Biodegradable nanofiber coated human umbilical cord as nerve scaffold for sciatic nerve regeneration in albino Wistar rats.

IF 1.2 4区 医学 Q3 ANATOMY & MORPHOLOGY
Folia morphologica Pub Date : 2024-01-01 Epub Date: 2023-03-27 DOI:10.5603/FM.a2023.0022
Balasundari Ramesh, Jaikanth Chandrasekaran, Kotturathu Mammen Cherian, Adegbenro Omotuyi John Fakoya
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引用次数: 0

Abstract

Background: Human umbilical cord (hUC) is encompassed by a mucoid connective tissue called Wharton's jelly (WJ), made of hyaluronic acid, collagen, and stromal cells to support the blood vessels of hUC. This study was aimed to determine the in vitro neuronal differentiation of WJ-derived mesenchymal stem cells (WJMSCs), and in vivo axonal regeneration potential of nanofiber coated human Wharton's jelly as a neuronal graft after sciatic nerve injury in immunosuppressed albino Wistar rats.

Materials and methods: Wharton's jelly-derived mesenchymal stem cells could be differentiated to neuron-like cells by inducing with neuronic supplementing media. The test animal's axotomized nerves were implanted with trimmed human umbilical cord devoid of vascularity and nanocoated with electro-spun poly-l-lactic acid nanofibers. The control animals were bridged with native sciatic nerve reversed and sutured. Post-surgical functional recovery was studied by walking track, pinprick, muscle weight, and sweating quantification. At the end of the 4th week, the animals were euthanized, and magnetoneurography was performed. The explanted grafts were quantified by immunohistochemistry for immuno-rejection, neural scarring, neural adhesion axon regeneration, fibre diameter, myelin thickness, and G-ratio. The sciatic function index values were similar by walking track analysis for both the test and control groups.

Results: The animals had functional and sensation recovery by the end of 2 weeks. No mortality, signs of inflammation, and acute immune rejection were observed post-surgery.

Conclusions: The hUCWJ devoid of vascular elements can be a perfect peripheral nerve graft, and we hypothesis that the cryopreserved hUC could be an ideal resource for axonal regeneration in the future.

可生物降解纳米纤维涂层人脐带作为神经支架用于白化 Wistar 大鼠坐骨神经再生。
背景:人脐带(human umbilical cord,hUC)被一种名为沃顿果冻(Wharton's jelly,WJ)的粘液结缔组织包裹,WJ由透明质酸、胶原蛋白和基质细胞组成,用于支撑hUC的血管。本研究旨在确定Wharton's jelly衍生间充质干细胞(WJMSCs)的体外神经元分化,以及纳米纤维包裹的人Wharton's jelly作为免疫抑制白化Wistar大鼠坐骨神经损伤后神经元移植的体内轴突再生潜力:Wharton果冻间充质干细胞可通过神经补充培养基诱导分化为神经元样细胞。试验动物的轴突神经植入修剪过的无血管人脐带,并用电纺聚乳酸纳米纤维进行纳米包覆。对照组动物则用本地坐骨神经反向桥接并缝合。通过行走轨迹、针刺、肌肉重量和出汗定量来研究手术后的功能恢复情况。第 4 周结束时,对动物实施安乐死,并进行磁神经显像。用免疫组化方法对移植物的免疫排斥、神经瘢痕、神经粘附轴突再生、纤维直径、髓鞘厚度和 G 比率进行量化。通过行走轨迹分析,试验组和对照组的坐骨神经功能指数值相似:结果:试验组和对照组的坐骨神经功能指数值相似。结果:2周后,动物的功能和感觉均已恢复,术后未出现死亡、炎症迹象和急性免疫排斥反应:结论:不含血管成分的 hUCWJ 是一种完美的周围神经移植材料,我们假设冷冻保存的 hUC 将成为未来轴突再生的理想资源。
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来源期刊
Folia morphologica
Folia morphologica ANATOMY & MORPHOLOGY-
CiteScore
2.40
自引率
0.00%
发文量
218
审稿时长
6-12 weeks
期刊介绍: "Folia Morphologica" is an official journal of the Polish Anatomical Society (a Constituent Member of European Federation for Experimental Morphology - EFEM). It contains original articles and reviews on morphology in the broadest sense (descriptive, experimental, and methodological). Papers dealing with practical application of morphological research to clinical problems may also be considered. Full-length papers as well as short research notes can be submitted. Descriptive papers dealing with non-mammals, cannot be accepted for publication with some exception.
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