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Fachet, M.

Publications and source records attributed to Fachet, M..

2 recordsLinked to original sources

3D Reconstruction of Nanoparticle Distribution in Tumor Spheroids with Volume Electron Microscopy

AO_SCPLOWBSTRACTC_SCPLOWSpatially resolved characterization of nanomaterial (NM) distribution within cellular ultrastructure is essential for understanding NM fate and activity in biological systems. Volume electron microscopy (vEM) is uniquely positioned to address this challenge, yet fully documented quantitative pipelines that simultaneously segment NMs and cellular structures remain scarce. Here, an end-to-end analytical pipeline is presented based on the example of serial block-face scanning electron microscopy (SBF-SEM) data of tumor spheroids containing nanoparticles (NPs). A hybrid segmentation strategy is adopted: a fine-tuned Cellpose-SAM model for cells and nuclei, and an empirical Bayes approach for AuNPs. The fine-tuned model outperforms both the pre-trained baseline and benchmark experiments in Amira, and shows good generalization to 2D EM datasets of varying sample types, suggesting potential as a general-purpose segmentation model for electron microscopy. Full 3D reconstruction of NP distributions reveals preferential clustering in the perinuclear region, with a median nucleus-to-NP distance of 2.57 {micro}m and NM uptake spanning several orders of magnitude across cells. Furthermore, morphological analysis of segmented cells and nuclei using 3D shape descriptors and local curvature metrics provides quantitative access to features inaccessible from single sections. Together, these results establish a reproducible, open framework for the joint quantitative analysis of NM distribution and cellular morphology in vEM data.

bioinformatics↗

CD36 is a metabolic checkpoint for Th2 cell tissue residency during allergic airway inflammation

The prevalence of allergic diseases, including asthma, continues to rise in industrialized societies, yet the mechanisms sustaining pathogenic T helper 2 (Th2) responses remain incompletely understood. Here, we show that patients with allergic asthma exhibit elevated lipophilic volatile organic compounds in exhaled air and altered fatty acid-metabolism gene expression in sputum-derived Th2 cells. Using a mouse model of house dust mite-induced allergic airway inflammation, we find that the lipid transporter CD36 is dispensable for T follicular helper and germinal center B cell responses but is critical for maintaining lung-resident memory Th2 cells. CD36 regulates GATA3 and PPAR{gamma} expression in lung-resident memory Th2 cells and their interaction with type-2 conventional dendritic cells during airway inflammation. In human T cells, pharmacological inhibition of CD36 does not impair initial activation but blocks terminal Th2 differentiation. These findings identify CD36 as a metabolic checkpoint that sustains Th2 effector function and tissue residency, and establish lipid metabolism as a yet unrecognized therapeutic target in allergic asthma. SummaryAllergic asthma is marked by rising prevalence yet the drivers of persistent T helper 2 (Th2) immunity remain unclear. We show that asthma patients exhibit altered fatty acid-metabolism signatures in sputum Th2 cells and elevated lipophilic volatile organic compounds in exhaled air. In a mouse model of house dust mite-induced airway inflammation, the lipid transporter CD36 was dispensable for germinal center responses but essential for lung-resident memory Th2 cells, controlling GATA3 and PPAR{gamma} expression and promoting cDC2 interactions. Pharmacological inhibition of CD36 in human T cells preserved activation but blocked terminal Th2 differentiation. These findings identify CD36 as a metabolic checkpoint that sustains Th2 effector function and tissue residency, and nominate it as a therapeutic target in allergic asthma. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=117 SRC="FIGDIR/small/676489v1_ufig1.gif" ALT="Figure 1"> View larger version (44K): org.highwire.dtl.DTLVardef@117da6eorg.highwire.dtl.DTLVardef@105934corg.highwire.dtl.DTLVardef@109903corg.highwire.dtl.DTLVardef@dc9345_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗