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首页> 外文期刊>Journal of periodontal research >Quantitative characterizations of the Sharpey’s fibers of rat molars
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Quantitative characterizations of the Sharpey’s fibers of rat molars

机译:大鼠磨牙尖锐纤维的定量表征

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Abstract Background and objective The Sharpey's fibers of periodontal ligament (PDL) anchor the PDL to alveolar bone and cementum and are essential for the function of PDL. While qualitative analyses of the Sharpey's fibers have been widely explored, a comprehensive quantitative characterization of the Sharpey's fibers is not available. In this work, we selected rat molars as a model and comprehensively characterized the PDL Sharpey's fibers (diameter, density, length, embedding angle, and insertion angle). Materials and methods A total of 24 rat mandibular molars, eight maxillary first molars, and their surrounding alveolar bone were harvested, fixed, rendered anorganic and observed under scanning electron microscopy (SEM). The mandibles and maxillae (n?=?4) were harvested, processed, sectioned, and stained with Sirius red for histological observation. SEM images were used for quantitative analyses of diameters and densities of the Sharpey's fibers, while Sirius red staining images were used to measure lengths and angles. The Sharpey's fibers were comprehensively characterized in terms of positions (cervical, middle, and apical thirds), PDL fiber groups (alveolar crest, horizontal, oblique, apical, and interradicular groups), sides (cementum and bone sides), and teeth (mandibular first, second, third molars, and maxillary first molar). Results Our results showed that the characteristic parameters of the Sharpey's fibers varied in different positions, fiber groups, sides, and teeth. Specifically, the median diameter of the Sharpey's fibers on the bone side was significantly greater than that on the cementum side, while the median density of the Sharpey's fibers on the bone side was significantly lower than that on the cementum side, regardless of the positions and teeth. For the same tooth, the median length of the embedded Sharpey's fibers on the bone side was more than two times greater than that on the cementum side. Among all fiber groups, the alveolar crest group had the maximum length of the Sharpey's fibers on the bone side and the minimal length of the Sharpey's fibers on the cementum side. There is an approximate 5‐15° difference between the embedding angle and the insertion angle in each group. The oblique group had the smallest embedding angles on both the bone and cementum sides. Conclusion This study provides a comprehensive and quantitative characterization of the Sharpey's fibers using rat molars as a model. Overall, these parameters varied according to different vertical positions, fiber groups, teeth, and jawbones. The quantitative information of the Sharpey's fibers presented in this work facilitates our understanding of PDL functions and advances the development of biomimetic materials for periodontal tissue regeneration.
机译:摘要背景和目标锐利的牙周韧带(PDL)的纤维将PDL锚定向肺泡骨和豆类,对于PDL的功能至关重要。虽然Sharpey的纤维的定性分析已被广泛探索,但不可用Sharpey纤维的综合定量表征。在这项工作中,我们选择了大鼠臼齿作为模型,并综合地表征了PDL Sharpey的纤维(直径,密度,长度,嵌入角度和插入角)。材料和方法总共24只大鼠下颌臼齿,八个上颌第一臼齿及其周围的肺泡骨,固定,在扫描电子显微镜(SEM)下观察。用Sirius红色收获,加工,切割和染色颌骨和颌骨(n?=Δ4)以进行组织学观察。 SEM图像用于定量分析锐利纤维的直径和密度,而Sirius RED染色图像用于测量长度和角度。 Sharpey的纤维被全面地表征了位置(宫颈,中间和顶点),PDL纤维基团(肺泡嵴,水平,倾斜,顶端和各种组),侧面(豆切除和骨侧)和牙齿(下颌)第一,第二,第三磨牙和上颌第一摩尔)。结果我们的研究结果表明,Sharpey的纤维的特征参数在不同的位置,纤维组,侧面和牙齿中变化。具体而言,骨侧上锐尖的纤维的中值直径明显大于豆腔侧,而Sharpey在骨侧的纤维的中值密度明显低于豆类侧,无论位置和位置如何牙齿。对于相同的牙齿,骨侧嵌入式Sharpey的纤维的中值长度大于豆腔侧的两倍以上。在所有纤维组中,肺泡嵴组在骨侧的尖锐纤维的最大长度以及渣粒侧上的Sharpey纤维的最小长度。在每个组中的嵌入角和插入角之间存在近似5-15°差异。斜组在骨骼和豆芯片侧面上具有最小的嵌入角度。结论本研究提供了使用大鼠摩尔斯作为模型的夏佩纤维的全面和定量表征。总的来说,这些参数根据不同的垂直位置,纤维组,牙齿和颚骨而变化。本工作中提出的Sharpey的纤维的定量信息有助于我们对PDL功能的理解,并推动牙周组织再生的仿生材料的发展。

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