1.Comparisons of orthodontic root resorption under heavy and jiggling reciprocating forces during experimental tooth movement in a rat model.
Takuji HIKIDA ; Masaru YAMAGUCHI ; Mami SHIMIZU ; Jun KIKUTA ; Tomokazu YOSHINO ; Kazutaka KASAI
The Korean Journal of Orthodontics 2016;46(4):228-241
OBJECTIVE: Root mobility due to reciprocating movement of the tooth (jiggling) may exacerbate orthodontic root resorption (ORR). "Jiggling" describes mesiodistal or buccolingual movement of the roots of the teeth during orthodontic treatment. In the present study, buccolingual movement is described as "jiggling." We aimed to investigate the relationship between ORR and jiggling and to test for positive cell expression in odontoclasts in resorbed roots during experimental tooth movement (jiggling) in vivo. METHODS: Male Wistar rats were divided into control, heavy force (HF), optimal force (OF), and jiggling force (JF) groups. The expression levels of cathepsin K, matrix metalloproteinase (MMP)-9 protein, interleukin (IL)-6, cytokine-induced neutrophil chemoattractant 1 (CINC-1; an IL-8-related protein in rodents), receptor activator of nuclear factor κB ligand (RANKL), and osteoprotegerin protein in the dental root were determined using immunohistochemistry. RESULTS: On day 21, a greater number of root resorption lacunae, which contained multinucleated odontoclasts, were observed in the palatal roots of rats in the JF group than in rats from other groups. Furthermore, there was a significant increase in the numbers of cathepsin K-positive and MMP-9-positive odontoclasts in the JF group on day 21. Immunoreactivities for IL-6, CINC-1, and RANKL were stronger in resorbed roots exposed to jiggling than in the other groups on day 21. Negative reactivity was observed in the controls. CONCLUSIONS: These results suggest that jiggling may induce ORR via inflammatory cytokine production during orthodontic tooth movement, and that jiggling may be a risk factor for ORR.
Animals
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Cathepsin K
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Cathepsins
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Humans
;
Immunohistochemistry
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Interleukin-6
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Interleukins
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Male
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Models, Animal*
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Neutrophils
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Osteoclasts
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Osteoprotegerin
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Rats*
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Rats, Wistar
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Risk Factors
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Root Resorption*
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Tooth Movement*
;
Tooth*
2.Effect of caspases and RANKL induced by heavy force in orthodontic root resorption.
Yukari MINATO ; Masaru YAMAGUCHI ; Mami SHIMIZU ; Jun KIKUTA ; Takuji HIKIDA ; Momoko HIKIDA ; Masaaki SUEMITSU ; Kayo KUYAMA ; Kazutaka KASAI
The Korean Journal of Orthodontics 2018;48(4):253-261
OBJECTIVE: Orthodontic root resorption (ORR) due to orthodontic tooth movement is a difficult treatment-related adverse event. Caspases are important effector molecules for apoptosis. At present, little is known about the mechanisms underlying ORR and apoptosis in the cementum. The aim of the present in vivo study was to investigate the expression of tartrate-resistant acid phosphatase (TRAP), caspase 3, caspase 8, and receptor activator of nuclear factor kappa-B ligand (RANKL) in the cementum in response to a heavy or an optimum orthodontic force. METHODS: The maxillary molars of male Wistar rats were subjected to an orthodontic force of 10 g or 50 g using a closed coil spring. The rats were sacrificed each experimental period on days 1, 3, 5, and 7 after orthodontic force application. And the rats were subjected to histopathological and immunohistochemical analyses. RESULTS: On day 7 for the 50-g group, hematoxylin and eosin staining revealed numerous root resorption lacunae with odontoclasts on the root, while immunohistochemistry showed increased TRAP- and RANKL-positive cells. Caspase 3- and caspase 8-positive cells were increased on the cementum surfaces in the 50-g group on days 3 and 5. Moreover, the number of caspase 3- and caspase 8-positive cells and RANKL-positive cells was significantly higher in the 50-g group than in the 10-g group. CONCLUSIONS: In our rat model, ORR occurred after apoptosis was induced in the cementum by a heavy orthodontic force. These findings suggest that apoptosis of cementoblasts is involved in ORR.
Acid Phosphatase
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Animals
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Apoptosis
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Caspase 3
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Caspase 8
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Caspases*
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Dental Cementum
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Eosine Yellowish-(YS)
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Hematoxylin
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Humans
;
Immunohistochemistry
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Male
;
Models, Animal
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Molar
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Osteoclasts
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Rats
;
Rats, Wistar
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Root Resorption*
;
Tooth Movement