Placental physiology monitored by hyperpolarized dynamic <sup>13</sup>C magnetic resonance.
basic_science · Level V
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- Record sourced from PubMed, PMID 29444856.
- Also identified by DOI 10.1073/pnas.1715175115 and PMC identifier 5877996.
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Abstract
Placental functions, including transport and metabolism, play essential roles in pregnancy. This study assesses such processes in vivo<i>,</i> from a hyperpolarized MRI perspective. Hyperpolarized urea, bicarbonate, and pyruvate were administered to near-term pregnant rats, and all metabolites displayed distinctive behaviors. Little evidence of placental barrier crossing was observed for bicarbonate, at least within the timescales allowed by <sup>13</sup>C relaxation. By contrast, urea was observed to cross the placental barrier, with signatures visible from certain fetal organs including the liver. This was further evidenced by the slower decay times observed for urea in placentas vis-à-vis other maternal compartments and validated by mass spectrometric analyses. A clear placental localization, as well as concurrent generation of hyperpolarized lactate, could also be detected for [1-<sup>13</sup>C]pyruvate. These metabolites also exhibited longer lifetimes in the placentas than in maternal arteries, consistent with a metabolic activity occurring past the trophoblastic interface. When extended to a model involving the administration of a preeclampsia-causing chemical, hyperpolarized MR revealed changes in urea's transport, as well as decreases in placental glycolysis vs. the naïve animals. These distinct behaviors highlight the potential of hyperpolarized MR for the early, minimally invasive detection of aberrant placental metabolism.
Medical subject headings
- Magnetic Resonance Imaging
- Placenta
- Pre-Eclampsia