de Santana Dandara Andrade, Fonseca Gabriela Ferraz, Ramalho Luciana Maria Pedreira, Rodriguez Tânia Tavares, Aguiar Marcio Cajazeira
Laboratory of Orofacial Biology, Institute of Health Sciences, Federal University of Bahia, Salvador, BA, Brazil.
Laboratory of Oral Surgical Pathology, Department of Oral Pathology, School of Dentistry, Federal University of Bahia, Salvador, BA, Brazil.
Lasers Med Sci. 2017 Dec;32(9):1995-2004. doi: 10.1007/s10103-017-2295-6. Epub 2017 Aug 19.
In order to regenerate the dental pulp, many strategies have been developed as phototherapy. In the pulp repair, we do not know if gallium-aluminum-arsenide (GaAlAs) laser preserves the primary odontoblasts or stimulates the formation of more dentin matrix when dental pulp is damaged. The aim of the present study was to examine the effect of laser phototherapy (λ780 nm) on vascularization, inflammation, density of the primary odontoblast layer, and formation of reactionary and reparative dentin in the dental pulp by provoking extrusion of the rat incisor. The upper incisors were extruded 3 mm and then repositioned into their original sockets followed by a laser irradiation of the palatal mucosa (λ = 780 nm; p = 70 mW; CW; 4.2 J/cm; 60 s) every 48 h. Non-traumatized and/or non-irradiated incisors were used as the controls. At 8 and 30 days after surgery, incisors were processed for histological and histomorphometric analysis. Morphological analysis revealed no differences in vascularization between groups, but showed discrete inflammation in some non-irradiated and injured specimens, which correlated with a more irregular reparative dentin. The density of primary odontoblasts in the groups treated with lasers was higher when compared to non-irradiated groups, but no statistically significant difference between groups (p > 0.05). The thickness of the tertiary dentin was increased in both traumatized groups with no statistically significant difference between non-irradiated and irradiated groups (p > 0.05).The present findings revealed that the GaAlAs laser induced small changes on dentin-pulp complex, with more regular dentin matrix in the irradiated dental pulps.
为了使牙髓再生,人们已经开发了许多作为光疗法的策略。在牙髓修复过程中,当牙髓受损时,我们尚不清楚砷化镓铝(GaAlAs)激光是能保留原代成牙本质细胞,还是能刺激形成更多的牙本质基质。本研究的目的是通过牵拉大鼠切牙,研究激光光疗法(波长780nm)对牙髓血管生成、炎症、原代成牙本质细胞层密度以及反应性和修复性牙本质形成的影响。将上切牙牵拉3mm,然后重新放回其原始牙槽窝,随后每48小时对腭黏膜进行一次激光照射(波长 = 780nm;功率 = 70mW;连续波;4.2J/cm²;60秒)。未受创伤和/或未接受照射的切牙用作对照。在手术后8天和30天,对切牙进行组织学和组织形态计量学分析。形态学分析显示,各组之间的血管生成没有差异,但在一些未照射和受伤的标本中显示出离散的炎症,这与更不规则的修复性牙本质相关。与未照射组相比,激光治疗组的原代成牙本质细胞密度更高,但两组之间无统计学显著差异(p>0.05)。两个创伤组的第三期牙本质厚度均增加,未照射组和照射组之间无统计学显著差异(p>0.05)。本研究结果表明,GaAlAs激光对牙本质-牙髓复合体产生了微小变化,照射的牙髓中牙本质基质更规则。