A technical and clinical evaluation of the new ThermoFisher BRAHMS unconjugated estriol and inhibin-A assays and their use in second trimester Down syndrome screening

Author(s):  
Daljit Singh Sahota ◽  
Fanny Ho Kau Tsang ◽  
Jia Shi Gu ◽  
Wai Kei Vicky Fung ◽  
Kit Yee Mok ◽  
...  
1992 ◽  
Vol 38 (9) ◽  
pp. 1888-1893 ◽  
Author(s):  
T Reynolds ◽  
R John

Abstract We compared the performance of two methods for assaying unconjugated estriol in serum: the modified Amerlex third-trimester RIA kit, as used in seminal papers on unconjugated estriol in Down syndrome screening, and the new optimized Amerlex-M second-trimester kit. The significant difference between the results of each assay could cause unacceptable changes in the detection rate and false-positive rate of Down syndrome screening programs, especially if previously published values for estriol are used in the risk calculation. It is not possible to define new calculation parameters for every assay kit because new parameters will need to be defined every time kit changes occur, which would require a large collection of samples from Down syndrome pregnancies for standardization. Possible solutions to this problem are discussed.


1999 ◽  
Vol 45 (12) ◽  
pp. 2109-2119 ◽  
Author(s):  
Laurence A Cole ◽  
Shohreh Shahabi ◽  
Utku A Oz ◽  
Ray O Bahado-Singh ◽  
Maurice J Mahoney

Abstract Background: Serum human chorionic gonadotropin (hCG) and hCG free β-subunit tests are used in combination with unconjugated estriol and α-fetoprotein in the triple screen test, and with the addition of inhibin-A in the quadruple marker test for detecting Down syndrome in the second trimester of pregnancy. These tests have a limited detection rate for Down syndrome: ∼40% for hCG or free β-subunit alone, ∼60% for the triple screen test, and ∼70% for the quadruple marker test, all at 5%, or a relatively high, false-positive rate. New tests are needed with higher detection and lower false rates. Hyperglycosylated hCG (also known as invasive trophoblast antigen or ITA) is a new test. It specifically detects a unique oligosaccharide variant of hCG associated with Down syndrome pregnancies. We evaluated this new Down syndrome-directed test in prenatal diagnosis. Methods: Hyperglycosylated hCG was measured in urine samples from women undergoing amniocentesis for advanced maternal age concerns at 14–22 weeks of gestation, 1448 with normal karyotype and 39 with Down syndrome fetuses. Results: The median hyperglycosylated hCG value was 9.5-fold higher in Down syndrome cases (9.5 multiples of the normal karyotype median). The single test detected 80% of Down syndrome cases at a 5% false-positive rate. Urine hyperglycosylated hCG was combined with urine β-core fragment (urine breakdown product of serum hCG free β-subunit), serum α-fetoprotein, and maternal age-related risk. This urine-serum combination detected 96% of Down syndrome cases at a 5% false-positive rate, 94% of cases at a 3% false-positive rate, and 71% of cases at a 1% false-positive rate. These detection rates exceed those of any previously reported combination of biochemical markers. Conclusions: Hyperglycosylated hCG is a new base marker for Down syndrome screening in the second trimester of pregnancy. The measurement of hyperglycosylated hCG can fundamentally improve the performance of Down syndrome screening protocols.


Author(s):  
Robert COCCIOLONE ◽  
Kate BRAMELD ◽  
Peter O’LEARY ◽  
Eric HAAN ◽  
Peter MULLER ◽  
...  

1997 ◽  
Vol 176 (1) ◽  
pp. S90
Author(s):  
K.D. Wenstrom ◽  
J. Owen ◽  
D.C. Chu ◽  
L. Boots

1997 ◽  
Vol 177 (5) ◽  
pp. 992-996 ◽  
Author(s):  
Katharine D. Wenstrom ◽  
John Owen ◽  
D.C. Chu ◽  
Larry Boots

2011 ◽  
Vol 204 (1) ◽  
pp. S143
Author(s):  
Jennifer McNamara ◽  
Harish Sehdev ◽  
Alison Cahill ◽  
Linda Odibo ◽  
George Macones ◽  
...  

2008 ◽  
Vol 199 (3) ◽  
pp. 281.e1-281.e5 ◽  
Author(s):  
Anthony O. Odibo ◽  
Harish M. Sehdev ◽  
Sabrina Gerkowicz ◽  
David M. Stamilio ◽  
George A. Macones

2007 ◽  
Vol 197 (6) ◽  
pp. S171
Author(s):  
Peter Benn ◽  
Yu Ming Victor Fang ◽  
Kate Smith ◽  
Jay Bolnick ◽  
Adam Borgida ◽  
...  

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