DOI:
10.37988/1811-153X_2022_2_18Maturation and mineralization of inferior wisdom teeth in women with connective tissue dysplasia across the age range
Downloads
Abstract
Objective. It was necessary to give a comparative assessment of dysplastic manifestations in the maxillofacial region in women by clinical and microscopic methods.Materials and methods.
The research involved 90 female patients with connective tissue dysplasia (CTD) established using the Kulback criteria in the age groups 15-20, 21-30, 31-40 years. All had phenotypic (large), facial, and dental (small) stigmas analyzed, by which a portrait of a modern female person at a young age was drawn. In the clinic, the number and length (by X-ray) of the roots, the number of cusps were measured. The shape, packing, 3D surface of enamel prisms of teeth 38 were analyzed using a scanning electron microscope and an atomic force microscope.
Results.
Tooth enamel of a person with CTD at 15-20 years of age contains small enamel prisms, the size increases only after 30 years of age. At age 21-30 years, enamel prisms are of the same size as at age 15-20 years (in length at 15-20 years χ2=9.76, p=0.0103 relative to the 31-40 years group; in width at 15-20 years χ2=10.18, p=0.0089 relative to the 31-40 years group). At the age of 15-20 and 21-30 years there are total sites of hypomineralization in tooth enamel, at 31-40 years the sites of hypomineralization have a local character (by the distance between enamel prisms in 15-20 years χ2=11.01, p=0.0052 relative to the group 31-40 years). It was established that more mature and mineralized prisms at 15-20, 21-30 years change the shape of less mature ones, which eventually acquire ugly outlines and mature in unfavorable and extreme conditions for themselves.
Conclusions.
Connective tissue dysplasia plays a significant role in the maturation rate and mineralization of the enamel of the lower wisdom teeth.
Key words:
reduction, women, connective tissue dysplasia, age, dentoalveolar systemFor Citation
[1]
Korshunov A.S., Vagner V.D., Rogachev E.A., Kuryatnikov K.N., Skurikhina A.P., Peshnin S.S., Bondar A.A., Meloyan A.D. Maturation and mineralization of inferior wisdom teeth in women with connective tissue dysplasia across the age range. Clinical Dentistry (Russia). 2022; 25 (2): 18—26. DOI: 10.37988/1811-153X_2022_2_18
References
- Pozovskaya E.V. Variability of dentoalveolar system of man. Modern Problems of Science and Education. 2018; 4: 242 (In Russ.). eLIBRARY ID: 36345074
- Chovalopoulou M.E., Valakos E.D., Manolis S.K. Sex determination by three-dimensional geometric morphometrics of craniofacial form. Anthropol Anz. 2016; 73 (3): 195—206. PMID: 27490899
- Mahoney P., Miszkiewicz J.J., Pitfield R., Deter C., Guatelli-Steinberg D. Enamel biorhythms of humans and great apes: the Havers—Halberg Oscillation hypothesis reconsidered. J Anat. 2017; 230 (2): 272—281. PMID: 27726135
- Saitoh H., Moriya T., Takeyama M. et al. Estimation of birth year by radiocarbon dating of tooth enamel: Approach to obtaining enamel powder. J Forensic Leg Med. 2019; 62: 97—102. PMID: 30731391
- Guatelli-Steinberg D. Dental anthropology in the AJPA: Its roots and heights. Am J Phys Anthropol. 2018; 165 (4): 879—892. PMID: 29574842
- Jung S.Y., Green D.W., Jung H.S., Kim E.J. Cell cycle of the enamel knot during tooth morphogenesis. Histochem Cell Biol. 2018; 149 (6): 655—659. PMID: 29651535
- Lee D.S., Roh S.Y., Park J.C. The Nfic-osterix pathway regulates ameloblast differentiation and enamel formation. Cell Tissue Res. 2018; 374 (3): 531—540. PMID: 30091046
- Vagner V.D., Konev V.P., Korshunov A.S., Kuryatnikov K.N., Surkova V.O., Skurikhina A.P., Bondar A.A. Research of the structure of the mineral component of tooth enamel in connective tissue dysplasia by densitometry and atomic force microscopy in the early postpartum ontogenesis period. Stomatology. 2020; 6: 7—12 (In Russ.). eLIBRARY ID: 44298765
- Gil-Bona A., Bidlack F.B. Tooth Enamel and its Dynamic Protein Matrix. Int J Mol Sci. 2020; 21 (12): E4458. PMID: 32585904
- Shumilovich B.R., Vorob’yeva Yu.B., Malykhina I.E., Chertovskikh A.V. Modern Views on the Crystal Structure of Hydroxyapatite and Processes Age-Related Changes of Tooth Enamel (in vitro study). Journal of Anatomy and Histopatology. 2015; 1: 77—86 (In Russ.). eLIBRARY ID: 23570153
- Konev V.P., Shestel I.L., Korshunov A.S., Moskovskiy S.N., Kopylova Ju.Ju., Losev A.S., Davletkildeev N.A. Mutual relation of the organic matrix and mineral component in bones and the enamel of teeth in dysplasia of the connective tissue. The Siberian Medical Journal. 2011; 3—2: 77—80 (In Russ.). eLIBRARY ID: 16903680
- Risnes S., Li C. Aspects of the final phase of enamel formation as evidenced by observations of superficial enamel of human third molars using scanning electron microscopy. Arch Oral Biol. 2018; 86: 72—79. PMID: 29190456
- Eckstein M., Lacruz R.S. CRAC channels in dental enamel cells. Cell Calcium. 2018; 75: 14—20. PMID: 30114531
- Tanapitchpong R., Chunhacheevachaloke E., Ajcharanukul O. In vivo and in vitro study of enamel fluid flow in human premolars. Arch Oral Biol. 2020; 117: 104795. PMID: 32540555
- Zeng Q., Zheng J., Yang D., Tang Y., Zhou Z. Effect of calcium ions on the adsorption and lubrication behavior of salivary proteins on human tooth enamel surface. J Mech Behav Biomed Mater. 2019; 98: 172—178. PMID: 31238209
- Mitronin A.V., Ostrovskaya I.G., Vavilova T.P., Alekberova G.I., Dukhovskaya N.E. Tooth enamel hypoplasia as marker of the evolutionary stress. Endodontics Today. 2016; 3: 40—42 (In Russ.). eLIBRARY ID: 27544506
- Vagner V.D., Konev V.P., Korshunov A.S., Serov D.O. The research of prismatic shells of human teeth enamel’s organic matrix by the atomic-force microscopy method in the postnatal period of ontogenesis. The Dental Institute. 2019; 3 (84): 94—95 (In Russ.). eLIBRARY ID: 40872545
- Korshunov A.S., Konev V.P., Moskovsky S.N., Serov D.O., Vavakin V.Y. Nanostructure of teeth enamel in norm and at dysplasia of connecting tissue. Ural Medical Journal. 2017; 7 (151): 15—19 (In Russ.). eLIBRARY ID: 30022793
- Kallistová A., Horáček I., Šlouf M., Skála R., Fridrichová M. Mammalian enamel maturation: Crystallographic changes prior to tooth eruption. PLoS One. 2017; 12 (2): e0171424. PMID: 28196135
- Lacruz R.S., Habelitz S., Wright J.T., Paine M.L. Dental enamel formation and implications for oral health and disease. Physiol Rev. 2017; 97 (3): 939—993. PMID: 28468833
- Beniash E., Stifler C.A., Sun C.Y., Jung G.S., Qin Z., Buehler M.J., Gilbert P.U.P.A. The hidden structure of human enamel. Nat Commun. 2019; 10 (1): 4383. PMID: 31558712
- Shestak D.O., Nikolaev V.G., Baksheeva S.L. Anthropometic and odontometric characteristics of russian and tuvian woman by sexual dimorphism index. The Dental Institute. 2018; 4 (81): 91—92 (In Russ.). eLIBRARY ID: 36762499
- Velemínská J., Fleischmannová N., Suchá B., Dupej J., Bejdová Š., Kotěrová A., Brůžek J. Age-related differences in cranial sexual dimorphism in contemporary Europe. Int J Legal Med. 2021; 135 (5): 2033—2044. PMID: 33649866
- Schwartz G.T., Dean M.C. Sexual dimorphism in modern human permanent teeth. Am J Phys Anthropol. 2005; 128 (2): 312—7. PMID: 15861426
- Narang R.S., Manchanda A.S., Singh B. Sex assessment by molar odontometrics in North Indian population. J Forensic Dent Sci. 2015; 7 (1): 54—8. PMID: 25709321
- Korshunov A.S., Konev V.P., Vagner V.D., Kurjatnikov K.N., Skurihina A.P., Gafner L.V., Bondar A.A., Sergeev V.I. Facial and dental status of a human with connective tissue dysplasia. Medical and Pharmaceutical Journal Pulse . 2020; 11 (22): 95—99 (In Russ.). eLIBRARY ID: 44335839
- Dmitrienko S.V., Domenyuk D.A., Vedeshina E.G., Abdulpatahova L.M., Orlova I.V. Features of permanent teeth crowns in case of mesignatic form of dental arches. International Journal of Applied and Fundamental Research. 2015; 8—1: 45—48 (In Russ.). eLIBRARY ID: 23719381
- Fallis D.W. Assessing the accuracy of two posterior tooth-size discrepancy prediction methods based on virtual occlusal setups. Angle Orthod. 2020; 90 (2): 239—246. PMID: 31613145
- Monalisa W., Kokila G., Sharma H.D., Gopinathan P.A., Singh O.M., Kumaraswamy S. Sexual dimorphism of enamel area, coronal dentin area, bicervical diameter and dentinoenamel junction scallop area in longitudinal ground section. J Oral Maxillofac Pathol. 2018; 22 (3): 423—429. PMID: 30651693
- Kochetova M.S. Factors influencing process eruption of teeth. Practical medicine. 2009; 1 (33): 10—11 (In Russ.). eLIBRARY ID: 17776900
- Mahasantipiya P.M., Pramojanee S., Thaiupathump T. Image analysis of the eruptive positions of third molars and adjacent second molars as indicators of age evaluation in Thai patients. Imaging Sci Dent. 2013; 43 (4): 289—93. PMID: 24380069
- Marchiori D.F., Packota G.V., Boughner J.C. Third-molar mineralization as a function of available retromolar space. Acta Odontol Scand. 2016; 74 (7): 509—517. PMID: 27448555
- Wong H.M., Peng S.M., Yang Y., King N.M., McGrath C.P.J. Tooth eruption and obesity in 12-year-old children. J Dent Sci. 2017; 12 (2): 126—132. PMID: 30895037
- Fedorov Yu.A., Kibrotsashvili I.A. Some specific features of dissemination and clinical manifestation of non-caries lesions of teeth developed in the period of their formation (before to their cutting). Pediatric Dentistry and Profilaxis. 2007; 1 (20): 47—52 (In Russ.). eLIBRARY ID: 9573367
Downloads
Received
April 4, 2022
Accepted
May 27, 2022
Published on
June 1, 2022