Zhiming Liu, Yida Wang, Xuexiao Ma, Lu Zhang, Chao Wang
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引用次数: 0
Abstract
Purpose: Traditionally, the epidural fat (EF) is known as a physical buffer for the dural sac against the force and a lubricant facilitating the relative motion of the latter on the osseous spine. Along with the development of the studies on EF, controversies still exist on vital questions, such as the underlying mechanism of the spinal epidural lipomatosis. Meanwhile, the scattered and fragmented researches hinder the global insight into the seemingly dispensable tissue.
Methods: Herein, we reviewed literature on the EF and its derivatives to elucidate the dynamic change and complex function of EF in the local milieu, especially at the pathophysiological conditions. We start with an introduction to EF and the current pathogenic landscape, emphasizing the interlink between the EF and adjacent structures. We generally categorize the major pathological changes of the EF into hypertrophy, atrophy, and inflammation.
Results and conclusions: It is acknowledged that not only the EF (or its cellular components) may be influenced by various endogenic/exogenic and focal/systematic stimuli, but the adjacent structures can also in turn be affected by the EF, which may be a hidden pathogenic clue for specific spinal disease. Meanwhile, the unrevealed sections, which are also the directions the future research, are proposed according to the objective result and rational inference. Further effort should be taken to reveal the underlying mechanism and develop novel therapeutic pathways for the relevant diseases.
目的:传统上,硬膜外脂肪(EF)被认为是硬膜囊抵抗外力的物理缓冲器,也是促进硬膜囊在骨质脊柱上相对运动的润滑剂。随着硬膜外脂肪研究的发展,在一些重要问题上仍存在争议,如脊髓硬膜外脂肪瘤病的内在机制。方法:在此,我们回顾了有关 EF 及其衍生物的文献,以阐明 EF 在局部环境中,尤其是在病理生理条件下的动态变化和复杂功能。我们首先介绍了外周血及其目前的致病情况,强调了外周血与邻近结构之间的相互联系。我们一般将 EF 的主要病理变化分为肥大、萎缩和炎症:我们认识到,不仅EF(或其细胞成分)可能受到各种内源性/外源性和局灶性/系统性刺激的影响,而且邻近结构也可能反过来受到EF的影响,这可能是特定脊柱疾病的隐性致病线索。同时,根据客观结果和合理推断,提出了尚未揭示的部分,这也是未来研究的方向。我们应进一步努力揭示其潜在机制,并为相关疾病开发新的治疗途径。
期刊介绍:
The aim of Connective Tissue Research is to present original and significant research in all basic areas of connective tissue and matrix biology.
The journal also provides topical reviews and, on occasion, the proceedings of conferences in areas of special interest at which original work is presented.
The journal supports an interdisciplinary approach; we present a variety of perspectives from different disciplines, including
Biochemistry
Cell and Molecular Biology
Immunology
Structural Biology
Biophysics
Biomechanics
Regenerative Medicine
The interests of the Editorial Board are to understand, mechanistically, the structure-function relationships in connective tissue extracellular matrix, and its associated cells, through interpretation of sophisticated experimentation using state-of-the-art technologies that include molecular genetics, imaging, immunology, biomechanics and tissue engineering.