“Estudio piloto para la determinación de la expresión de ID1, ID3 e IGJ en Leucemia Linfoblástica Aguda B a partir de muestras de médula ósea”
dc.contributor.advisor | Combita Rojas, Alba Lucía | |
dc.contributor.author | Lozano Camelo, Olga Cristina | |
dc.contributor.researchgroup | Grupo de Investigación en biología del cáncer | spa |
dc.date.accessioned | 2021-04-26T19:45:34Z | |
dc.date.available | 2021-04-26T19:45:34Z | |
dc.date.issued | 2020-11-15 | |
dc.description | Ilustraciones a color | spa |
dc.description.abstract | La Leucemia Linfoblástica Aguda B (LLA-B), es una malignidad que se desarrolla en la médula ósea, comprometiendo los precursores hematopoyéticos de linaje B. La población adulta en Colombia presenta una tasa inferior de sobrevida con relación a la que se reporta en otros países. En este trabajo exploratorio descriptivo se observa el comportamiento de la expresión de los genes ID1, ID3 e IGJ, en líneas celulares, tejido de MO (médula ósea) fresco y Fijado en formalina embebido en parafina (FFPE). Metodología Se realizó aislamiento de ARN, conversión a ADNc, seguidamente, se observó asociaciones en amplificación y expresión de ID1, ID3 e IGJ en líneas celulares AGS, MCF7, REH y THP-1 y tejidos de pacientes diagnosticados con LLA-B frescos y en FFPE a través de qPCR (PCR cuantitativa en tiempo real) y análisis por el método de 2- ΔΔCq. Para mejorar el rendimiento en la amplificación de los genes de interés en biopsia de M.O en tejido FFPE, se probaron variables de laboratorio y la preamplificación de ADNc. Resultados Se caracterizaron las líneas celulares REH, AGS, MCF7 y THP-1, seguidamente se observó sus patrones de expresión para los genes objetivo. En el tejido FFPE se apreció una mejora con el empleo de la preamplificación. Finalmente, se comparó la expresión en cinco aspirados de M.O en pacientes con LLA-B, donde la expresión para ID1 e ID3 fue diferencial. Conclusión La observación comparativa de genes entre tejidos permite la realización de asociaciones acerca de la amplificación en diferentes tejidos y pacientes. Realizar modificaciones a los protocolos de extracción y la aplicación de preAmp puede permitir el mejoramiento de la detección de expresión de genes en tejido de M.O en FFPE, haciendo parte de las alternativas para aprovechar estos tejidos de valor que se tienen almacenados. | spa |
dc.description.abstract | Acute Lymphoblastic Leukemia B (B-ALL) is a malignancy that develops in the bone marrow, compromising the hematopoietic precursors of lineage B. The adult population in Colombia has a lower survival rate compared to that reported in other countries. In this descriptive exploratory work, the expression behavior of the ID1, D3 and IGJ genes is observed in cell lines, fresh BM (bone Marrow) tissue and Formalin-fixed, paraffinembedded (FFPE). Methodology: RNA Isolation and conversión to cDNA were performed, then associations in amplification and expression of ID1, ID3 and IGJ were observed in AGS and MCF7, REH and THP-1 cell lines and tissues of patients diagnosed with fresh B- ALL and in FFPE throug qPCR (quantitative real-time PCR) and analysis by the 2 - ΔΔCq method. To improve performance in the the amplification of the genes of interest in biopsy of BM in FFPE tissue, laboratory variables and preamplification of cDNA were tested. Results: The REH, AGS, MCF7 and THP-1 cell lines were caracterizad, followed by their expression patterns for the target genes. Improvement in the FFPE fabric was seen with the use of preamplification. Finally the expression in fuve aspirates of BM in patients with B-ALL was compared, where the expression for ID1 and ID3 was differential. Conclusion: The comparative observation of genes between tissues allowas the realization of association in different tissues and patients. Making modifications to the extraction protocols and the application of preAmp can allow the improvement of the detection of gene expression in BM tissue in FFPE, making part of the alternatives to take advantage of theses valuable tissues that are stored. | eng |
dc.description.degreelevel | Maestría | spa |
dc.description.researcharea | Biología celular e inmunobiología de leucemias y linfomas | spa |
dc.format.extent | 1 recurso en línea (112 páginas) | spa |
dc.format.mimetype | application/pdf | spa |
dc.identifier.instname | Universidad Nacional de Colombia | spa |
dc.identifier.reponame | Repositorio Institucional Universidad Nacional de Colombia | spa |
dc.identifier.repourl | https://repositorio.unal.edu.co/ | spa |
dc.identifier.uri | https://repositorio.unal.edu.co/handle/unal/79413 | |
dc.language.iso | spa | spa |
dc.publisher | Universidad Nacional de Colombia | spa |
dc.publisher.branch | Universidad Nacional de Colombia - Sede Bogotá | spa |
dc.publisher.faculty | Facultad de Medicina | spa |
dc.publisher.place | Bogotá | spa |
dc.publisher.program | Bogotá - Medicina - Maestría en Genética Humana | spa |
dc.relation.references | Advani, A. S., & Pendergast, A. M. (2002). Bcr-Abl variants: Biological and clinical aspects. Leukemia Research, 26(8), 713–720. https://doi.org/10.1016/S0145-2126(01)00197-7 | spa |
dc.relation.references | Amaral, L. H. P., Bufalo, N. E., Peres, K. C., Barreto, I. S., Campos, A. H. J. F. M., & Ward, L. S. (2019). ID Proteins May Reduce Aggressiveness of Thyroid Tumors. Endocrine Pathology, 30(1), 24–30. https://doi.org/10.1007/s12022-018-9556-1 | spa |
dc.relation.references | Atienza, A. L. (2016). Programa de formación continuada en Pediatría Extrahospitalaria. Pediatria Integral, 6, 380–389. Retrieved from https://www.pediatriaintegral.es/wp-content/uploads/2016/09/Pediatria-Integral-XX-06_WEB.pdf | spa |
dc.relation.references | Ausserlechner, M. J., Salvador, C., Deutschmann, A., Bodner, M., Viola, G., Bortolozzi, R., … Obexer, P. (2013). Therapy-resistant acute lymphoblastic leukemia (ALL) cells inactivate FOXO3 to escape apoptosis induction by TRAIL and Noxa. Oncotarget, 4(7), 995–1007. https://doi.org/10.18632/oncotarget.953 | spa |
dc.relation.references | Bass, B. P., Engel, K. B., Greytak, S. R., & Moore, H. M. (2014). A review of preanalytical factors affecting molecular, protein, and morphological analysis of Formalin-Fixed, Paraffin-Embedded (FFPE) tissue: How well do you know your FFPE specimen? Archives of Pathology and Laboratory Medicine, 138(11), 1520–1530. https://doi.org/10.5858/arpa.2013-0691-RA | spa |
dc.relation.references | Bassan, R., Gatta, G., Tondini, C., & Willemze, R. (2004). Adult acute lymphoblastic leukaemia. Critical Reviews in Oncology/Hematology, 50(3), 223–261. https://doi.org/10.1016/j.critrevonc.2003.11.003 | spa |
dc.relation.references | Bassan, R., & Hoelzer, D. (2011). Modern therapy of acute lymphoblastic leukemia. Journal of Clinical Oncology, 29(5), 532–543. https://doi.org/10.1200/JCO.2010.30.1382 | spa |
dc.relation.references | Behm, B. F. G., Smith, F. O., Raimondi, S. C., Pui, C., & Bernstein, I. D. (1996). Gene Rearrangements. The American Society of Hematology. | spa |
dc.relation.references | Benasayag, S. J., & Gallino, M. I. (2010). Bases citogenéticas para la práctica hematológica. De lo supuesto a lo expuesto en nomenclatura citogenética. Sociedad Argentina de Hematología, 14(2), 58–68. | spa |
dc.relation.references | Bennett, J. M., Catovsky, D., Daniel, M. ‐T, Flandrin, G., Galton, D. A. G., Gralnick, H. R., & Sultan, C. (1976). Proposals for the Classification of the Acute Leukaemias French‐American‐British (FAB) Co‐operative Group. British Journal of Haematology, 33(4), 451–458. https://doi.org/10.1111/j.1365-2141.1976.tb03563.x | spa |
dc.relation.references | Bock, O., Lehmann, U., & Kreipe, H. (2003). Quantitative intra-individual monitoring of BCR-ABL transcript levels in archival bone marrow trephines of patients with chronic myeloid leukemia. Journal of Molecular Diagnostics, 5(1), 54–60. https://doi.org/10.1016/S1525-1578(10)60452-7 | spa |
dc.relation.references | Bonin, S., Petrera, F., Rosai, J., & Stanta, G. (2005). DNA and RNA obtained from Bouin’s fixed tissues. Journal of Clinical Pathology, 58(3), 313–316. https://doi.org/10.1136/jcp.2004.016477 Bravata-alcántara, J. C., Chávez-ocaña, S., & Sierra-martínez, M. (2014). Citogenómica en leucemia linfoblástica aguda, 81(3), 182–187. | spa |
dc.relation.references | Busson-Le Coniat, M., Salomon-Nguyen, F., Dastugue, N., Maarek, O., Lafage-Pochitaloff, M., Mozziconacci, M. J., … Berger, R. (1999). Fluorescence in situ hybridization analysis of chromosome 1 abnormalities in hematopoietic disorders: Rearrangements of DNA satellite II and new recurrent translocations. Leukemia, 13(12), 1975–1981. https://doi.org/10.1038/sj.leu.2401587 | spa |
dc.relation.references | Carvalho, D. C., Wanderley, A. V., Amador, M. A. T., Fernandes, M. R., Cavalcante, G. C., Pantoja, K. B. C. C., … dos Santos, N. P. C. (2015). Amerindian genetic ancestry and INDEL polymorphisms associated with susceptibility of childhood B-cell Leukemia in an admixed population from the Brazilian Amazon. Leukemia Research, 39(11), 1239–1245. https://doi.org/10.1016/j.leukres.2015.08.008 | spa |
dc.relation.references | Castañon, E., Bosch-Barrera, J., López, I., Collado, V., Moreno, M., López-Picazo, J. M., … Gil-Bazo, I. (2013). Id1 and Id3 co-expression correlates with clinical outcome in stage III-N2 non-small cell lung cancer patients treated with definitive chemoradiotherapy. Journal of Translational Medicine, 11(1), 1–8. https://doi.org/10.1186/1479-5876-11-13 | spa |
dc.relation.references | Castro J, et al. (2007). Epidemiología de la leucemia linfoblástica aguda en pediatría: incidencia, mortalidad y asociaciones causales. Revista de La Universidad Industrial de Santander. Salud, 39(2), 116–123. | spa |
dc.relation.references | Castro MA, y cols. (2003). DE CANCEROLOGÍA , COLOMBIA , 2002, 7(9), 20–31. Cheng, Y. J., Tsai, J. W., Hsieh, K. C., Yang, Y. C., Chen, Y. J., Huang, M. S., & Yuan, S. S. (2011). Id1 promotes lung cancer cell proliferation and tumor growth through Akt-related pathway. Cancer Letters, 307(2), 191–199. https://doi.org/10.1016/j.canlet.2011.04.003 | spa |
dc.relation.references | Ching-Hon Pui et al. (2009). Treatment of childhood acute Lymphoblastic Leukemia without prophylactic cranial irradiation. N Engl J Med, 360(26), 2730–2741. https://doi.org/10.1056/NEJMoa0900386.Treatment | spa |
dc.relation.references | Cho, S. J., & Kang, C. J. (2005). A Stat5-overlapping site is critical for the IgJ enhancer activity in the plasma cells and bound by a ubiquitous protein. Biochemical and Biophysical Research Communications, 338(4), 1897–1905. https://doi.org/10.1016/j.bbrc.2005.10.167 | spa |
dc.relation.references | Combariza, F., Casas, C. P., Rodríguez, M., Cardona, A. F., Ospina, E., & Grajales, M. (2007). Supervivencia en adultos con leucemia linfoide aguda de novo tratados con el esquema HyperCVAD en el Instituto Nacional de Cancerología ( Colombia ), entre enero de 2001 y junio de 200. Rev Colomb Cancerol, 11(2), 92–100. | spa |
dc.relation.references | Cruz-Rodriguez, N., Combita, A. L., Enciso, L. J., Quijano, S. M., Pinzon, P. L., Lozano, O. C., … Zabaleta, J. (2016). High expression of ID family and IGJ genes signature as predictor of low induction treatment response and worst survival in adult Hispanic patients with B-acute lymphoblastic leukemia. Journal of Experimental & Clinical Cancer Research, 35(1), 1–14. https://doi.org/10.1186/s13046-016-0333-z | spa |
dc.relation.references | Dama, E., Tillhon, M., Bertalot, G., Santis, F. De, Pessina, S., Passaro, A., … Di, P. P. (2016). Sensitive and affordable diagnostic assay for the quantitative detection of anaplastic lymphoma kinase ( ALK ) alterations in patients with non-small cell lung cancer, 7(24). | spa |
dc.relation.references | Dedhia, P., Tarale, S., Dhongde, G., Khadapkar, R., & Das, B. (2007). Evaluation of DNA extraction methods and real time PCR optimization on formalin-fixed paraffin-embedded tissues. Asian Pacific Journal of Cancer Prevention, 8(1), 55–59. | spa |
dc.relation.references | Denning, K. M., Smyth, P. C., Cahill, S. F., Finn, S. P., Conlon, E., Li, J. H., … Sheils, O. M. (2007). A molecular expression signature distinguishing follicular lesions in thyroid carcinoma using preamplification RT-PCR in archival samples. Modern Pathology, 20(10), 1095–1102. https://doi.org/10.1038/modpathol.3800943 | spa |
dc.relation.references | DeVita, V. T., & Chu, E. (2008). A history of cancer chemotherapy. Cancer Research, 68(21), 8643–8653. https://doi.org/10.1158/0008-5472.CAN-07-6611 | spa |
dc.relation.references | Dongen, Jacques J M, et al. (2015). Minimal residual disease ( MRD ) diagnostics in acute lymphoblastic leukemia ( ALL ): need for sensitive , fast and standardized technologies, 125(26), 3996–4010. https://doi.org/10.1182/blood-2015-03-580027 | spa |
dc.relation.references | Engel, I., & Murre, C. (2001). The function of E- and ID proteins in lymphocyte development. Nature Reviews Immunology, 1(3), 193–199. https://doi.org/10.1038/35105060 | spa |
dc.relation.references | Faderl, S., O’Brien, S., Pui, C.-H., Stock, W., Wetzler, M., Hoelzer, D., & Kantarjian, H. M. (2010). Adult acute lymphoblastic leukemia. Cancer, 116(5), 1165–1176. https://doi.org/10.1002/cncr.24862 | spa |
dc.relation.references | Ferlinz, A., Miller, C., Formosa, R., & Lee, K. Y. (2013). Gene expression analysis of both mRNA and miRNA on the same TaqMan® Array Card. Development of a pancreatic tumor tissue classification methodology. Methods, 59(1), S11–S15. https://doi.org/10.1016/j.ymeth.2012.09.014 | spa |
dc.relation.references | García, L., Cabrero, M., & del Cañizo, C. (2016). Leucemias agudas. Medicine (Spain), 12(21), 1201–1212. https://doi.org/10.1016/j.med.2016.10.011 GLOBOCAN 2018 Graph production: Global Cancer Observatory https://gco.iarc.fr/today/data/factsheets/populations/170-colombia-fact-sheets.pdf, © International Agency for Research on Cancer 2020 | spa |
dc.relation.references | Greytak, S. R., Engel, K. B., Zmuda, E., Casas-Silva, E., Guan, P., Hoadley, K. A., … Moore, H. M. (2018). National Cancer Institute Biospecimen Evidence-Based Practices: Harmonizing Procedures for Nucleic Acid Extraction from Formalin-Fixed, Paraffin-Embedded Tissue. Biopreservation and Biobanking, 16(4), 247–250. https://doi.org/10.1089/bio.2018.0046 | spa |
dc.relation.references | Heikal, N., Nussenzveig, R. H., & Agarwal, A. M. (2014). Deparaffinization with mineral oil: A simple procedure for extraction of high-quality DNA from archival formalin-fixed paraffin-embedded samples. Applied Immunohistochemistry and Molecular Morphology, 22(8), 623–626. https://doi.org/10.1097/PAI.0b013e3182a77bfe | spa |
dc.relation.references | Hernández-Vargas, H., Ballestar, E., Carmona-Saez, P., Von Kobbe, C., Bañón-Rodríguez, I., Esteller, M., … Palacios, J. (2006). Transcriptional profiling of MCF7 breast cancer cells in response to 5-flouracil: Relationship with cell cycle changes and apoptosis, and identification of novel targets of p53. International Journal of Cancer, 119(5), 1164–1175. https://doi.org/10.1002/ijc.21938 | spa |
dc.relation.references | Hoffmann, K., Firth, M. J., Beesley, A. H., Freitas, J. R., Ford, J., Senanayake, S., … Kees, U. R. (2008). Prediction of relapse in paediatric pre-B acute lymphoblastic leukaemia using a three-gene risk index. British Journal of Haematology, 140(6), 656–664. https://doi.org/10.1111/j.1365-2141.2008.06981.x | spa |
dc.relation.references | Hrušák, O., & Porwit-MacDonald, A. (2002). Antigen expression patterns reflecting genotype of acute leukemia. Leukemia, 16(7), 1233–1258. https://doi.org/10.1038/sj.leu.2402504 | spa |
dc.relation.references | Iacobucci, I., Papayannidis, C., Lonetti, A., Ferrari, A., Baccarani, M., & Martinelli, G. (2012). Cytogenetic and molecular predictors of outcome in acute lymphocytic leukemia: Recent developments. Current Hematologic Malignancy Reports, 7(2), 133–143. https://doi.org/10.1007/s11899-012-0122-5 | spa |
dc.relation.references | Inaba, H., Greaves, M., & Mullighan, C. G. (2013). Acute lymphoblastic leukaemia. The Lancet, 381(9881), 1943–1955. https://doi.org/10.1016/S0140-6736(12)62187-4 | spa |
dc.relation.references | Jacob, F., Guertler, R., Naim, S., Nixdorf, S., Fedier, A., Hacker, N. F., & Heinzelmann-Schwarz, V. (2013). Careful Selection of Reference Genes Is Required for Reliable Performance of RT-qPCR in Human Normal and Cancer Cell Lines. PLoS ONE, 8(3). https://doi.org/10.1371/journal.pone.0059180 | spa |
dc.relation.references | Jean, M. I. (2016). ISNC2016. An Interntional System for Human Cytogenomic Nomenclature (2016), (cytogenetic and Genome Research (ISSN 1424-8581) vol.149, No 1-2 S. Karger Publishers INC). | spa |
dc.relation.references | Je, Y.-J., Choi, D.-K., Sohn, K.-C., Kim, H.-R., Im, M., Lee, Y., … Seo, Y.-J. (2014). Inhibitory role of Id1 on TGF-β-induced collagen exp ression in human dermal fibroblasts. Biochemical and Biophysical Research Communications, 444(1), 81–85. https://doi.org/10.1016/j.bbrc.2014.01.010 | spa |
dc.relation.references | Je, Y. J., Choi, D. K., Sohn, K. C., Kim, H. R., Im, M., Lee, Y., … Seo, Y. J. (2014). Inhibitory role of Id1 on TGF-β-induced collagen expression in human dermal fibroblasts. Biochemical and Biophysical Research Communications, 444(1), 81–85. https://doi.org/10.1016/j.bbrc.2014.01.010 | spa |
dc.relation.references | Jung, S., Park, R.-H., Kim, S., Jeon, Y.-J., Ham, D.-S., Jung, M.-Y., … Suh-Kim, H. (2010). Id proteins facilitate self-renewal and proliferation of neural stem cells. Stem Cells and Development, 19(6), 831–841. https://doi.org/10.1089/scd.2009.0093 | spa |
dc.relation.references | Katz, A. J., Chia, V. M., Schoonen, W. M., & Kelsh, M. A. (2015). Acute lymphoblastic leukemia: an assessment of international incidence, survival, and disease burden. Cancer Causes & Control : CCC, 26(11), 1627–1642. https://doi.org/10.1007/s10552-015-0657-6 | spa |
dc.relation.references | Klarmann, K. D., & Al., E. (2011). World ’ s largest Science , Technology & Medicine Open Access book publisher Novel Targets in Myelogenous Leukemia : The Id Family of Proteins. | spa |
dc.relation.references | Lasorella, A., Benezra, R., & Iavarone, A. (2014). The ID proteins: Master regulators of cancer stem cells and tumour aggressiveness. Nature Reviews Cancer, 14(2), 77–91. https://doi.org/10.1038/nrc3638 | spa |
dc.relation.references | Lehmann, U., & Kreipe, H. (2001). Real-time PCR analysis of DNA and RNA extracted from formalin-fixed and paraffin-embedded biopsies. Methods, 25(4), 409–418. https://doi.org/10.1006/meth.2001.1263 | spa |
dc.relation.references | Li, J., Smyth, P., Cahill, S., Denning, K., Flavin, R., Aherne, S., … Sheils, O. (2008). Improved RNA quality and TaqMan® Pre-amplification method (PreAmp) to enhance expression analysis from formalin fixed paraffin embedded (FFPE) materials. BMC Biotechnology, 8, 1–11. https://doi.org/10.1186/1472-6750-8-10 | spa |
dc.relation.references | Lim, J.-H., Cho, S.-J., Park, S.-K., Kim, J., Cho, D., Lee, W. J., & Kang, C.-J. (2006). Stage-Specific Expression of Two Neighboring Crlz1 and IgJ Genes during B Cell Development Is Regulated by Their Chromatin Accessibility and Histone Acetylation . The Journal of Immunology, 177(8), 5420–5429. https://doi.org/10.4049/jimmunol.177.8.5420 | spa |
dc.relation.references | Ling, M.-T., Wang, X., Ouyang, X.-S., Lee, T. K. W., Fan, T.-Y., Xu, K., … Wong, Y. C. (2002). Activation of MAPK signaling pathway is essential for Id-1 induced serum independent prostate cancer cell growth. Oncogene, 21(55), 8498–8505. https://doi.org/10.1038/sj.onc.1206007 | spa |
dc.relation.references | Litzow, M. (2014). Antigen-based immunotherapy for the treatment of acute lymphoblastic leukemia: the emerging role of blinatumomab. ImmunoTargets and Therapy, 79. https://doi.org/10.2147/itt.s37292 | spa |
dc.relation.references | Ludyga, N., Grünwald, B., Azimzadeh, O., Englert, S., Höfler, H., Tapio, S., & Aubele, M. (2012). Nucleic acids from long-term preserved FFPE tissues are suitable for downstream analyses. Virchows Archiv, 460(2), 131–140. https://doi.org/10.1007/s00428-011-1184-9 | spa |
dc.relation.references | Manthey, C., Mern, D. S., Gutmann, A., Zielinski, A. J., Herz, C., Lassmann, S., & Hasskarl, J. (2010). Elevated endogenous expression of the dominant negative basic helix-loop-helix protein ID1 correlates with significant centrosome abnormalities in human tumor cells. BMC Cell Biology, 11. https://doi.org/10.1186/1471-2121-11-2 | spa |
dc.relation.references | Max, E. E., & et al. (1986). Human J chain gene: Chromosomal localization and associated restriction fragment length polymorphisms, 83(August), 5592–5596. | spa |
dc.relation.references | May, A. M., Frey, A. V., Bogatyreva, L., Benkisser-Petersen, M., Hauschke, D., Lübbert, M., … Lassmann, S. (2014). ID2 and ID3 protein expression mirrors granulopoietic maturation and discriminates between acute leukemia subtypes. Histochemistry and Cell Biology, 141(4), 431–440. https://doi.org/10.1007/s00418-013-1169-7 | spa |
dc.relation.references | McGregor, S., McNeer, J., & Gurbuxani, S. (2012). Beyond the 2008 World Health Organization classification: The role of the hematopathology laboratory in the diagnosis and management of acute lymphoblastic leukemia. Seminars in Diagnostic Pathology, 29(1), 2–11. https://doi.org/10.1053/j.semdp.2011.07.004 | spa |
dc.relation.references | Mesuraca, M., Chiarella, E., Scicchitano, S., Codispoti, B., Giordano, M., Nappo, G., … Morrone, G. (2015). ZNF423 and ZNF521: EBF1 antagonists of potential relevance in B-lymphoid malignancies. BioMed Research International, 2015. https://doi.org/10.1155/2015/165238 | spa |
dc.relation.references | Miller, K. D., Nogueira, L., Mariotto, A. B., Rowland, J. H., Yabroff, K. R., Jemal, A., … Siegel, R. L. (2019). Cancer Treatment and Survivorship Statistics , 2019, 69(5), 363–385. https://doi.org/10.3322/caac.21565 Ministerio de salud y protección social, D. administrativo de C. tecnología e innovación en salud. (2017). GPC_Leucemias. | spa |
dc.relation.references | Mullighan, C. G., Morita, K., Suzuki, K., Maeda, S., Matsuo, A., Mitsuda, Y., … Kamikubo, Y. (2012). Molecular genetics of BCP-ALL. The Journal of Clinical Investigation, 122(7), 3407–3415. https://doi.org/10.1172/JCI61203.ETV6-RUNX1 | spa |
dc.relation.references | Mullighan, C. G., Zhang, J., Kasper, L. H., Lerach, S., Payne-Turner, D., Phillips, L. A., … Downing, J. R. (2011). CREBBP mutations in relapsed acute lymphoblastic leukaemia. Nature, 471(7337), 235–241. https://doi.org/10.1038/nature09727 | spa |
dc.relation.references | Nair, R., Teo, W. S., Mittal, V., & Swarbrick, A. (2014). ID proteins regulate diverse aspects of cancer progression and provide novel therapeutic opportunities. Molecular Therapy, 22(8), 1407–1415. https://doi.org/10.1038/mt.2014.83 | spa |
dc.relation.references | Naresh, K. N., Lampert, I., Hasserjian, R., Lykidis, D., Elderfield, K., Horncastle, D., … Stamp, G. W. (2006). Optimal processing of bone marrow trephine biopsy: The Hammersmith Protocol. Journal of Clinical Pathology, 59(9), 903–911. https://doi.org/10.1136/jcp.2004.020610 | spa |
dc.relation.references | Norén-Nyström, U., Roos, G., Bergh, A., Botling, J., Lönnerholm, G., Porwit, A., … Forestier, E. (2008). Bone marrow fibrosis in childhood acute lymphoblastic leukemia correlates to biological factors, treatment response and outcome. Leukemia, 22(3), 504–510. https://doi.org/10.1038/sj.leu.2405072 | spa |
dc.relation.references | Okamoto, R., Ogawa, S., Nowak, D., Kawamata, N., Akagi, T., Kato, M., … Phillip Koeffler, H. (2010). Genomic profiling of adult acute lymphoblastic leukemia by single nucleotide polymorphism oligonucleotide microarray and comparison to pediatric acute lymphoblastic leukemia. Haematologica, 95(9), 1481–1488. https://doi.org/10.3324/haematol.2009.011114 | spa |
dc.relation.references | Onciu, M. (2009). Acute Lymphoblastic Leukemia. Hematology/Oncology Clinics of North America, 23(4), 655–674. https://doi.org/10.1016/j.hoc.2009.04.009 | spa |
dc.relation.references | Ortega Sánchez, M. (2007). Leucemias. Leucemia linfoblástica aguda. Pediatria Integral, 20(6), 380–389. https://doi.org/10.1016/B978-84-8174-886-4.50009-X | spa |
dc.relation.references | Palmi, C., Valsecchi, M. G., Longinotti, G., Silvestri, D., Carrino, V., Conter, V., … Cazzaniga, G. (2013). What is the relevance of Ikaros gene deletions as a prognostic marker in pediatric Philadelphia-negative B-cell precursor acute lymphoblastic leukemia? Haematologica, 98(8), 1226–1231. https://doi.org/10.3324/haematol.2012.075432 | spa |
dc.relation.references | Pardo, C., De Vries, E., Buitrago, L., & Gamboa, Ó. (2017). Atlas de mortalidad por cáncer en Colombia. Cuarta Edición. Retrieved from https://www.cancer.gov.co/ATLAS_de_Mortalidad_por_cancer_en_Colombia.pdf | spa |
dc.relation.references | Pardo C, C. R. I. (2015). Incidencia, mortalidad y prevalencia de Cáncer en Colombia 2007-2011. Instituto Nacional De Cancerologia (Vol. 1). Perk, J., Iavarone, A., & Benezra, R. (2005). ID FAMILY OF HELIX LOOP HELIX PROTEINS IN CANCER, 5(July), 603–614. https://doi.org/10.1038/nrc1673 | spa |
dc.relation.references | Petersen, M. P., Ramos, C. P., Garay, Ó. G., & Suárez, G. H. (2010). Marion Piñeros Petersen, Constanza Pardo Ramos Óscar Gamboa Garay, Gustavo Hernández Suárez. | spa |
dc.relation.references | Phi, J. H., Choi, S. A., Lim, S.-H., Lee, J., Wang, K.-C., Park, S.-H., & Kim, S.-K. (2013). ID3 contributes to cerebrospinal fluid seeding and poor prognosis in medulloblastoma. BMC Cancer, 13, 291. https://doi.org/10.1186/1471-2407-13-291 | spa |
dc.relation.references | Przybyła et al, T. (2017). Suppression of ID1 expression in colon cancer cells increases sensitivity to 5-fluorouracil. Acta Biochimica Polonica, 64(2), 315–322. https://doi.org/10.18388/abp.2016_1421 | spa |
dc.relation.references | Pui, C. H., Carroll, W. L., Meshinchi, S., & Arceci, R. J. (2011). Biology, risk stratification, and therapy of pediatric acute leukemias: An update. Journal of Clinical Oncology, 29(5), 551–565. https://doi.org/10.1200/JCO.2010.30.7405 | spa |
dc.relation.references | Pui, C. H., Robison, L. L., & Look, A. T. (2008). Acute lymphoblastic leukaemia. The Lancet, 371(9617), 1030–1043. https://doi.org/10.1016/S0140-6736(08)60457-2 | spa |
dc.relation.references | Qian, M., Zhang, H., Kham, S. K. Y., Liu, S., Jiang, C., Zhao, X., … Yang, J. J. (2017). Whole-transcriptome sequencing identifies a distinct subtype of acute lymphoblastic leukemia with predominant genomic abnormalities of EP300 and CREBBP. Genome Research, 27(2), 185–195. https://doi.org/10.1101/gr.209163.116 | spa |
dc.relation.references | Quintero, M. (1999). Colombia Médica. Resultado Del Tratamiento de Leucemia Linfoblástica Aguda En Niños, Vol 30 num, pp 148-156. | spa |
dc.relation.references | Quiroz, F. G., Posada, O. M., Gallego-Perez, D., Higuita-Castro, N., Sarassa, C., Hansford, D. J., … López, L. E. (2010). Housekeeping gene stability influences the quantification of osteogenic markers during stem cell differentiation to the osteogenic lineage. Cytotechnology, 62(2), 109–120. https://doi.org/10.1007/s10616-010-9265-1 | spa |
dc.relation.references | Quong, M. W., Romanow, W. J., & Murre, C. (2002). E P Rotein F Unction in L Ymphocyte D Evelopment . Annual Review of Immunology, 20(1), 301–322. https://doi.org/10.1146/annurev.immunol.20.092501.162048 | spa |
dc.relation.references | Raboso, et al. (2019). Epigenetic Priming in Childhood Acute Lymphoblastic Leukemia. Frontiers in Cell and Developmental Biology, 7(July). https://doi.org/10.3389/fcell.2019.00137 Ramos-Peñafiel et al. (2014). Original Breve COMPARISON OF THE HYPER-CVAD WITH AN INSTITUTIONAL REGIMEN FOR THE TREATMENT OF ACUTE LYMPHOBLASTIC, 31(3), 6–8. | spa |
dc.relation.references | Rivera, R., & Murre, C. (2001). The regulation and function of the Id proteins in lymphocyte development. Oncogene, 20(58 REV. ISS. 8), 8308–8316. https://doi.org/10.1038/sj/onc/1205091 | spa |
dc.relation.references | Rivera, R. R., & et al. (2000). Thymocyte selection is regulated by the helix-loop-helix inhibitor protein, ld3. Immunity, 12(1), 17–26. https://doi.org/10.1016/S1074-7613(00)80155-7 | spa |
dc.relation.references | Roberts, E. C., & et al. (2001). Id Helix-Loop-Helix Proteins Antagonize Pax Transcription Factor Activity by Inhibiting DNA Binding. Molecular and Cellular Biology, 21(2), 524–533. https://doi.org/10.1128/mcb.21.2.524-533.2001 | spa |
dc.relation.references | Roberts, L., Bowers, J., Sensinger, K., Lisowski, A., Getts, R., & Anderson, M. G. (2009). Identification of methods for use of formalin-fixed, paraffin-embedded tissue samples in RNA expression profiling. Genomics, 94(5), 341–348. https://doi.org/10.1016/j.ygeno.2009.07.007 | spa |
dc.relation.references | Rogerson, L., Darby, S., Jabbar, T., Mathers, M. E., Leung, H. Y., Robson, C. N., … Gnanapragasam, V. J. (2008). Application of transcript profiling in formalin-fixed paraffin-embedded diagnostic prostate cancer needle biopsies. BJU International, 102(3), 364–370. https://doi.org/10.1111/j.1464-410X.2008.07627.x | spa |
dc.relation.references | Roschger, C., & Cabrele, C. (2017). The Id-protein family in developmental and cancer-associated pathways. Cell Communication and Signaling, 15(1), 7. https://doi.org/10.1186/s12964-016-0161-y | spa |
dc.relation.references | Roschger, C., Verwanger, T., Krammer, B., & Cabrele, C. (2018). Reduction of cancer cell viability by synergistic combination of photodynamic treatment with the inhibition of the Id protein family. Journal of Photochemistry and Photobiology B: Biology, 178(December 2017), 521–529. https://doi.org/10.1016/j.jphotobiol.2017.11.038 | spa |
dc.relation.references | Rowe, J. M. (2010). Prognostic factors in adult acute lymphoblastic leukaemia. British Journal of Haematology, 150(4), 389–405. https://doi.org/10.1111/j.1365-2141.2010.08246.x Roy, S., & Zhuang, Y. (2018). Paradoxical role of Id proteins in regulating tumorigenic potential of lymphoid cells. Frontiers of Medicine, 12(4), 374–386. https://doi.org/10.1007/s11684-018-0652-x | spa |
dc.relation.references | Ruiz-Villalba, A., van Pelt-Verkuil, E., Gunst, Q. D., Ruijter, J. M., & van den Hoff, M. J. (2017). Amplification of nonspecific products in quantitative polymerase chain reactions (qPCR). Biomolecular Detection and Quantification, 14(November), 7–18. https://doi.org/10.1016/j.bdq.2017.10.001 | spa |
dc.relation.references | Sant, M., Aareleid, T., Berrino, F., Bielska Lasota, M., Carli, P. M., Faivre, J., … Steward, J. A. (2003). EUROCARE-3: Survival of cancer patients diagnosed 1990-94 - Results and commentary. Annals of Oncology, 14(SUPPL.5), 61–118. https://doi.org/10.1093/annonc/mdg754 | spa |
dc.relation.references | Schmittgen, T. D., & Livak, K. J. (2008). Analyzing real-time PCR data by the comparative CT method. Nature Protocols, 3(6), 1101–1108. https://doi.org/10.1038/nprot.2008.73 | spa |
dc.relation.references | Shah, S., Schrader, K. A., Waanders, E., Timms, A. E., Vijai, J., Miething, C., … Offit, K. (2013). A recurrent germline PAX5 mutation confers susceptibility to pre-B cell acute lymphoblastic leukemia. Nature Genetics, 45(10), 1226–1231. https://doi.org/10.1038/ng.2754 | spa |
dc.relation.references | Siebolts, U., Vamholt, H., Drebber, U., Dienes, H. P., Wickenhauser, C., & Odenthal, M. (2009). Tissues from routine pathology archives are suitable for microRNA analyses by quantitative PCR. Journal of Clinical Pathology, 62(1), 84–88. https://doi.org/10.1136/jcp.2008.058339 | spa |
dc.relation.references | Slizhikova, D. K., Zinovyeva, M. V., Kuzmin, D. V., Snezhkov, E. V., Shakhparonov, M. I., Dmitriev, R. I., … Sverdlov, E. D. (2006). Decreased expression of the human immunoglobulin J-chain gene in squamous cell cancer and adenocarcinoma of the lungs. Molecular Biology, 41(4), 8933. https://doi.org/10.1134/S0026893307040115 | spa |
dc.relation.references | Suárez, M. et al. (2015). Metodología y aplicaciones de la citometría de flujo para el inmunofenotipaje de las leucemias agudas. Revista Cubana de Hematologia, Inmunologia y Hemoterapia, 31(3), 242–253. | spa |
dc.relation.references | Tricarico, C., Pinzani, P., Bianchi, S., Paglierani, M., Distante, V., Pazzagli, M., … Orlando, C. (2002). Quantitative real-time reverse transcription polymerase chain reaction: Normalization to rRNA or single housekeeping genes is inappropriate for human tissue biopsies. Analytical Biochemistry, 309(2), 293–300. https://doi.org/10.1016/S0003-2697(02)00311-1 | spa |
dc.relation.references | Jubb, H. C., Saini, H. K., Verdonk, M. L., & Forbes, S. A. (2018). COSMIC-3D provides structural perspectives on cancer genetics for drug discovery. Nature Genetics http://doi.org/10.1038/s41588-018-0214-9 | spa |
dc.relation.references | Vázquez-Reyes, A., Bobadilla-Morales, L., Barba-Barba, C., Macías-Salcedo, G., Serafín-Saucedo, G., Velázquez-Rivera, M. E., … Corona-Rivera, A. (2017). Aneuploidy identification in pre-B acute lymphoblastic leukemia patients at diagnosis by Multiplex Ligation-dependent Probe Amplification (MLPA). Leukemia Research, 59(November 2016), 117–123. https://doi.org/10.1016/j.leukres.2017.05.022 | spa |
dc.relation.references | Vergara Domínguez, B., Cedré Hernández, T., Martínez Cárdenas, L., López García, C., González Seivane, F., & Pich León, V. (2005). Supervivencia y calidad de vida de pacientes con leucemia linfoide aguda. Resultados del Hospital Pediátrico «José Luis Miranda» (1969-2003). Revista Cubana de Pediatria, 77(3–4). | spa |
dc.relation.references | Veroni, C., Marnetto, F., Granieri, L., Bertolotto, A., Ballerini, C., Repice, A. M., … Aloisi, F. (2015). Immune and Epstein-Barr virus gene expression in cerebrospinal fluid and peripheral blood mononuclear cells from patients with relapsing-remitting multiple sclerosis. Journal of Neuroinflammation, 12(1), 1–18. https://doi.org/10.1186/s12974-015-0353-1 | spa |
dc.relation.references | Wang, L. H., & Baker, N. E. (2015). E Proteins and ID Proteins: Helix-Loop-Helix Partners in Development and Disease. Developmental Cell, 35(3), 269–280. https://doi.org/10.1016/j.devcel.2015.10.019 | spa |
dc.relation.references | Wickham, C. L., Boyce, M., Joyner, M. V., Sarsfield, P., Wilkins, B. S., Jones, D. B., & Ellard, S. (2000). Amplification of PCR products in excess of 600 base pairs using DNA extracted from decalcified, paraffin wax embedded bone marrow trephine biopsies. Journal of Clinical Pathology - Molecular Pathology, 53(1), 19–23. https://doi.org/10.1136/mp.53.1.19 | spa |
dc.relation.references | WHO. (2008). WHO Classification of Tumours: Pathology and Genetics. Tumours of Haematopoietic and Lymphoid Tissues. Clinical and Laboratory Haematology, 25(3), 201–201. https://doi.org/10.1046/j.1365-2257.2003.00518.x | spa |
dc.relation.references | Yao, R., Rich, S. A., & Schneider, E. (2002). Validation of sixteen leukemia and lymphoma cell lines as controls for molecular gene rearrangement assays. Clinical Chemistry, 48(8), 1344–1351. https://doi.org/10.1093/clinchem/48.8.1344 | spa |
dc.relation.references | Yoda, A., Yoda, Y., Chiaretti, S., Bar-Natan, M., Mani, K., Rodig, S. J., … Weinstock, D. M. (2010). Functional screening identifies CRLF2 in precursor B-cell acute lymphoblastic leukemia. Proceedings of the National Academy of Sciences of the United States of America, 107(1), 252–257. https://doi.org/10.1073/pnas.0911726107 | spa |
dc.relation.references | Zhu, W., Dahmen, J., Bulfone, a, Rigolet, M., Hernandez, M. C., Kuo, W. L., … Israel, M. a. (1995). Id gene expression during development and molecular cloning of the human Id-1 gene. Brain Research. Molecular Brain Research, 30(2), 312–326. Retrieved from http://www.ncbi.nlm.nih.gov/pubmed/7637581 | spa |
dc.relation.references | Zhu, Y., Weiss, T., Zhang, Q., Sun, R., Wang, B., Yi, X., … Guo, T. (2019). High-throughput proteomic analysis of FFPE tissue samples facilitates tumor stratification. Molecular Oncology, 13(11), 2305–2328. https://doi.org/10.1002/1878-0261.12570 | spa |
dc.rights.accessrights | info:eu-repo/semantics/openAccess | spa |
dc.rights.license | Atribución-NoComercial-SinDerivadas 4.0 Internacional | spa |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/4.0/ | spa |
dc.subject.ddc | 610 - Medicina y salud::616 - Enfermedades | spa |
dc.subject.decs | Leucemia | |
dc.subject.decs | Médula Ósea | |
dc.subject.decs | Bone Marrow | |
dc.subject.decs | Leucemia-Linfoma Linfoblástico de Células Precursoras | |
dc.subject.decs | Precursor Cell Lymphoblastic Leukemia-Lymphoma | |
dc.subject.decs | Genes | |
dc.subject.proposal | Leucemia linfoblástica aguda | spa |
dc.subject.proposal | FFPE | spa |
dc.subject.proposal | ID3 | spa |
dc.subject.proposal | IGJ | spa |
dc.subject.proposal | PreAmp | spa |
dc.subject.proposal | Acute lymphoblastic leukemia | eng |
dc.subject.proposal | FFPE | eng |
dc.subject.proposal | ID1 | eng |
dc.subject.proposal | ID3 | eng |
dc.subject.proposal | IGJ | eng |
dc.subject.proposal | Genes | spa |
dc.title | “Estudio piloto para la determinación de la expresión de ID1, ID3 e IGJ en Leucemia Linfoblástica Aguda B a partir de muestras de médula ósea” | spa |
dc.title.translated | "Pilot study for the determination of the expression of ID1, ID3 and IGJ in Acute Lymphoblastic Leukemia B from bone marrow samples" | eng |
dc.type | Trabajo de grado - Maestría | spa |
dc.type.coar | http://purl.org/coar/resource_type/c_bdcc | spa |
dc.type.coarversion | http://purl.org/coar/version/c_ab4af688f83e57aa | spa |
dc.type.content | Text | spa |
dc.type.driver | info:eu-repo/semantics/masterThesis | spa |
dc.type.redcol | http://purl.org/redcol/resource_type/TM | spa |
dc.type.version | info:eu-repo/semantics/acceptedVersion | spa |
oaire.accessrights | http://purl.org/coar/access_right/c_abf2 | spa |
oaire.awardtitle | “Estudio piloto para la determinación de la expresión de ID1, ID3 e IGJ en Leucemia Linfoblástica Aguda B a partir de muestras de médula ósea” | spa |
oaire.fundername | Instituto Nacional de Cancerología E.S.E | spa |
Archivos
Bloque original
1 - 1 de 1
Cargando...
- Nombre:
- 1018417049.2020.pdf
- Tamaño:
- 3.75 MB
- Formato:
- Adobe Portable Document Format
- Descripción:
- Tesis de Maestría en Genética Humana
Bloque de licencias
1 - 1 de 1
Cargando...
- Nombre:
- license.txt
- Tamaño:
- 3.87 KB
- Formato:
- Item-specific license agreed upon to submission
- Descripción: