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First-trimester Down syndrome screening: component analytes and timing for optimal performance.

Abstract

The most effective first-trimester Down syndrome screening protocol in current use employs three independent markers: maternal serum levels of PAPP-A and free beta hCG, and measurement of fetal nuchal translucency (NT). Eleven weeks appears to be the optimum gestational age for performing first trimester DS risk assessment. Although the discrimination of free beta hCG improves with increasing gestational age and is greatest at 13 weeks, PAPP-A and NT perform optimally at 10 and 11 weeks, respectively. In addition to accurate pregnancy dating, first trimester screening performance is improved by using a consistent NT measurement technique, NT cut-offs adjusted for gestational age or crown-rump length, and possibly center- or operator-specific NT medians. Whether or not absence or presence of the nasal bone adds to screening accuracy is a matter of some debate. Finally, because enlarged NT has been associated with cardiac defects and other structural anomalies, even in euploid fetuses, its presence should prompt a targeted second trimester ultrasound examination.

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BibTeXRIS

Katharine D Wenstrom. 2005. First-trimester Down syndrome screening: component analytes and timing for optimal performance.. https://doi.org/10.1053/j.semperi.2005.06.002

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Fasudil induces anti-inflammatory transcriptomic changes and increased proliferation in human trisomy 21 neural progenitor cells.

Down syndrome (DS) results from trisomy for human chromosome 21 and is the most frequent genetic cause of intellectual disability. No effective treatments currently exist that improve neurodevelopment and cognition. Atypical brain development in individuals with DS is apparent before birth, which suggests that the optimal time to begin administration of therapies is prenatally. Human neural progenitor cell (NPC) cultures provide a tractable in vitro model system to examine the effects of trisomy 21 (T21) on neurodevelopment and to measure the effects of pharmacological interventions. Here, we report the results of preclinical studies evaluating 24 candidate therapies. RNA sequencing analyses found that euploid and T21 NPCs showed different transcriptomic responses to five candidate pharmacotherapies. The Rho-associated coiled-coil kinase inhibitor fasudil increased proliferation of T21 NPCs, reduced expression of inflammatory pathway genes in T21 NPCs, and reduced markers of inflammation in LPS-stimulated microglial model systems. These results demonstrate that fasudil can alter multiple T21-associated abnormalities in a beneficial manner, suggesting that fasudil warrants further study as a candidate prenatal pharmacotherapy for DS.

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