{"id":973,"date":"2019-05-23T05:13:17","date_gmt":"2019-05-23T05:13:17","guid":{"rendered":"https:\/\/idibell.cat\/?page_id=973"},"modified":"2023-03-09T17:59:38","modified_gmt":"2023-03-09T16:59:38","slug":"citometria-de-flujo","status":"publish","type":"page","link":"https:\/\/idibell.cat\/es\/servicios\/servicios-cientificotecnicos\/citometria-de-flujo\/","title":{"rendered":"Citometr\u00eda de flujo"},"content":{"rendered":"\n
Servicios:<\/p>\n
El objetivo de la Unidad de Citometr\u00eda es prepararse y centrarse en las aplicaciones de inter\u00e9s de nuestros usuarios. Les aplicaciones m\u00e1s comunes que se ejecutan habitualmente son:<\/p>\n
Clasificaci\u00f3n celular:<\/strong><\/p>\n An\u00e1lisis:<\/strong><\/p>\n La unidad est\u00e1 equipada con 3 cit\u00f3metros de flujo de la compa\u00f1\u00eda Beckman Coulter:<\/p>\n Bedford-Guaus S, Kim S, Mulero L, Vaquero JM<\/strong>, Morera C, Adan-Milan\u00e8s R, Veiga A, Raya A. (2016) Molecular markers of putative spermatogonial stem cells in the domestic cat. Reprod Domest Anim Nov6<\/strong><\/p>\n Pulecio J, Alejo-Valle O, Capellera-Garcia S, Vitaloni M, Rio P, Mej\u00eda-Ram\u00edrez E, Caserta I, Bueren JA, Flygare J, Raya A. (2016) Direct Conversion of Fibroblasts to Megakaryocyte Progenitors. Cell Rep 17(3):671-683.<\/strong><\/p>\n Tiscornia G, Lorenzo Vivas E, Matalonga L, Berniakovich I, Barrag\u00e1n Monasterio M, Eguiz\u00e1bal Argaiz C, Gort L, Gonz\u00e1lez F, Mellet CO, Garc\u00eda Fern\u00e1ndez JM, Ribes A, Veiga A, Izpis\u00faa Belmonte JC. (2013) Neuronopathic Gaucher’s Disease: induced pluripotent stem cells for disease modelling and testing chaperone activity of small compounds. Hum Mol Genet 22 (4): 633-45. Epub 2012 Oct 31.<\/strong><\/p>\n Sander V, Su\u00f1e G, Jopling C, Morera C, Izpisua Belmonte JC. (2013) Isolation and in vitro culture of primary cardiomyocytes from adult zebrafish hearts. Nat Protoc 8(4): 800-9.<\/strong><\/p>\n Marti M, Montserrat N, Pardo C, Mulero L, Miquel-Serra L, Rodrigues AM, Andr\u00e9s Vaquero J<\/strong>, Kuebler B, Morera C, Barrero MJ, Izpisua Belmonte JC. (2013) Mcad-mediated intercellular interactions activate satellite cell division. J Cell Sci 126 (Pt 22):5116-31. Epub 2013 Sep 17.<\/strong><\/p>\n Barrero MJ, Sese B, Mart\u00ed M, Izpis\u00faa Belmonte JC. (2013) Macro histone variants are critical for the differentiation of human pluripotent cells. J Biol Chem 288(22):16110-6. Epub 2013 Apr 17.<\/strong><\/p>\n Montserrat N, de O\u00f1ate L, Garreta E, et al. Generation of feeder-free pig induced pluripotent stem cells without Pou5f1. Cell Transplant. 2012;21(5):815-825<\/strong><\/p>\n Montserrat N, Ram\u00edrez-Bajo MJ, Xia Y, et al. Generation of induced pluripotent stem cells from human renal proximal tubular cells with only two transcription factors, OCT4 and SOX2. J Biol Chem. 2012;287(29):24131-24138.<\/strong><\/p>\n Giorgetti A, Marchetto MC, Li M, et al. Cord blood-derived neuronal cells by ectopic expression of Sox2 and c-Myc. Proc Natl Acad Sci U S A. 2012;109(31):12556-12561.<\/strong><\/p>\n S\u00e1nchez-Dan\u00e9s A, Consiglio A, Richaud Y, et al. Efficient generation of A9 midbrain dopaminergic neurons by lentiviral delivery of LMX1A in human embryonic stem cells and induced pluripotent stem cells. Hum Gene Ther. 2012;23(1):56-69.<\/strong><\/p>\n Robles V, Mart\u00ed M, Izpisua Belmonte JC. Study of pluripotency markers in zebrafish embryos and transient embryonic stem cell cultures. Zebrafish. 2011;8(2):57-63<\/strong><\/p>\n Eguizabal C, Montserrat N, Vassena R, et al. Complete meiosis from human induced pluripotent stem cells. Stem Cells. 2011;29(8):1186-1195.<\/strong><\/p>\n Mench\u00f3n C, Edel MJ, Izpisua Belmonte JC. The cell cycle inhibitor p27Kip\u00b9 controls self-renewal and pluripotency of human embryonic stem cells by regulating the cell cycle, Brachyury and Twist. Cell Cycle. 2011;10(9):1435-1447.<\/strong><\/p>\n Edel MJ, Menchon C, Vaquero JM<\/strong>, Izpis\u00faa Belmonte JC. (2011) A protocol to assess cell cycle and apoptosis in human and mouse pluripotent cells. Cell Commun Signal 9(1): 8.<\/strong><\/p>\n Edel MJ, Menchon C, Menendez S, Consiglio A, Raya A, Izpisua Belmonte JC. Rem2 GTPase maintains survival of human embryonic stem cells as well as enhancing reprogramming by regulating p53 and cyclin D1. Genes Dev. 2010;24(6):561-573.<\/strong><\/p>\n Laso FJ, Almeida J, Torres E, Vaquero JM<\/strong>, Marcos M, Orfao A. (2010) Chronic alcohol consumption is associated with an increased cytotoxic profile of circulating lymphocytes that may be related with the development of liver injury. Alcohol Clin Exp Res 34(5): 876-85.<\/strong><\/p>\n Raya A, Rodr\u00edguez-Piz\u00e0 I, Guenechea G, et al. Disease-corrected haematopoietic progenitors from Fanconi anaemia induced pluripotent stem cells. Nature. 2009;460(7251):53-59.<\/strong><\/p>\n Aasen T, Raya A, Barrero MJ, et al. Efficient and rapid generation of induced pluripotent stem cells from human keratinocytes. Nat Biotechnol. 2008;26(11):1276-1284.<\/strong><\/p>\n Laso FJ, Vaquero JM<\/strong>, Almeida J, Marcos M and Orfao A. (2007) Chronic alcohol consumption is associated with changes in the distribution, immunophenotype, and the inflammatory cytokine secretion profile of circulating dendritic cells. Alcoholism Clinical and Experimental Research 31(5): 846-854.<\/strong><\/p>\n Laso FJ, Vaquero JM<\/strong>, Almeida J, Marcos M and Orfao A. (2007) Production of inflammatory cytokines by peripheral blood monocytes in chronic alcoholism: Relationship with ethanol intake and liver disease. Cytometry Part B Clinical Cytometry 72(5): 408-15.<\/strong><\/p>\n Almeida J, Bueno C, Alguer\u00f3 MC, S\u00e1nchez ML, Santiago M, Escribano L, Diaz-Agustin B, Vaquero JM<\/strong>, Laso FJ, San Miguel JF, and Orfao A. (2001) Comparative Analysis of the Morphological, Cytochemical, Immunophenotypical, and Functional Characteristics of Normal Human Peripheral Blood Lineage- \/ CD16+ \/ HLA-DR+ \/ CD14-\/lo Cells, CD14+ \/ Monocytes, and CD16- Dendritic Cells. Clinical Immunology 100(3): 325-338.<\/strong><\/p>\n Bueno C, Almeida J, Alguer\u00f3 MC, S\u00e1nchez ML, Vaquero JM<\/strong>, Laso FJ, San Miguel JF, Escribano L, and Orfao A. (2001) Flow Cytometric Analysis of Cytokine Production by Normal Human Peripheral Blood Dendritic Cells and Monocytes: Comparative Analysis of Different Stimuli, Secretion-Blocking Agents and Incubation Periods. Cytometry 46: 33-40.<\/strong><\/p>\n Bueno C, Almeida J, Alguer\u00f3 MC, S\u00e1nchez ML, Ca\u00f1izo MC, Fern\u00e1ndez ME, Vaquero JM<\/strong>, Laso FJ, Escribano L, D\u00edaz-Agustin B, San Miguel JF, y Orfao A. (2000) Caracterizaci\u00f3n morfol\u00f3gica, histoqu\u00edmica, fenot\u00edpica y funcional de las c\u00e9lulas dendr\u00edticas humanas. Methods Find Exp Clin Pharmacol 22(1): 3-10.<\/strong><\/p>\n Laso FJ, Vaquero JM<\/strong>, Bueno C, Almeida J, and Orfao A. (2000) Response. Alcoholism: Clinical and Experimental Research 24(2): 241-243.<\/strong><\/p>\n Almeida J, Bueno C, Alguer\u00f3 MC, S\u00e1nchez ML, Ca\u00f1izo MC, Fern\u00e1ndez ME, Vaquero JM<\/strong>, Laso FJ, Escribano L, San Miguel JF, and Orfao A. (1999) Extensive characterization of the imnuphenotype and pattern of citokine production by distinct subpopulations of normal human peripheral blood MHC II+\/lineage- cells. Clin Exp Immunol 118: 392-401.<\/strong><\/p>\n Almeida J, Bueno C, Alguer\u00f3 MC, S\u00e1nchez ML, Ca\u00f1izo MC, Fern\u00e1ndez ME, Vaquero JM<\/strong>, Laso FJ, Escribano L, San Miguel JF, y Orfao A. (1999) Subpoblaciones de c\u00e9lulas dendr\u00edticas normales: fenotipo y patr\u00f3n de secreci\u00f3n de citocinas. Haematologica 84(1): 408-414.<\/strong><\/p>\n Almeida J, Bueno C, Alguer\u00f3 MC, S\u00e1nchez ML, Vaquero JM<\/strong>, San Miguel JF, and Orfao A. (1999) Imnunophenotype and citokine production by normal human peripheral blood dendritic cell subsets. Haematologica vol. 84, EHA-4 Abstract Book: 136.<\/strong><\/p>\n\t\n
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\nAbreviaturas de l\u00e1ser y configuraci\u00f3n del banco \u00f3ptico:\n L\u00e1seres:
\n V: violeta, 405 nm; B: azul, 488 nm; Y: amarillo, 561 nm; R: rojo, 635 nm.\n Configuraci\u00f3n de banco \u00f3ptico:
\n 10C [2 + 5 + 3] = 10 colores o detectores PMT en total y [n\u00famero de ellos vinculados a una l\u00ednea l\u00e1ser espec\u00edfica).<\/em>\n\t\t\t\t\tPublicaciones<\/a>\n\t\t\t\t\t\t\t\t\t\t\tExpand<\/i><\/a>\n\t\t\t\t\t