发布: 2019年07月05日第9卷第13期 DOI: 10.21769/BioProtoc.3285 浏览次数: 11631
评审: Gal HaimovichChaitali BasoleAnonymous reviewer(s)
Abstract
Skin wound healing is a complex process involving different events such as blood coagulation, inflammation, new blood vessels formation, and extracellular matrix deposition. These events can be observed by using histology techniques. However, the lack of the standardization of such parameters impacts on the reproducibility of results. Here, we describe a protocol to perform macroscopic and microscopic analyses of the events that occur during skin wound healing using the experimental model of excisional wounds in rats.
Keywords: Rat excisional wound (大鼠切除创面)Background
Skin wounds can be induced by extrinsic factors such as surgical incision, accidental injury or trauma, or by intrinsic factors such as those produced by infection and chronic ulcers. The skin wound healing is a complex process involving cellular, molecular and humoral components to tissue reestablishment after injury. In healthy adult mammals, it involves an early inflammatory phase, characterized by infiltration of leucocytes, with subsequent formation of granulation tissue (new tissue formed), epithelization, and matrix remodeling (Balbino et al., 2005; Estevão et al., 2017). An accurate assessment of wound healing events is critical to reproducible data, with histological studies being the gold standard in this area of knowledge. Here, we describe a protocol using an excisional wound healing model in rats to demonstrate the wound creation, wound closure evaluation and qualitative analysis of microscopic events (inflammation, extracellular matrix deposition, angiogenesis, and epithelialization) in skin wounds.
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文章信息
版权信息
© 2019 The Authors; exclusive licensee Bio-protocol LLC.
如何引用
Estevão, L. R. D. M., Cassini-Vieira, P., Leite, A. G. B., Bulhões, A. A. V. D. C., Barcelos, L. D. S. and Evêncio-Neto, J. (2019). Morphological Evaluation of Wound Healing Events in the Excisional Wound Healing Model in Rats. Bio-protocol 9(13): e3285. DOI: 10.21769/BioProtoc.3285.
分类
免疫学 > 动物模型 > 大鼠
细胞生物学 > 组织分析 > 损伤模型
细胞生物学 > 组织分析 > 组织形态学
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