❌

Reading view

Single nucleus multiomics reveals an early inflammatory response to high-fat diet in mouse islets

Life Sci Alliance. 2026 Sep 1;9(11):e202603840. doi: 10.26508/lsa.202603840. Print 2026 Nov.

ABSTRACT

In periods of sustained hyper-nutrition, pancreatic Ξ²-cells undergo functional compensation through transcriptional upregulation of gene programs driving insulin secretion. This adaptation is essential for maintaining systemic glucose homeostasis and metabolic health. Using single nuclei multiomics, we have mapped the early transcriptional adaptive mechanisms in murine islets of Langerhans exposed to high-fat diet (HFD) for 1 and 3 wk. We show that Ξ²-cells exhibit the largest transcriptional response to HFD, characterized by early activation of pro-inflammatory eRegulons and down-regulation of Ξ²-cell identity genes, particularly in a distinct subset of Ξ²-cells. These observations extend to humans, where the prevalence of an Ξ²-cells with a high inflammatory signature is increased in diabetes. Collectively, these observations point to cellular crosstalk through pro-inflammatory signaling as a central and early driver of Ξ²-cell dysfunction that limits the compensatory capacity of Ξ²-cells, which is closely linked to the development of diabetes.

PMID:42680559 | PMC:PMC13534335 | DOI:10.26508/lsa.202603840

  •  
❌