Organization of the Fibrous Component of Connective Tissue Paraneural Structures in Different Periods of Ontogenesis

IF 0.2 Q4 MEDICINE, RESEARCH & EXPERIMENTAL International Journal of Biomedicine Pub Date : 2023-06-05 DOI:10.21103/article13(2)_oa19
K. Borodina, Anastasia I Frishko, E. A. Dragovoz, Anastasiya A Mamedova, Elizaveta A Maltseva, E. Mishina, A. Tverskaya, Anatoly V Erofeev, M. Zatolokina
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Abstract

Background: The steady increase in road traffic accidents, seasonal injuries leading to damage to the peripheral nerves of the extremities, as well as the military conflicts that are becoming more frequent now actualize research aimed at improving the diagnosis, treatment, and prevention of post-traumatic changes in the nerve trunks of the extremities. The frequency of peripheral nerve injuries varies from 1.5% to 13% of all injuries in peacetime; and during hostilities, it reaches 20%, and disability is 60%. At the same time, specific destructive changes in the nerves of the extremities after their traumatic injury require extraordinary organizational, therapeutic, and functional approaches to their restoration. The purpose of this study was to evaluate the dynamics of changes in the fibrous component of the paraneurium connective tissue structures in different periods of ontogenesis. Methods and Results: The study consisted of two stages. At the first stage, to study changes in the paraneurium connective tissue of the sciatic nerve (SN) in vivo, ultrasound was performed using an RS85 ultrasound scanner (Samsung Medison, South Korea, 2021) and two linear transducers, LA4-18B and LA2-9A. The thickness of the SN and the surrounding paraneurium were measured, and their structural organization was evaluated. The inclusion criterion was the absence of pathology from the peripheral nervous system. All subjects were divided into four age groups (15 people in each group): Group 1 (0-11 years), Group 2 (12-25 years), Group 3 (26-40 years), and Group 4 (41-60 years). The second stage was performed on cadaveric material of the paraneurium connective tissue of the SN of persons of both sexes, of different ages, whose cause of death was not related to diseases or injuries of the nervous system. To determine the qualitative and quantitative ratio of collagen fibers of different degrees of maturity in the connective tissue structures of the paraneurium tissue of the sciatic nerve, polarization microscopy (MicMed-6, Lomo, Russia) was applied, and the basic principle of double refraction, which in combination with Sirius red staining, made it possible to differentiate types I and III collagen. The amount of each collagen type was determined by analyzing the color gamut after Sirius red staining in polarizing light. Fibers containing type I collagen had a red glow, while those containing type III collagen had a green glow. The ratio of collagen types was calculated using the Fiji program (USA, 2022). US examination revealed the presence of a non-pronounced bilateral asymmetry in the structural organization of the paraneurium and an increase in the thickness of the SN with age, from 0-11 years to the age group of 41-60 years. Polarization microscopy of micro-preparations of the human sciatic nerve with paraneurium structures made it possible to analyze the density of the fibers of the paraneurium connective tissue and identify types I and III of collagen. At the age of 11, the amount of type I collagen fibers was maximum (69.74±0.41%), and type III collagen fibers amounted to 30.26±0.44%. Further, with increasing age, the amount of collagen III significantly diminished. The ratio of type I to type III collagen increased with patient age, with the highest ratio in the age group 41-60 years. Conclusion: The revealed dynamics of changes are quite comparable with the age-related features of connective tissue since it is this tissue that makes up the morphological substrate of the paraneurium of the sciatic nerve.
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胚胎发育不同时期结缔组织副神经结构纤维成分的组织
背景:道路交通事故的稳步增加,导致四肢周围神经损伤的季节性损伤,以及越来越频繁的军事冲突,现在正在进行旨在改善四肢神经干创伤后变化的诊断、治疗和预防的研究。周围神经损伤的频率在和平时期占所有损伤的1.5%至13%不等;在敌对状态下,这一比例达到20%,残疾率达到60%。同时,创伤后四肢神经的特定破坏性变化需要非凡的组织、治疗和功能方法来修复。本研究的目的是评估在个体发生的不同时期,神经旁结缔组织结构的纤维成分变化的动力学。方法与结果:研究分为两个阶段。在第一阶段,为了研究体内坐骨神经旁结缔组织(SN)的变化,使用RS85超声扫描仪(Samsung Medison,South Korea,2021)和两个线性换能器LA4-18B和LA2-9A进行超声检查。测量SN和周围的副神经层的厚度,并评估其结构组织。纳入标准为周围神经系统无病理。所有受试者被分为四个年龄组(每组15人):第一组(0-11岁)、第二组(12-25岁)、第一组(26-40岁)和第四组(41-60岁)。第二阶段是在不同性别、不同年龄的人的SN副神经结缔组织尸体材料上进行的,其死因与神经系统疾病或损伤无关。为了确定坐骨神经旁神经组织结缔组织结构中不同成熟度胶原纤维的定性和定量比例,应用偏振显微镜(MicMed-6,Lomo,Russia),并结合天狼星红染色的双折射基本原理,使得能够区分I型和III型胶原。通过分析在偏振光中天狼星红染色后的色域来确定每种胶原类型的量。含有I型胶原的纤维发出红光,而含有III型胶原的则发出绿光。胶原蛋白类型的比例是使用斐济计划计算的(美国,2022)。US检查显示,从0-11岁到41-60岁年龄组,副脑结构组织存在不明显的双侧不对称,SN厚度随年龄增加而增加。具有旁神经结构的人坐骨神经微制剂的偏振显微镜使分析旁神经结缔组织的纤维密度和鉴定I型和III型胶原成为可能。在11岁时,I型胶原纤维的数量最多(69.74±0.41%),III型胶原纤维为30.26±0.44%。此外,随着年龄的增长,III型胶原蛋白的数量显著减少。I型胶原与III型胶原的比例随着患者年龄的增长而增加,41-60岁年龄组的比例最高。结论:所揭示的变化动力学与结缔组织的年龄相关特征非常相似,因为正是结缔组织构成了坐骨神经副神经的形态学基底。
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来源期刊
International Journal of Biomedicine
International Journal of Biomedicine MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
0.60
自引率
33.30%
发文量
90
审稿时长
8 weeks
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