Corneal nerve and nerve conduction abnormalities in children with type 1 diabetes.

IF 3.9 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Danièle Pacaud, Kenneth G Romanchuk, Heidi Virtanen, Maryam Ferdousi, Alberto Nettel-Aguirre, Jean K Mah, Mitra Tavakoli, Douglas W Zochodne, Rayaz A Malik
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Abstract

Objective: In vivo corneal confocal microscopy (CCM) is a novel, rapid, and non-invasive technique that identifies early small fiber damage and can predict the progression and development of clinical neuropathy in adults with type 1 diabetes. However, its usefulness in children is not well established. This study compared corneal confocal microscopy with neuropathic symptoms, signs, and objective measures of neuropathy for the diagnosis of diabetic neuropathy in children with type 1 diabetes.

Research design and methods: A total of 83 children with type 1 diabetes and 83 healthy participants of similar age underwent assessment of neuropathy symptoms, signs, nerve conduction studies, quantitative sensory and autonomic function testing, and in vivo CCM.

Results: Only of 3/83 (4%) children with type 1 diabetes had subclinical neuropathy. However, corneal nerve fiber density (p = 0.001), branch density (p = 0.006), fiber length (p = 0.002), tibial motor nerve amplitude and conduction velocity, and sural sensory nerve amplitude and conduction velocity (all p < 0.004) were lower in participants with type 1 diabetes than in the controls. Vibration, cooling, and warm perception thresholds and deep breathing heart rate variability were not found to be different (all p > 0.05) between children with type 1 diabetes and healthy controls. Multivariate regression analysis identified a possible association between body mass index and decreased corneal nerves.

Conclusions: Decreased corneal nerves and abnormal nerve conduction were found in children with type 1 diabetes. CCM may allow rapid objective detection of subclinical diabetic neuropathy in children and adolescents with type 1 diabetes.

1型糖尿病儿童角膜神经和神经传导异常。
目的:体内角膜共聚焦显微镜(CCM)是一种新颖、快速、无创的技术,可识别早期小纤维损伤,并可预测成人1型糖尿病患者临床神经病变的进展和发展。然而,它对儿童的作用还没有得到很好的证实。本研究比较了角膜共聚焦显微镜与神经病变症状、体征和客观神经病变指标对1型糖尿病儿童糖尿病性神经病变的诊断。研究设计和方法:共有83名1型糖尿病儿童和83名年龄相近的健康参与者进行了神经病变症状、体征评估、神经传导研究、定量感觉和自主神经功能测试以及体内CCM。结果:只有3/83(4%)的1型糖尿病患儿有亚临床神经病变。1型糖尿病患儿角膜神经纤维密度(p = 0.001)、分支密度(p = 0.006)、纤维长度(p = 0.002)、胫运动神经振幅和传导速度、腓肠感觉神经振幅和传导速度(p均为0.05)。多变量回归分析确定了身体质量指数与角膜神经减少之间可能存在的关联。结论:1型糖尿病患儿存在角膜神经减少和神经传导异常。CCM可以快速客观地检测1型糖尿病儿童和青少年的亚临床糖尿病神经病变。
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来源期刊
Pediatric Diabetes
Pediatric Diabetes 医学-内分泌学与代谢
CiteScore
6.60
自引率
14.70%
发文量
141
审稿时长
4-8 weeks
期刊介绍: Pediatric Diabetes is a bi-monthly journal devoted to disseminating new knowledge relating to the epidemiology, etiology, pathogenesis, management, complications and prevention of diabetes in childhood and adolescence. The aim of the journal is to become the leading vehicle for international dissemination of research and practice relating to diabetes in youth. Papers are considered for publication based on the rigor of scientific approach, novelty, and importance for understanding mechanisms involved in the epidemiology and etiology of this disease, especially its molecular, biochemical and physiological aspects. Work relating to the clinical presentation, course, management and outcome of diabetes, including its physical and emotional sequelae, is considered. In vitro studies using animal or human tissues, whole animal and clinical studies in humans are also considered. The journal reviews full-length papers, preliminary communications with important new information, clinical reports, and reviews of major topics. Invited editorials, commentaries, and perspectives are a regular feature. The editors, based in the USA, Europe, and Australasia, maintain regular communications to assure rapid turnaround time of submitted manuscripts.
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