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Biomedical subjects

Yoel Sadovsky

Publications and source records attributed to Yoel Sadovsky.

9 recordsLinked to original sources

Microarray analysis of uterine gene expression in mouse and human pregnancy.

Improved care of infants born prematurely has increased their survival. However, the incidence of preterm labor has not changed. To understand the processes involved in preterm labor, we used oligonucleotide microarrays to study gene expression in murine and human uterus during pregnancy. The induction of enzymes for prostaglandin synthesis was used as a marker for important changes during pregnancy because prostaglandins strongly contribute to both human and murine labor. We identified 504 genes that changed at least 2-fold between d 13.5 and 19.0 in the gravid mouse uterus. In the pregnant human myometrium, we found 478 genes that changed at least 2-fold in either term or preterm labor compared with preterm nonlabor specimens and 77 genes that significantly varied in both preterm and term labor. Patterns of gene regulation within functional groups comparing human preterm and term labor were similar, although the magnitude of change often varied. Surprisingly, few genes that changed significantly throughout pregnancy were the same in the mouse and human. These data suggest that functional progesterone withdrawal in human myometrium may not be the primary mechanism for labor induction, may implicate similar mechanisms for idiopathic preterm and term labor in humans, and may identify novel targets for further study.

Animals↗

Human placenta metabolizes fatty acids: implications for fetal fatty acid oxidation disorders and maternal liver diseases.

The role of fat metabolism during human pregnancy and in placental growth and function is poorly understood. Mitochondrial fatty acid oxidation disorders in an affected fetus are associated with maternal diseases of pregnancy, including preeclampsia, acute fatty liver of pregnancy, and the hemolysis, elevated liver enzymes, and low platelets syndrome called HELLP. We have investigated the developmental expression and activity of six fatty acid beta-oxidation enzymes at various gestational-age human placentas. Placental specimens exhibited abundant expression of all six enzymes, as assessed by immunohistochemical and immunoblot analyses, with greater staining in syncytiotrophoblasts compared with other placental cell types. beta-Oxidation enzyme activities in placental tissues were higher early in gestation and lower near term. Trophoblast cells in culture oxidized tritium-labeled palmitate and myristate in substantial amounts, indicating that the human placenta utilizes fatty acids as a significant metabolic fuel. Thus human placenta derives energy from fatty acid oxidation, providing a potential explanation for the association of fetal fatty acid oxidation disorders with maternal liver diseases in pregnancy.

Adult↗

A novel domain within the DEAD-box protein DP103 is essential for transcriptional repression and helicase activity.

Members of the DEAD-box family of helicases, distinguished by a core characteristic sequence of Asp-Glu-Ala-Asp, are expressed in a wide range of prokaryotes and eukaryotes and exhibit diverse cellular functions, including DNA transcription, recombination and repair, RNA processing, translation, and posttranslational regulation. Although ubiquitous, the function of most DEAD-box proteins is unknown. We and others have recently cloned DP103, which harbors conserved DEAD-box, helicase, and ATPase domains in its N terminus. DP103 (also termed Gemin3 and DDX20) interacts with SF-1, SMN, EBNA2, and EBNA3C in mammalian cells. Here we demonstrate that a discrete domain within the nonconserved C-terminal region of DP103 directly interacts with SF-1. This domain exhibits an autonomous repression function and is necessary and sufficient for repressing the transcriptional activity of SF-1. Furthermore, intact DP103 exhibits helicase activity. Importantly, the C-terminal domain is obligatory but not sufficient for this unwinding activity of DP103. Together, our results support a novel paradigm for transcriptional repression and demonstrate the bifunctional role of the C-terminal domain of DP103.

Animals↗

A variable fold change threshold determines significance for expression microarrays.

The use of expression microarrays to determine bona fide changes in gene expression between experimental paradigms is confounded by noise due to variability in measurement. To assess the variability associated with transcript hybridization to commercial oligonucleotide-based microarrays, we generated a data set consisting of five replicate hybridizations of a single labeled cRNA target from three distinct experimental paradigms, using the Affymetrix human U95 GeneChip set. We found that the variability of expression level in our data set is intensity-specific. We quantified the observed variability in our data set in order to determine significant changes in gene expression. LOESS fitting to a plot of the standard deviation of replicates assigned a variability associated with a specific intensity. This allowed for the calculation of a "variable fold-change" threshold for any absolute intensity at any level of statistical confidence. Testing of this method indicates that it removes intensity-specific bias and results in a 5- to 10-fold reduction in the number of false-positive changes. We suggest that this approach can be widely used to improve prediction of significant changes in gene expression for oligonucleotide-based microarray experiments and reduce false leads, even in the absence of replicates.

Gene Expression Profiling↗

Trophoblast apoptosis from pregnancies complicated by fetal growth restriction is associated with enhanced p53 expression.

OBJECTIVE: We tested the hypothesis that apoptotic trophoblasts from pregnancies associated with fetal growth restriction caused by preeclampsia or cigarette use exhibit enhanced expression of the proapoptotic proteins p53 and Bax and diminished expression of the antiapoptotic protein Bcl-2. STUDY DESIGN: Placentas were obtained from women with uncomplicated pregnancies (n = 4) or from women with pregnancies complicated by fetal growth restriction associated with preeclampsia, cigarette use, or both (n = 7). Placental sections were examined by means of hematoxylin and eosin and terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick end labeling (TUNEL) staining, as well as by detection of cytokeratin 18 cleavage products indicative of apoptosis. The expression of p53 was examined by means of Western immunoblotting and immunohistochemistry. The expression of Bax, Bcl-2, Bak, and Bcl-X(L) was analyzed by immunoblotting. RESULTS: More apoptosis was found in the trophoblast layer of villi from pregnancies complicated by fetal growth restriction than in the trophoblast layer of villi from control pregnancies. The enhanced apoptosis correlated with up-regulation of p53, primarily in cytotrophoblast nuclei. There was no difference between the two groups in expression of the proteins from the Bcl-2 family. CONCLUSIONS: The expression of p53, but not members of the Bcl-2 family of proteins is up-regulated in human placental villi from pregnancies complicated by fetal growth restriction. We speculate that conditions predisposing to placental hypoxia lead to p53-mediated apoptosis in trophoblasts and thereby contribute to placental dysfunction.

Adult↗

A prospective randomized safety trial of celecoxib for treatment of preterm labor.

OBJECTIVE: We compared the safety of celecoxib, a selective cyclo-oxygenase-2 inhibitor, with the safety of the nonselective cyclo-oxygenase inhibitor indomethacin, when it was administered for treatment of preterm labor. STUDY DESIGN: In a randomized, double-blind, placebo-controlled trial, 24 pregnant women in preterm labor at 24 to 34 weeks of gestation received either indomethacin or celecoxib for 48 hours. Clinical assessment, fetal sonography, and Doppler blood flow studies of the fetal ductus arteriosus were performed daily. RESULTS: Mean maximum ductal flow velocity was significantly elevated over baseline (82.9 +/- 4.6 cm/s vs 111.14 +/- 14.3 cm/s; P =.02) after 24 hours of indomethacin, but not celecoxib. Both medications were associated with a transient decrease in amniotic fluid volume, with a greater effect by indomethacin. The medications were equally effective in the maintenance of tocolysis. There were no significant maternal or neonatal adverse events. CONCLUSION: In this initial evaluation, the safety of short-term celecoxib in women with preterm labor was superior to that of indomethacin.

Adolescent↗

Trophoblast differentiation modulates the activity of caspases in primary cultures of term human trophoblasts.

Cultured human cytotrophoblasts are more susceptible than syncytiotrophoblasts to hypoxia-induced apoptosis. Caspases are cysteine proteases that cleave cellular components to effect the apoptotic cascade. We hypothesized that cultured cytotrophoblasts exhibit a higher activity of caspases when compared with syncytiotrophoblasts. Using western analysis, we demonstrated that the pro-caspases 3, 6, 8, and 9 are expressed in cytotrophoblasts cultured for 24 h, and also, in trophoblasts cultured 72 h when syncytiotrophoblasts have formed. Importantly, we found significantly higher activity of all four caspases in trophoblasts cultured 24 h compared with cells cultured 72 h. Colchicine and DMSO, which hinder trophoblast differentiation, enhanced the activity of all four caspases in cells cultured 72 h. Conversely, caspase activity was reduced in trophoblasts cultured for 24 h in the presence of epidermal growth factor, which enhances differentiation. This effect was most pronounced on caspase 3 and was attenuated by addition of the tyrosine kinase inhibitor AG1478. We conclude that cytotrophoblasts exhibit a higher activity of caspases 3, 6, 8, and 9 when compared with the more differentiated syncytium. This may account for the higher susceptibility of cytotrophoblasts to hypoxia-induced apoptosis.

Amino Acid Chloromethyl Ketones↗

The activity of PPAR gamma in primary human trophoblasts is enhanced by oxidized lipids.

The ligand-dependent nuclear receptor PPAR gamma plays an important role in murine and human trophoblast differentiation. Oxidized lipids, which are implicated in the pathophysiology of placental dysfunction, have recently been identified as ligands for PPAR gamma. We therefore hypothesized that oxidized lipids activate PPAR gamma in human trophoblasts and influence placental function. To test our hypothesis, we examined the effect of 9S-hydroxy-10E,12Z-octadecadienoic acid (9-HODE), 13S-hydroxy-9Z,11E-octadecadienoic acid (13-HODE), and 15S-hydroxy-5Z,8Z,11Z,13E-eicosatetraenoic acid (15-HETE) on PPAR gamma activity in cultured term human trophoblasts. Our results demonstrate that these lipids stimulate PPAR gamma activity and that the AF-2 fragment, which harbors the ligand-binding domain of PPAR gamma, mediates this effect. Furthermore, we assessed the consequences of PPAR gamma activation by the oxidized lipids, and we found that these lipids stimulate human CG production, a measure of trophoblast differentiation. In contrast, the expression of syncytin, a marker for syncytium formation as well as the expression of the cell cycle modulators cyclin E and p27 are unchanged by the oxidized lipids. We concluded that 9-HODE, 13-HODE, and 15-HETE activate PPAR gamma in primary human trophoblasts. These PPAR gamma ligands may play a role in placental differentiation, yet they are unlikely to contribute to trophoblast dysfunction.

Cell Differentiation↗

Assessment of the diagnostic accuracy of the TDx-FLM II to predict fetal lung maturity.

BACKGROUND: Because respiratory distress syndrome (RDS) affects 1% of live births, accurate and rapid assessment of markers of fetal lung maturity is critical to clinicians in deciding whether to deliver a preterm infant. Our objective was to determine the optimal diagnostic cutoff value for the TDx-FLM II assay (Abbott Laboratories) for predicting clinically significant RDS. METHODS: Amniotic fluid TDx-FLM II data were collected retrospectively over 4 years. Women were included in the study if they had delivered within 72 h of TDx-FLM II testing and both the mother and infant charts could be reviewed. Women who had been treated with steroids and delivered unaffected infants were excluded from the analysis. The diagnosis of RDS was defined as infants who either were treated with surfactant and/or were placed on a ventilator and/or required continuous positive airway pressure for >1 day. RESULTS: A total of 185 women met all entry criteria (15 RDS, 170 non-RDS). A cutoff value for a mature result of >or=45 mg/g gave a sensitivity of 100% (95% confidence interval, 82-100%) and a specificity of 90% (95% confidence interval, 78-89%). CONCLUSIONS: The TDx-FLM II appears to predict clinically significant RDS when a cutoff of >or=45 mg/g is used for mature results. Further studies will be required to confirm these findings.

Amniotic Fluid↗