Multi-omics data indicate that primary and lymph node oral cancer cells-derived extracellular vesicles carry cargo molecules with a specific aggressive pattern (2018)
- Authors:
- USP affiliated authors: WINCK, FLAVIA VISCHI - IQ ; PACHÓN, DIEGO MAURICIO RIAÑO - CENA
- Unidades: IQ; CENA
- Subjects: LINFONODOS; NEOPLASIAS
- Agências de fomento:
- Language: Inglês
- Imprenta:
- Publisher place: Philadelphia
- Date published: 2018
- Source:
- Título do periódico: Cancer Research
- ISSN: 0008-5472
- Volume/Número/Paginação/Ano: v. 78, n. 13, suppl., p. 1441 res. 5649, 2018
- Conference titles: Annual Meeting of the American Association for Cancer Research
-
ABNT
BUSSO-LOPES, Ariane Fidelis et al. Multi-omics data indicate that primary and lymph node oral cancer cells-derived extracellular vesicles carry cargo molecules with a specific aggressive pattern. Cancer Research. Philadelphia: Instituto de Química, Universidade de São Paulo. . Acesso em: 24 abr. 2024. , 2018 -
APA
Busso-Lopes, A. F., Carnielli, C. M., Winck, F. V., Riaño-Pachón, D. M., Oliveira, A. K. de, Costa, R. A., et al. (2018). Multi-omics data indicate that primary and lymph node oral cancer cells-derived extracellular vesicles carry cargo molecules with a specific aggressive pattern. Cancer Research. Philadelphia: Instituto de Química, Universidade de São Paulo. -
NLM
Busso-Lopes AF, Carnielli CM, Winck FV, Riaño-Pachón DM, Oliveira AK de, Costa RA, Rivera C, Caldana C, Fox JW, Leme AFP. Multi-omics data indicate that primary and lymph node oral cancer cells-derived extracellular vesicles carry cargo molecules with a specific aggressive pattern. Cancer Research. 2018 ; 78( 13): 1441 res. 5649.[citado 2024 abr. 24 ] -
Vancouver
Busso-Lopes AF, Carnielli CM, Winck FV, Riaño-Pachón DM, Oliveira AK de, Costa RA, Rivera C, Caldana C, Fox JW, Leme AFP. Multi-omics data indicate that primary and lymph node oral cancer cells-derived extracellular vesicles carry cargo molecules with a specific aggressive pattern. Cancer Research. 2018 ; 78( 13): 1441 res. 5649.[citado 2024 abr. 24 ] - Gene regulatory networks on transfer entropy (GRNTE): a novel approach to reconstruct gene regulatory interactions applied to a case study for the plant pathogen Phytophthora infestans
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