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大鼠磨牙成牙本质细胞对GaAlAs激光照射的反应:一项使用热休克蛋白-25免疫组织化学的实验研究

Odontoblast responses to GaAlAs laser irradiation in rat molars: an experimental study using heat-shock protein-25 immunohistochemistry.

作者信息

Tate Yasuaki, Yoshiba Kunihiko, Yoshiba Nagako, Iwaku Masaaki, Okiji Takashi, Ohshima Hayato

机构信息

Division of Anatomy and Cell Biology of the Hard Tissue, Department of Tissue Regeneration and Reconstruction, Niigata University Graduate School of Medicine and Dental Sciences, Niigata 951-8514, Japan.

出版信息

Eur J Oral Sci. 2006 Feb;114(1):50-7. doi: 10.1111/j.1600-0722.2006.00261.x.

Abstract

Pulpal responses to gallium-aluminum-arsenide (GaAlAs) laser irradiation applied to the tooth remains to be elucidated. This study aimed to evaluate the effect of the GaAlAs laser on odontoblasts using immunohistochemistry for heat-shock protein (HSP)-25, which labels mature and newly differentiated odontoblasts. The mesial surface of the upper right first molar of 8-wk-old Wistar rats was lased at an output power of 0.5-1.5 W for 180 s. The animals were perfusion-fixed at intervals of 6 h to 30 d after irradiation. At 6 h to 7 d, the intensity of HSP-25-immunoreactivity was found to be disturbed in the coronal odontoblast-layer in an energy-dependent manner. At 30 d, tertiary dentin with/without bone-like tissue was formed abundantly in the dental pulp. Statistical analysis revealed that the area occupied by the new hard tissues was significantly wider in 1.5 W-lased specimens than in 0.5 W-lased specimens. An intense HSP-25 immunoreactivity was seen in the odontoblasts underlying the tertiary dentin, whereas immunoreactivity was weak around the bone-like tissue. It was concluded that the GaAlAs laser may induce the formation of tertiary dentin by influencing the secretory activity of odontoblasts. However, higher energies may cause irreversible changes to the pulp, often leading to the formation of an intrapulpal bone-like tissue.

摘要

牙髓对应用于牙齿的砷化镓铝(GaAlAs)激光照射的反应仍有待阐明。本研究旨在使用热休克蛋白(HSP)-25的免疫组织化学方法评估GaAlAs激光对成牙本质细胞的影响,HSP-25可标记成熟和新分化的成牙本质细胞。对8周龄Wistar大鼠右上第一磨牙的近中面以0.5-1.5W的输出功率照射180秒。在照射后6小时至30天的间隔时间对动物进行灌注固定。在6小时至7天时,发现冠部成牙本质细胞层中HSP-25免疫反应性的强度以能量依赖的方式受到干扰。在30天时,牙髓中大量形成了有或无类骨组织的第三期牙本质。统计分析显示,1.5W照射的标本中新硬组织所占面积明显比0.5W照射的标本宽。在第三期牙本质下方的成牙本质细胞中可见强烈的HSP-25免疫反应性,而在类骨组织周围免疫反应性较弱。得出的结论是,GaAlAs激光可能通过影响成牙本质细胞的分泌活性诱导第三期牙本质的形成。然而,较高的能量可能会导致牙髓发生不可逆的变化,常常导致牙髓内类骨组织的形成。

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