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Gacha-Garay, M. J.

Publications and source records attributed to Gacha-Garay, M. J..

3 recordsLinked to original sources

Generation of Region-specific Airway Basal Stem Cells from Human Pluripotent Stem Cells via Regulation of BMP-NOGGIN Axis

Basal cells (BCs) are the primary stem cell population of adult human airways and a key target for hPSC-based models of airway development, disease and regenerative medicine. Recent studies have revealed substantial regional differences between human proximal and distal airway cell types, including BCs. Here, we show that the NOGGIN-BMP signaling axis governs proximal-distal patterning of hPSC-derived lung progenitors leading to the generation of region-specific induced BCs (iBCs). Continuous BMP inhibition through NOGGIN, coupled with tapered WNT activation, generates proximal iBCs that molecularly and functionally resemble human proximal airway BCs and differentiate in vitro and in vivo into the full repertoire of specialized proximal airway cell types, including ionocytes and pulmonary neuroendocrine cells. In sharp contrast, BMP activation with tapered WNT generates distal airway-like cells and distal BCs with limited ionocyte differentiation potential. Progeny of proximal iBCs derived from G551D CFTR mutant hiPSCs also recapitulate a cystic fibrosis-associated ionocyte phenotype.

cell biology↗

A Multimodal Adaptive Optical Microscope For In Vivo Imaging from Molecules to Organisms

Understanding biological systems requires observing features and processes across vast spatial and temporal scales, spanning nanometers to centimeters and milliseconds to days, often using multiple imaging modalities within complex native microenvironments. Yet, achieving this comprehensive view is challenging because microscopes optimized for specific tasks typically lack versatility due to inherent optical and sample handling trade-offs, and frequently suffer performance degradation from sample-induced optical aberrations in multicellular contexts. Here, we present MOSAIC, a reconfigurable microscope that integrates multiple advanced imaging techniques including light-sheet, label-free, super-resolution, and multi-photon, all equipped with adaptive optics. MOSAIC enables non-invasive imaging of subcellular dynamics in both cultured cells and live multicellular organisms, nanoscale mapping of molecular architectures across millimeter-scale expanded tissues, and structural/functional neural imaging within live mice. MOSAIC facilitates correlative studies across biological scales within the same specimen, providing an integrated platform for broad biological investigation.

cell biology↗

Apoptosis inhibition reprograms alveolar myofibroblasts toward ductal myofibroblasts

The epithelial tree of the lung is shaped proximo-distally by airway smooth muscle cells (ASMCs), ductal myofibroblasts (DMFs), and, transiently, alveolar myofibroblasts (AMFs). Lineage tracing and snapshot imaging suggest the clearance of AMFs via apoptosis post-alveologenesis, although definitive evidence is lacking. Here, we generate an inducible BCL2 overexpression mouse allele to inhibit AMF apoptosis. Using three independent Cre drivers and single-cell RNA-seq, we show that BCL2-rescued AMFs persist around distal alveolar ducts and alveoli and, unexpectedly, mature toward DMFs. Both normal DMFs and rescued DMF-like cells upregulate contractile proteins in a house dust mite-induced asthma model. Our findings demonstrate the apoptotic clearance of AMFs, as well as fate plasticity and pathophysiological convergence of lung mesenchymal cells of the epithelial axis.

cell biology↗