPP-A that had not been submitted to heparin-Sepharose chromatography during purification was not active in either assays. Thus, the anticoagulant and anti-complement effects previously attributed to PAPP-A were due to a contaminant of low molecular mass. We believe that this contaminant is probably heparin. A protocol to eliminate free and PAPP-A-bound heparin is presented herein, and implications for other previously reported in vitro effects of PAPP-A are discussed.

Blood Coagulation Tests↗

Placental protein 5 (PP5) inhibits thrombin-induced coagulation of fibrinogen.

The effect of Placental Protein 5 (PP5) on thrombin-induced coagulation of diluted fibrinogen is described. In contrast to previous reports which failed to demonstrate antithrombin-like activity for PP5 on synthetic substrates, we show in this study that PP5 inhibits thrombin activity in a dose-dependent manner. PP5 acts thus in a very similar way to antithrombin III (ATIII). Although PP5 binds to heparin, it does not show any heparin-cofactor activity. Whereas catalytic amounts of heparin accelerate greatly the inhibitory effect of ATIII, no accelerating effect of heparin on PP5 could be observed under the same conditions. In spite of its anti-thrombin activity, PP5 cannot be considered as a pregnancy-analogue of ATIII, as it lacks the heparin-cofactor activity.

Antithrombin III↗

Interaction of pregnancy-associated plasma protein-A (PAPP-A) with coagulation: a bioassay for PAPP-A.

The observation that pregnancy-associated plasma protein A (PAPP-A) concentrations are higher in plasma compared to serum obtained from the same patient, together with fact that PAPP-A binds to heparin, prompted us to study the interaction between PAPP-A and the clotting system. It was determined that pure PAPP-A inhibits thrombin-induced coagulation of citrated plasma. The presence of antithrombin III (AT III) was necessary since PAPP-A had no inhibitory effect on coagulation of AT III-depleted plasma. The effect of PAPP-A is thus similar to that of heparin. This property of PAPP-A was used to develop a bioassay. Thrombin-induced polymerization of purified fibrinogen was measured in a spectrophotometer. AT III is a weak inhibitor of polymerization, but its effect is magnified in the presence of PAPP-A or heparin. The residual thrombin activity, when plotted against the concentration of PAPP-A, gives a linear relationship. The assay conditions developed allow maximal sensitivity and reproducibility. The kinetics of inhibition due to PAPP-A and heparin was first order. With this bioassay, activities of PAPP-A molecules isolated by the same technique from different fetomaternal compartments were compared.

Antithrombin III↗

Pregnancy-associated plasma protein-A (PAPP-A) inhibits thrombin-induced coagulation of plasma.

Concentrations of immunoreactive PAPP-A have been found significantly lower in the serum as compared to heparin or EDTA plasma from the same patients. After coagulation significant amounts of PAPP-A remain associated with the clot. Purified PAPP-A inhibits thrombin induced coagulation of plasma. This inhibition cannot be attributed to a direct effect of PAPP-A on thrombin. It is exerted via an activation of endogenous antithrombin III since the inhibitory effect of PAPP-A on thrombin induced coagulation in a euglobulin system can be observed only if antithrombin III is added. The fact that protamine sulphate is capable of neutralizing the inhibitory effects of PAPP-A made us postulate that PAPP-A, like heparin, possesses strongly acidic residues which bind to protamine.

Animals↗

Control of MMP-9 expression at the maternal-fetal interface.

Cytotrophoblastic cells (CTB) from first trimester placenta form columns of invasive CTB. This invasive behaviour is due to the ability of CTB to secrete matrix metalloproteinases (MMPs) since tissue inhibitor of MMP (TIMP) inhibits their invasiveness. Although CTB behave like metastatic cells, in vivo they are only transiently invasive (first trimester) and their invasion is normally limited only to the endometrium and to the proximal third of the myometrium. This temporal and spatial regulation of trophoblast invasion is believed to be mediated in an autocrine way by trophoblastic factors and in a paracrine way by uterine factors. Several types of regulators have been investigated: hormones, extra-cellular matrix glycoproteins and cytokines or growth factors. This review is not intended to be an exhaustive catalogue of potential regulators of trophoblastic MMP-9 secretion but is aimed at summarising the most important signalling pathways involved in MMP-9 regulation.

Endometrium↗

Paracrine and autocrine regulators of trophoblast invasion--a review.

Cytotrophoblastic cells (CTBs) from first trimester placenta follow one of two existing differentiation pathways: villous CTBs (vCTBs) form a monolayer of polarized epithelial stem cells which proliferate and eventually differentiate by fusion to form a syncytiotrophoblast (STB) covering the entire surface of the villus, or they can break through the STB at selected sites (in anchoring villi) to form multilayered columns of non-polarized but invasive CTBs. In vitro, CTBs invade a reconstituted basement membrane, they thus behave like metastatic cells. This invasive behaviour is due to the ability of CTBs to secrete matrix metalloproteinases (MMPs) since tissue inhibitor of MMP (TIMP) inhibits their invasiveness. MMPs are a family of at least 17 human zinc-dependent endopeptidases collectively capable of degrading essentially all components of the extracellular matrix (ECM). Although CTBs behave like metastatic cells, in vivo they are only transiently invasive (first trimester) and their invasion is normally limited only to the endometrium and to the proximal third of the myometrium. This temporal and spatial regulation of trophoblast invasion is believed to be mediated in an autocrine way by trophoblastic factors and in a paracrine way by uterine factors. Several types of regulators have been investigated: hormones, cytokines, growth factors and ECM glycoproteins. This review is not intended to be an exhaustive catalogue of all the potential regulators but is aimed at emphasizing those factors relevant in trophoblast-endometrial interactions.

Carrier Proteins↗