AI Article Synopsis

  • - The placenta predominantly uses glucose from the mother for fetal growth, but the specific role of the SLC2A8 (GLUT8) transporter in trophoblast cells is still unclear.
  • - Research using RNA interference showed that reducing SLC2A8 levels led to a significant decrease (11%) in glucose uptake in a human trophoblast cell line, along with changes in gene expression.
  • - Findings suggest that SLC2A8 is crucial for maintaining glucose uptake and may primarily support metabolic processes, meaning any dysfunction could potentially lead to complications in placental health and function.

Article Abstract

While glucose is the primary fuel for fetal growth, the placenta utilizes the majority of glucose taken up from the maternal circulation. Of the facilitative glucose transporters in the placenta, SLC2A8 (GLUT8) is thought to primarily function as an intracellular glucose transporter; however, its function in trophoblast cells has not been determined. To gain insight into the function of SLC2A8 in the placenta, lentiviral-mediated RNA interference (RNAi) was performed in the human first-trimester trophoblast cell line ACH-3P. Non-targeting sequence controls (NTS RNAi; = 4) and RNAi ( = 4) infected ACH-3P cells were compared. A 79% reduction in mRNA concentration was associated with an 11% reduction ( ≤ 0.05) in ACH-3P glucose uptake. NTS RNAi and RNAi ACH-3P mRNA were subjected to RNAseq, identifying 1525 transcripts that were differentially expressed (|log2FC| > 1 and adjusted -value < 0.05), with 273 transcripts derived from protein-coding genes, and the change in 10 of these mRNAs was validated by real-time qPCR. Additionally, there were 147 differentially expressed long non-coding RNAs. Functional analyses revealed differentially expressed genes involved in various metabolic pathways associated with cellular respiration, oxidative phosphorylation, and ATP synthesis. Collectively, these data indicate that deficiency may impact placental uptake of glucose, but that its likely primary function in trophoblast cells is to support cellular respiration. Since the placenta oxidizes the majority of the glucose it takes up to support its own metabolic needs, impairment of SLC2A8 function could set the stage for functional placental insufficiency.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10930455PMC
http://dx.doi.org/10.3390/cells13050391DOI Listing

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