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1.
Am J Physiol Heart Circ Physiol ; 324(6): H866-H880, 2023 06 01.
Artigo em Inglês | MEDLINE | ID: mdl-37083466

RESUMO

The transmembrane protein 43 (TMEM43/LUMA) p.S358L mutation causes arrhythmogenic cardiomyopathy named as ARVC5, a fully penetrant disease with high risk of ventricular arrhythmias, sudden death, and heart failure. Male gender and vigorous exercise independently predicted deleterious outcome. Our systems genetics analysis revealed the importance of Tmem43 for cardiac and metabolic pathways associated with elevated lipid absorption from small intestine. This study sought to delineate gender-specific cardiac, intestinal, and metabolic phenotypes in vivo and investigate underlying pathophysiological mechanisms of S358L mutation. Serial echocardiography, surface electrocardiography (ECG), treadmill running, and body EchoMRI have been used in knock-in heterozygous (Tmem43WT/S358L), homozygous (Tmem43S358L), and wildtype (Tmem43WT) littermate mice. Electron microscopy, histology, immunohistochemistry, transcriptome, and protein analysis have been performed in cardiac and intestinal tissues. Systolic dysfunction was apparent in 3-mo-old Tmem43S358L and 6-mo-old Tmem43WT/S358L mutants. Both mutant lines displayed intolerance to acute stress at 6 mo of age, arrhythmias, fibro-fatty infiltration, and subcellular abnormalities in the myocardium. Microarray analysis found significantly differentially expressed genes between left ventricular (LV) and right ventricular (RV) myocardium. Mutants displayed diminished PPARG activities and significantly reduced TMEM43 and ß-catenin expression in the heart, whereas junctional plakoglobin (JUP) translocated into nuclei of mutant cardiomyocytes. Conversely, elongated villi, fatty infiltration, and overexpression of gut epithelial proliferation markers, ß-catenin and Ki-67, were evident in small intestine of mutants. We defined Tmem43 S358L-induced pathological effects on cardiac and intestinal homeostasis via distinctly disturbed WNT-ß-catenin and PPARG signaling thereby contributing to ARVC5 pathophysiology. Results suggest that cardiometabolic assessment in mutation carriers may be important for predictive and personalized care.NEW & NOTEWORTHY This manuscript describes the findings of our investigation of cardiac, small intestine, and metabolic features of Tmem43-S358L mouse model. By investigating interorgan pathologies, we uncovered multiple mechanisms of the S358L-induced disease, and these unique mechanisms likely appear to contribute to the disease pathogenesis. We hope our findings are important and novel and open new avenues in the hunting for additional diagnostic and therapeutic targets in subjects carrying TMEM43 mutation.


Assuntos
Displasia Arritmogênica Ventricular Direita , beta Catenina , Animais , Masculino , Camundongos , Arritmias Cardíacas/metabolismo , Displasia Arritmogênica Ventricular Direita/genética , Displasia Arritmogênica Ventricular Direita/diagnóstico , beta Catenina/metabolismo , Homeostase , Intestino Delgado , Mutação , Miócitos Cardíacos/metabolismo , PPAR gama/metabolismo
3.
J Gen Physiol ; 154(2)2022 02 07.
Artigo em Inglês | MEDLINE | ID: mdl-34910097

RESUMO

Ectothermic vertebrates experience daily changes in body temperature, and anecdotal observations suggest these changes affect ventricular repolarization such that the T-wave in the ECG changes polarity. Mammals, in contrast, can maintain stable body temperatures, and their ventricular repolarization is strongly modulated by changes in heart rate and by sympathetic nervous system activity. The aim of this study was to assess the role of body temperature, heart rate, and circulating catecholamines on local repolarization gradients in the ectothermic ball python (Python regius). We recorded body-surface electrocardiograms and performed open-chest high-resolution epicardial mapping while increasing body temperature in five pythons, in all of which there was a change in T-wave polarity. However, the vector of repolarization differed between individuals, and only a subset of leads revealed T-wave polarity change. RNA sequencing revealed regional differences related to adrenergic signaling. In one denervated and Ringer's solution-perfused heart, heating and elevated heart rates did not induce change in T-wave polarity, whereas noradrenaline did. Accordingly, electrocardiograms in eight awake pythons receiving intra-arterial infusion of the ß-adrenergic receptor agonists adrenaline and isoproterenol revealed T-wave inversion in most individuals. Conversely, blocking the ß-adrenergic receptors using propranolol prevented T-wave change during heating. Our findings indicate that changes in ventricular repolarization in ball pythons are caused by increased tone of the sympathetic nervous system, not by changes in temperature. Therefore, ventricular repolarization in both pythons and mammals is modulated by evolutionary conserved mechanisms involving catecholaminergic stimulation.


Assuntos
Boidae , Animais , Arritmias Cardíacas , Catecolaminas , Eletrocardiografia , Coração , Humanos
4.
Cardiovasc Res ; 117(9): 2083-2091, 2021 07 27.
Artigo em Inglês | MEDLINE | ID: mdl-32853334

RESUMO

AIMS: Enhanced sympathetic activity during acute ischaemia is arrhythmogenic, but the underlying mechanism is unknown. During ischaemia, a diastolic current flows from the ischaemic to the non-ischaemic myocardium. This 'injury' current can cause ventricular premature beats (VPBs) originating in the non-ischaemic myocardium, especially during a deeply negative T wave in the ischaemic zone. We reasoned that shortening of repolarization in myocardium adjacent to ischaemic myocardium increases the 'injury' current and causes earlier deeply negative T waves in the ischaemic zone, and re-excitation of the normal myocardium. We tested this hypothesis by activation and repolarization mapping during stimulation of the left stellate ganglion (LSG) during left anterior descending coronary artery (LAD) occlusion. METHODS AND RESULTS: In nine pigs, five subsequent episodes of acute ischaemia, separated by 20 min of reperfusion, were produced by occlusion of the LAD and 121 epicardial local unipolar electrograms were recorded. During the third occlusion, left stellate ganglion stimulation (LSGS) was initiated after 3 min for a 30-s period, causing a shortening of repolarization in the normal myocardium by about 100 ms. This resulted in more negative T waves in the ischaemic zone and more VPBs than during the second, control, occlusion. Following the decentralization of the LSG (including removal of the right stellate ganglion and bilateral cervical vagotomy), fewer VPBs occurred during ischaemia without LSGS. During LSGS, the number of VPBs was similar to that recorded before decentralization. CONCLUSION: LSGS, by virtue of shortening of repolarization in the non-ischaemic myocardium by about 100 ms, causes deeply negative T waves in the ischaemic tissue and VPBs originating from the normal tissue adjacent to the ischaemic border.


Assuntos
Potenciais de Ação , Frequência Cardíaca , Coração/inervação , Isquemia Miocárdica/complicações , Gânglio Estrelado/fisiopatologia , Complexos Ventriculares Prematuros/etiologia , Animais , Modelos Animais de Doenças , Estimulação Elétrica , Feminino , Isquemia Miocárdica/fisiopatologia , Sus scrofa , Fatores de Tempo , Complexos Ventriculares Prematuros/fisiopatologia
5.
Acta Physiol (Oxf) ; 230(2): e13493, 2020 10.
Artigo em Inglês | MEDLINE | ID: mdl-32386467

RESUMO

AIM: The voltage-gated sodium channel NaV 1.5, encoded by SCN5A, is essential for cardiac excitability and ensures proper electrical conduction. Early embryonic death has been observed in several murine models carrying homozygous Scn5amutations. We investigated when sodium current (INa ) becomes functionally relevant in the murine embryonic heart and how Scn5a/NaV 1.5 dysfunction impacts on cardiac development. METHODS: Involvement of NaV 1.5-generated INa in murine cardiac electrical function was assessed by optical mapping in wild type (WT) embryos (embryonic day (E)9.5 and E10.5) in the absence and presence of the sodium channel blocker tetrodotoxin (30 µmol/L). INa was assessed by patch-clamp analysis in cardiomyocytes isolated from WT embryos (E9.5-17.5). In addition, cardiac morphology and electrical function was assessed in Scn5a-1798insD-/- embryos (E9.5-10.5) and their WT littermates. RESULTS: In WT embryos, tetrodotoxin did not affect cardiac activation at E9.5, but slowed activation at E10.5. Accordingly, patch-clamp measurements revealed that INa was virtually absent at E9.5 but robustly present at E10.5. Scn5a-1798insD-/- embryos died in utero around E10.5, displaying severely affected cardiac activation and morphology. Strikingly, altered ventricular activation was observed in Scn5a-1798insD-/- E9.5 embryos before the onset of INa , in addition to reduced cardiac tissue volume compared to WT littermates. CONCLUSION: We here demonstrate that NaV 1.5 is involved in cardiac electrical function from E10.5 onwards. Scn5a-1798insD-/- embryos displayed cardiac structural abnormalities at E9.5, indicating that NaV 1.5 dysfunction impacts on embryonic cardiac development in a non-electrogenic manner. These findings are potentially relevant for understanding structural defects observed in relation to NaV 1.5 dysfunction.


Assuntos
Miócitos Cardíacos , Canal de Sódio Disparado por Voltagem NAV1.5 , Animais , Camundongos , Miócitos Cardíacos/metabolismo , Canal de Sódio Disparado por Voltagem NAV1.5/genética , Sódio/metabolismo
6.
Heart Rhythm ; 17(5 Pt A): 795-803, 2020 05.
Artigo em Inglês | MEDLINE | ID: mdl-31917369

RESUMO

BACKGROUND: Dispersion in ventricular repolarization is relevant for arrhythmogenesis. OBJECTIVE: The purpose of this study was to determine the spatiotemporal effects of sympathetic stimulation on ventricular repolarization. METHODS: In 5 anesthetized female open-chest pigs, ventricular repolarization was measured from the anterior, lateral, and posterior walls of the left ventricle (LV) and right ventricle using up to 40 transmural plunge needles (4 electrodes each) before and after left stellate ganglion stimulation (LSGS) and right stellate ganglion stimulation. In addition, LSGS was performed in 3 pigs (2 male, 1 female) before and after verapamil (5-10 mg/h) administration. RESULTS: LSGS yielded a biphasic response in repolarization in the lateral and posterior walls of the LV, with prolongation at ∼5 seconds (10 ± 1.5 ms) and shortening at 20-30 seconds of stimulation (-28.9 ± 4.4 ms) during a monotonic pressure increase. While the initial prolongation was abolished by verapamil, late shortening was augmented. Sequential transections of the vagal nerve and stellate ganglia augmented repolarization dispersion responses to LSGS in 2 of 5 hearts. An equal pressure increase by aortic occlusion resulted in a homogeneous shortening of repolarization in the LV, and the effects were smaller than those during LSGS. Right stellate stimulation shortened repolarization mainly in the anterior LV wall, but the effects were smaller than those of LSGS. CONCLUSION: LSGS first prolongs (through the L-type calcium current) and then shortens repolarization. The effect of LSGS was prominent in the posterior and lateral, not the anterior, LV walls.


Assuntos
Estimulação Elétrica/métodos , Sistema de Condução Cardíaco/fisiopatologia , Frequência Cardíaca/fisiologia , Ventrículos do Coração/fisiopatologia , Gânglio Estrelado/fisiopatologia , Taquicardia Ventricular/terapia , Função Ventricular Esquerda/fisiologia , Animais , Modelos Animais de Doenças , Feminino , Masculino , Prognóstico , Suínos , Taquicardia Ventricular/fisiopatologia
7.
Prog Biophys Mol Biol ; 144: 16-29, 2019 07.
Artigo em Inglês | MEDLINE | ID: mdl-30243548

RESUMO

The electrocardiogram (ECG) reveals that heart chamber activation and repolarization are much faster in mammals and birds compared to ectothermic vertebrates of similar size. Temperature, however, affects electrophysiology of the heart and most data from ectotherms are determined at body temperatures lower than those of mammals and birds. The present manuscript is a review of the effects of temperature on intervals in the ECG of ectothermic and endothermic vertebrates rather than a hypothesis-testing original research article. However, the conclusions are supported by the inclusion of original data (Iguana iguana, N = 4; Python regius, N = 5; Alligator mississippiensis, N = 4). Most comparisons were of animals of approximately 1 kg. Compared to mammals and birds, the reptiles at 35-37 °C had 4 fold lower heart rates, 2 fold slower atrial and ventricular conduction (longer P- and QRS-wave durations), and 4 fold longer PR intervals (atrioventricular delay) and QT intervals (total ventricular repolarization). We conclude that the faster chamber activation in endotherms cannot be explained by temperature alone. Based on histology, we show that endotherms have a more compact myocardial architecture. In mammals, disorganization of the compact wall by fibrosis associates with conduction slowing and we suggest the compact tissue architecture allows for faster chamber activation. The short cardiac cycle that characterizes mammals and birds, however, is predominantly accommodated by shortening of the atrioventricular delay and the QT interval, which is so long in a 1 kg iguana that it compares to that of an elephant.


Assuntos
Evolução Biológica , Regulação da Temperatura Corporal , Eletrocardiografia , Vertebrados/fisiologia , Animais , Coração/fisiologia , Humanos
8.
Eur J Cardiothorac Surg ; 53(1): 120-128, 2018 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-29029119

RESUMO

Two of the leading concepts of mural ventricular architecture are the unique myocardial band and the myocardial mesh model. We have described, in an accompanying article published in this journal, how the anatomical, histological and high-resolution computed tomographic studies strongly favour the latter concept. We now extend the argument to describe the linkage between mural architecture and ventricular function in both health and disease. We show that clinical imaging by echocardiography and magnetic resonance imaging, and electrophysiological studies, all support the myocardial mesh model. We also provide evidence that the unique myocardial band model is not compatible with much of scientific research.


Assuntos
Ventrículos do Coração/anatomia & histologia , Miocárdio , Função Ventricular , Ecocardiografia , Técnicas Eletrofisiológicas Cardíacas , Ventrículos do Coração/diagnóstico por imagem , Humanos , Imageamento por Ressonância Magnética
9.
Clin Anat ; 30(7): 988-999, 2017 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-28795440

RESUMO

Since the multi-site closure theory was first proposed in 1991 as explanation for the preferential localizations of neural tube defects, the closure of the neural tube has been debated. Although the multi-site closure theory is much cited in clinical literature, single-site closure is most apparent in literature concerning embryology. Inspired by Victor Hamburgers (1900-2001) statement that "our real teacher has been and still is the embryo, who is, incidentally, the only teacher who is always right", we decided to critically review both theories of neural tube closure. To verify the theories of closure, we studied serial histological sections of 10 mouse embryos between 8.5 and 9.5 days of gestation and 18 human embryos of the Carnegie collection between Carnegie stage 9 (19-21 days) and 13 (28-32 days). Neural tube closure was histologically defined by the neuroepithelial remodeling of the two adjoining neural fold tips in the midline. We did not observe multiple fusion sites in neither mouse nor human embryos. A meta-analysis of case reports on neural tube defects showed that defects can occur at any level of the neural axis. Our data indicate that the human neural tube fuses at a single site and, therefore, we propose to reinstate the single-site closure theory for neural tube closure. We showed that neural tube defects are not restricted to a specific location, thereby refuting the reasoning underlying the multi-site closure theory. Clin. Anat. 30:988-999, 2017. © 2017 Wiley Periodicals, Inc.


Assuntos
Defeitos do Tubo Neural/patologia , Tubo Neural/embriologia , Animais , Idade Gestacional , Humanos , Camundongos
10.
Dev Biol ; 396(1): 8-18, 2014 Dec 01.
Artigo em Inglês | MEDLINE | ID: mdl-25300579

RESUMO

Recent studies using mouse models for cell fate tracing of epicardial derived cells (EPDCs) have demonstrated that at the atrioventricular (AV) junction EPDCs contribute to the mesenchyme of the AV sulcus, the annulus fibrosus, and the parietal leaflets of the AV valves. There is little insight, however, into the mechanisms that govern the contribution of EPDCs to these tissues. While it has been demonstrated that bone morphogenetic protein (Bmp) signaling is required for AV cushion formation, its role in regulating EPDC contribution to the AV junction remains unexplored. To determine the role of Bmp signaling in the contribution of EPDCs to the AV junction, the Bmp receptor activin-like kinase 3 (Alk3; or Bmpr1a) was conditionally deleted in the epicardium and EPDCs using the mWt1/IRES/GFP-Cre (Wt1(Cre)) mouse. Embryonic Wt1(Cre);Alk3(fl/fl) specimens showed a significantly smaller AV sulcus and a severely underdeveloped annulus fibrosus. Electrophysiological analysis of adult Wt1(Cre);Alk3(fl/fl) mice showed, unexpectedly, no ventricular pre-excitation. Cell fate tracing revealed a significant decrease in the number of EPDCs within the parietal leaflets of the AV valves. Postnatal Wt1(Cre);Alk3(fl/fl) specimens showed myxomatous changes in the leaflets of the mitral valve. Together these observations indicate that Alk3 mediated Bmp signaling is important in the cascade of events that regulate the contribution of EPDCs to the AV sulcus, annulus fibrosus, and the parietal leaflets of the AV valves. Furthermore, this study shows that EPDCs do not only play a critical role in early developmental events at the AV junction, but that they also are important in the normal maturation of the AV valves.


Assuntos
Receptores de Proteínas Morfogenéticas Ósseas Tipo I/fisiologia , Proteínas Morfogenéticas Ósseas/metabolismo , Átrios do Coração/embriologia , Ventrículos do Coração/embriologia , Pericárdio/embriologia , Animais , Apoptose , Linhagem da Célula , Movimento Celular , Proliferação de Células , Cruzamentos Genéticos , Eletrocardiografia , Eletrofisiologia , Feminino , Regulação da Expressão Gênica no Desenvolvimento , Imageamento Tridimensional , Masculino , Camundongos , Valva Mitral/embriologia , Pericárdio/citologia , Fenótipo , Transdução de Sinais
11.
PLoS One ; 7(9): e44231, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-22984480

RESUMO

The endothermic state of mammals and birds requires high heart rates to accommodate the high rates of oxygen consumption. These high heart rates are driven by very similar conduction systems consisting of an atrioventricular node that slows the electrical impulse and a His-Purkinje system that efficiently activates the ventricular chambers. While ectothermic vertebrates have similar contraction patterns, they do not possess anatomical evidence for a conduction system. This lack amongst extant ectotherms is surprising because mammals and birds evolved independently from reptile-like ancestors. Using conserved genetic markers, we found that the conduction system design of lizard (Anolis carolinensis and A. sagrei), frog (Xenopus laevis) and zebrafish (Danio rerio) adults is strikingly similar to that of embryos of mammals (mouse Mus musculus, and man) and chicken (Gallus gallus). Thus, in ectothermic adults, the slow conducting atrioventricular canal muscle is present, no fibrous insulating plane is formed, and the spongy ventricle serves the dual purpose of conduction and contraction. Optical mapping showed base-to-apex activation of the ventricles of the ectothermic animals, similar to the activation pattern of mammalian and avian embryonic ventricles and to the His-Purkinje systems of the formed hearts. Mammalian and avian ventricles uniquely develop thick compact walls and septum and, hence, form a discrete ventricular conduction system from the embryonic spongy ventricle. Our study uncovers the evolutionary building plan of heart and indicates that the building blocks of the conduction system of adult ectothermic vertebrates and embryos of endotherms are similar.


Assuntos
Evolução Biológica , Sistema de Condução Cardíaco/embriologia , Animais , Nó Atrioventricular/anatomia & histologia , Nó Atrioventricular/embriologia , Regulação da Expressão Gênica no Desenvolvimento , Sistema de Condução Cardíaco/anatomia & histologia , Sistema de Condução Cardíaco/diagnóstico por imagem , Sistema de Condução Cardíaco/metabolismo , Ventrículos do Coração/anatomia & histologia , Ventrículos do Coração/embriologia , Ventrículos do Coração/metabolismo , Humanos , Imageamento Tridimensional , Lagartos/embriologia , Lagartos/genética , Modelos Biológicos , Fenótipo , Proteínas com Domínio T/genética , Proteínas com Domínio T/metabolismo , Ultrassonografia , Xenopus/embriologia , Xenopus/genética , Peixe-Zebra/embriologia , Peixe-Zebra/genética
12.
J Clin Invest ; 121(2): 534-44, 2011 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-21266775

RESUMO

Ventricular preexcitation, a feature of Wolff-Parkinson-White syndrome, is caused by accessory myocardial pathways that bypass the annulus fibrosus. This condition increases the risk of atrioventricular tachycardia and, in the presence of atrial fibrillation, sudden death. The developmental mechanisms underlying accessory pathway formation are poorly understood but are thought to primarily involve malformation of the annulus fibrosus. Before birth, slowly conducting atrioventricular myocardium causes a functional atrioventricular activation delay in the absence of the annulus fibrosus. This myocardium remains present after birth, suggesting that the disturbed development of the atrioventricular canal myocardium may mediate the formation of rapidly conducting accessory pathways. Here we show that myocardium-specific inactivation of T-box 2 (Tbx2), a transcription factor essential for atrioventricular canal patterning, leads to the formation of fast-conducting accessory pathways, malformation of the annulus fibrosus, and ventricular preexcitation in mice. The accessory pathways ectopically express proteins required for fast conduction (connexin-40 [Cx40], Cx43, and sodium channel, voltage-gated, type V, α [Scn5a]). Additional inactivation of Cx30.2, a subunit for gap junctions with low conductance expressed in the atrioventricular canal and unaffected by the loss of Tbx2, did not affect the functionality of the accessory pathways. Our results suggest that malformation of the annulus fibrosus and preexcitation arise from the disturbed development of the atrioventricular myocardium.


Assuntos
Feixe Acessório Atrioventricular , Nó Atrioventricular , Sistema de Condução Cardíaco , Morfogênese , Proteínas com Domínio T/metabolismo , Síndrome de Wolff-Parkinson-White/patologia , Síndrome de Wolff-Parkinson-White/fisiopatologia , Feixe Acessório Atrioventricular/embriologia , Feixe Acessório Atrioventricular/patologia , Feixe Acessório Atrioventricular/fisiopatologia , Animais , Nó Atrioventricular/embriologia , Nó Atrioventricular/patologia , Nó Atrioventricular/fisiopatologia , Conexina 43/genética , Conexina 43/metabolismo , Feminino , Regulação da Expressão Gênica no Desenvolvimento , Sistema de Condução Cardíaco/embriologia , Sistema de Condução Cardíaco/patologia , Sistema de Condução Cardíaco/fisiopatologia , Humanos , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Miocárdio/citologia , Miocárdio/metabolismo , Gravidez , Proteínas com Domínio T/genética
13.
PLoS Pathog ; 5(5): e1000447, 2009 May.
Artigo em Inglês | MEDLINE | ID: mdl-19461880

RESUMO

The causative agent of Lyme borreliosis, the spirochete Borrelia burgdorferi, has been shown to induce expression of the urokinase receptor (uPAR); however, the role of uPAR in the immune response against Borrelia has never been investigated. uPAR not only acts as a proteinase receptor, but can also, dependently or independently of ligation to uPA, directly affect leukocyte function. We here demonstrate that uPAR is upregulated on murine and human leukocytes upon exposure to B. burgdorferi both in vitro as well as in vivo. Notably, B. burgdorferi-inoculated C57BL/6 uPAR knock-out mice harbored significantly higher Borrelia numbers compared to WT controls. This was associated with impaired phagocytotic capacity of B. burgdorferi by uPAR knock-out leukocytes in vitro. B. burgdorferi numbers in vivo, and phagocytotic capacity in vitro, were unaltered in uPA, tPA (low fibrinolytic activity) and PAI-1 (high fibrinolytic activity) knock-out mice compared to WT controls. Strikingly, in uPAR knock-out mice partially backcrossed to a B. burgdorferi susceptible C3H/HeN background, higher B. burgdorferi numbers were associated with more severe carditis and increased local TLR2 and IL-1beta mRNA expression. In conclusion, in B. burgdorferi infection, uPAR is required for phagocytosis and adequate eradication of the spirochete from the heart by a mechanism that is independent of binding of uPAR to uPA or its role in the fibrinolytic system.


Assuntos
Borrelia burgdorferi/imunologia , Doença de Lyme/imunologia , Receptores de Ativador de Plasminogênio Tipo Uroquinase/metabolismo , Animais , Artrite Infecciosa/microbiologia , Movimento Celular , Coração/microbiologia , Histocitoquímica , Humanos , Leucócitos/metabolismo , Doença de Lyme/microbiologia , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Miocardite/microbiologia , Fagocitose , Receptores de Ativador de Plasminogênio Tipo Uroquinase/genética , Pele/metabolismo , Pele/microbiologia , Estatísticas não Paramétricas , Regulação para Cima , Bexiga Urinária/metabolismo , Bexiga Urinária/microbiologia , Ativador de Plasminogênio Tipo Uroquinase/genética , Ativador de Plasminogênio Tipo Uroquinase/metabolismo
14.
Circ Res ; 104(1): 19-31, 2009 Jan 02.
Artigo em Inglês | MEDLINE | ID: mdl-19118284

RESUMO

Reentry is the main mechanism of life-threatening ventricular arrhythmias, including ventricular fibrillation and tachycardia. Its occurrence depends on the simultaneous presence of an arrhythmogenic substrate (a preexisting condition) and a "trigger," and is favored by electrophysiological heterogeneities. In the adult heart, electrophysiological heterogeneities of the ventricle exist along the apicobasal, left-right, and transmural axes. Also, conduction is preferentially slowed in the right ventricular outflow tract, especially during pharmacological sodium channel blockade. We propose that the origin of electrophysiological heterogeneities of the adult heart lies in early heart development. The heart is formed from several progenitor regions: the first heart field predominantly forms the left ventricle, whereas the second heart field forms the right ventricle and outflow tract. Furthermore, the embryonic outflow tract consists of slowly conducting tissue until it is incorporated into the ventricles and develops rapidly conducting properties. The subepicardial myocytes and subendocardial myocytes run distinctive gene programs from their formation onwards. This review discusses the hypothesis that electrophysiological heterogeneities in the adult heart result from persisting patterns in gene expression and function along the craniocaudal and epicardial-endocardial axes of the developing heart. Understanding the developmental origins of electrophysiological heterogeneity contributing to ventricular arrhythmias may give rise to new therapies.


Assuntos
Aorta/fisiopatologia , Coração Fetal/metabolismo , Regulação da Expressão Gênica no Desenvolvimento , Sistema de Condução Cardíaco/embriologia , Ventrículos do Coração/fisiopatologia , Miócitos Cardíacos/metabolismo , Artéria Pulmonar/fisiopatologia , Taquicardia Ventricular/embriologia , Fibrilação Ventricular/embriologia , Potenciais de Ação , Animais , Aorta/embriologia , Displasia Arritmogênica Ventricular Direita/genética , Displasia Arritmogênica Ventricular Direita/fisiopatologia , Síndrome de Brugada/genética , Síndrome de Brugada/fisiopatologia , Conexinas/biossíntese , Conexinas/genética , Junções Comunicantes/fisiologia , Heterogeneidade Genética , Sistema de Condução Cardíaco/fisiopatologia , Ventrículos do Coração/embriologia , Humanos , Canais Iônicos/biossíntese , Canais Iônicos/genética , Mamíferos , Miócitos Cardíacos/classificação , Crista Neural/citologia , Fenótipo , Artéria Pulmonar/embriologia , Taquicardia Ventricular/genética , Taquicardia Ventricular/fisiopatologia , Transcrição Gênica , Fibrilação Ventricular/genética , Fibrilação Ventricular/fisiopatologia
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