Medina-Serpas Miguel A, Brusko Maigan, Golden Gregory J, Campbell-Thompson Martha, Rogers Trevor, Posgai Amanda L, Prak Eline T Luning, Liu Chengyang, Kaestner Klaus H, Naji Ali, Betts Michael R, McIntyre Lauren M, Atkinson Mark A, Brusko Todd M
Diabetes Institute, University of Florida, Gainesville, FL 32610, USA.
Department of Pathology, Immunology, and Laboratory Medicine, College of Medicine, University of Florida, Gainesville, FL 32610, USA.
bioRxiv. 2025 May 30:2025.05.19.654940. doi: 10.1101/2025.05.19.654940.
This study explores the inflammatory response observed in pancreata and pancreatic lymph node (pLN) samples obtained throughout the natural history of type 1 diabetes (T1D) including non-diabetic individuals and non-diabetic autoantibody positive individuals with high susceptibility using spatial transcriptomics (ST). Integration of ST with public single-cell RNA sequencing data enabled interrogation of transcriptional alterations in T1D pathogenesis across both tissues and cellular scales. In the T1D pancreas, we observed global upregulation of multiple inflammation-associated transcripts, including regenerating islet-derived () family genes, complement factor 3 (), , and , and highlighted cellular candidates potentially contributing to these signatures. Within the T1D pLN, we observed spatially restricted upregulation of lymphotoxin-β () alongside follicular dendritic cell (FDC)-associated transcripts including , , and . Collectively, these findings highlight distinct inflammation signatures in the pancreas and regional pLN which can help inform the development of future therapeutic interventions.
本研究利用空间转录组学(ST)探索了在1型糖尿病(T1D)自然病程中获取的胰腺和胰腺淋巴结(pLN)样本中观察到的炎症反应,这些样本包括非糖尿病个体以及具有高易感性的非糖尿病自身抗体阳性个体。将ST与公开的单细胞RNA测序数据相结合,能够在组织和细胞尺度上探究T1D发病机制中的转录变化。在T1D胰腺中,我们观察到多种炎症相关转录本的整体上调,包括再生胰岛衍生(Regenerating islet-derived,Reg)家族基因、补体因子3(C3)、C1q和C4,并且突出了可能导致这些特征的细胞候选物。在T1D pLN内,我们观察到淋巴毒素-β(LTβ)以及与滤泡树突状细胞(FDC)相关的转录本(包括CXCL13、CCL21和ICAM1)在空间上受到限制的上调。总体而言,这些发现突出了胰腺和局部pLN中不同的炎症特征,这有助于为未来治疗干预措施的开发提供信息。