Person: Sabater Molina, María
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Barth syndrome in adulthood: a clinical case.
2013-01, García Molina, Esperanza, Escudero, Fuensanta, Ruiz Espejo, Francisco, Sabater Molina, María, Ballesta Martínez, María Juliana, Guillén Navarro, Encarna, Ciencias Sociosanitarias
Polyamines in human breast milk for preterm and term infants
2013-01-03, Rodríguez Palmero, María, Rivero, María, Bosch, Vicente, Nadal, José María, Zamora, Salvador, Larqué, Elvira, Plaza Zamora, Francisco Javier, Sabater Molina, María, Ciencias Sociosanitarias
Maternal milk is the first source of exogenous polyamines for the newborn. Polyamines modulate gut maturation in neonates, but no studies are available on polyamine concentration in human milk of preterm babies, even though they could be important for their immature gut. The present study aimed to determine polyamine concentration in human breast milk of mothers with preterm or term infants during the first month of lactation. Human milk samples were obtained during the first month of lactation from twenty-seven mothers with preterm babies and twelve mothers with babies born at term. The polyamine concentration in human milk was quantified by HPLC. During the first month of lactation, the total polyamine concentration was significantly higher in preterm milk than in term milk samples (7590 (SD 4990) v. 4660 (SD 4830) nmol/l, respectively (P ¼ 0·034)), as well as individual polyamine concentrations. Polyamine concentration in mature milk for preterm babies was significantly higher than that in mature milk for babies at term, and a similar trend was observed in colostrum and transition human milk. The spermidine/spermine ratio was higher in transition milk in preterm v. term samples, while in mature milk, the ratio was significantly lower in preterm than in term babies. In conclusion, the polyamine concentration was significantly higher in human milk for preterm than for term infants. This and the different spermidine/spermine ratios could influence the gut development of premature babies.
A Novel Founder Mutation in MYBPC3: Phenotypic Comparison With the Most Prevalent MYBPC3 Mutation in Spain.
2016-10-28, Saura, Daniel, García Molina Sáez, Esperanza, González Carrillo, Josefa, Polo, Luis, Pérez Sánchez, Inmaculada, Olmo, María Carmen, Oliva Sandoval, María José, Barriales Villa, Roberto, Carbonell, Pablo, Pascual Figal, Domingo A., Gimeno, Juan Ramón, Sabater Molina, María, Ciencias Sociosanitarias
Introducción y objetivos: Las mutaciones en MYBPC3 son causa de miocardiopatía hipertrófica (MCH). A pesar de que la mayorı´a de ellas producen una proteína truncada, la gravedad del fenotipo es diversa. Se describe el fenotipo clínico de una nueva mutación en MYBPC3, p.Pro108Alafs*9, presente en 13 familias del sur de España, y se compara con la mutación de MYBPC3 con mayor prevalencia en dicha región (c.2308 + 1 G > A). Métodos: Se estudió a 107 familiares de 13 casos índice que tenían diagnóstico de MCH y portaban la mutación p.Pro108Alafs*9. Se realizó un anélisis del árbol genealógico, junto con una evaluación clínica y determinación del genotipo. Resultados: Se identificó en total a 54 portadores de la mutación p.Pro108Alafs*9, de los que 39 tenían MCH. Hubo 5 casos de muerte súbita en las 13 familias. La penetrancia de la enfermedad aumentaba a medida que se incrementaba la edad, y los pacientes con MCH fueron con más frecuencia varones, y estos contrajeron la enfermedad más precozmente que las mujeres. El fenotipo fue similar en la p.Pro108Alafs*9 y la c.2308 + 1 G > A, pero se observaron diferencias en varios factores de riesgo y en la supervivencia. Hubo tendencia a mayor masa ventricular izquierda en la p.Pro108Alafs*9 que en la c.2308 + 1G > A. La resonancia magnética cardiaca reveló una extensión y un patrón de fibrosis similares en ambas. Conclusiones: La mutación p.Pro108Alafs*9 se asoció a MCH, alta penetrancia y aparición de la enfermedad a mediana edad.
Mutations in the NOTCH pathway regulator MIB1 cause left ventricular noncompaction cardiomyopathy
2013-01-13, Luxán, Guillermo, Casanova, Jesús Carlos, Martínez Poveda, Beatriz, Prados, Belén, D'Amato, Gaetano, MacGrogan, Donal, González Rajal, Álvaro, Dobarro, David, Torroja, Carlos, Martínez, Fernando, Izquierdo García, José Luis, Fernández Friera, Leticia, Kong, Young-Y, Pizarro, Gonzalo, Ibañez, Borja, Medrano, Constancio, García Pavía, Pablo, Gimeno, Juan R., Monserrat, Lorenzo, Jiménez Borreguero, Luis J., Pompa, José Luis de la, Sabater Molina, María, Ciencias Sociosanitarias
Left ventricular noncompaction (LVNC) causes prominent ventricular trabeculations and reduces cardiac systolic function. The clinical presentation of LVNC ranges from asymptomatic to heart failure. We show that germline mutations in human MIB1 (mindbomb homolog 1), which encodes an E3 ubiquitin ligase that promotes endocytosis of the NOTCH ligands DELTA and JAGGED, cause LVNC in autosomal-dominant pedigrees, with affected individuals showing reduced NOTCH1 activity and reduced expression of target genes. Functional studies in cells and zebrafish embryos and in silico modeling indicate that MIB1 functions as a dimer, which is disrupted by the human mutations. Targeted inactivation of Mib1 in mouse myocardium causes LVNC, a phenotype mimicked by inactivation of myocardial Jagged1 or endocardial Notch1. Myocardial Mib1 mutants show reduced ventricular Notch1 activity, expansion of compact myocardium to proliferative, immature trabeculae and abnormal expression of cardiac development and disease genes. These results implicate NOTCH signaling in LVNC and indicate that MIB1 mutations arrest chamber myocardium development, preventing trabecular maturation and compaction.
Concurrent resistance and cardiorespiratory training in patients with hypertrophic cardiomyopathy: a pilot study
2024-04-17, Bayonas-Ruiz, Adrián, Muñoz-Franco, Francisca M., Sabater Molina, María, Martínez González-Moro, Ignacio, Gimeno Blanes, Juan Ramón, Bonacasa Fernández, Bárbara, Fisiología
Background: Exercise training in patients with HCMhas evidenced benefits on functional capacity, cardiac function, and a reversion of adverse cardiac remodeling. The objective of this study was to assess the effect of a concurrent resistance and cardiorespiratory training program on functional capacity, biochemical parameters, and echocardiographic variables in a pilot group. Methods: Two HCMpatients were evaluated before and after 12 weeks of individualized concurrent training with two sessions/week. Pre- and post-training data were compared for each patient. Evaluations included a cardiopulmonary exercise test (CPET), body composition, echocardiography, electrocardiography, and blood analysis. Results: Training promoted an increase in functional capacity (+4 mL·kg−1·min−1), ventilatory thresholds, and other CPET-derived variables associated with a better prognosis and longterm survival. Muscular mass was augmented (0.8 and 1.2 kg), along with a mean increase of 62% in upper and lower body strength. Echocardiographic features demonstrated the maintenance of cardiac function with signs of positive left ventricular remodeling and an improvement in diastolic function. Blood analyses, including cardiac troponins and NT-proBNP, displayed uneven changes in each patient, but the values fell into normal ranges in both cases. Conclusions: The available data suggest a positive effect of concurrent resistance and cardiorespiratory training on patients’ functional capacity and cardiac function thatmay improve their functional class, quality of life, and long-termprognosis. The replication of this protocol in a larger cohort of patients is warranted to confirm these preliminary results.
Formin Homology 2 Domain Containing 3 (FHOD3) Is a Genetic Basis for Hypertrophic Cardiomyopathy
2018-11-13, Ochoa, Juan Pablo, García Pinilla, José Manuel, Mogensen, Jens, Restrepo Córdoba, Alejandra, Palomino Doza, Julian, Villacorta, Eduardo, Martínez Moreno, Marina, Ramos Maqueda, Javier, Zorio, Esther, Peña Peña, María L., García Granja, Pablo E., Rodríguez Palomares, José F., Cárdenas Reyes, Ivonne J., Torre Carpente, María M. de la, Bautista Pavés, Alicia, Akhtar, Mohammed M., Cicerchia, Marcos N., Mogollón Jiménez, María Victoria, Salazar Mendiguchía, Joel, Mesa Latorre, José M., Arnáez, Blanca, Olavarri Miguel, Iván, Fuentes Cañamero, María E., Lamounier, Arsonval, Pérez Ruiz, José María, Climent Payá, Vicente, Pérez Sánchez, Inmaculada, Trujillo Quintero, Juan P., Lopes, Luis R., Repáraz Andrade, Alfredo, Marín Iglesias, Rosario, Rodríguez Vilela, Alejandro, Sandín Fuentes, María, Garrote, José A., Cortel Fuster, Alejandro, López Garrido, Miguel, Fontalba Romero, Ana, Ripoll Vera, Tomás, Llano Rivas, Isabel, Fernandez Fernandez, Xusto, Isidoro García, María, García Giustiniani, Diego, Barriales Villa, Roberto, Ortiz Genga, Martín, García Pavía, Pablo, Elliott, Perry M., Gimeno, Juan R., Monserrat, Lorenzo, Bilbao Quesada, Raquel, Sabater Molina, María, Ciencias Sociosanitarias
BACKGROUND The genetic cause of hypertrophic cardiomyopathy remains unexplained in a substantial proportion of cases. Formin homology 2 domain containing 3 (FHOD3) may have a role in the pathogenesis of cardiac hypertrophy but has not been implicated in hypertrophic cardiomyopathy. OBJECTIVES This study sought to investigate the relation between FHOD3 mutations and the development of hypertrophic cardiomyopathy. METHODS FHOD3 was sequenced by massive parallel sequencing in 3,189 hypertrophic cardiomyopathy unrelated probands and 2,777 patients with no evidence of cardiomyopathy (disease control subjects). The authors evaluated protein-altering candidate variants in FHOD3 for cosegregation, clinical characteristics, and outcomes. RESULTS The authors identified 94 candidate variants in 132 probands. The variants’ frequencies were significantly higher in patients with hypertrophic cardiomyopathy (74 of 3,189 [2.32%]) than in disease control subjects (18 of 2,777 [0.65%]; p < 0.001) or in the gnomAD database (1,049 of 138,606 [0.76%]; p < 0.001). FHOD3 mutations cosegregated with hypertrophic cardiomyopathy in 17 families, with a combined logarithm of the odds score of 7.92, indicative of very strong segregation. One-half of the disease-causing variants were clustered in a small conserved coiled-coil domain (amino acids 622 to 655); odds ratio for hypertrophic cardiomyopathy was 21.8 versus disease control subjects (95% confidence interval: 1.3 to 37.9; p < 0.001) and 14.1 against gnomAD (95% confidence interval: 6.9 to 28.7; p < 0.001). Hypertrophic cardiomyopathy patients carrying (likely) pathogenic mutations in FHOD3 (n ¼ 70) were diagnosed after age 30 years (mean 46.1 18.7 years), and two-thirds (66%) were males. Of the patients, 82% had asymmetric septal hypertrophy (mean 18.8 5 mm); left ventricular ejection fraction <50% was present in 14% and hypertrabeculation in 16%. Events were rare before age 30 years, with an annual cardiovascular death incidence of 1% during follow-up. CONCLUSIONS FHOD3 is a novel disease gene in hypertrophic cardiomyopathy, accounting for approximately 1% to 2% of cases. The phenotype and the rate of cardiovascular events are similar to those reported in unselected cohorts. The FHOD3 gene should be routinely included in hypertrophic cardiomyopathy genetic testing panels.
Hypertrophic cardiomyopathy or storage cardiomyopathy? Role of genetics to predict outcome
2011-06-25, Oliva Sandoval, María José, Muñoz Esparza, Carmen, García Molina, Esperanza, Sabater Molina, María, Ciencias Sociosanitarias
Biological significance of dietary polyamines
2006-09-22, Larqué, Elvira, Zamora, Salvador, Sabater Molina, María, Ciencias Sociosanitarias
Polyamines are classically known by their names of putrescine, spermine, and spermidine. They are synthesized endogenously from ornithine and are interconvertible. In addition, an exogenous supply of polyamines is provided by dietary intake and by intestinal absorption from the products of bacterial metabolism. Polyamine uptake occurs almost entirely in the gut, and afterward the various forms are metabolized in different tissues under the strict regulation of ornithine decarboxylase, which is the first enzyme involved in their synthesis. Polyamines are eliminated from the organism by means of oxidation reactions, appearing in urine in all their metabolic forms. Polyamines play an important role in regulating cell growth and proliferation, the stabilization of negative charges of DNA, RNA transcription, protein synthesis, apoptosis, and the regulation of the immune response. They are components of breast milk and might be important in neonatal gut maturation, for which reason the possible supplementation of infant formulas with these compounds is under study.
Mutation in JPH2 cause dilated cardiomyopathy
2016-11, Navarro, Marina, GarcíaMolina Sáez, Esperanza, Garrido, Iris, Pascual Figal, Domingo A., González Carrillo, Josefa, Gimeno Blanes, Juan Ramón, Sabater Molina, María, Ciencias Sociosanitarias
Insights into genotype-phenotype correlation in hypertrophic cardiomyopathy. Findings from 18 Spanish families with a single mutation in MYBPC3
2010-11-23, Oliva Sandoval, María José, Monserrat, Lorenzo, Hermida Prieto, Manuel, García Molina, Esperanza, Ortiz, Martín, Rodríguez García, María Isabel, Núñez, Lucía, Gimeno, Juan Ramón, Castro Beiras, Alfonso, Valdés, Mariano, Ruiz Espejo, Francisco, Sabater Molina, María, Ciencias Sociosanitarias
Background: Mutations in the cardiac myosin-binding protein C (MYBPC3) gene are frequently found as a cause of hypertrophic cardiomyopathy (HCM). However, only a few studies have analysed genotype-phenotype correlations in small series of patients. The present study sought to determine the clinical characteristics, penetrance and prognosis of HCM with an identical mutation in MYBPC3. Methods: 154 non-related patients with HCM (aged 55±16 years, 100 (64.9%) males) were studied. 18 (11.7%) were found to have an identical mutation in the MYBPC3 gene (IVS23+1G→A). Pedigree analysis, including both clinical evaluation and genotyping, was performed. Results: 152 individuals (mean age 37±18 years, 53.3% males) from 18 families were evaluated. 65 carriers of the IVS23+1G→A mutation were identified, 61.5% of whom met HCM diagnostic criteria. Penetrance of the disease increased with age, with 50% affected at 46 years of age. Males tended to develop the disease earlier than females. 7 (15.6%) had systolic dysfunction. Compared with the rest of the HCM cohort, probands with the mutation had more hypertrophy and were younger at diagnosis. There was a trend towards a reduced survival free from sudden death (SD) (HR 1.71; 95% CI 0.98 to 2.98, p=0.059). There were 17 SD cases in 12 families with the mutation. Conclusions: The MYBPC3 IVS23+1G→A mutation is associated with middle-age onset disease and poor outcome, with a significant proportion of patients developing systolic impairment and a high SD risk profile
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