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Hyperglycemia and Salivary Gland Dysfunction in the Non-obese Diabetic Mouse: Caveats for Preclinical Studies in Sj?gren’s Syndrome

机译:非肥胖糖尿病小鼠的高血糖和唾液腺功能障碍:SJ临床前研究的警告?GREN的综合征

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The Non-obese Diabetic (NOD) mouse model for type I diabetes also develops some features of Sj?gren's syndrome (SS). Since the source of the mice and the environment exert a strong influence on diabetes, this study investigated SS development in NOD mice obtained from two vendors. Female NOD mice from The Jackson Laboratory (JAX) and Taconic Biosciences were monitored for blood glucose and pilocarpine-induced salivation. The gut microbiome was analyzed by 16S rRNA sequencing of stool DNA. At euthanasia, serum cytokines and sialoadenitis severity were evaluated. The onset of diabetes was significantly accelerated in JAX mice compared to Taconic mice. Although the gut microbiome between the two groups was distinct, both groups developed sialoadenitis. There was no correlation between the severity of sialoadenitis and reduced saliva production. Instead, salivary gland dysfunction was associated with hyperglycemia and elevation of serum IL1β, IL16, and CXCL13. Our data suggest that inflammatory pathways linked with hyperglycemia are confounding factors for salivary gland dysfunction in female NOD mice, and might not be representative of the mechanisms operative in SS patients. Considering that NOD mice have been used to test numerous experimental therapies for SS, caution needs to be exerted before advancing these therapeutics for human trials.
机译:I型糖尿病的非肥胖糖尿病(NOD)小鼠模型也产生了SJ?GREN的综合征(SS)的一些特征。由于小鼠的来源和环境对糖尿病产生了强烈影响,本研究研究了从两个供应商获得的NOD小鼠中的SS发育。监测来自杰克逊实验室(JAX)和Taconic Biosciences的雌性Nod小鼠用于血糖和潜水野兔诱发的延伸。通过16S rRNA测序分析肠道微生物组的粪便DNA。在安乐死,评估血清细胞因子和唾液节炎严重程度。与Taconic小鼠相比,Jax小鼠中糖尿病的发病显着加速。虽然两组之间的肠道微生物组是不同的,但两组均发育唾液腺炎。唾液腺炎的严重程度与唾液产生减少之间没有相关性。相反,唾液腺功能障碍与高血糖和血清IL1β,IL16和CXCL13的升高有关。我们的数据表明,与高血糖相关的炎症途径是女性Nod小鼠唾液腺功能障碍的混淆因素,并且可能不代表SS患者手术机制。考虑到NOD小鼠已被用于测试SS的许多实验疗法,在推进人类试验之前,需要施加谨慎的小鼠。

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