Publications by authors named "Luciana C Erjavec"

Physiologically, renal medullary cells are surrounded by a hyperosmolar interstitium. However, different pathological situations can induce abrupt changes in environmental osmolality, causing cell stress. Therefore, renal cells must adapt to survive in this new condition.

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Aims: Calcium oxalate (Oxa), constituent of most common kidney stones, damages renal tubular epithelial cells leading to kidney disease. Most in vitro studies designed to evaluate how Oxa exerts its harmful effects were performed in proliferative or confluent non-differentiated renal epithelial cultures; none of them considered physiological hyperosmolarity of renal medullary interstitium. Cyclooxygenase 2 (COX2) has been associated to Oxa deleterious actions; however, up to now, it is not clear how COX2 acts.

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Article Synopsis
  • * ER stress activates UPR, and one key pathway, IRE1α-XBP1, is involved in controlling the production of lipids, aiding in maintaining ER membrane stability.
  • * This study investigates how the IRE1α-XBP1 pathway influences lipid metabolism in kidney cells under hyperosmolar conditions by blocking IRE1α's function and measuring changes in glycerolipid synthesis and the expression of lipogenic enzymes.
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NF-κB and TonEBP belong to the Rel-superfamily of transcription factors. Several specific stimuli, including hypertonicity which is a key factor for renal physiology, are able to activate them. It has been reported that, after hypertonic challenge, NF-κB activity can be modulated by TonEBP, considered as the master regulator of transcriptional activity in the presence of changes in environmental tonicity.

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