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Agarwal, B.

Publications and source records attributed to Agarwal, B..

2 recordsLinked to original sources

Mechanochemical cues control the coupling of metabolic and migratory patterns in cancer

Confined migration is essential for metastasis, yet how cells adapt their migratory and metabolic programs across stiffness-varying microenvironments remains unclear. We uncover a stiffness-dependent mechano-metabolic switch governing migration. In stiff microchannels, cells utilize the osmotic engine model (OEM), relying on NHE1 activity, front-polarization, and glycolysis. In soft microchannels, migration is OEM-independent and requires pyruvate-fueled oxidative phosphorylation (OxPHOS). This OxPHOS-driven motility depends on Arp3, {beta}1-integrin and integrin-linked kinase, which increase membrane tension in confinement that in turn triggers TRPM7-mediated calcium influx and RhoA-/myosin-II contractility. Activating and polarizing NHE1, via overexpression, hypoxia or elevated viscosity, restore OEM- and glycolysis-dependent migration in soft microchannels, bypassing the need for actin polymerization in vitro and in chick embryos. Mitochondria addition reinstates Arp3 polarization and enhances migration in NHE1-overexpressing cells, enabling engagement of both mechanisms in vitro and in zebrafish. These findings uncover a previously unrecognized mechano-metabolic link, revealing that intracellular rewiring overrides stiffness-dependent metabolic demands.

cell biology↗

Using Fiji as a simplified tool for assessing alveolar chord length and septal thickness in neonatal pulmonary disease research

Bronchopulmonary Dysplasia (BPD) is a neonatal condition primarily affecting babies born prematurely, who have been exposed to invasive ventilation and/or oxygen supplementation. These therapies predispose the immature developing lungs to inflammation and injury to the alveolar epithelium resulting in loss of the alveolar epithelium and thickening of alveolar septa, the 2 important hallmarks of the pathology of BPD. The expansion and enlargement of the alveolar sacs gives the characteristic feature of alveolar simplification in BPD. To measure this alveolar abnormality, we have modified and developed a custom-made Chord Length Fiji plugin which can easily measure the Chord Length and Septal Thickness on Hematoxylin-Eosin-stained histological lung sections, thus generating an instant morphometry readout for quick interpretation. We validated this plugin in multiple animal experimental models and human neonatal lungs with BPD. We were able to differentiate the morphology under conditions of ventilation or hyperoxia exposure, when compared with untreated controls. We thus conclude that our Chord Length and Septal Thickness plugin can be used in a simplified manner following a less meticulous automated operation. To facilitate global use, we have created a DOI so that any user can access it without any restrictions to complete the morphometric measurements. This plugin will be useful for smaller research laboratories with limited budgets and require no access to complex software.

pathology↗