Sweat gland nerve fiber density and association with sudomotor function, symptoms, and risk factors in adolescents with type 1 diabetes.

IF 3.9 3区 医学 Q1 CLINICAL NEUROLOGY Clinical Autonomic Research Pub Date : 2023-12-01 Epub Date: 2023-09-08 DOI:10.1007/s10286-023-00973-7
Vinni Faber Rasmussen, Ann Schmeichel, Mathilde Thrysøe, Jens Randel Nyengaard, Ann-Margrethe Rønholt Christensen, Esben Thyssen Vestergaard, Kurt Kristensen, Astrid Juhl Terkelsen, Páll Karlsson, Wolfgang Singer
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Abstract

Purpose: To quantify sweat gland nerve fiber density in adolescents with diabetes. Additionally, to investigate associations between sudomotor innervation, sweat responses, and possible risk factors for sudomotor neuropathy.

Methods: Cross-sectional study where 60 adolescents with type 1 diabetes (duration > 5 years) and 23 control subjects were included. Clinical data, quantitative sudomotor axon reflex test, and skin biopsies were obtained. Skin tissue was immunostained and imaged by confocal microscopy. Quantification of the sweat gland volume and three-dimensional reconstruction of the nerve fibers was performed using a design-unbiased technique.

Results: Adolescents with diabetes had a significant reduction of maximum and mean values of nerve fiber length and nerve fiber density in sweat glands compared to controls (p values < 0.05). No association between nerve fiber density and sweat responses was found (p = 0.21). In cases with reduced sweat gland nerve fiber length, nerve fiber density, and volume, the sweat response was reduced or absent. Height, systolic blood pressure, time in hypoglycemia, and total daily and basal/total insulin dose were positively correlated to sweat response, while low-density lipoprotein, and HbA1c were negatively correlated with sweat response (p values < 0.05). Other microvascular complications and high cholesterol levels increased the relative risk for reduced sweat gland nerve fiber density.

Conclusion: Our findings of reduced sweat gland innervation in a selected group of adolescents add new knowledge about the structural changes that occur in autonomic nerves due to diabetes. Evaluating both the sweat gland innervation and sweat gland volume was important for understanding the association with sweat responses. Further research is needed to understand its clinical relevance.

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1 型糖尿病青少年的汗腺神经纤维密度及其与排汗功能、症状和风险因素的关系。
目的:量化青少年糖尿病患者的汗腺神经纤维密度。此外,研究汗腺神经支配、汗液反应和可能导致汗腺神经病变的危险因素之间的关联:方法:横断面研究,纳入 60 名 1 型糖尿病青少年(病程大于 5 年)和 23 名对照组受试者。研究人员采集了临床数据、定量淋巴运动轴突反射测试和皮肤活组织切片。通过共聚焦显微镜对皮肤组织进行免疫染色和成像。采用设计无偏技术对汗腺体积进行量化,并对神经纤维进行三维重建:结果:与对照组相比,青少年糖尿病患者汗腺中神经纤维长度和神经纤维密度的最大值和平均值均显著降低(P 值 结论:青少年糖尿病患者的汗腺神经支配能力降低:我们对部分青少年汗腺神经支配减少的研究结果,为糖尿病导致的自律神经结构变化增添了新的知识。同时评估汗腺神经支配和汗腺体积对于了解汗液反应的相关性非常重要。要了解其临床意义,还需要进一步的研究。
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来源期刊
Clinical Autonomic Research
Clinical Autonomic Research 医学-临床神经学
CiteScore
7.40
自引率
6.90%
发文量
65
审稿时长
>12 weeks
期刊介绍: Clinical Autonomic Research aims to draw together and disseminate research work from various disciplines and specialties dealing with clinical problems resulting from autonomic dysfunction. Areas to be covered include: cardiovascular system, neurology, diabetes, endocrinology, urology, pain disorders, ophthalmology, gastroenterology, toxicology and clinical pharmacology, skin infectious diseases, renal disease. This journal is an essential source of new information for everyone working in areas involving the autonomic nervous system. A major feature of Clinical Autonomic Research is its speed of publication coupled with the highest refereeing standards.
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