Lundberg Marcus, Lindqvist Andreas, Wierup Nils, Krogvold Lars, Dahl-Jørgensen Knut, Skog Oskar
Department of Immunology, Genetics and Pathology, Uppsala University, Uppsala, Sweden.
Lund University Diabetes Centre, Lund University, Malmö, Sweden.
PLoS One. 2017 Jun 19;12(6):e0179911. doi: 10.1371/journal.pone.0179911. eCollection 2017.
To elucidate the etiology of type 1 diabetes, the affected pancreas needs to be thoroughly characterized. Pancreatic innervation has been suggested to be involved in the pathology of the disease and a reduction of sympathetic innervation of the islets was recently reported. In the present study, we hypothesized that parasympathetic innervation would be altered in the type 1 diabetes pancreas. Human pancreatic specimens were obtained from a unique cohort of individuals with recent onset or long standing type 1 diabetes. Density of parasympathetic axons was assessed by immunofluorescence and morphometry. Our main finding was a reduced density of parasympathetic axons in the exocrine, but not endocrine compartment of the pancreas in individuals with recent onset type 1 diabetes. The reduced density of parasympathetic axons in the exocrine compartment could have functional implications, e.g. be related to the exocrine insufficiency reported in type 1 diabetes patients. Further studies are needed to understand whether reduced parasympathetic innervation is a cause or consequence of type 1 diabetes.
为了阐明1型糖尿病的病因,需要对受影响的胰腺进行全面的特征描述。有研究表明胰腺神经支配参与了该疾病的病理过程,并且最近有报道称胰岛的交感神经支配减少。在本研究中,我们假设1型糖尿病胰腺中的副交感神经支配会发生改变。人类胰腺标本取自一组新近发病或长期患1型糖尿病的独特个体。通过免疫荧光和形态测量法评估副交感神经轴突的密度。我们的主要发现是,新近发病的1型糖尿病患者胰腺的外分泌部而非内分泌部的副交感神经轴突密度降低。外分泌部副交感神经轴突密度降低可能具有功能意义,例如与1型糖尿病患者中报道的外分泌功能不全有关。需要进一步研究以了解副交感神经支配减少是1型糖尿病的原因还是结果。