Neuro-Oncología
Publicaciones destacadas
Nephrotic syndrome associated with severe hypertriglyceridemia in a pediatric patient: Questions
Corredor-Andrés B, Muñoz-Calvo MT, Calero O, Aparicio C, Argente J, Calero M. Nephrotic syndrome associated with severe hypertriglyceridemia in a pediatric patient: Questions. Pediatr Nephrol. 2018 33(11):2073-2074. doi.org/10.1007/s00467-018-3894-6.
DOINephrotic syndrome associated with severe hypertriglyceridemia in a pediatric patient: Answers
Corredor-Andrés B, Muñoz-Calvo MT, Calero O, Aparicio C, Argente J, Calero M. Nephrotic syndrome associated with severe hypertriglyceridemia in a pediatric patient: Answers. Pediatr Nephrol. 2018 33(11):2075-2078. doi: 10.1007/s00467-018-3919-1.
DOIArgyrophilic Grain Pathology in Frontotemporal Lobar Degeneration: Demographic, Clinical, Neuropathological, and Genetic Features
Gil MJ, Manzano MS, Cuadrado ML, Fernández C, Góméz E, Matesanz C, Calero M, Rábano A. Argyrophilic Grain Pathology in Frontotemporal Lobar Degeneration: Demographic, Clinical, Neuropathological, and Genetic Features. J Alzheimers Dis. 2018 63(3):1109-1117. doi: 10.3233/JAD-171115.
DOIDecreased generation of C-terminal fragments of ApoER2 and increased reelin expression in Alzheimer's disease
Mata-Balaguer T, Cuchillo-Ibañez I, Calero M, Ferrer I, Sáez-Valero J. Decreased generation of C-terminal fragments of ApoER2 and increased reelin expression in Alzheimer's disease. FASEB J. 2018 9:fj201700736RR. doi: 10.1096/fj.201700736RR.
DOIDetecting Circulating MicroRNAs as Biomarkers in Alzheimer's Disease
Kenny A, Jimenez-Mateos EM, Calero M, Medina M, Engel T. Detecting Circulating MicroRNAs as Biomarkers in Alzheimer's Disease. Methods Mol Biol. 2018 1779:471-484. doi: 10.1007/978-1-4939-7816-8_29.
DOIA fast and cost-effective method for apolipoprotein E isotyping as an alternative to APOE genotyping for patient screening and stratification
Calero O, García-Albert L, Rodríguez-Martín A, Veiga S, Calero M. A fast and cost-effective method for apolipoprotein E isotyping as an alternative to APOE genotyping for patient screening and stratification. Sci Rep. 2018 8(1):5969. doi: 10.1038/s41598-018-24320-3.
DOICerebrospinal fluid neurofilament light levels in neurodegenerative dementia: Evaluation of diagnostic accuracy in the differential diagnosis of prion diseases
Zerr I, Schmitz M, Karch A, Villar-Piqué A, Kanata E, Golanska E, Díaz-Lucena D, Karsanidou A, Hermann P, Knipper T, Goebel S, Varges D, Sklaviadis T, Sikorska B, Liberski PP, Santana I, Ferrer I, Zetterberg H, Blennow K, Calero O, Calero M, Ladogana A, Sánchez-Valle R, Baldeiras I, Llorens F. Cerebrospinal fluid neurofilament light levels in neurodegenerative dementia: Evaluation of diagnostic accuracy in the differential diagnosis of prion diseases. Alzheimers Dement. 2018 14:751-763. doi: 10.1016/j.jalz.2017.12.008.
DOIRisk of transmission of sporadic Creutzfeldt-Jakob disease by surgical procedures: systematic reviews and quality of evidence
López FJG, Ruiz-Tovar M, Almazán-Isla J, Alcalde-Cabero E, Calero M, de Pedro-Cuesta J. Risk of transmission of sporadic Creutzfeldt-Jakob disease by surgical procedures: systematic reviews and quality of evidence. Euro Surveill. 2017 22(43). doi: 10.2807/1560-7917.ES.2017.22.43.
DOIMicroRNA Profile in Patients with Alzheimer's Disease: Analysis of miR-9-5p and miR-598 in Raw and Exosome Enriched Cerebrospinal Fluid Samples
Riancho J, Vázquez-Higuera JL, Pozueta A, Lage C, Kazimierczak M, Bravo M, Calero M, Gonalezález A, Rodríguez E, Lleó A, Sánchez-Juan P. MicroRNA Profile in Patients with Alzheimer's Disease: Analysis of miR-9-5p and miR-598 in Raw and Exosome Enriched Cerebrospinal Fluid Samples. J Alzheimers Dis. 2017 57(2):483-491. doi: 10.3233/JAD-161179.
DOIEarly diagnosis of mild cognitive impairment and Alzheimer's disease based on salivary lactoferrin
Carro E, Bartolomé F, Bermejo-Pareja F, Villarejo-Galende A, Molina JA, Ortiz P, Calero M, Rabano A, Cantero JL, Orive G. Early diagnosis of mild cognitive impairment and Alzheimer's disease based on salivary lactoferrin. Alzheimers Dement (Amst). 2017 8:131-138. doi: 10.1016/j.dadm.2017.04.002. eCollection 2017.
Drivers: A Biologically Contextualized, Cross-Inferential View of the Epidemiology of Neurodegenerative Disorders
de Pedro-Cuesta J, Martínez-Martín P, Rábano A, Alcalde-Cabero E, José García López F, Almazán-Isla J, Ruiz-Tovar M, Medrano MJ, Avellanal F, Calero O, Calero M. Drivers: A Biologically Contextualized, Cross-Inferential View of the Epidemiology of Neurodegenerative Disorders. J Alzheimers Dis. 2016 51(4):1003-1022. doi: 10.3233/JAD-150884.
DOIDevelopment of a novel multiplex beads-based assay for autoantibody detection for colorectal cancer diagnosis
Villar-Vázquez R, Padilla G, Fernández-Aceñero MJ, Suárez A, Fuente E, Pastor C, Calero M, Barderas R, Casal JI. Development of a novel multiplex beads-based assay for autoantibody detection for colorectal cancer diagnosis. Proteomics. 2016 16(8):1280-90. doi: 10.1002/pmic.201500413.
DOIEtiologic Framework for the Study of Neurodegenerative Disorders as Well as Vascular and Metabolic Comorbidities on the Grounds of Shared Epidemiologic and Biologic Features
de Pedro-Cuesta J, Martínez-Martín P, Rábano A, Ruiz-Tovar M, Alcalde-Cabero E, Calero M. Etiologic Framework for the Study of Neurodegenerative Disorders as Well as Vascular and Metabolic Comorbidities on the Grounds of Shared Epidemiologic and Biologic Features. Front Aging Neurosci. 2016 8:138. doi: 10.3389/fnagi.2016.00138. eCollection 2016.
DOIExome Aggregation Consortium (ExAC), Daly MJ, MacArthur DG. Quantifying prion disease penetrance using large population control cohorts
Minikel EV, Vallabh SM, Lek M, Estrada K, Samocha KE, Sathirapongsasuti JF, McLean CY, Tung JY, Yu LP, Gambetti P, Blevins J, Zhang S, Cohen Y, Chen W, Yamada M, Hamaguchi T, Sanjo N, Mizusawa H, Nakamura Y, Kitamoto T, Collins SJ, Boyd A, Will RG, Knight R, Ponto C, Zerr I, Kraus TF, Eigenbrod S, Giese A, Calero M, de Pedro-Cuesta J, Haïk S, Laplanche JL, Bouaziz-Amar E, Brandel JP, Capellari S, Parchi P, Poleggi A, Ladogana A, O'Donnell-Luria AH, Karczewski KJ, Marshall JL, Boehnke M, Laakso M, Mohlke KL, Kähler A, Chambert K, McCarroll S, Sullivan PF, Hultman CM, Purcell SM, Sklar P, van der Lee SJ, Rozemuller A, Jansen C, Hofman A, Kraaij R, van Rooij JG, Ikram MA, Uitterlinden AG, van Duijn CM; Exome Aggregation Consortium (ExAC), Daly MJ, MacArthur DG. Quantifying prion disease penetrance using large population control cohorts. Sci Transl Med. 2016 8(322):322ra9. doi: 10.1126/scitranslmed.aad5169.
DOICombined Alzheimer's disease and cerebrovascular staging explains advanced dementia cognition
Zea-Sevilla MA, Fernández-Blázquez MA, Calero M, Bermejo-Velasco P, Rábano A. Combined Alzheimer's disease and cerebrovascular staging explains advanced dementia cognition. Alzheimers Dement. 2015 11(11):1358-66. doi: 10.1016/j.jalz.2015.01.004.
DOIMAPT H1 Haplotype is Associated with Late-Onset Alzheimer's Disease Risk in APOEɛ4 Noncarriers: Results from the Dementia Genetics Spanish Consortium
59. Pastor P, Moreno F, Clarimón J, Ruiz A, Combarros O, Calero M, de Munain AL, Bullido MJ, de Pancorbo MM, Carro E, Antonell A, Coto E, Ortega-Cubero S, Hernandez I, Tárraga L, Boada M, Lleó A, Dols-Icardo O, Kulisevsky J, Vázquez-Higuera JL, Infante J, Rábano A, Fernández-Blázquez MÁ, Valentí M, Indakoetxea B, Barandiarán M, Gorostidi A, Frank-García A, Sastre I, Lorenzo E, Pastor MA, Elcoroaristizabal X, Lennarz M, Maier W, Rámirez A, Serrano-Ríos M, Lee SE, Sánchez-Juan P. MAPT H1 Haplotype is Associated with Late-Onset Alzheimer's Disease Risk in APOEɛ4 Noncarriers: Results from the Dementia Genetics Spanish Consortium. J Alzheimers Dis. 2015 49(2):343-52. doi: 10.3233/JAD-150555.
DOIAdditional mechanisms conferring genetic susceptibility to Alzheimer's disease
Calero M, Gómez-Ramos A, Calero O, Soriano E, Avila J, Medina M. Additional mechanisms conferring genetic susceptibility to Alzheimer's disease. Front Cell Neurosci. 2015 9:138. doi: 10.3389/fncel.2015.00138.
DOIA genome wide association study links glutamate receptor pathway to sporadic Creutzfeldt-Jakob disease risk
Sanchez-Juan P, Bishop MT, Kovacs GG, Calero M, Aulchenko YS, Ladogana A, Boyd A, Lewis V, Ponto C, Calero O, Poleggi A, Carracedo Á, van der Lee SJ, Ströbel T, Rivadeneira F, Hofman A, Haïk S, Combarros O, Berciano J, Uitterlinden AG, Collins SJ, Budka H, Brandel JP, Laplanche JL, Pocchiari M, Zerr I, Knight RS, Will RG, van Duijn CM. A genome wide association study links glutamate receptor pathway to sporadic Creutzfeldt-Jakob disease risk. PLoS One. 2015 10(4):e0123654. doi: 10.1371/journal.pone.0123654.
DOIAmyloid precursor protein metabolism and inflammation markers in preclinical Alzheimer disease
Alcolea D, Martínez-Lage P, Sánchez-Juan P, Olazarán J, Antúnez C, Izagirre A, Ecay-Torres M, Estanga A, Clerigué M, Guisasola MC, Sánchez Ruiz D, Marín Muñoz J, Calero M, Blesa R, Clarimón J, Carmona-Iragui M, Morenas-Rodríguez E, Rodríguez-Rodríguez E, Vázquez Higuera JL, Fortea J, Lleó A. Amyloid precursor protein metabolism and inflammation markers in preclinical Alzheimer disease. Neurology. 2015 85(7):626-33. doi: 10.1212/WNL.0000000000001859.
DOIValidation of 14-3-3 Protein as a Marker in Sporadic Creutzfeldt-Jakob Disease Diagnostic
Schmitz M, Ebert E, Stoeck K, Karch A, Collins S, Calero M, Sklaviadis T, Laplanche JL, Golanska E, Baldeiras I, Satoh K, Sanchez-Valle R, Ladogana A, Skinningsrud A, Hammarin AL, Mitrova E, Llorens F, Kim YS, Green A, Zerr I. Validation of 14-3-3 Protein as a Marker in Sporadic Creutzfeldt-Jakob Disease Diagnostic. Mol Neurobiol. 2015
Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) associated with a novel C82R mutation in the NOTCH3 gene
Zea-Sevilla MA, Bermejo-Velasco P, Serrano-Heranz R, Calero M. Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) associated with a novel C82R mutation in the NOTCH3 gene. J Alzheimers Dis. 2015 43(2):363-7. doi: 10.3233/JAD-141218.
DOIA phase II trial of tideglusib in Alzheimer's disease
Lovestone S, Boada M, Dubois B, Hüll M, Rinne JO, Huppertz HJ, Calero M, Andrés MV, Gómez-Carrillo B, León T, del Ser T; ARGO investigators. A phase II trial of tideglusib in Alzheimer's disease. J Alzheimers Dis. 2015 45(1):75-88. doi: 10.3233/JAD-141959
DOIA blood-based, 7-metabolite signature for the early diagnosis of Alzheimer's disease
Olazarán J, Gil-de-Gómez L, Rodríguez-Martín A, Valentí-Soler M, Frades-Payo B, Marín-Muñoz J, Antúnez C, Frank-García A, Acedo-Jiménez C, Morlán-Gracia L, Petidier-Torregrossa R, Guisasola MC, Bermejo-Pareja F, Sánchez-Ferro Á, Pérez-Martínez DA, Manzano-Palomo S, Farquhar R, Rábano A, Calero M. A blood-based, 7-metabolite signature for the early diagnosis of Alzheimer's disease. J Alzheimers Dis. 2015 45(4):1157-73. doi: 10.3233/JAD-142925.
DOIComparative Incidence of Conformational, Neurodegenerative Disorders
de Pedro-Cuesta J, Rábano A, Martínez-Martín P, Ruiz-Tovar M, Alcalde-Cabero E, Almazán-Isla J, Avellanal F, Calero M. Comparative Incidence of Conformational, Neurodegenerative Disorders. PLoS One. 2015 10(9):e0137342. doi: 10.1371/journal.pone.0137342. eCollection 2015. Erratum in: PLoS One. 2015;10(10):e0140304.
DOIShoc2/Sur8 protein regulates neurite outgrowth
Olazarán J, Valentí M, Frades B, Zea-Sevilla MA, Ávila-Villanueva M, Fernández-Blázquez MÁ, Calero M, Dobato JL, Hernández-Tamames JA, León-Salas B, Agüera-Ortiz L, López-Álvarez J, Larrañaga P, Bielza C, Álvarez-Linera J, Martínez-Martín P. The Vallecas Project: A Cohort to Identify Early Markers and Mechanisms of Alzheimer's Disease. Front Aging Neurosci. 2015 7:181. doi: 10.3389/fnagi.2015.00181. eCollection 2015.
DOIThe Vallecas Project: A Cohort to Identify Early Markers and Mechanisms of Alzheimer's Disease
Olazarán J, Valentí M, Frades B, Zea-Sevilla MA, Ávila-Villanueva M, Fernández-Blázquez MÁ, Calero M, Dobato JL, Hernández-Tamames JA, León-Salas B, Agüera-Ortiz L, López-Álvarez J, Larrañaga P, Bielza C, Álvarez-Linera J, Martínez-Martín P. The Vallecas Project: A Cohort to Identify Early Markers and Mechanisms of Alzheimer's Disease. Front Aging Neurosci. 2015 7:181. doi: 10.3389/fnagi.2015.00181. eCollection 2015
DOIApoE gene and exceptional longevity: Insights from three independent cohorts
Garatachea N, Emanuele E, Calero M, Fuku N, Arai Y, Abe Y, Murakami H, Miyachi M, Yvert T, Verde Z, Zea MA, Venturini L, Santiago C, Santos-Lozano A, Rodríguez-Romo G, Ricevuti G, Hirose N, Rábano A, Lucia A. ApoE gene and exceptional longevity: Insights from three independent cohorts. Exp Gerontol. 2014 53:16-23. doi: 10.1016/j.exger.2014.02.004.
DOIArgyrophilic grain pathology as a natural model of tau propagation
Rábano A, Rodal I, Cuadros R, Calero M, Hernández F, Ávila J. Argyrophilic grain pathology as a natural model of tau propagation. J Alzheimers Dis. 2014 40 Suppl 1:S123-33. doi: 10.3233/JAD-132288.
DOITowards an age-dependent transmission model of acquired and sporadic Creutzfeldt-Jakob disease
de Pedro-Cuesta J, Mahillo-Fernandez I, Calero M, Rábano A, Cruz M, Siden Å, Martínez-Martín P, Laursen H, Ruiz-Tovar M, Mølbak K; EUROSURGYCJD Research Group. Towards an age-dependent transmission model of acquired and sporadic Creutzfeldt-Jakob disease. PLoS One. 2014 9(10):e109412. doi: 10.1371/journal.pone.0109412. eCollection 2014.
DOIInformación adicional
El trabajo de nuestra Unidad se centra en el estudio del comportamiento de los tumores cerebrales, en concreto los gliomas de grado 4, los glioblastomas (GBM), que son tumores muy agresivos y con un índice de supervivencia de unos 12-15 meses. Entre las principales barreras en el tratamiento de estos tumores están su elevada heterogeneidad y su alto nivel de quimioresistencia a los agentes citotóxicos convencionales A pesar de que la cirugía elimine la masa tumoral principal y el paciente sea tratado con radioterapia local y quimioterapia sistémica, los GBM siempre recidivan a partir de las células tumorales que quedan en el cerebro tras la cirugía, siendo responsables de la muerte del paciente. En el laboratorio seguimos un abordaje traslacional para caracterizar la distribución de las células tumorales tanto en el centro del tumor como en las zonas periféricas, así como su interacción con las células del microambiente cerebral, que también participan en la agresividad de estos tumores.
La Unidad colabora estrechamente con expertos clínicos del Hospital 12 de Octubre, lo que nos permite participar en estudios moleculares y celulares con muestras de pacientes (ver como ejemplo la figura de abajo), así como establecer cultivos primarios y alo- y xeno-injertos en modelos murinos. Estos modelos son utilizados en diferentes proyectos de investigación en colaboración con empresas farmacéuticas y con otros equipos de investigación multidisciplinares (matemáticos, ingenieros, bioinformáticos, químicos). Nuestro objetivo final es mejorar las terapias existentes, o bien diseñar estrategias alternativas.
Link a la página web del laboratorio: http://www.gliomalab.com
Redes:
@gliomalab
https://www.linkedin.com/in/pilar-s%C3%A1nchez-g%C3%B3mez-7b571826