Search bioRxiv⌕ Search

Biology subjects

Labilloy, A.

Publications and source records attributed to Labilloy, A..

2 recordsLinked to original sources

Adjunctive nebulization of Idursulfase to intravenous treatment enhances cardiac proteome adaptations in IDS-KO mice

Mucopolysaccharidosis Type II (MPS-II) is a rare X-linked lysosomal storage disorder, characterized by deficiency of the lysosomal hydrolase iduronate 2-sulphatase (IDS). Cardiac impairments contribute to mortality in patients. Enzyme replacement therapy (ERT) with Idursulfase is a promising treatment for the cardiac dysfunction. We compared the proteome changes following intravenous (IV) with and without adjunct nebulized ERT in IDS-KO mice. Male mice were assigned to 4 groups: 1) WT IV + nebulized saline (WT; n=8); 2) IDS-KO IV + nebulized saline (KO; n=5); 3) IDS-KO IV Idursulfase (1 mg/kg; KO-IV, n=5); 4) IDS-KO IV (1 mg/kg) + nebulized Idursulfase (0.33 mg/mouse; KO-NEB, n=5). Treatments were administered once a week starting at 8 weeks of age and the heart was harvested 12 weeks post-ERT. Mouse heart samples were prepared for global proteomics measurements with Nano-liquid chromatography tandem mass spectrometry (n=3/group; Nano-LC/MS/MS). Global limma moderated F-test analysis identified 928 differently abundant proteins across the four groups. Pairwise Euclidean distances from the IDS-KO were significantly greater for the KO-NEB vs KO-IV group (47.5, 3.7 vs 40.8, 1.1; p < 0.001), showing that adjunct nebulization elicited a more profound proteomic shift than IV alone. The mean z-score compartment analysis revealed that the subcellular compartment protein profile of KO-NEB shifted towards the WT profile, whereas this pattern was less evident in KO-IV. The cluster analysis also revealed treatment-specific and rescue-like protein modules. Overall, our results suggest that adjunctive nebulized Idursulfase ERT enhances the cardiac proteomic changes caused by IV treatment in IDS-KO mice. Proteomics data are available via ProteomeXchange with identifier PXD083242.

cell biology↗

Nebulized and intravenous enzyme replacement therapy in mice with mucopolysaccharidosis type II

Mucopolysaccharidosis Type II is a hereditary lysosomal storage disease characterized by deficiency in the enzyme iduronate 2-sulfatase (IDS). IDS is critical in the breakdown of sulfated glycosaminoglycans and its deficiency leads to an accumulation of these compounds across various tissue types resulting in multisystemic dysfunction. Intravenous administration of recombinant IDS (idursulfase) substantially improves patients quality and length of life. However, recombinant IDS delivered intravenously is sequestered in the liver and respiratory failure remains as the leading cause of death for patients independent of idursulfase treatment, which suggests insufficient delivery to the lungs. This study aimed to assess a novel method of idursulfase administration using a nebulizer in combination with intravenous treatment and determine if this combination may improve lung delivery of idursulfase and overall pathology. Whole body IDS knockout mice underwent twelve weeks of intravenous, combination treatment, or vehicle injection and we harvested liver and lungs seven days after the last treatment for assessment of IDS activity, histological markers, and global proteomics for comparison with wild-type mice. Combination treatment increased IDS enzyme activity in the liver but not lungs Proteomics data demonstrated attenuation of key features of the disease in liver (metabolic pathways) and lungs (glycosaminoglycan pathways) with both treatments. Overall, adding nebulized administration of IDS did not lead to sustained increase in enzyme activity in the lungs but caused persistent modifications in glycosaminoglycan degradation pathway suggesting additional benefits to intravenous administration alone.

genetics↗