TY - JOUR
T1 - Pathomechanism of Fever-Induced Liver Failure in NBAS Deficiency and Treatment Effect of NAC—Observations In Vitro and In Vivo
AU - Sun, Tian
AU - Hammann, Nicole
AU - Leghlam, Lina
AU - Peters, Bianca
AU - Arikan, Cigdem
AU - Bedoyan, Sarah M.
AU - Chen, Qian
AU - Dattner, Tal
AU - Distelmaier, Felix
AU - Fichtner, Alexander
AU - Garbade, Sven F.
AU - Hadžić, Nedim
AU - Hegarty, Robert
AU - Hellwig, Andrea
AU - Jørgensen, Marianne Hørby
AU - Jentsch, Carolin
AU - Jung-Klawitter, Sabine
AU - Laass, Martin
AU - Lainka, Elke
AU - Münch, Hannah
AU - Mungan, Halise Neslihan Önenli
AU - Niesert, Moritz
AU - Oehrl, Stephanie
AU - Polo, Begona
AU - Schäkel, Knut
AU - Squires, James E.
AU - Kölker, Stefan
AU - Hoffmann, Georg F.
AU - Staufner, Christian
AU - Lenz, Dominic
N1 - Publisher Copyright:
© 2026 The Author(s). Liver International published by John Wiley & Sons Ltd.
PY - 2026/8
Y1 - 2026/8
N2 - Background and Aims: Pathogenic variants in neuroblastoma amplified sequence (NBAS) gene causes infantile liver failure type 2 (IFLS2; MIM 616483), characterised by recurrent episodes of liver failure triggered by febrile infections. The underlying pathophysiological mechanisms remain incompletely understood. With this work we try to shed light on the pathomechanism and propose a potential therapeutic option. Methods: For in vitro analyses, human skin fibroblasts were obtained from three individuals with ILFS2 and one healthy control. Cells were cultivated at 37°C or 40°C. Western blots were performed to assess NBAS protein and its interaction partners. Furthermore, immunofluorescence and electron microscopy were used to examine morphological changes associated with endoplasmic reticulum (ER) stress. Apoptosis was measured using flow cytometry. The effects of N-acetylcysteine (NAC) treatment were analysed not only in cultured fibroblasts but also in vivo retrospectively in 16 affected individuals. Results: We demonstrate that elevated temperature induces ER stress in fibroblasts from individuals with NBAS variants, leading to increased reactive oxygen species (ROS) production and apoptosis. Treatment with the antioxidant NAC, an established therapeutic in acetaminophen-induced liver failure, effectively mitigated oxidative stress and reduced apoptosis in vitro. In a retrospective clinical analysis, there was a trend that NAC treatment was associated with reduced severity of hepatic crises, suggesting a potential therapeutic benefit. Conclusions: Our findings link fever-induced ER stress, ROS accumulation, and apoptosis to the pathogenesis of liver failure in NBAS deficiency. NAC attenuates these cellular stress responses and may represent a promising supportive treatment option in NBAS-associated liver failure.
AB - Background and Aims: Pathogenic variants in neuroblastoma amplified sequence (NBAS) gene causes infantile liver failure type 2 (IFLS2; MIM 616483), characterised by recurrent episodes of liver failure triggered by febrile infections. The underlying pathophysiological mechanisms remain incompletely understood. With this work we try to shed light on the pathomechanism and propose a potential therapeutic option. Methods: For in vitro analyses, human skin fibroblasts were obtained from three individuals with ILFS2 and one healthy control. Cells were cultivated at 37°C or 40°C. Western blots were performed to assess NBAS protein and its interaction partners. Furthermore, immunofluorescence and electron microscopy were used to examine morphological changes associated with endoplasmic reticulum (ER) stress. Apoptosis was measured using flow cytometry. The effects of N-acetylcysteine (NAC) treatment were analysed not only in cultured fibroblasts but also in vivo retrospectively in 16 affected individuals. Results: We demonstrate that elevated temperature induces ER stress in fibroblasts from individuals with NBAS variants, leading to increased reactive oxygen species (ROS) production and apoptosis. Treatment with the antioxidant NAC, an established therapeutic in acetaminophen-induced liver failure, effectively mitigated oxidative stress and reduced apoptosis in vitro. In a retrospective clinical analysis, there was a trend that NAC treatment was associated with reduced severity of hepatic crises, suggesting a potential therapeutic benefit. Conclusions: Our findings link fever-induced ER stress, ROS accumulation, and apoptosis to the pathogenesis of liver failure in NBAS deficiency. NAC attenuates these cellular stress responses and may represent a promising supportive treatment option in NBAS-associated liver failure.
KW - infantile liver failure syndrome-2 (ILFS2)
KW - N-acetylcysteine (NAC)
KW - neuroblastoma amplified sequence (NBAS)
KW - paediatric acute liver failure (PALF)
KW - reactive oxygen species (ROS)
UR - https://www.scopus.com/pages/publications/105043129568
U2 - 10.1111/liv.70762
DO - 10.1111/liv.70762
M3 - Journal article
C2 - 42358045
AN - SCOPUS:105043129568
SN - 1478-3223
VL - 46
JO - Liver International
JF - Liver International
IS - 8
M1 - e70762
ER -