Ciliogenic pancreatopathy reveals a link between ciliopathies and exocrine pancreatic disease
Memoona Rajput, Lydie Flasse, Esther Porée, Océane Pointeau, Alice Serafin, Nicolas Papadopoulos, Younes Achouri, Joel Moro, Axelle Loriot, Michaela Wilsch-Brauninger, Valentine Gillion, Nathalie Godefroid, Charlotte Bodson, Leyre Lopez Muneta, Constance Depestel, Marie Morel, Sabine Cordi, Antonio Garcia de Herreros, Cecile Haumaitre, Frédéric Lemaigre, Meritxell Rovira, Amandine Viau, Anne Grapin-Botton, Sophie Saunier, Patrick Jacquemin, Isabelle ScheersBackground
While pancreatic cysts have been described in syndromic ciliopathies, the pancreas is not commonly recognised as a target organ. However, several ciliary gene knockout mouse models develop a pancreatic phenotype combining acinar atrophy and adipocyte accumulation, here called adipopancreatosis, suggesting a link between ciliary dysfunction and pancreatic disease.
Objective
We investigated whether mutations in ciliopathy-associated genes are linked to pancreatic dysfunction in humans.
Design
We analysed a cohort of 341 patients with paediatric-onset pancreatic anomalies and characterised the pancreatic phenotype of new mouse models with conditional Nphp3 inactivation or bearing Nphp3 mutations recapitulating human mutations. In patients, pancreatic fat content was quantified using Dixon-MRI.
Results
Mutations in the cilium-related HNF1B and NPHP3 were identified in patients presenting with both renal and pancreatic dysfunction. Nphp3 mutant mice developed acinar atrophy, adipopancreatosis and moderate inflammation. Adipocytes in the pancreas exhibited a white adipocyte-like profile and may originate from mesothelial-derived fibroblasts. Reduced numbers and altered length of ductal cilia were monitored. Interestingly, secretory canaliculi, typically unnoticed structures found within and between acinar cells and connected to the acinar lumen, exhibited a microcystic morphology. Consistent with the mouse phenotype, Dixon-MRI revealed significantly increased pancreatic fat content in patients with HNF1B and NPHP3 mutations.
Conclusion
We describe a previously unrecognised pancreatic manifestation of ciliopathies, which we name ciliogenic pancreatopathy. Patients with known ciliopathy-causing mutations should be evaluated for this pancreatic condition, particularly those with kidney disease, as concomitant exocrine pancreatic insufficiency may further compromise renal function or the outcome of kidney graft.