TY - JOUR
T1 - Microarray-based identification of differentially expressed genes in hypoxic term human trophoblasts and in placental villi of pregnancies with growth restricted fetuses
AU - Roh, C. R.
AU - Budhraja, V.
AU - Kim, H. S.
AU - Nelson, D. M.
AU - Sadovsky, Y.
N1 - Funding Information:
We thank Elena Sadovsky and Lori Rideout for technical support and Fred Kraus for helpful discussions. This research was supported by NIH grant R01-HD29190 (to DMN) and R01-ES11597 (to YS).
PY - 2005/4
Y1 - 2005/4
N2 - Hypoxia adversely influences the function of the human placenta. We sought to identify a set of hypoxia-regulated transcripts in both term human trophoblasts in vitro and in villous trophoblasts in vivo. Using high-density oligonucleotide microarrays we initially examined differences in gene expression between trophoblast cultured in standard conditions (20% oxygen) vs. hypoxic conditions (≤1% oxygen), as well as in placental tissues from pregnancies complicated by intrauterine growth restriction vs. matched controls. We used a novel computation method to compile data from the two approaches and identify transcripts that exhibited a marked expression change. Using quantitative PCR we confirmed an up-regulation of transcripts for vascular endothelial growth factor, connective tissue growth factor, follistatin-related protein, N-Myc down-regulated gene 1 and adipophilin in hypoxic term trophoblasts. In contrast, the expression of human placental lactogen and Beckwith-Wiedemann region 1 C was reduced in hypoxic trophoblast. Using in situ hybridization we validated the expression of each transcript in cultured term villous trophoblasts, and determined transcript expression in placental samples derived from four sets of dichorionic twins complicated by growth restriction of one twin. The identification of hypoxic trophoblast signature transcripts may implicate new mediators in pathways underlying trophoblast hypoxic injury and adaptation.
AB - Hypoxia adversely influences the function of the human placenta. We sought to identify a set of hypoxia-regulated transcripts in both term human trophoblasts in vitro and in villous trophoblasts in vivo. Using high-density oligonucleotide microarrays we initially examined differences in gene expression between trophoblast cultured in standard conditions (20% oxygen) vs. hypoxic conditions (≤1% oxygen), as well as in placental tissues from pregnancies complicated by intrauterine growth restriction vs. matched controls. We used a novel computation method to compile data from the two approaches and identify transcripts that exhibited a marked expression change. Using quantitative PCR we confirmed an up-regulation of transcripts for vascular endothelial growth factor, connective tissue growth factor, follistatin-related protein, N-Myc down-regulated gene 1 and adipophilin in hypoxic term trophoblasts. In contrast, the expression of human placental lactogen and Beckwith-Wiedemann region 1 C was reduced in hypoxic trophoblast. Using in situ hybridization we validated the expression of each transcript in cultured term villous trophoblasts, and determined transcript expression in placental samples derived from four sets of dichorionic twins complicated by growth restriction of one twin. The identification of hypoxic trophoblast signature transcripts may implicate new mediators in pathways underlying trophoblast hypoxic injury and adaptation.
UR - http://www.scopus.com/inward/record.url?scp=16844374818&partnerID=8YFLogxK
U2 - 10.1016/j.placenta.2004.06.013
DO - 10.1016/j.placenta.2004.06.013
M3 - Article
C2 - 15823618
AN - SCOPUS:16844374818
SN - 0143-4004
VL - 26
SP - 319
EP - 328
JO - Placenta
JF - Placenta
IS - 4
ER -