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Updated: Apr 14, 2026

Isolated Pancreatic Islet Treatment and Apoptosis Measurement
Published on: May 2, 2025
Horizontal transfer of exosomal microRNAs transduce apoptotic signals between pancreatic beta-cells
Claudiane Guay1, Véronique Menoud2, Sophie Rome3
1Department of Fundamental Neurosciences, University of Lausanne, Rue du Bugnon 9, Lausanne, Switzerland. claudiane.guay@unil.ch.
Background:
Diabetes mellitus is a common metabolic disorder characterized by dysfunction of insulin-secreting pancreatic beta-cells. MicroRNAs are important regulators of beta-cell activities. These non-coding RNAs have recently been discovered to exert their effects not only inside the cell producing them but, upon exosome-mediated transfer, also in other recipient cells. This novel communication mode remains unexplored in pancreatic beta-cells. In the present study, the microRNA content of exosomes released by beta-cells in physiological and physiopathological conditions was analyzed and the biological impact of their transfer to recipient cells investigated.
Results:
Exosomes were isolated from the culture media of MIN6B1 and INS-1 derived 832/13 beta-cell lines and from mice, rat or human islets. Global profiling revealed that the microRNAs released in MIN6B1 exosomes do not simply reflect the content of the cells of origin. Indeed, while a subset of microRNAs was preferentially released in exosomes others were selectively retained in the cells. Moreover, exposure of MIN6B1 cells to inflammatory cytokines changed the release of several microRNAs. The dynamics of microRNA secretion and their potential transfer to recipient cells were next investigated. As a proof-of-concept, we demonstrate that if cel-miR-238, a C. Elegans microRNA not present in mammalian cells, is expressed in MIN6B1 cells a fraction of it is released in exosomes and is transferred to recipient beta-cells. Furthermore, incubation of untreated MIN6B1 or mice islet cells in the presence of microRNA-containing exosomes isolated from the culture media of cytokine-treated MIN6B1 cells triggers apoptosis of recipient cells. In contrast, exosomes originating from cells not exposed to cytokines have no impact on cell survival. Apoptosis induced by exosomes produced by cytokine-treated cells was prevented by down-regulation of the microRNA-mediating silencing protein Ago2 in recipient cells, suggesting that the effect is mediated by the non-coding RNAs.
Conclusions:
Taken together, our results suggest that beta-cells secrete microRNAs that can be transferred to neighboring beta-cells. Exposure of donor cells to pathophysiological conditions commonly associated with diabetes modifies the release of microRNAs and affects survival of recipient beta-cells. Our results support the concept that exosomal microRNAs transfer constitutes a novel cell-to-cell communication mechanism regulating the activity of pancreatic beta-cells.
Insights
Pancreatic beta-cells release microRNAs via exosomes, which can transfer to other beta-cells. In diabetes-associated conditions, these exosomal microRNAs induce apoptosis in recipient cells, revealing a novel communication pathway.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Diabetes mellitus involves pancreatic beta-cell dysfunction.
- MicroRNAs regulate beta-cell function.
- Exosomes mediate intercellular communication via microRNA transfer, a novel mechanism in beta-cells.
Purpose of the Study:
- Analyze microRNA content in exosomes from beta-cells under physiological and pathological conditions.
- Investigate the biological impact of exosomal microRNA transfer on recipient beta-cells.
Main Methods:
- Isolated exosomes from beta-cell lines (MIN6B1, INS-1 832/13) and islets (mouse, rat, human).
- Performed global microRNA profiling of exosomes and cells.
- Studied microRNA secretion dynamics and transfer using a C. elegans microRNA (cel-miR-238).
- Assessed apoptosis in recipient cells exposed to exosomes from cytokine-treated or untreated beta-cells.
Main Results:
- Exosomal microRNA profiles differ from cellular content; some microRNAs are preferentially secreted, others retained.
- Inflammatory cytokines alter microRNA release from beta-cells.
- Exosomes from cytokine-treated beta-cells induce apoptosis in recipient beta-cells, mediated by microRNAs and Ago2.
- Exosomes from untreated cells do not affect recipient cell survival.
Conclusions:
- Beta-cells secrete microRNAs that transfer to neighboring cells.
- Pathophysiological conditions alter exosomal microRNA release, impacting recipient beta-cell survival.
- Exosomal microRNA transfer is a novel mechanism for cell-to-cell communication regulating pancreatic beta-cell activity.
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