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1.
J Mol Histol ; 53(1): 111-118, 2022 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-34709488

RESUMO

At maturation stage of enamel development, a specialized basal lamina (sBL) was built between ameloblasts and enamel. After the teeth eruption, the ameloblasts transform into the inner cell layer of junctional epithelium. The inner cell layer forms the internal basal lamina of junctional epithelium. However, the composition of the sBL and internal basal lamina was not clarified. The objective of our study was to make a description of the localization of amelotin (AMTN), laminin γ2 (LAMC2) and Odontogenesis-associated phosphoprotein (ODAPH) on the sBL and internal basal lamina. In immunohistochemical study, AMTN, LAMC2 and ODAPH were detected on the sBL at maturation stage. AMTN was also detected in ameloblasts at maturation stage. The expression of AMTN decreased from early-to-late maturation stage. In contrast, the expression of LAMC2 and ODAPH was stable. Immunofluorescence double-staining showed the localization of AMTN was close to enamel surface. However, the localization of ODAPH was close to ameloblasts. LAMC2 and ODAPH were observed on internal basal lamina of junctional epithelium. In contrast, no expression of AMTN was detected on internal basal lamina of junctional epithelium. Our results suggested that ODAPH might participate in enamel maturation and periodontal health, which might provide a better understanding of enamel defects and periodontal disease in clinic.


Assuntos
Membrana Basal/metabolismo , Proteínas do Esmalte Dentário/metabolismo , Inserção Epitelial/metabolismo , Proteínas da Matriz Extracelular/metabolismo , Laminina/metabolismo , Fosfoproteínas/metabolismo , Amelogênese/fisiologia , Animais , Técnica Indireta de Fluorescência para Anticorpo , Camundongos , Camundongos Endogâmicos C57BL , Odontogênese/fisiologia
2.
J Struct Biol ; 213(4): 107809, 2021 12.
Artigo em Inglês | MEDLINE | ID: mdl-34748943

RESUMO

During enamel formation, the organic enamel protein matrix interacts with calcium phosphate minerals to form elongated, parallel, and bundled enamel apatite crystals of extraordinary hardness and biomechanical resilience. The enamel protein matrix consists of unique enamel proteins such as amelogenin, ameloblastin, and enamelin, which are secreted by highly specialized cells called ameloblasts. The ameloblasts also facilitate calcium and phosphate ion transport toward the enamel layer. Within ameloblasts, enamel proteins are transported as a polygonal matrix with 5 nm subunits in secretory vesicles. Upon expulsion from the ameloblasts, the enamel protein matrix is re-organized into 20 nm subunit compartments. Enamel matrix subunit compartment assembly and expansion coincide with C-terminal cleavage by the MMP20 enamel protease and N-terminal amelogenin self-assembly. Upon enamel crystal precipitation, the enamel protein phase is reconfigured to surround the elongating enamel crystals and facilitate their elongation in C-axis direction. At this stage of development, and upon further amelogenin cleavage, central and polyproline-rich fragments of the amelogenin molecule associate with the growing mineral crystals through a process termed "shedding", while hexagonal apatite crystals fuse in longitudinal direction. Enamel protein sheath-coated enamel "dahlite" crystals continue to elongate until a dense bundle of parallel apatite crystals is formed, while the enamel matrix is continuously degraded by proteolytic enzymes. Together, these insights portrait enamel mineral nucleation and growth as a complex and dynamic set of interactions between enamel proteins and mineral ions that facilitate regularly seeded apatite growth and parallel enamel crystal elongation.


Assuntos
Ameloblastos/metabolismo , Amelogênese/fisiologia , Proteínas do Esmalte Dentário/metabolismo , Esmalte Dentário/metabolismo , Minerais/metabolismo , Ameloblastos/citologia , Ameloblastos/ultraestrutura , Amelogenina/metabolismo , Animais , Apatitas/química , Apatitas/metabolismo , Cálcio/metabolismo , Fosfatos de Cálcio/metabolismo , Cristalização , Esmalte Dentário/citologia , Esmalte Dentário/ultraestrutura , Humanos , Microscopia Eletrônica
3.
Anat Histol Embryol ; 49(4): 451-456, 2020 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-32133680

RESUMO

The aim of the study was to see whether the length of the enamel secretion zone in unimpeded rat incisors, measured precisely, is in agreement with the observed decrease in enamel thickness. Unimpeded eruption of mandibular incisors of five experimental and two control rats was induced by cutting off the erupted part of the incisors three times per week for 5 weeks. The length of the zone of enamel secretion in unimpeded and impeded control incisors was measured on longitudinal and serial transverse histological sections of fixed, demineralised and embedded hemimandibles. Impeded contralateral incisors were also included in the study. The length of the zone of enamel secretion in unimpeded incisors showed an increase to 8,398 ± 558 µm, that is 161% of the length in control incisors (5,213 ± 95 µm). The contralateral incisor showed a reduction in eruption rate, in length of the secretion zone, and the whole tooth was shifted somewhat apically. The measured length of the secretion zone is in agreement with the observed thickness of enamel (98 µm) in unimpeded incisors. The reduced eruption rate and the apical shift of the contralateral incisor are probably due to an increased occlusal load.


Assuntos
Amelogênese/fisiologia , Incisivo/fisiologia , Erupção Dentária/fisiologia , Animais , Esmalte Dentário/anatomia & histologia , Incisivo/crescimento & desenvolvimento , Masculino , Mandíbula , Ratos , Ratos Sprague-Dawley
4.
Biochem Biophys Res Commun ; 501(1): 206-211, 2018 06 18.
Artigo em Inglês | MEDLINE | ID: mdl-29709481

RESUMO

FAM83H was identified as the major causative gene for autosomal dominant hypocalcified amelogenesis imperfect (ADHCAI). The pathogenic mechanism of FAM83H in ADHCAI remains elusive. The present study aims to investigate the effect of Fam83h mutation on the mineralization of mouse ameloblast cell line LS8 and to explore the possible pathogenesis of ADHCAI. Lentivirus package was performed for the plasmids with mouse Fam83h mutant cDNA (c.1186C > T, M3) and empty vector (Control) and transfected into LS8, which were divided into M3-FLAG and Control groups. Immunoprecipitation, western-blot and immunofluorescence were performed to detect the expression and subcellular localization of Fam83 h, CK1α and ß-catenin. ALP activity, ALP staining, expression of the mineralization factors were detected in two groups during mineralization induction. Expression of the mineralization factors was also detected in M3-FLAG and LS8 exposing to pyrvinium pamoate. Compared with the Control, the Fam83h mutation altered the expression and localization of Fam83 h, CK1α and ß-catenin in LS8, inhibited the mineralization and down-regulated the expression of mineralization factors in M3-FLAG. Pyrvinium pamoate, an inhibitor of the Wnt/ß-catenin signaling pathway, up-regulated expression of mineralization factors in LS8 and rescued the inhibited mineralization in M3-FLAG. The results indicated that the Fam83h mutation could inhibit the mineralization in ameloblasts by activating Wnt/ß-catenin signaling pathway.


Assuntos
Ameloblastos/metabolismo , Proteínas/genética , Proteínas/metabolismo , Amelogênese/genética , Amelogênese/fisiologia , Amelogênese Imperfeita/etiologia , Amelogênese Imperfeita/genética , Amelogênese Imperfeita/metabolismo , Animais , Caseína Quinase I/genética , Caseína Quinase I/metabolismo , Linhagem Celular , Humanos , Camundongos , Proteínas Mutantes/genética , Proteínas Mutantes/metabolismo , Mutação , Calcificação de Dente/genética , Calcificação de Dente/fisiologia , Transfecção , Via de Sinalização Wnt , beta Catenina/metabolismo
5.
Arch Oral Biol ; 93: 47-55, 2018 09.
Artigo em Inglês | MEDLINE | ID: mdl-29803993

RESUMO

Enamel is a highly calcified tissue. Its formation requires a progressive and dynamic system for the regulation of electrolyte concentration by enamel epithelia. A critical function of enamel epithelial cells, ameloblasts, is the secretion and movement of electrolytes via various channels and transporters to develop the enamel tissue. Enamel formation generates protons, which need to be neutralised. Thus, ameloblasts possess a buffering system to sustain mineral accretion. Normal tooth formation involves stage-dependent net fluctuations in pH during amelogenesis. To date, all of our information about ion transporters in dental enamel tissue is based solely on immunostaining-expression techniques. This review critically evaluates the current understanding and recent discoveries and physiological role of ion channels and transporters, Mg2+ transporters, and Ca2+ regulatory proteins during amelogenesis in enamel formation. The ways in which ameloblasts modulate ions are discussed in the context of current research for developing a novel morphologic-functional model of enamel maturation.


Assuntos
Ameloblastos/metabolismo , Amelogênese/fisiologia , Sinalização do Cálcio/fisiologia , Animais , Antiportadores de Cloreto-Bicarbonato/metabolismo , Homeostase/fisiologia , Humanos , Concentração de Íons de Hidrogênio , Transporte de Íons/fisiologia , Fenótipo , Equilíbrio Hidroeletrolítico/fisiologia
6.
J Dent Res ; 97(7): 820-827, 2018 07.
Artigo em Inglês | MEDLINE | ID: mdl-29481294

RESUMO

Ameloblasts responsible for enamel formation express matrix metalloproteinase 20 (MMP20), an enzyme that cleaves enamel matrix proteins, including amelogenin (AMELX) and ameloblastin (AMBN). Previously, we showed that continuously erupting incisors from transgenic mice overexpressing active MMP20 had a massive cell infiltrate present within their enamel space, leading to enamel mineralization defects. However, effects of MMP20 overexpression on mouse molars were not analyzed, although these teeth more accurately represent human odontogenesis. Therefore, MMP20-overexpressing mice ( Mmp20+/+Tg+) were assessed by multiscale analyses, combining several approaches from high-resolution micro-computed tomography to enamel organ immunoblots. During the secretory stage at postnatal day 6 (P6), Mmp20+/+Tg+ mice had a discontinuous ameloblast layer and, unlike incisors, molar P12 maturation stage ameloblasts abnormally migrated away from the enamel layer into the stratum intermedium/stellate reticulum. TOPflash assays performed in vitro demonstrated that MMP20 expression promoted ß-catenin nuclear localization and that MMP20 expression promoted invasion through Matrigel-coated filters. However, for both assays, significant differences were eliminated in the presence of the ß-catenin inhibitor ICG-001. This suggests that MMP20 activity promotes cell migration via the Wnt pathway. In vivo, the unique molar migration of amelogenin-expressing ameloblasts was associated with abnormal deposition of ectopic calcified nodules surrounding the adherent enamel layer. Enamel content was assessed just prior to eruption at P15. Compared to wild-type, Mmp20+/+Tg+ molars exhibited significant reductions in enamel thickness (70%), volume (60%), and mineral density (40%), and MMP20 overexpression resulted in premature cleavage of AMBN, which likely contributed to the severe defects in enamel mineralization. In addition, Mmp20+/+Tg+ mouse molar enamel organs had increased levels of inactive p-cofilin, a protein that regulates cell polarity. These data demonstrate that increased MMP20 activity in molars causes premature degradation of ameloblastin and inactivation of cofilin, which may contribute to pathological Wnt-mediated cell migration away from the enamel layer.


Assuntos
Ameloblastos/enzimologia , Amelogênese/fisiologia , Metaloproteinase 20 da Matriz/metabolismo , Dente Molar/enzimologia , Fatores de Despolimerização de Actina/metabolismo , Amelogenina/metabolismo , Animais , Animais Recém-Nascidos , Compostos Bicíclicos Heterocíclicos com Pontes/farmacologia , Movimento Celular , Proteínas do Esmalte Dentário/metabolismo , Immunoblotting , Camundongos , Camundongos Transgênicos , Pirimidinonas/farmacologia , Via de Sinalização Wnt , Microtomografia por Raio-X
7.
Oral Dis ; 24(6): 879-890, 2018 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-28834043

RESUMO

Dental enamel, the hardest mammalian tissue, is produced by ameloblasts. Ameloblasts show many similarities to other transporting epithelia although their secretory product, the enamel matrix, is quite different. Ameloblasts direct the formation of hydroxyapatite crystals, which liberate large quantities of protons that then need to be buffered to allow mineralization to proceed. Buffering requires a tight pH regulation and secretion of bicarbonate by ameloblasts. Many investigations have used immunohistochemical and knockout studies to determine the effects of these genes on enamel formation, but up till recently very little functional data were available for mineral ion transport. To address this, we developed a novel 2D in vitro model using HAT-7 ameloblast cells. HAT-7 cells can be polarized and develop functional tight junctions. Furthermore, they are able to accumulate bicarbonate ions from the basolateral to the apical fluid spaces. We propose that in the future, the HAT-7 2D system along with similar cellular models will be useful to functionally model ion transport processes during amelogenesis. Additionally, we also suggest that similar approaches will allow a better understanding of the regulation of the cycling process in maturation-stage ameloblasts, and the pH sensory mechanisms, which are required to develop sound, healthy enamel.


Assuntos
Ameloblastos/metabolismo , Amelogênese/fisiologia , Bicarbonatos/metabolismo , Receptores Acoplados a Proteínas G/fisiologia , Transporte Biológico , Linhagem Celular , Humanos , Concentração de Íons de Hidrogênio
8.
Sci Rep ; 7(1): 18099, 2017 12 22.
Artigo em Inglês | MEDLINE | ID: mdl-29273814

RESUMO

Transient receptor potential melastatin-7 (TRPM7) is a bi-functional protein containing a kinase domain fused to an ion channel. TRPM7 is highly expressed in ameloblasts during tooth development. Here we show that TRPM7 kinase-inactive knock-in mutant mice (TRPM7 KR mice) exhibited small enamel volume with opaque white-colored incisors. The TRPM7 channel function of ameloblast-lineage cells from TRPM7 KR mice was normal. Interestingly, phosphorylation of intracellular molecules including Smad1/5/9, p38 and cAMP response element binding protein (CREB) was inhibited in ameloblasts from TRPM7 KR mice at the pre-secretory stage. An immunoprecipitation assay showed that CREB was bound to TRPM7, suggesting that direct phosphorylation of CREB by TRPM7 was inhibited in ameloblast-lineage cells from TRPM7 KR mice. These results indicate that the function of the TRPM7 kinase domain plays an important role in ameloblast differentiation, independent of TRPM7 channel activity, via phosphorylation of CREB.


Assuntos
Ameloblastos/metabolismo , Amelogênese/fisiologia , Diferenciação Celular/fisiologia , Canais de Cátion TRPM/metabolismo , Animais , Proteína de Ligação ao Elemento de Resposta ao AMP Cíclico/metabolismo , Células Epiteliais/metabolismo , Camundongos , Camundongos Transgênicos , Odontoblastos/metabolismo , Fosforilação , Canais de Cátion TRPM/genética
9.
Sci Rep ; 7(1): 15319, 2017 11 10.
Artigo em Inglês | MEDLINE | ID: mdl-29127359

RESUMO

Lanzhousaurus magnidens, a large non-hadrosauriform iguanodontian dinosaur from the Lower Cretaceous Hekou Group of Gansu Province, China has the largest known herbivorous dinosaur teeth. Unlike its hadrosauriform relatives possessing tooth batteries of many small teeth, Lanzhousaurus utilized a small number (14) of very large teeth (~10 cm long) to create a large, continuous surface for mastication. Here we investigate the significance of Lanzhousaurus in the evolutionary history of iguanodontian-hadrosauriform transition by using a combination of stable isotope analysis and CT imagery. We infer that Lanzhousaurus had a rapid rate of tooth enamel elongation or amelogenesis at 0.24 mm/day with dental tissues common to other Iguanodontian dinosaurs. Among ornithopods, high rates of amelogenesis have been previously observed in hadrosaurids, where they have been associated with a sophisticated masticatory apparatus. These data suggest rapid amelogenesis evolved among non-hadrosauriform iguanodontians such as Lanzhousaurus, representing a crucial step that was exapted for the evolution of the hadrosaurian feeding mechanism.


Assuntos
Amelogênese/fisiologia , Esmalte Dentário/metabolismo , Dinossauros/metabolismo , Fósseis , Animais , China , Isótopos/análise , Isótopos/metabolismo
10.
J Dent Res ; 96(12): 1438-1444, 2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28644741

RESUMO

The role of Ras signaling during tooth development is poorly understood. Ras proteins-which are activated by many upstream pathways, including receptor tyrosine kinase cascades-signal through multiple effectors, such as the mitogen-activated protein kinase (MAPK) and PI3K pathways. Here, we utilized the mouse incisor as a model to study how the MAPK and PI3K pathways regulate dental epithelial stem cells and amelogenesis. The rodent incisor-which grows continuously throughout the life of the animal due to the presence of epithelial and mesenchymal stem cells-provides a model for the study of ectodermal organ renewal and regeneration. Utilizing models of Ras dysregulation as well as inhibitors of the MAPK and PI3K pathways, we found that MAPK and PI3K regulate dental epithelial stem cell activity, transit-amplifying cell proliferation, and enamel formation in the mouse incisor.


Assuntos
Amelogênese/fisiologia , Transdução de Sinais/fisiologia , Células-Tronco/fisiologia , Proteínas ras/metabolismo , Animais , Benzamidas/farmacologia , Proliferação de Células , Classe I de Fosfatidilinositol 3-Quinases , Difenilamina/análogos & derivados , Difenilamina/farmacologia , Imunofluorescência , Incisivo , Indazóis/farmacologia , Camundongos , Proteínas Quinases Ativadas por Mitógeno/metabolismo , Modelos Animais , Fosfatidilinositol 3-Quinases/metabolismo , Fosforilação , Sulfonamidas/farmacologia
11.
J Dent Res ; 96(3): 243-253, 2017 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-28221098

RESUMO

Hypomineralization of developing enamel is associated with changes in ameloblast modulation during the maturation stage. Modulation (or pH cycling) involves the cyclic transformation of ruffle-ended (RE) ameloblasts facing slightly acidic enamel into smooth-ended (SE) ameloblasts near pH-neutral enamel. The mechanism of ameloblast modulation is not clear. Failure of ameloblasts of Cftr-null and anion exchanger 2 ( Ae2)-null mice to transport Cl- into enamel acidifies enamel, prevents modulation, and reduces mineralization. It suggests that pH regulation is critical for modulation and for completion of enamel mineralization. This report presents a review of the major types of transmembrane molecules that ameloblasts express to transport calcium to form crystals and bicarbonates to regulate pH. The type of transporter depends on the developmental stage. Modulation is proposed to be driven by the pH of enamel fluid and the compositional and/or physicochemical changes that result from increased acidity, which may turn RE ameloblasts into SE mode. Amelogenins delay outgrowth of crystals and keep the intercrystalline space open for diffusion of mineral ions into complete depth of enamel. Modulation enables stepwise removal of amelogenins from the crystal surface, their degradation, and removal from the enamel. Removal of matrix allows slow expansion of crystals. Modulation also reduces the stress that ameloblasts experience when exposed to high acid levels generated by mineral formation or by increased intracellular Ca2+. By cyclically interrupting Ca2+ transport by RE ameloblasts and their transformation into SE ameloblasts, proton production ceases shortly and enables the ameloblasts to recover. Modulation also improves enamel crystal quality by selectively dissolving immature Ca2+-poor crystals, removing impurities as Mg2+ and carbonates, and recrystallizing into more acid-resistant crystals.


Assuntos
Ameloblastos/fisiologia , Amelogênese/fisiologia , Transporte de Íons/fisiologia , Ameloblastos/metabolismo , Animais , Antiportadores de Cloreto-Bicarbonato/fisiologia , Regulador de Condutância Transmembrana em Fibrose Cística/fisiologia , Esmalte Dentário/crescimento & desenvolvimento , Concentração de Íons de Hidrogênio , Camundongos
12.
Calcif Tissue Int ; 100(1): 80-86, 2017 01.
Artigo em Inglês | MEDLINE | ID: mdl-27752731

RESUMO

Exposure of forming enamel to fluoride results into formation of hypomineralized enamel. We tested whether enamel hypomineralization was caused by lower expression of the NCKX4/SLC24A4 Ca2+-transporter by ameloblasts. Three commercial antibodies against NCKX4 were tested on enamel organs of wild-type and Nckx4-null mice, one of which (a mouse monoclonal) was specific. This antibody gave a prominent staining of the apical plasma membranes of maturation ameloblasts, starting at early maturation. The layer of immuno-positive ameloblasts contained narrow gaps without immunostaining or with reduced staining. In fluorotic mouse incisors, the quantity of NCKX4 protein in ameloblasts as assessed by western blotting was not different from that in non-fluorotic ameloblasts. However, immunostaining of the apical plasma membranes of fluorotic ameloblasts was strongly reduced or absent suggesting that trafficking of NCKX4 to the apical membrane was strongly reduced. Exposure to fluoride may reduce NCKX4-mediated transport of Ca2+ by maturation stage ameloblasts which delays ameloblast modulation and reduces enamel mineralization.


Assuntos
Ameloblastos/metabolismo , Antiporters/metabolismo , Membrana Celular/metabolismo , Esmalte Dentário/metabolismo , Amelogênese/fisiologia , Animais , Fluoretos/metabolismo , Camundongos Endogâmicos C57BL , Sódio na Dieta/metabolismo , Calcificação de Dente/fisiologia
13.
Int J Oral Sci ; 9(11): e4, 2017 11 29.
Artigo em Inglês | MEDLINE | ID: mdl-29593332

RESUMO

Enamelin (ENAM) has three putative phosphoserines (pSers) phosphorylated by a Golgi-associated secretory pathway kinase (FAM20C) based on their distinctive Ser-x-Glu (S-x-E) motifs. Fam20C-knockout mice show severe enamel defects similar to those in the Enam-knockout mice, implying an important role of the pSers in ENAM. To determine the role of pSer55 in ENAM, we characterized ENAMRgsc514 mice, in which Ser55 cannot be phosphorylated by FAM20C due to an E57>G57 mutation in the S-x-E motif. The enamel microstructure of 4-week-old mice was examined by scanning electron microscopy. The teeth of 6-day-old mice were characterized by histology and immunohistochemistry. The protein lysates of the first lower molars of 4-day-old mice were analyzed by Western immunoblotting using antibodies against ENAM, ameloblastin and amelogenin. ENAMRgsc514 heterozygotes showed a disorganized enamel microstructure, while the homozygotes had no enamel on the dentin surface. The N-terminal fragments of ENAM in the heterozygotes were detained in the ameloblasts and localized in the mineralization front of enamel matrix, while those in the WT mice were secreted out of ameloblasts and distributed evenly in the outer 1/2 of enamel matrix. Surprisingly, the ~15 kDa C-terminal fragments of ameloblastin were not detected in the molar lysates of the homozygotes. These results suggest that the phosphorylation of Ser55 may be an essential posttranslational modification of ENAM and is required for the interaction with other enamel matrix molecules such as ameloblastin in mediating the structural organization of enamel matrix and protein-mineral interactions during enamel formation.International Journal of Oral Science (2017) 9;e4; doi:10.1038/ijos.2017.41; published online 29 November 2017.


Assuntos
Amelogênese/fisiologia , Proteínas do Esmalte Dentário/metabolismo , Esmalte Dentário/metabolismo , Ameloblastos/metabolismo , Amelogênese/genética , Amelogenina/metabolismo , Animais , Western Blotting , Esmalte Dentário/ultraestrutura , Imuno-Histoquímica , Camundongos , Camundongos Knockout , Microscopia Eletrônica de Varredura , Fosforilação , Serina/metabolismo
14.
Sci Adv ; 2(9): e1601145, 2016 09.
Artigo em Inglês | MEDLINE | ID: mdl-27617291

RESUMO

Human dental enamel, the hardest tissue in the body, plays a vital role in protecting teeth from wear as a result of daily grinding and chewing as well as from chemical attack. It is well established that the mechanical strength and fatigue resistance of dental enamel are derived from its hierarchical structure, which consists of periodically arranged bundles of hydroxyapatite (HAP) nanowires. However, we do not yet have a full understanding of the in vivo HAP crystallization process that leads to this structure. Mg(2+) ions, which are present in many biological systems, regulate HAP crystallization by stabilizing its precursor, amorphous calcium phosphate (ACP), but their atomic-scale distribution within HAP is unknown. We use atom probe tomography to provide the first direct observations of an intergranular Mg-rich ACP phase between the HAP nanowires in mature human dental enamel. We also observe Mg-rich elongated precipitates and pockets of organic material among the HAP nanowires. These observations support the postclassical theory of amelogenesis (that is, enamel formation) and suggest that decay occurs via dissolution of the intergranular phase. This information is also useful for the development of more accurate models to describe the mechanical behavior of teeth.


Assuntos
Amelogênese/fisiologia , Fosfatos de Cálcio/química , Esmalte Dentário/química , Magnésio/química , Cálcio/química , Cristalização/métodos , Durapatita/química , Humanos , Concentração de Íons de Hidrogênio , Magnésio/isolamento & purificação , Nanofios/química
15.
J Dent Res ; 95(13): 1511-1517, 2016 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-27558264

RESUMO

Recent studies have shown that native phosphorylated full-length porcine amelogenin (P173) and its predominant cleavage product (P148) can inhibit spontaneous calcium phosphate formation in vitro by stabilizing an amorphous calcium phosphate (ACP) precursor phase. Since full-length amelogenin undergoes proteolysis by matrix metalloproteinase 20 (MMP20, enamelysin) soon after secretion, the present study was conducted to assess the effect of amelogenin proteolysis on calcium phosphate formation. Calcium and phosphate were sequentially added to protein solutions without and with added MMP20 (ratio = 200:1) under physiological-like conditions of ionic strength (163 mM) in 50 mM Tris-HCl (pH 7.4) at 37 °C. Protein degradation with time was assessed by gel-electrophoresis, and mineral products formed were characterized by transmission electron microscopy (TEM). MMP20 was found to cleave P173 to primarily generate P148, along with P162, P46-148, and P63/64-148. In sharp contrast, MMP20 did not cleave P148. In addition, the formation of well-aligned bundles of enamel-like hydroxyapatite (HA) crystals was promoted in the presence of P173 with added MMP20, while only ACP particles were seen in the absence of MMP20. Although P148 was found to have a somewhat lower capacity to stabilize ACP and prevent HA formation compared with P173 in the absence of MMP20, essentially no HA formation was observed in the presence of somewhat higher concentrations of P148 regardless of MMP20 addition, due to the lack of observed protein proteolysis. Present findings suggest that ACP transformation to ordered arrays of enamel crystals may be regulated in part by the proteolysis of full-length native amelogenin, while the predominant amelogenin degradation product in developing enamel (e.g., P148) primarily serves to prevent uncontrolled mineral formation during the secretory stage of amelogenesis.


Assuntos
Amelogênese/fisiologia , Metaloproteinase 20 da Matriz/metabolismo , Proteólise , Amelogenina , Animais , Fosfatos de Cálcio , Eletroforese em Gel de Poliacrilamida , Concentração de Íons de Hidrogênio , Técnicas In Vitro , Microscopia Eletrônica de Transmissão , Fosforilação , Soluções , Suínos
16.
Eur J Oral Sci ; 124(5): 415-425, 2016 10.
Artigo em Inglês | MEDLINE | ID: mdl-27422589

RESUMO

Regulation of pH by ameloblasts during amelogenesis is critical for enamel mineralization. We examined the effects of reduced bicarbonate secretion and the presence or absence of amelogenins on ameloblast modulation and enamel mineralization. To that end, the composition of fluorotic and non-fluorotic enamel of several different mouse mutants, including enamel of cystic fibrosis transmembrane conductance regulator-deficient (Cftr null), anion exchanger-2-deficient (Ae2a,b null), and amelogenin-deficient (Amelx null) mice, was determined by quantitative X-ray microanalysis. Correlation analysis was carried out to compare the effects of changes in the levels of sulfated-matrix (S) and chlorine (Cl; for bicarbonate secretion) on mineralization and modulation. The chloride (Cl- ) levels in forming enamel determined the ability of ameloblasts to modulate, remove matrix, and mineralize enamel. In general, the lower the Cl- content, the stronger the negative effects. In Amelx-null mice, modulation was essentially normal and the calcium content was reduced least. Retention of amelogenins in enamel of kallikrein-4-deficient (Klk4-null) mice resulted in decreased mineralization and reduced the length of the first acid modulation band without changing the total length of all acidic bands. These data suggest that buffering by bicarbonates is critical for modulation, matrix removal and enamel mineralization. Amelogenins also act as a buffer but are not critical for modulation.


Assuntos
Ameloblastos , Amelogênese/fisiologia , Prótons , Amelogenina , Animais , Esmalte Dentário/metabolismo , Proteínas do Esmalte Dentário , Concentração de Íons de Hidrogênio , Camundongos , Minerais
17.
J Dent Res ; 95(12): 1408-1414, 2016 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-27470066

RESUMO

FAM20C is a newly identified kinase on the secretory pathway responsible for the phosphorylation of serine residues in the Ser-x-Glu/pSer motifs in several enamel matrix proteins. Fam20C-knockout mice showed severe enamel defects very similar to those in the ameloblastin ( Ambn)-knockout mice, implying that phosphoserines may have a critical role in AMBN function. To test this hypothesis, we generated amelogenin ( Amel) promoter-driven Ambn-transgenic mice, in which Ser48, Ser226, and Ser227 were replaced by aspartic acid (designated as D-Tg) or alanines (designated as A-Tg). The negative charge of aspartic acid is believed to be able to mimic the phosphorylation state of serine, while alanine is a commonly used residue to substitute serine due to their similar structure. Using Western immunoblotting and quantitative polymerase chain reaction, the authors identified transgenic lines expressing transgenes somewhat higher (Tg+) or much higher (Tg++) than endogenous Ambn. The lower incisors collected from 7-d-old and 7-wk-old mice were analyzed by histology, scanning electron microscopy, immunohistochemistry, and Western immunoblotting to examine the morphology and microstructure changes in enamel, as well as the expression pattern of enamel matrix proteins. The A-Tg+ and A-Tg++ mice displayed severe enamel defects in spite of the expression level of transgenes, while the D-Tg+ and D-Tg++ mice showed minor to mild enamel defects, indicating that the D-Tg transgenes disturbed enamel formation less than the A-Tg transgenes did. Our results suggest that the phosphorylation state of serines is likely an essential component for the integrity of AMBN function.


Assuntos
Amelogênese/fisiologia , Amelogenina/metabolismo , Proteínas de Ligação ao Cálcio/fisiologia , Proteínas do Esmalte Dentário/metabolismo , Proteínas da Matriz Extracelular/fisiologia , Serina/metabolismo , Amelogênese/genética , Amelogenina/genética , Animais , Western Blotting , Proteínas do Esmalte Dentário/genética , Matriz Extracelular/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Fosforilação , Reação em Cadeia da Polimerase
18.
Am J Orthod Dentofacial Orthop ; 149(4): 509-15, 2016 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-27021455

RESUMO

INTRODUCTION: Our aim in this study was to investigate the association between dental mineralization stages and the periods of the pubertal growth spurt (PGS). METHODS: The sample included panoramic and hand-wrist radiographs from 491 subjects (222 boys, 269 girls) aged 7 to 17 years. Dental development was rated, and skeletal maturation was evaluated. The relevant associations were investigated by analysis of ordinal multinomial logistic regression. RESULTS: The second molar (odds ratio [OR] = 4.34) and the first premolar (OR = 2.45) were the best growth predictors for girls. For boys, the second molar (OR = 6.80), second premolar (OR = 2.41), and canine (OR = 3.21) proved to be the best predictors. Stages D and E of the second molar for girls, and stages E and F for boys, corresponded to the onset of the accelerated growth spurt. Stage F of the second molar for girls and stage G for boys corresponded to the peak of the PGS. At the end of the PGS, most teeth had already attained apical closure. In girls, however, most second molars were found at stage G. CONCLUSIONS: An association exists between the dental mineralization stages and the periods of the PGS, especially for second molars. Panoramic radiographs can be used as the first diagnostic tool to estimate the pubertal growth period.


Assuntos
Puberdade/fisiologia , Radiografia Panorâmica , Adolescente , Determinação da Idade pelo Esqueleto/métodos , Determinação da Idade pelos Dentes/métodos , Amelogênese/fisiologia , Dente Pré-Molar/diagnóstico por imagem , Dente Pré-Molar/crescimento & desenvolvimento , Criança , Estudos Transversais , Dente Canino/diagnóstico por imagem , Dente Canino/crescimento & desenvolvimento , Polpa Dentária/diagnóstico por imagem , Polpa Dentária/crescimento & desenvolvimento , Dentinogênese/fisiologia , Feminino , Humanos , Masculino , Dente Molar/diagnóstico por imagem , Dente Molar/crescimento & desenvolvimento , Radiografia Panorâmica/estatística & dados numéricos , Fatores Sexuais , Ápice Dentário/diagnóstico por imagem , Ápice Dentário/crescimento & desenvolvimento , Calcificação de Dente/fisiologia , Coroa do Dente/diagnóstico por imagem , Coroa do Dente/crescimento & desenvolvimento , Raiz Dentária/diagnóstico por imagem , Raiz Dentária/crescimento & desenvolvimento
19.
Arch Oral Biol ; 60(11): 1601-12, 2015 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-26351741

RESUMO

OBJECTIVE: The permanently growing mouse incisors exhibit all stages of tooth development along their inciso-apical axis at any time. Any disturbance or injury of the ameloblasts during enamel formation or maturation may result in permanent defects in the finished enamel since the enamel does not undergo repair or remodeling after formation. In order to increase our understanding of how hypoxia affects enamel formation, we induced severe acute hypoxia in adult mice and observed its effects on the enamel in incisors. DESIGN: Incisors from hypoxic mice were obtained 5 and 49 days after the hypoxic insult. Hypoxic and control incisors were dissected out and observed by scanning electron microscopy (SEM). Incisors were subsequently ground longitudinally or transversely, etched, and observed again by SEM. The nature and position of defects were considered in relation to the configuration and dynamics of the incisors. RESULTS: The effect of hypoxia varied considerably, among mice, among incisors, and among ameloblasts. Affected enamel showed hypoplasia with hypomineralization or hypomineralization without hypoplasia. Vascular endothelial growth factor (VEGF) showed considerably stronger labeling in hypoxic compared to control ameloblasts. CONCLUSIONS: The present study demonstrates quantitative and qualitative defects in the enamel reflecting the vulnerability of ameloblasts toward severe acute hypoxia in mouse incisors.


Assuntos
Esmalte Dentário/patologia , Hipóxia/patologia , Incisivo/patologia , Ameloblastos/citologia , Ameloblastos/metabolismo , Ameloblastos/patologia , Amelogênese/fisiologia , Animais , Esmalte Dentário/metabolismo , Hipoplasia do Esmalte Dentário/metabolismo , Hipoplasia do Esmalte Dentário/patologia , Feminino , Hipóxia/metabolismo , Imuno-Histoquímica , Incisivo/crescimento & desenvolvimento , Incisivo/metabolismo , Masculino , Camundongos , Microscopia Eletrônica de Varredura , Desmineralização do Dente , Fator A de Crescimento do Endotélio Vascular/metabolismo
20.
J Dent Res ; 94(12): 1740-7, 2015 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-26403673

RESUMO

Ameloblasts express transmembrane proteins for transport of mineral ions and regulation of pH in the enamel space. Two major transporters recently identified in ameloblasts are the Na(+)K(+)-dependent calcium transporter NCKX4 and the Na(+)-dependent HPO4 (2-) (Pi) cotransporter NaPi-2b. To regulate pH, ameloblasts express anion exchanger 2 (Ae2a,b), chloride channel Cftr, and amelogenins that can bind protons. Exposure to fluoride or null mutation of Cftr, Ae2a,b, or Amelx each results in formation of hypomineralized enamel. We hypothesized that enamel hypomineralization associated with disturbed pH regulation results from reduced ion transport by NCKX4 and NaPi-2b. This was tested by correlation analyses among the levels of Ca, Pi, Cl, Na, and K in forming enamel of mice with null mutation of Cftr, Ae2a,b, and Amelx, according to quantitative x-ray electron probe microanalysis. Immunohistochemistry, polymerase chain reaction analysis, and Western blotting confirmed the presence of apical NaPi-2b and Nckx4 in maturation-stage ameloblasts. In wild-type mice, K levels in enamel were negatively correlated with Ca and Cl but less negatively or even positively in fluorotic enamel. Na did not correlate with P or Ca in enamel of wild-type mice but showed strong positive correlation in fluorotic and nonfluorotic Ae2a,b- and Cftr-null enamel. In hypomineralizing enamel of all models tested, 1) Cl(-) was strongly reduced; 2) K(+) and Na(+) accumulated (Na(+) not in Amelx-null enamel); and 3) modulation was delayed or blocked. These results suggest that a Na(+)K(+)-dependent calcium transporter (likely NCKX4) and a Na(+)-dependent Pi transporter (potentially NaPi-2b) located in ruffle-ended ameloblasts operate in a coordinated way with the pH-regulating machinery to transport Ca(2+), Pi, and bicarbonate into maturation-stage enamel. Acidification and/or associated physicochemical/electrochemical changes in ion levels in enamel fluid near the apical ameloblast membrane may reduce the transport activity of mineral transporters, which results in hypomineralization.


Assuntos
Ameloblastos/fisiologia , Amelogênese/fisiologia , Ameloblastos/metabolismo , Animais , Antiporters/fisiologia , Western Blotting , Calcificação Fisiológica/fisiologia , Antiportadores de Cloreto-Bicarbonato/fisiologia , Cloretos/metabolismo , Regulador de Condutância Transmembrana em Fibrose Cística/fisiologia , Esmalte Dentário/crescimento & desenvolvimento , Microanálise por Sonda Eletrônica , Camundongos , Potássio/metabolismo , Sódio/metabolismo , Proteínas Cotransportadoras de Sódio-Fosfato Tipo IIb/fisiologia
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