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首页> 外文期刊>Micron: The international research and review journal for microscopy >Action of nitric oxide on healthy and inflamed human dental pulp tissue
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Action of nitric oxide on healthy and inflamed human dental pulp tissue

机译:一氧化氮对健康和发炎的人类牙髓组织的作用

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Irreversible pulpitis has been associated with pain and an increase in the number of pulp inflammatory cells. Based on the action of nitric oxide (NO) elsewhere, NO may possibly participate in the sensory and autonomic innervation of the dental pulp, and may influence local inflammatory responses. The purpose of this study was to analyze normal and inflamed human dental pulp for the presence of NADPH-diaphorase (NADPH-d), as an index of NO system activity. Six non-carious second premolar pulp tissue samples were obtained from young patients who required extractions for orthodontic reasons and six inflamed samples were obtained from symptomatic carious second premolars clinically diagnosed with irreversible pulpitis. Pulp tissue was carefully removed, fixed by immersion in a cold 4% PFA buffered solution for 120 min, rinsed in cold phosphate buffer, and quickly-frozen for cryostat sectioning. Pulp tissue was sectioned perpendicularly to the vertical axis of the tooth at 20 μm and processed for histochemistry. Sections of each specimen were stained with hematoxylin-eosin and other sections were subjected to histochemical NADPH-d detection. Results indicated the presence of NADPH reactivity within the pulps of both normal and carious teeth. In the normal teeth NADPH-d activity was detected in a small number of vascular endothelial cells and fibroblasts. The inflammatory response of the pulp from carious premolars was detected in connective tissue by the presence of an increased number of fibroblasts, angioblasts and collagen fibers. It was possible to determine the extent of odontoblast reactivity since the odontoblast layer was usually absent in these split-peel preparations. There were no obvious signs of stained pulpal nerve fibers. Overall NADPH-d staining was significantly more intense within inflamed pulp tissues compared to normal healthy samples (Mann-Whitney test, p < 0.002). These results suggest that NADPH-d may be used as a marker of inflammatory activity in pulpitis and provide the basis for further studies aiming to clarify the possible functions of NO in human dental pulp in pathophysiological situations.
机译:不可逆性牙髓炎与疼痛和牙髓炎性细胞数量增加有关。基于其他地方的一氧化氮(NO)的作用,NO可能参与牙髓的感觉和自主神经支配,并可能影响局部炎症反应。这项研究的目的是分析正常和发炎的人类牙髓中是否存在NADPH-心肌黄递酶(NADPH-d),作为NO系统活性的指标。从正畸原因需要摘除的年轻患者中获得6例非龋齿的第二前磨牙牙髓组织样品,并从临床诊断为不可逆性牙髓炎的有症状的龋齿的第二前磨牙获得六种发炎的样品。小心地取出纸浆组织,将其浸入4%PFA的冷缓冲溶液中固定120分钟,在冷的磷酸盐缓冲液中冲洗,然后快速冷冻以进行低温切片。将牙髓组织垂直于牙齿的垂直轴以20μm的方向切开,并进行组织化学处理。每个标本的切片用苏木精-曙红染色,其他切片进行组织化学NADPH-d检测。结果表明正常和龋齿的牙髓中都存在NADPH反应性。在正常牙齿中,在少量血管内皮细胞和成纤维细胞中检测到NADPH-d活性。通过增加数量的成纤维细胞,成血管细胞和胶原纤维的存在,在结缔组织中检测到了来自龋前磨牙的牙髓的炎症反应。可以确定成牙本质细胞反应性的程度,因为在这些剥离式皮制品中通常不存在成牙本质细胞层。没有明显的牙髓神经纤维染色迹象。与正常健康样本相比,发炎的牙髓组织中的NADPH-d整体染色明显更强(Mann-Whitney测试,p <0.002)。这些结果表明,NADPH-d可用作牙髓炎中炎症活动的标志物,并为进一步研究奠定基础,以阐明病理生理情况下NO在人牙髓中的可能作用。

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