Inhibition of the endoplasmic reticulum stress-associated IRE-1 pathway alleviates preterm birth

Liyin Qiu1, Hui Liu2, Shali Chen1

  • 1Department of Obstetrics, Fujian Maternity and Child Health Hospital College of Clinical Medicine for Obstetrics & Gynecology and Pediatrics, Fujian Medical University, Fuzhou, Fujian, China.

Insights

Upregulation of Inositol-requiring enzyme type 1 (IRE-1) in premature birth (PTB) placental tissues contributes to PTB pathogenesis. Inhibiting the endoplasmic reticulum stress (ERS)-associated IRE-1/XBP1/CHOP pathway may mitigate PTB.

Area of Science:

  • Reproductive biology
  • Cellular stress responses
  • Maternal-fetal medicine

Background:

  • Premature birth (PTB) is a significant global health issue linked to neonatal complications.
  • The unfolded protein response (UPR) mediated by Inositol-requiring enzyme type 1 (IRE-1) plays a crucial role in cellular regulation.
  • Understanding the endoplasmic reticulum stress (ERS)-related IRE-1 pathway's role in PTB is essential.

Purpose of the Study:

  • To investigate the role of the ERS-related IRE-1 pathway in the pathogenesis of PTB.
  • To assess the impact of IRE-1 on placental trophoblast cell function under ER stress conditions.

Main Methods:

  • Human placental trophoblast cells (HTR8/Svneo) were subjected to tunicamycin (TM) to induce ER stress.
  • Expression of IRE-1 and associated proteins (ATF6, GRP78, XBP-1) was analyzed in placental tissues and cells.
  • Cellular viability, migration, invasion, apoptosis, and autophagy were evaluated, with interventions using the ERS inhibitor TUDCA and IRE-1 knockdown.

Main Results:

  • Elevated levels of ATF6, GRP78, and XBP-1 were found in PTB tissues and TM-treated cells.
  • TM treatment reduced cell viability, migration, and invasion while increasing apoptosis; TUDCA counteracted these effects.
  • IRE-1 overexpression was observed in PTB; IRE-1 knockdown improved cell viability, migration, and invasion, and suppressed apoptosis and autophagy under TM stimulation, modulating the IRE-1/XBP1/CHOP pathway.

Conclusions:

  • Upregulated IRE-1 in PTB placental tissues is implicated in PTB development.
  • Targeting the IRE-1/XBP1/CHOP pathway presents a potential therapeutic strategy for mitigating PTB.
Abstract

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