71
TITLE: Application of bar adsorptive microextraction (BA mu E) for anti-doping control screening of anabolic steroids in urine matrices  Full Text
AUTHORS: Ahmad, SM; Almeida, C; Neng, NR; Nogueira, JMF;
PUBLISHED: 2014, SOURCE: JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES, VOLUME: 969
INDEXED IN: Scopus WOS CrossRef
74
TITLE: Sapwood of Carob Tree (Ceratonia siliqua L.) as a Potential Source of Bioactive Compounds
AUTHORS: Luisa Custodio ; Ana Luisa Escapa; Joao Patarra; Rosa Aligue; Fernando Albericio; Nuno Rosa Neng ; Jose Manuel F Florencio Nogueira; Anabela Romano ;
PUBLISHED: 2013, SOURCE: RECORDS OF NATURAL PRODUCTS, VOLUME: 7, ISSUE: 3
INDEXED IN: Scopus WOS
75
TITLE: CHEMICAL CONSTITUENTS OF Chenopodium ambrosioides var. anthelminticum HERB ESSENTIAL OIL FROM NIGERIA  Full Text
AUTHORS: Adebayo A Gbolade; Vania Tira Picos; Jose M F Nogueria;
PUBLISHED: 2010, SOURCE: CHEMISTRY OF NATURAL COMPOUNDS, VOLUME: 46, ISSUE: 4
INDEXED IN: Scopus WOS CrossRef
76
TITLE: Analysis of Leaf Essential Oil Constituents of Cinnamomum zeylanicum Grown in Nigeria
AUTHORS: Tira Picos, V; Gbolade, AA; Nogueria, JMF; Ajibesin, KK;
PUBLISHED: 2009, SOURCE: JOURNAL OF ESSENTIAL OIL BEARING PLANTS, VOLUME: 12, ISSUE: 1
INDEXED IN: Scopus WOS
77
TITLE: Comparative analysis of essential oils from the leaf, fruit and stem bark of Harungana madagascariensis  Full Text
AUTHORS: Gbolade, AA; Tira Picos, V; Nogueira, JMF; Oladele, AT;
PUBLISHED: 2009, SOURCE: International Journal of Green Pharmacy, VOLUME: 3, ISSUE: 4
INDEXED IN: Scopus CrossRef
79
TITLE: Fatty acid synthase down-regulation increases the resistance of Saccharomyces cerevisiac cells to H2O2  Full Text
AUTHORS: Ana C Matias; Nuno Pedroso; Nuno Teodoro; Susana S Marinho ; Fernando Antunes; Jose Manuel Nogueira; Enrique Herrero; Luisa Cyrne;
PUBLISHED: 2007, SOURCE: European Meeting of the Society-for-Free-Radical-Research-Europe (SFRR-Europe) in FREE RADICAL RESEARCH, VOLUME: 41
INDEXED IN: WOS
80
TITLE: Down-regulation of fatty acid synthase increases the resistance of Saccharomyces cerevisiae cells to H2O2  Full Text
AUTHORS: MATIAS, A; PEDROSO, N; TEODORO, N; MARINHO, H; ANTUNES, F; NOGUEIRA, J; HERRERO, E; CYRNE, L;
PUBLISHED: 2007, SOURCE: Free Radical Biology and Medicine, VOLUME: 43, ISSUE: 10
INDEXED IN: CrossRef
IN MY: ORCID
Page 8 of 9. Total results: 88.