ArticleStructure (London, England : 1993)2026
Classifying biophysical subpopulations of insulin secretory granules using quantitative whole-cell structure analysis.
Article in Structure (London, England : 1993), 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 3 papers.
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Who cites it
3 citing papers in PubMed.
- Dielectrophoresis reveals stimulus-induced remodeling of insulin granule subpopulations.Biophysical journal · 2026Article
- Integrated biophysical and spatial remodeling during insulin secretory granule maturation at the mitochondrial network.bioRxiv : the preprint server for biology · 2026Article
- Dielectrophoresis Reveals Stimulus-Induced Remodeling of Insulin Granule Subpopulations.bioRxiv : the preprint server for biology · 2025Article
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Abstract
Pancreatic beta cells contain insulin secretory granules (ISGs), organelles where proinsulin is converted into insulin. As ISGs mature, they undergo extensive biophysical remodeling, producing a spectrum of subpopulations with heterogeneous molecular and spatial characteristics. However, systematic methods to define ISG subpopulations remain underdeveloped. To address this gap in knowledge, we employed soft X-ray tomography (SXT), which can quantitatively measure the biochemical density of ISGs within whole beta cells. Using unsupervised clustering, we classified subpopulations based on molecular density, size, and spatial positioning. Across different insulin secretory stimuli, we observed shifts toward mature and releasable subtypes, demonstrating that exogenous signals can dynamically remodel ISG subpopulation distributions. We extended this methodology to primary beta cells characterized using volume electron microscopy (vEM). Integrating subpopulations from SXT and vEM uncovered insights inaccessible by a single method in isolation. This strategy establishes a framework for defining therapeutic approaches aimed at enriching physiologically beneficial ISG subpopulations.
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