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1.
Clin Oral Investig ; 23(4): 1723-1731, 2019 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-30159805

RESUMO

OBJECTIVES: To evaluate new pulp capping cements containing surface pre-reacted glass ionomer (S-PRG) filler and to investigate ion release kinetics and pH shift of eluates from the cement. MATERIALS AND METHODS: Molars of Wistar rats were directly pulp capped using three kinds of cement containing S-PRG filler and mineral tri-oxide aggregate (MTA) was used as a control. After 1, 2, or 4 weeks, histological evaluation was performed and differences of tertiary dentin formation were analyzed. Release of Sr2+, BO33-, SiO32-, Na+, and Al3+ ions was determined by inductively coupled plasma-atomic emission spectrometry, and F- ion release was measured using a fluoride ion selective electrode. The pH of the eluate from each cement after mixing was measured with a pH electrode. RESULTS: One of S-PRG cements promoted tertiary dentin formation to the same extent as the control (p > 0.05) and it showed a tendency of less inflammatory response. This cement released more BO33- and SiO32-, but less Sr2+, Na+, and F- than other S-PRG specimens. Each cement recovered nearly neutral compared with glass ionomer cement. CONCLUSIONS: S-PRG cement induced tertiary dentin formation based on multiple ion releases, suggesting that it is suitable as a pulp capping material. CLINICAL RELEVANCE: This new material can be an alternative pulp capping agent to MTA.


Assuntos
Capeamento da Polpa Dentária , Cimentos de Ionômeros de Vidro , Agentes de Capeamento da Polpa Dentária e Pulpectomia , Resinas Acrílicas , Compostos de Alumínio , Animais , Compostos de Cálcio , Dentina , Combinação de Medicamentos , Dente Molar , Óxidos , Ratos , Ratos Wistar , Silicatos , Dióxido de Silício
2.
J Mol Cell Cardiol ; 72: 273-80, 2014 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-24713462

RESUMO

KCNQ1 encodes the α subunit of the voltage-gated channel that mediates the cardiac slow delayed rectifier K(+) current (IKs). Here, we report a KCNQ1 allele encoding an A590T mutation [KCNQ1(A590T)] found in a 39-year-old female with a mild QT prolongation. A590 is located in the C-terminal α helical region of KCNQ1 that mediates subunit tetramerization, membrane trafficking, and interaction with Yotiao. This interaction is known to be required for the proper modulation of IKs by cAMP. Since previous studies reported that mutations in the vicinity of A590 impair IKs channel surface expression and function, we examined whether and how the A590T mutation affects the IKs channel. Electrophysiological measurements in HEK-293T cells showed that the A590T mutation caused a reduction in IKs density and a right-shift of the current-voltage relation of channel activation. Immunocytochemical and immunoblot analyses showed the reduced cell surface expression of KCNQ1(A590T) subunit and its rescue by coexpression of the wild-type KCNQ1 [KCNQ1(WT)] subunit. Moreover, KCNQ1(A590T) subunit interacted with Yotiao and had a cAMP-responsiveness comparable to that of KCNQ1(WT) subunit. These findings indicate that the A590 of KCNQ1 subunit plays important roles in the maintenance of channel surface expression and function via a novel mechanism independent of interaction with Yotiao.


Assuntos
Proteínas de Ancoragem à Quinase A/metabolismo , Proteínas do Citoesqueleto/metabolismo , Canal de Potássio KCNQ1/metabolismo , Síndrome do QT Longo/metabolismo , Mutação , Canais de Potássio de Abertura Dependente da Tensão da Membrana/metabolismo , Subunidades Proteicas/metabolismo , Proteínas de Ancoragem à Quinase A/genética , Potenciais de Ação , Adulto , Sequência de Aminoácidos , AMP Cíclico/metabolismo , Proteínas do Citoesqueleto/genética , Feminino , Expressão Gênica , Células HEK293 , Humanos , Canal de Potássio KCNQ1/genética , Síndrome do QT Longo/genética , Síndrome do QT Longo/fisiopatologia , Dados de Sequência Molecular , Canais de Potássio de Abertura Dependente da Tensão da Membrana/genética , Ligação Proteica , Multimerização Proteica , Estrutura Secundária de Proteína , Estrutura Terciária de Proteína , Subunidades Proteicas/genética , Transporte Proteico , Alinhamento de Sequência
3.
Biochem Biophys Res Commun ; 440(2): 283-8, 2013 Oct 18.
Artigo em Inglês | MEDLINE | ID: mdl-24070608

RESUMO

A mutation of KCNQ1 gene encoding the alpha subunit of the channel mediating the slow delayed rectifier K(+) current in cardiomyocytes may cause severe arrhythmic disorders. We identified KCNQ1(Y461X), a novel mutant gene encoding KCNQ1 subunit whose C-terminal domain is truncated at tyrosine 461 from a man with a mild QT interval prolongation. We made whole-cell voltage-clamp recordings from HEK-293T cells transfected with either of wild-type KCNQ1 [KCNQ1(WT)], KCNQ1(Y461X), or their mixture plus KCNE1 auxiliary subunit gene. The KCNQ1(Y461X)-transfected cells showed no delayed rectifying current. The cells transfected with both KCNQ1(WT) and KCNQ1(Y461X) showed the delayed rectifying current that is thought to be mediated largely by homomeric channel consisting of KCNQ1(WT) subunit because its voltage-dependence of activation, activation rate, and deactivation rate were similar to the current in the KCNQ1(WT)-transfected cells. The immunoblots of HEK-293T cell-derived lysates showed that KCNQ1(Y461X) subunit cannot form channel tetramers by itself or with KCNQ1(WT) subunit. Moreover, immunocytochemical analysis in HEK-293T cells showed that the surface expression level of KCNQ1(Y461X) subunit was very low with or without KCNQ1(WT) subunit. These findings suggest that the massive loss of the C-terminal domain of KCNQ1 subunit impairs the assembly, trafficking, and function of the mutant subunit-containing channels, whereas the mutant subunit does not interfere with the functional expression of the homomeric wild-type channel. Therefore, the homozygous but not heterozygous inheritance of KCNQ1(Y461X) might cause major arrhythmic disorders. This study provides a new insight into the structure-function relation of KCNQ1 channel and treatments of cardiac channelopathies.


Assuntos
Canal de Potássio KCNQ1/genética , Adulto , Substituição de Aminoácidos , Células HEK293 , Humanos , Canal de Potássio KCNQ1/química , Canal de Potássio KCNQ1/fisiologia , Síndrome do QT Longo/genética , Masculino , Subunidades Proteicas/genética
4.
J Cardiovasc Electrophysiol ; 23(11): 1246-53, 2012 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-22764740

RESUMO

INTRODUCTION: Mutations of human ether-à-go-go-related gene (hERG), which encodes a cardiac K(+) channel responsible for the acceleration of the repolarizing phase of an action potential and the prevention of premature action potential regeneration, often cause severe arrhythmic disorders. We found a novel missense mutation of hERG that results in a G487R substitution in the S2-S3 loop of the channel subunit [hERG(G487R)] from a family and determined whether this mutant gene could induce an abnormality in channel function. METHODS AND RESULTS: We made whole-cell voltage-clamp recordings from HEK-293T cells transfected with wild-type hERG [hERG(WT)], hERG(G487R), or both. We measured hERG channel-mediated current as the "tail" of a depolarization-elicited current. The current density of the tail current and its voltage- and time-dependences were not different among all the cell groups. The time-courses of deactivation, inactivation, and recovery from inactivation and their voltage-dependences were not different among all the cell groups. Furthermore, we performed immunocytochemical analysis using an anti-hERG subunit antibody. The ratio of the immunoreactivity of the plasma membrane to that of the cytoplasm was not different between cells transfected with hERG(WT), hERG(G487R), or both. CONCLUSION: hERG(G487R) can produce functional channels with normal gating kinetics and cell-surface expression efficiency with or without the aid of hERG(WT). Therefore, neither the heterozygous nor homozygous inheritance of hERG(G487R) is thought to cause severe cardiac disorders. hERG(G487R) would be a candidate for a rare variant or polymorphism of hERG with an amino acid substitution in the unusual region of the channel subunit.


Assuntos
Arritmias Cardíacas/genética , Morte Súbita Cardíaca/etiologia , Canais de Potássio Éter-A-Go-Go/genética , Mutação de Sentido Incorreto , Potenciais de Ação , Sequência de Aminoácidos , Substituição de Aminoácidos , Animais , Arritmias Cardíacas/metabolismo , Arritmias Cardíacas/mortalidade , Membrana Celular/metabolismo , Canal de Potássio ERG1 , Canais de Potássio Éter-A-Go-Go/química , Canais de Potássio Éter-A-Go-Go/metabolismo , Feminino , Predisposição Genética para Doença , Células HEK293 , Humanos , Imuno-Histoquímica , Ativação do Canal Iônico , Cinética , Masculino , Dados de Sequência Molecular , Técnicas de Patch-Clamp , Fenótipo , Potássio/metabolismo , Subunidades Proteicas , Transfecção , Adulto Jovem
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