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Hyperglycemia impedes lung bacterial clearance in a murine model of cystic fibrosis-related diabetes

机译:高血糖症在鼠类囊性纤维化相关糖尿病模型中阻碍肺细菌清除

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摘要

Cystic fibrosis-related diabetes (CFRD) is the most common comorbidity associated with cystic fibrosis (CF), impacting more than half of patients over age 30. CFRD is clinically significant, portending accelerated decline in lung function, more frequent pulmonary exacerbations, and increased mortality. Despite the profound morbidity associated with CFRD, little is known about the underlying CFRD-related pulmonary pathology. Our aim was to develop a murine model of CFRD to explore the hypothesis that elevated glucose in CFRD is associated with reduced lung bacterial clearance. A diabetic phenotype was induced in gut-corrected CF transmembrane conductance regulator (CFTR) knockout mice (CFKO) and their CFTR-expressing wild-type littermates (WT) utilizing streptozotocin. Mice were subsequently challenged with an intratracheal inoculation of Pseudomonas aeruginosa (PAO1) (75 μl of 1–5 × 106 cfu/ml) for 18 h. Bronchoalveolar lavage fluid was collected for glucose concentration and cell counts. A portion of the lung was homogenized and cultured as a measure of the remaining viable PAO1 inoculum. Diabetic mice had increased airway glucose compared with nondiabetic mice. The ability to clear bacteria from the lung was significantly reduced in diabetic WT mice and control CFKO mice. Critically, bacterial clearance by diabetic CFKO mice was significantly more diminished compared with nondiabetic CFKO mice, despite an even more robust recruitment of neutrophils to the airways. This finding that CFRD mice boast an exaggerated, but less effective, inflammatory cell response to intratracheal PAO1 challenge presents a novel and useful murine model to help identify therapeutic strategies that promote bacterial clearance in CFRD.
机译:囊性纤维化相关的糖尿病(CFRD)是与囊性纤维化(CF)相关的最常见合并症,影响了超过一半的30岁以上患者。CFRD具有临床意义,预示着肺功能的加速下降,肺部疾病加重和增加死亡。尽管与CFRD相关的发病率很高,但对于潜在的CFRD相关的肺部疾病知之甚少。我们的目标是建立CFRD的鼠模型,以探索CFRD中葡萄糖升高与肺细菌清除率降低相关的假设。利用链脲佐菌素在肠道校正的CF跨膜电导调节剂(CFTR)敲除小鼠(CFKO)及其表达CFTR的野生型同窝幼仔(WT)中诱导出糖尿病表型。随后用气管内接种铜绿假单胞菌(PAO1)(75μl1-5×10 6 cfu / ml)攻击小鼠18 h。收集支气管肺泡灌洗液中的葡萄糖浓度和细胞计数。将肺的一部分匀浆并培养,以测量剩余的可行PAO1接种物。与非糖尿病小鼠相比,糖尿病小鼠的呼吸道葡萄糖增加。在糖尿病WT小鼠和对照CFKO小鼠中,从肺清除细菌的能力显着降低。至关重要的是,尽管嗜中性粒细胞向呼吸道的吸收更为强劲,但与非糖尿病CFKO小鼠相比,糖尿病CFKO小鼠的细菌清除作用明显降低。 CFRD小鼠对气管内PAO1攻击具有夸张但效果不佳的炎症细胞反应,这一发现提出了一种新颖而有用的鼠模型,可帮助鉴定可促进CFRD中细菌清除的治疗策略。

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