Fernando
Lecanda Cordero
Profesional Investigador
Ana
Patiño García
Consultora Investigadora
Publikationen, an denen er mitarbeitet Ana Patiño García (26)
2024
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Genetically inferred birthweight, height, and puberty timing and risk of osteosarcoma
Cancer Epidemiology, Vol. 92
2022
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Genomic and proteomic profiling of osteosarcoma
Bone Cancer: Bone Sarcomas and Bone Metastases - From Bench to Bedside (Elsevier), pp. 591-604
2020
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Frequency of Pathogenic Germline Variants in Cancer-Susceptibility Genes in Patients with Osteosarcoma
JAMA Oncology, Vol. 6, Núm. 5, pp. 724-734
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Wnt signaling and Loxl2 promote aggressive osteosarcoma
Cell Research, Vol. 30, Núm. 10, pp. 885-901
2019
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CYR61 triggers osteosarcoma metastatic spreading via an IGF1Rβ-dependent EMT-like process
BMC Cancer, Vol. 19, Núm. 1
2018
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Genome-wide association study identifies the GLDC/IL33 locus associated with survival of osteosarcoma patients
International Journal of Cancer, Vol. 142, Núm. 8, pp. 1594-1601
2016
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Erratum: Regulation of osteosarcoma cell lung metastasis by the c-Fos/AP-1 target FGFR1 (Oncogene (2016) 35 (2852-2861) DOI:10.1038/onc.2015.344)
Oncogene
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Matrix-Gla protein promotes osteosarcoma lung metastasis and associates with poor prognosis
Journal of Pathology, Vol. 239, Núm. 4, pp. 438-449
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Regulation of osteosarcoma cell lung metastasis by the c-Fos/AP-1 target FGFR1
Oncogene, Vol. 35, Núm. 22, pp. 2852-2861
2015
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A genome-wide scan identifies variants in NFIB associated with metastasis in patients with osteosarcoma
Cancer Discovery, Vol. 5, Núm. 9, pp. 920-931
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Analysis of heritability and shared heritability based on genome-wide association studies for thirteen cancer types
Journal of the National Cancer Institute, Vol. 107, Núm. 12
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Gene and proteomic profiling of osteosarcoma
Bone Cancer: Primary Bone Cancers and Bone Metastases: Second Edition (Elsevier Inc.), pp. 223-234
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Germline TP53 Variants and Susceptibility to Osteosarcoma
Journal of the National Cancer Institute, Vol. 107, Núm. 7
2014
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Imputation and subset-based association analysis across different cancer types identifies multiple independent risk loci in the TERT-CLPTM1L region on chromosome 5p15.33
Human Molecular Genetics, Vol. 23, Núm. 24, pp. 6616-6633
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The oncolytic adenovirus Δ24-RGD in combination with cisplatin exerts a potent anti-osteosarcoma activity
Journal of Bone and Mineral Research, Vol. 29, Núm. 10, pp. 2287-2296
2013
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ErbB3 silencing reduces osteosarcoma cell proliferation and tumor growth in vivo
Gene, Vol. 521, Núm. 1, pp. 55-61
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FHL2 Silencing Reduces Wnt Signaling and Osteosarcoma Tumorigenesis In Vitro and In Vivo
PLoS ONE, Vol. 8, Núm. 1
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Genome-wide association study identifies two susceptibility loci for osteosarcoma
Nature Genetics, Vol. 45, Núm. 7, pp. 799-803
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Zinc chelation: A metallothionein 2A's mechanism of action involved in osteosarcoma cell death and chemotherapy resistance
Cell Death and Disease, Vol. 4, Núm. 10
2012
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Calpain-6 is an endothelin-1 signaling dependent protective factor in chemoresistant osteosarcoma
International Journal of Cancer, Vol. 130, Núm. 11, pp. 2514-2525