AI Insight
Researchers analyzed 70 placentas and identified that elevated levels of the transcription factor LBX1 in maternal circulation are associated with spontaneous preterm birth. When LBX1 accumulates in placental trophoblast cells, it disrupts ribosomal biogenesis and protein homeostasis, triggering an unfolded protein response that may contribute to premature delivery. This study establishes a specific molecular pathway linking placental dysfunction to spontaneous preterm birth, which affects approximately 9.9% of pregnancies globally.
Why it matters
Identifying LBX1 as a biomarker in maternal circulation could enable earlier detection of preterm birth risk. Understanding this molecular mechanism may lead to targeted therapeutic interventions to prevent spontaneous preterm birth and its associated complications for mothers and infants.
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⚠️ Preprint – Noch nicht peer-reviewed
Dieser Artikel wurde noch nicht von unabhängigen Experten begutachtet. Die Ergebnisse sind vorläufig und sollten mit Vorsicht interpretiert werden.
Spontaneous preterm birth (sPTB) affects ~9.9% of pregnancies worldwide and is driven in part by placental dysfunction, yet the signalling events linking placental dysregulation to spontaneous prematurity remain incompletely defined. Using a cross-sectional design, we profiled 70 placentae from spontaneous term and preterm birth delivery to construct protein co-expression networks and identified 13 hub proteins associated with sPTB. Quantification of placental circulatory proteins in an independent nested case-control set of 53 maternal plasma samples highlighted elevated levels of the transcription factor ladybird homeobox protein 1 (LBX1) in maternal circulation from sPTB cases. Elevated LBX1 in trophoblast cells undergo KPNB1 mediated nuclear import, where it deregulates ribosomal biogenesis and perturbs subsequent ribosomal protein homeostasis, contributing to the accumulation of newly synthesised proteins. Accumulation of these nascent proteins triggers unfolded protein response which may lead to adverse pregnancy outcome. These findings implicate LBX1-mediated ribosomal disruption and activation of unfolded protein response in trophoblasts as a placental mechanism contributing to sPTB.