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Proteomic analysis of pancreatic endocrine cells by mechanistic single-cell isolation identifies membrane pathways

Lihi Grinberg, Worood Sirhan, Marina Kurtz, Michael Assa, Assaf Malka, Shira Perez, Corine Katina, Yishai Levin, Ron Piran

Experimental & Molecular Medicine · 2026

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Abstract To better understand diabetes and normoglycemia, pancreatic islet biology requires a precise molecular understanding of islet cell types at both the transcriptomic and proteomic levels. While transcriptomic analyses are well established, comprehensive proteomic characterization has been lacking, limiting our knowledge of islet molecular complexity. Here we introduce a nonenzymatic, mechanistic single-cell isolation technology using laser microdissection (LMD7), facilitating proteomic and transcriptomic analysis of physically isolated α-, β- and δ-cells from fresh-frozen, unfixed pancreatic tissue. This mechanistic approach avoids enzymatic digestion and chemical fixation, preserving the cells’ native molecular state before processing. Given the limited existing proteomic data, we supplemented our findings with transcriptomic analysis generated using the same method and compared our results with data from enzymatically isolated cells, obtained by fluorescence-activated cell sorting and compiled by others. Our analysis revealed that enzymatic digestion alters gene expression patterns, particularly those of membrane-associated proteins, underscoring the impact of isolation techniques on biological outcomes. We identified cell-type-specific proteins typically underrepresented in pancreatic single-cell transcriptomic datasets. β-cells exhibited enrichment in vesicle trafficking proteins, α-cells displayed distinct calcium-dependent action potential machinery and δ-cells showed elevated expression of focal adhesion-related proteins. In addition, we report an inverse molecular relationship between β- and δ-cells, potentially driven by transcriptional regulators such as Mlxipl. By establishing robust molecular profiles directly from intact pancreatic tissue, this work provides a reference point for future pathological comparisons, offering a framework to investigate how diabetes and other endocrine disorders reshape islet cell biology.

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Autor:innen
Lihi Grinberg, Worood Sirhan, Marina Kurtz, Michael Assa, Assaf Malka, Shira Perez, Corine Katina, Yishai Levin, Ron Piran
Quelle
Experimental & Molecular Medicine
Publikation
2026-01-01
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ISSN / ISBN
2092-6413
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Zitierfähiger Nachweis

Lihi Grinberg, Worood Sirhan, Marina Kurtz, Michael Assa, Assaf Malka, Shira Perez, Corine Katina, Yishai Levin, Ron Piran (2026). Proteomic analysis of pancreatic endocrine cells by mechanistic single-cell isolation identifies membrane pathways. Experimental & Molecular Medicine. https://doi.org/10.1038/s12276-026-01826-9
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