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Your search keyword '"L. Berthelot"' showing total 17 results

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17 results on '"L. Berthelot"'

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1. The gut microbiota posttranslationally modifies IgA1 in autoimmune glomerulonephritis.

2. Genome-wide association analyses define pathogenic signaling pathways and prioritize drug targets for IgA nephropathy.

3. Soluble CD89 is a critical factor for mesangial proliferation in childhood IgA nephropathy.

4. Role of gut-kidney axis in renal diseases and IgA nephropathy.

5. Fecal Microbiota Transplantation Modulates Renal Phenotype in the Humanized Mouse Model of IgA Nephropathy.

6. Food antigens and Transglutaminase 2 in IgA nephropathy: Molecular links between gut and kidney.

7. Modulation of the microbiota by oral antibiotics treats immunoglobulin A nephropathy in humanized mice.

8. IgA1 Protease Treatment Reverses Mesangial Deposits and Hematuria in a Model of IgA Nephropathy.

9. Role of IgA receptors in the pathogenesis of IgA nephropathy.

10. Molecular Insights into the Pathogenesis of IgA Nephropathy.

11. Recurrent IgA nephropathy is predicted by altered glycosylated IgA, autoantibodies and soluble CD89 complexes.

12. Gluten exacerbates IgA nephropathy in humanized mice through gliadin-CD89 interaction.

13. [Formation of IgA deposits in Berger's disease: what we learned from animal models].

14. The IgA1 immune complex-mediated activation of the MAPK/ERK kinase pathway in mesangial cells is associated with glomerular damage in IgA nephropathy.

15. Transglutaminase is essential for IgA nephropathy development acting through IgA receptors.

16. Both IgA nephropathy and alcoholic cirrhosis feature abnormally glycosylated IgA1 and soluble CD89-IgA and IgG-IgA complexes: common mechanisms for distinct diseases.

17. Dysfunctions of the Iga system: a common link between intestinal and renal diseases.

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