Mandara Maria Teresa, Arcaro Simona, Porcellato Ilaria, Giglia Giuseppe
Department of Veterinary Medicine, University of Perugia, 06126 Perugia, Italy.
Vet Sci. 2025 Mar 21;12(4):291. doi: 10.3390/vetsci12040291.
In veterinary medicine, the diagnosis of peripheral neuropathies is currently performed using semithin sections or nerve fiber teasing from nerve biopsy. However, these methods actually fail to identify more specific length-dependent and somatosensitive neuropathies. In humans, skin punch biopsy is used to diagnose the latter, through the identification and count of intraepidermal nerve fibers (IENFs) crossing the dermal-epidermal junction, with indirect immunofluorescence (IIF). However, the current need for frozen samples for this technique limits its routine application in clinical practice. In this study, we set up an IIF protocol to identify IENFs in dogs' skin punch biopsies. Six tests were performed on canine formalin-fixed paraffin-embedded (FFPE) 8 mm skin punches, using an antibody anti-PGP9.5, also known as ubiquitin carboxyl-terminal hydrolase-1. Three parameters were checked: (1) the effectiveness of the co-localization immunoreaction, (2) the thickness of sections, and (3) the magnification for image acquisition. The best IIF results in terms of the sharpness of fiber visualization and the possibility to count them were obtained with 10 µm sections, with a high-power field (×40), without co-localization for nuclei and epithelial structures. Reference data concerning the IENF density of different skin regions in healthy animals of different ages remain to be defined for future diagnostic applications.
在兽医学中,目前外周神经病变的诊断是通过神经活检的半薄切片或神经纤维分离来进行的。然而,这些方法实际上无法识别更具特异性的长度依赖性和躯体感觉性神经病变。在人类中,通过间接免疫荧光法(IIF)识别和计数穿过真皮-表皮交界处的表皮内神经纤维(IENF),皮肤打孔活检用于诊断后者。然而,该技术目前对冷冻样本的需求限制了其在临床实践中的常规应用。在本研究中,我们建立了一种IIF方案来识别犬类皮肤打孔活检中的IENF。使用抗PGP9.5抗体(也称为泛素羧基末端水解酶-1)对犬类福尔马林固定石蜡包埋(FFPE)的8毫米皮肤打孔样本进行了六项测试。检查了三个参数:(1)共定位免疫反应的有效性,(2)切片厚度,以及(3)图像采集的放大倍数。在纤维可视化清晰度和计数可能性方面,最佳的IIF结果是在10 µm切片、高倍视野(×40)且细胞核和上皮结构无共定位的情况下获得的。不同年龄健康动物不同皮肤区域IENF密度的参考数据仍有待确定,以供未来诊断应用。