Structure-activity relationship study of the antimicrobial fragment 33-61 of bovine hemoglobin (2003)
- Authors:
- USP affiliated authors: DAFFRE, SIRLEI - ICB ; MIRANDA, MARIA TERESA MACHINI DE - IQ
- Unidades: ICB; IQ
- Assunto: PARASITOLOGIA
- Language: Inglês
- Imprenta:
- Source:
- Título do periódico: Anais
- Conference titles: American Peptide Symposium
-
ABNT
MACHADO, A. et al. Structure-activity relationship study of the antimicrobial fragment 33-61 of bovine hemoglobin. 2003, Anais.. San Diego: Instituto de Ciências Biomédicas, Universidade de São Paulo, 2003. . Acesso em: 13 maio 2024. -
APA
Machado, A., Sforca, M. L., Daffre, S., Miranda, A., Spisni, A., Pertinhez, T. A., & Miranda, M. T. M. de. (2003). Structure-activity relationship study of the antimicrobial fragment 33-61 of bovine hemoglobin. In Anais. San Diego: Instituto de Ciências Biomédicas, Universidade de São Paulo. -
NLM
Machado A, Sforca ML, Daffre S, Miranda A, Spisni A, Pertinhez TA, Miranda MTM de. Structure-activity relationship study of the antimicrobial fragment 33-61 of bovine hemoglobin. Anais. 2003 ;[citado 2024 maio 13 ] -
Vancouver
Machado A, Sforca ML, Daffre S, Miranda A, Spisni A, Pertinhez TA, Miranda MTM de. Structure-activity relationship study of the antimicrobial fragment 33-61 of bovine hemoglobin. Anais. 2003 ;[citado 2024 maio 13 ] - Structure-activity relationship of lactam bridge gomesin analogues
- Alanine series of the antimicrobial peptide gomesin: a structure-activity relationship study
- The micelle-bound structure of an antimicrobial peptide derived from the 'alfa'-chain of bovine hemoglobin isolated from the tick Boophilus microplus
- Structure-activity relationship study of shepherin I, a new glycine and histidine-rich antimicrobial peptide
- Synthesis of the conformationally constrained head-to-tail cyclic gomesin
- Structure-activity relationship of linear gomesin analogues
- Synthesis and properties of cyclic gomesin and analogues
- Biological and structural characterization of new linear gomesin analogues with improved therapeutic indices
- Effects of cysteines and hydrophobic residues replacements by alanines in the bioactivity of gomesin
- Structure-activity relationship studies of gomesin: importance of the disulfide bridges for conformation, bioactivities, and serum stability
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