40 resultados para DiGeorge Syndrme


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Background: To alert for the diagnosis of the 22q11.2 deletion syndrome (22q11.2DS) in patients with congenital heart disease (CHD). Objective: To describe the main CHDs, as well as phenotypic, metabolic and immunological findings in a series of 60 patients diagnosed with 22q11.2DS. Methods: The study included 60 patients with 22q11.2DS evaluated between 2007 and 2013 (M:F=1.3, age range 14 days to 20 years and 3 months) at a pediatric reference center for primary immunodeficiencies. The diagnosis was established by detection of the 22q11.2 microdeletion using FISH (n = 18) and/or MLPA (n = 42), in association with clinical and laboratory information. Associated CHDs, progression of phenotypic facial features, hypocalcemia and immunological changes were analyzed. Results: CHDs were detected in 77% of the patients and the most frequent type was tetralogy of Fallot (38.3%). Surgical correction of CHD was performed in 34 patients. Craniofacial dysmorphisms were detected in 41 patients: elongated face (60%) and/or elongated nose (53.3%), narrow palpebral fissure (50%), dysplastic, overfolded ears (48.3%), thin lips (41.6%), elongated fingers (38.3%) and short stature (36.6%). Hypocalcemia was detected in 64.2% and decreased parathyroid hormone (PTH) level in 25.9%. Decrease in total lymphocytes, CD4 and CD8 counts were present in 40%, 53.3% and 33.3%, respectively. Hypogammaglobulinemia was detected in one patient and decreased concentrations of immunoglobulin M (IgM) in two other patients. Conclusion: Suspicion for 22q11.2DS should be raised in all patients with CHD associated with hypocalcemia and/or facial dysmorphisms, considering that many of these changes may evolve with age. The 22q11.2 microdeletion should be confirmed by molecular testing in all patients.

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A Síndrome velocardiofacial/DiGeorge/CATCH 22 consiste num espectro de associação caracterizado por fácies invulgar, insuficiência velo-palatina, anomalias cardíacas conotruncais, ausência do timo e das glândulas paratiróides, frequentemente associada também a perturbações do desenvolvimento. A alteração genética associada a esta anomalia é a microdelecção no cromossoma 22 (22q11.2). É descrito o caso de um lactente de 4 meses, com antecedentes de crises de dificuldade respiratória obstrutiva baixa e má progressão ponderal desde os 2 meses de idade. Após diagnóstico tardio de truncus arteriosus foi submetido a correcção cirúrgica com pós-operatório complicado, mantendo a dependência de ventilação mecânica, com atelectasia persistente no pulmão esquerdo. A broncofibroscopia mostrou obstrução completa do brônquio principal esquerdo por compressão extrínseca. O cateterismo cardíaco revelou origem anómala da artéria subclávia direita, comum com a artéria subclávia esquerda, formando o anel vascular com o ligamento arterioso, comprimindo o brônquio esquerdo. Foi submetido a segunda cirurgia que consistiu na divisão do anel vascular por toractomia lateral esquerda. No pós-operatório a manutenção de colapso do brônquio principal esquerdo levou à colocação de stent endobrônquico. O desenvolvimento de um uqdro de dificuldade respiratória por migração do stent do brônquico esquerdo para a traqueia obrigou a terapêutica endoscópica emergente com melhoria da sintomatologia respiratória e boa evolução posterior. A associação a este síndorme DiGeorge e anel vascular é incomum. O relato deste caso petende salientar a necessidadae de abordagem técnica multidisciplinar, por vezes de forma emergente, em situações de evolução atípica condicionada pela variabilidade anatómica.

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Hemizygous interstitial deletions in human chromosome 22q11 are associated with velocardiofacial syndrome and DiGeorge syndrome and lead to multiple congenital abnormalities, including cardiovascular defects. The gene(s) responsible for these disorders is thought to reside in a 1.5-Mb region of 22q11 in which 27 genes have been identified. We have used Cre-mediated recombination of LoxP sites in embryonic stem cells and mice to generate a 550-kb deletion encompassing 16 of these genes in the corresponding region on mouse chromosome 16. Mice heterozygous for this deletion are normal and do not exhibit cardiovascular abnormalities. Because mice with a larger deletion on mouse chromosome 16 do have heart defects, the results allow us to exclude these 16 genes as being solely, or in combination among themselves, responsible for the cardiovascular abnormalities in velocardiofacial/DiGeorge syndrome. We also generated mice with a duplication of the 16 genes that may help dissect the genetic basis of “cat eye” and derivative 22 syndromes that are characterized by extra copies of portions of 22q11, including these 16 genes. We also describe a strategy for selecting cell lines with defined chromosomal rearrangements. The method is based on reconstitution of a dominant selection marker after Cre-mediated recombination of LoxP sites. Therefore it should be widely applicable to many cell lines.

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We examined the MLL genomic translocation breakpoint in acute myeloid leukemia of infant twins. Southern blot analysis in both cases showed two identical MLL gene rearrangements indicating chromosomal translocation. The rearrangements were detectable in the second twin before signs of clinical disease and the intensity relative to the normal fragment indicated that the translocation was not constitutional. Fluorescence in situ hybridization with an MLL-specific probe and karyotype analyses suggested t(11;22)(q23;q11.2) disrupting MLL. Known 5′ sequence from MLL but unknown 3′ sequence from chromosome band 22q11.2 formed the breakpoint junction on the der(11) chromosome. We used panhandle variant PCR to clone the translocation breakpoint. By ligating a single-stranded oligonucleotide that was homologous to known 5′ MLL genomic sequence to the 5′ ends of BamHI-digested DNA through a bridging oligonucleotide, we formed the stem–loop template for panhandle variant PCR which yielded products of 3.9 kb. The MLL genomic breakpoint was in intron 7. The sequence of the partner DNA from band 22q11.2 was identical to the hCDCrel (human cell division cycle related) gene that maps to the region commonly deleted in DiGeorge and velocardiofacial syndromes. Both MLL and hCDCrel contained homologous CT, TTTGTG, and GAA sequences within a few base pairs of their respective breakpoints, which may have been important in uniting these two genes by translocation. Reverse transcriptase-PCR amplified an in-frame fusion of MLL exon 7 to hCDCrel exon 3, indicating that an MLL-hCDCrel chimeric mRNA had been transcribed. Panhandle variant PCR is a powerful strategy for cloning translocation breakpoints where the partner gene is undetermined. This application of the method identified a region of chromosome band 22q11.2 involved in both leukemia and a constitutional disorder.

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Mémoire numérisé par la Direction des bibliothèques de l'Université de Montréal.

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Mémoire numérisé par la Direction des bibliothèques de l'Université de Montréal.

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Background: Tetralogy of Fallot (TOF) is a congenital conotruncal heart defect commonly found in DiGeorge (DGS) and velocardiofacial (VCFS) syndromes. The deletion of chromosome 22q11 has also been demonstrated in sporadic or familial cases of TOF. The aim of the present study was to investigate the frequency of del22q11 in patients with non-syndromic TOF seen at a tertiary Pediatric Cardiology care center. Method: One hundred and twenty three non-syndromic TOF patients were selected and evaluated by history, physical examination and review of medical records. Venous blood was drawn for genomic DNA extraction after informed consent 22q11 microdeletion diagnosis was conducted through a standardized SNP genotyping assay and consecutive homozygosity mapping. Phenotype-genotype correlations regarding cardiac anatomy were conducted. Results: We evaluated 123 non-syndromic TOF patients for a 22q11 deletion. 105 (85.4%) patients presented pulmonary stenosis and 18 (14.6%) had pulmonary atresia. Eight patients (6.5%) were found to have a deletion. Of the deleted patients, three (37.5%) presented pulmonary atresia. We have verified a tendency towards a higher prevalence of pulmonary atresia when comparing TOF patients with and without 22q11 microdeletion. Conclusions: 22q11.2 deletion in non-syndromic TOF patients is present in approximately 6% of patients. We suggest a tendency towards a higher prevalence of pulmonary atresia in non-syndromic TOF patients with 22q11 microdeletion. Molecular genetic screening of non-syndromic TOF patient may be important for the correct care of these patients and a more specific genetic diagnostic and counseling. (C) 2007 Elsevier Ireland Ltd. All rights reserved.

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Congenital heart disease (CHD) is the most common birth defect and the leading cause of mortality in the first year of life. In fetuses with a heart defect, chromosomal abnormalities are very frequent. Besides aneuploidy, 22q11.2 deletion is one of the most recognizable chromosomal abnormalities causing CHD. The frequency of this abnormality varies in nonselected populations. This study aimed to investigate the incidence of the 22q11.2 deletion and other chromosomal alterations in a Brazilian sample of fetuses with structural cardiac anomalies detected by fetal echocardiography. In a prospective study, 68 fetuses with a heart defect were evaluated. Prenatal detection of cardiac abnormalities led to identification of aneuploidy or structural chromosomal anomaly in 35.3% of these cases. None of the fetuses with apparently normal karyotypes had a 22q11.2 deletion. The heart defects most frequently associated with chromosomal abnormalities were atrioventricular septal defect (AVSD), ventricular septal defect (VSD), and tetralogy of Fallot. Autosomal trisomies 18 and 21 were the most common chromosomal abnormalities. The study results support the strong association of chromosome alterations and cardiac malformation, especially in AVSD and VSD, for which a chromosome investigation is indicated. In fetuses with an isolated conotruncal cardiopathy, fluorescence in situ hybridization (FISH) to investigate a 22q11.2 deletion is not indicated.

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Objective. The objective of this study was to investigate the prevalence of tooth abnormalities and soft tissue changes in patients with velocardiofacial syndrome. Study design. Twenty-six patients with velocardiofacial syndrome were examined to investigate the presence of tooth abnormalities and soft tissue alterations. The occurrence of tooth agenesis and supernumerary teeth was compared to patients without morphofunctional alterations, matched for gender and age. Results. Of all patients, 76.92% exhibited at least one tooth abnormality, with predominance of hypoplastic alterations, especially represented by hypodevelopment of the lingual cusp of mandibular first premolars and enamel opacities. The occurrence of tooth agenesis and supernumerary teeth was similar in both study and control groups. Conclusion. the present results suggest an association between hypodevelopment of the lingual cusp of mandibular first premolars and enamel opacities, yet these findings still require corroboration. Future studies should further investigate these aspects in larger samples compared to control groups, as well as employing molecular genetics techniques.

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O Registo Nacional de Anomalias Congénitas (RENAC) recebe notificações da ocorrência de anomalias congénitas diagnosticadas até ao final do 1º mês de vida, algumas das quais são raras. Foi realizado um estudo observacional, transversal, com a finalidade de descrever a epidemiologia dos registos de anomalias congénitas que constituem uma síndrome genética rara, utilizando os dados do RENAC entre 2000-2013. Observou-se uma prevalência de 1,17 casos/10 000 nascimentos de indivíduos com síndrome genética rara com anomalias que afetam múltiplos sistemas. Estas patologias representam um pequeno grupo do universo das doenças raras. No total das síndromes estudadas (n=171), a maior frequência observou-se no grupo de síndromes que afetam predominantemente o aspeto da face (50,9%) e, neste grupo, destacam-se a Sequência de Pierre Robin (26,3%) e a Síndrome de Goldenhar (11,7%). No grupo de outras síndromes genéticas, a Síndrome de DiGeorge foi diagnosticada em 12,3% dos casos. Dada a inexistência de um registo nacional de doenças raras, os dados do RENAC podem contribuir para avaliar a prevalência de algumas destas doenças. Contudo para uma melhor vigilância de algumas doenças raras, o prazo de registo será alargado até ao ano de idade de modo a permitir que situações mais complexas possam ser identificadas e registadas.

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A retrospective study was made of 6 children, with nonsurgical-related acute myocardial infarction (AMI), between January 1987 and December 1994. The ratio for gender was 1 and mean age at AMI was 49 days, 4 cases being associated with congenital heart disease (Fallot's tetralogy, truncus arteriosus and DiGeorge syndrome, one case each, and anomalous origin of left coronary artery, 2 cases). Kawasaki disease and coronary embolisation from thrombosis of the renal vein occurred in the other 2 cases respectively. All developed congestive cardiac failure and cardiomegaly. In the ECG pathologic q waves with more than 35 msec occurred in all, and QT prolongation occurred in 3. Five children (83%) all with AMI in the anterior and lateral wall of the left ventricle died, death being related with cardiac mechanical failure and not with arrhythmias.

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Dissertation presented to obtain the Ph.D degree in Biology

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Anomalías conotruncales – Hibridación in situ Fluorescente La microdeleción cromosómica 22q11.2, es la más frecuente en humanos. Se estima una prevalencia de 1 cada 4000 recién nacidos, presentando una variabilidad clínica que abarca: Síndrome de DiGeorge, Velo-Cardio-Facial, anomalías cardíacas conotruncales aisladas, entre otras, hasta la descripción de pacientes con microdeleción subclínica. Actualmente todos estos pacientes son denominados como Síndromes de Microdeleción 22q. Hipótesis de trabajo: existe en nuestro medio un subdiagnóstico atribuible al desconocimiento de la gran variabilidad fenotípica, sospechándose sólo los casos clásicos. Objetivos: -Estimar la prevalencia relativa de microdeleción 22q11.2 en una muestra de pacientes asistidos en el Hospital de Niños de la Santísima Trinidad de Córdoba. -Correlacionar los datos clínicos con la citogenética clásica y molecular. -Diagnosticar las formas heredables para realizar asesoramiento familiar.

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FUNDAMENTO: Malformações extracardíacas podem estar presentes em pacientes com cardiopatia congênita (CC), trazendo maior risco de comorbidade e mortalidade. OBJETIVO: Verificar a frequência e os tipos de anormalidades abdominais detectadas em crianças com e sem CC através do ultrassom abdominal (USA), comparar os pacientes quanto a seus achados dismórficos/citogenéticos e realizar uma estimativa do custo-benefício da triagem pelo USA. MÉTODOS: Foi realizado um estudo transversal com controle. Os casos consistiram de pacientes com CC admitidos pela primeira vez em uma unidade de terapia intensiva pediátrica; os controles consistiram de crianças sem CC submetidas ao USA no hospital logo após cada caso. Todos os pacientes com CC foram submetidos ao USA, ao cariótipo de alta resolução e à hibridização in situ fluorescente (FISH) para microdeleção 22q11.2. RESULTADOS: USA identificou anormalidades clinicamente significativas em 12,2% dos casos e em 5,2% dos controles (p = 0,009), com um poder de significância de 76,6%. A maioria das malformações com significado clínico foi de anomalias renais (10,4% nos casos e 4,9% nos controles, p = 0,034). No Brasil, o custo de um exame de USA pelo Sistema Único de Saúde é de 21 dólares. Uma vez que anormalidades clinicamente significativas foram observadas em um a cada 8,2 pacientes com CC, o custo para identificar uma criança afetada foi de 176 dólares. CONCLUSÃO: Pacientes com CC apresentam uma frequência significativa de anomalias detectadas pelo USA, um método diagnóstico barato e não invasivo, com boa sensibilidade. O custo da triagem para esses defeitos é consideravelmente menor que o custo para tratar as complicações do diagnóstico tardio de malformações abdominais, como a doença renal.