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Tetralogy of Fallot: Physiological and morphological changes in conditional Jagged1 mutant mice

dc.contributor.authorNeffeová, Kristýna
dc.contributor.authorOlejníčková, Veronika
dc.contributor.authorZábrodská, Eva
dc.contributor.authorSedmera, David
dc.contributor.authorKolesová, Hana
dc.date.accessioned2024-11-27T15:40:54Z
dc.date.available2024-11-27T15:40:54Z
dc.date.issued2024
dc.identifier.urihttps://hdl.handle.net/20.500.14178/2720
dc.description.abstractThe Notch signaling pathway is an evolutionarily conserved intercellular signaling mechanism essential for embryonic development in mammals. Mutations in the human Jagged1 (Jag1) gene, which encodes a ligand for the Notch, cause the autosomal dominant disorder Alagille syndrome. Symptoms of this inherited disease may include various forms of Tetralogy of Fallot.Here, we generated Jag1flox/flox Islet1Cre/+ mice with targeted Jagged1 gene conditional deletion in the cardiac outflow tract to investigate the impact of Jagged1 mutations on cardiac morphology and physiology at different developmental stages.Mice with conditional deletion exhibited severe cardiac malformations typical for Tetralogy of Fallot. Main defect was double outlet right ventricle, where aorta and pulmonary trunk are connected to the right ventricle. This abnormality is associated with ventricular septal defect, which was found in 100% of homozygotes. We also observed changes in atrioventricular and semilunar valve morphology. Mostly defects include myxomatous mitral valve or changes in the number of leaflets or leaflet bifurcation, they are typical for Notch deletion.Islet1 is also express in sinoatrial node and atrioventricular node, therefore we used the optical mapping for the visualization of cardiac conductive system. The analysis of E14.5, E16.5 embryos and adult mice showed changes in the activation pattern. In controls, we showed maturated activation from apex to base with two separate activation centres from both ventricles. Homozygous and heterozygous embryonic hearts optical maps revealed activation only from the left ventricle, indicating a perturbed function of the right bundle branch. In mutant adult mice, activation occurred at additional activation centres in both ventricles and posterior site, distinguishing them from controls where excitation is conducted from a single site at the apex.For the physiological analysis we used Vevo ultrasound imaging. Analysis was performed only on adult heterozygotes, because of the postnatal mortality of the homozygotes. Most of the monitored hemodynamical parameters did not show significant differences. However, spackle-based strain analysis revealed vulnerable areas of contractile defect that generate mechanical dyssynchrony pronounced mostly at anterior wall.In our study, we demonstrated morphological and electrophysiological alterations resulting from conditional deletion of Jag1 in heterozygous and homozygous embryos, as well as in heterozygous adults. Embryonic mice exhibited malformations and irregular activation patterns, suggesting right bundle branch disruption. Severe malformations were less prevalent in adult mice, primarily due to the survival of heterozygotes and an increased mortality rate among mice displaying severe congenital defects. Nevertheless, surviving animals exhibited abnormal electrophysiological changes along with physiological alterations resulting in dyssynchronous myocardial contractions observed during strain analysis.en
dc.language.isoen
dc.relation.urlhttps://hdl.handle.net/20.500.14178/2720
dc.rightsTento výsledek je zpřístupněn v režimu gratis open access, tj. pouze pro čtení. V souladu s § 30 zákona č. 121/2000 Sb., autorského zákona, lze plný text z repozitáře také stáhnout, případně vytisknout, ale pouze pro osobní potřebu.cs
dc.rightsThe fulltext is published in the repository as read-only, i.e. in gratis open access mode. Repository visitors are entitled to download and print the fulltext published without a licence for their personal use only (in accordance with § 30 of Act No. 121/2000 Coll., the Copyright Act).en
dc.titleTetralogy of Fallot: Physiological and morphological changes in conditional Jagged1 mutant miceen
dcterms.accessRightsopenAccess
dc.date.updated2024-11-28T07:40:51Z
dc.subject.keywordTetralogy of Falloten
dc.subject.keywordJagged1en
dc.subject.keyworden
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/MSM//LX22NPO5104
dc.date.embargoStartDate2024-11-28
dc.type.obd81
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.identifier.obd655292
dc.subject.rivPrimary30000::30200::30201
uk.faculty.primaryId108
uk.faculty.primaryName1. lékařská fakultacs
uk.faculty.primaryNameFirst Faculty of Medicineen
uk.department.primaryId1488
uk.department.primaryNameAnatomický ústav 1. LF UKcs
uk.department.primaryNameInstitute of Anatomyen
dc.type.obdHierarchyCsPŘEDNÁŠKA, POSTER::přednáška nebo poster::postercs
dc.type.obdHierarchyEnLECTURE, POSTER::lecture or poster::posteren
dc.type.obdHierarchyCode81::145::340en
uk.displayTitleTetralogy of Fallot: Physiological and morphological changes in conditional Jagged1 mutant miceen


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