Davies K R, Schneider G B, Southard T E, Hillis S L, Wertz P W, Finkelstein M, Hogan M M
The University of Iowa, Iowa City 52242, USA.
Am J Orthod Dentofacial Orthop. 2001 Oct;120(4):339-47. doi: 10.1067/mod.2001.116067.
When a permanent maxillary canine erupts apical to the permanent lateral incisor and the deciduous canine, resorption typically takes place only on the deciduous canine root. An understanding of this differential resorption could provide insight into the reasons for excessive iatrogenic root resorption during orthodontic tooth movement. The purpose of the present study was to examine the response of roots of permanent lateral incisors and deciduous canines to simulated resorption, and to acid and enzyme attack, reflecting the physiologic environment of an erupting permanent canine. Groups of maxillary permanent lateral incisor and deciduous canine roots were exposed to 5 combinations of Ten Cate demineralizing solution, Ten Cate demineralizing solution with EDTA, and a Type I collagenase solution. Sections of the roots were examined under a polarized light microscope. Analysis of variation of the resulting root lesions demonstrated that the lesion depths for deciduous canines were greater than those for permanent lateral incisors when averaged across 4 of the conditions (F(1,24) = 7.49, P =.0115). On average, deciduous canine roots demonstrated lesions 10% deeper than did permanent lateral incisor roots. We concluded that when deciduous canine and permanent lateral incisor roots are subjected to acid and enzyme attack, reflecting the physiologic environment of an erupting permanent canine, significantly deeper demineralized lesions are seen in the deciduous roots compared with the permanent roots. This finding may partially explain the differential root resorption during permanent tooth eruption.
当上颌恒尖牙萌出至恒侧切牙及乳尖牙根尖下方时,通常仅乳尖牙根发生吸收。了解这种差异性吸收有助于深入了解正畸牙齿移动过程中医源性牙根过度吸收的原因。本研究的目的是研究恒侧切牙及乳尖牙牙根对模拟吸收以及酸和酶攻击的反应,这些反应反映了正在萌出的恒尖牙的生理环境。将上颌恒侧切牙及乳尖牙牙根分组,分别暴露于5种组合的Ten Cate脱矿溶液、含乙二胺四乙酸(EDTA)的Ten Cate脱矿溶液及I型胶原酶溶液中。在偏光显微镜下检查牙根切片。对所形成的牙根损害变化的分析表明,在4种条件下平均而言,乳尖牙的损害深度大于恒侧切牙(F(1,24) = 7.49,P =.0115)。平均而言,乳尖牙牙根的损害比恒侧切牙牙根深10%。我们得出结论,当乳尖牙和恒侧切牙牙根受到酸和酶攻击(反映正在萌出的恒尖牙的生理环境)时,与恒牙牙根相比,乳牙牙根出现的脱矿损害明显更深。这一发现可能部分解释了恒牙萌出过程中的差异性牙根吸收。