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Nuria Laso

Publications and source records attributed to Nuria Laso.

4 recordsLinked to original sources

Simultaneous genotyping of CYP2C9*2, *3, and 5' flanking region (C-1189T) polymorphisms in a Spanish population through a new minisequencing multiplex single-base extension analysis.

OBJECTIVE: To conduct a descriptive study on the prevalence of relevant cytochrome P450 2C9 (CYP2C9) polymorphisms--the *2, *3, and 5' flanking region (C-1189T)--in a Spanish population using a new minisequencing fluorescent method through a multiplex single base extension (SBE) analysis. METHOD: The method simultaneously and accurately genotypes the CYP2C9 polymorphisms studied and is available as a commercial protocol (SNaPshot). Various strategies, including restriction fragment length polymorphism (RFLP) and Taqman, were used to validate the methodology. RESULTS: The frequencies of alleles CYP2C9*2 (12%) and *3 (6.2%) were similar to those described for other Caucasian populations. The frequency of allele t at the 5' flanking region was 62%, which is close to the percentage reported in Japanese and French populations. The four haplotypes inferred in our samples and their frequencies were consistent with those reported in other studies. CONCLUSION: Our results confirm previously reported Caucasian frequencies for the CYP2C9*2 and *3 alleles and, for the first time, provide data on the frequency of the CYP2C9 5' flanking region (C-1189T), a recently described polymorphism, in a Spanish population. The SBE technique detects unequivocally the three polymorphisms in a single reaction, which makes it suitable for the analysis of CYP2C9 in the many therapeutic situations in which it is involved.

5' Flanking Region↗

Induction of NAD(P)H quinone oxidoreductase by vegetables widely consumed in Catalonia, Spain.

Monofunctional inducers (MIs) enhance phase 2 enzymes such as nicotinamide-adenine-dinucleotide-phosphate [NAD(P)H] quinone oxidoreductase (NQO1) without modifying oxidation enzymes. The induction of these protective enzymes appears to be mediated by genetic regulatory elements in their promoter regions known as the antioxidant response element (ARE). The aim of this study was to identify, through an in vitro study, which of the 30 fruits and vegetables commonly consumed in Catalonia, Spain, contain MIs of NQO1. We assayed the capacity of extracts of these fruits and vegetables to induce NQO1 [by more than 1.5-fold: ratio of induction (cells treated/control) >1.5, 8-mg/ml dose] in two murine hepatoma cell lines: Hepa 1c1c7 and BPrC1, a modified cell line that possesses a nonfunctional aryl hydrocarbon receptor nuclear translocator system and is thus nonresponsive to bifunctional inducers. We also used a third cell line, papiloma (PE) murine keratinocytes, a stably transfected cell line with an ARE-luc+ plasmid (AREPE cell line) for verifying induction through the ARE with a simple luminescence screening assay. Broccoli (Hepa 1c1c7, ratio=5.5; BPrC1, ratio=2.3), calcot (Allium cepa L.) (Hepa 1c1c7, ratio=4.7; BPrC1, ratio=.5), green onion (Hepa 1c1c7, ratio=4.6; BPrC1, ratio=2), green cabbage (Hepa 1c1c7, ratio=3.6; BPrC1, ratio=2.7), purple cabbage (Hepa 1c1c7, ratio=3.4; BPrC1, ratio=2), and black cabbage (Hepa 1c1c7, ratio=3; BPrC1, ratio=3) were active NQO1 inducers in both murine hepatoma cell lines. Extracts from broccoli (ratio=3.5), calcot (ratio=4.8), cauliflower (ratio=4.2), cabbage (ratio=2.2), green onion (ratio=3.2), green cabbage (ratio=3.6), black cabbage (ratio=4.5), and purple cabbage (ratio=3.7) were confirmed to contain MIs in the AREPE cell line. These results are very similar to those described for vegetables consumed in the United States, with the exception of calcot, which is common in Catalonia but is not grown or consumed widely in the United States.

Animals↗

Decrease in specific micronutrient intake in colorectal cancer patients with tumors presenting Ki-ras mutation.

BACKGROUND: The diversity of the Mediterranean diet and the heterogeneity of acquired genetic alterations in colorectal cancer (CRC) led us to examine the possible association between dietary factors and mutations, such as Ki-ras mutations, in genes implicated in the pathogenesis of these neoplasms. PATIENTS AND METHODS: The study was based on 246 cases and 296 controls. For the molecular study only 117 patients with Ki-ras tumor expression were included. Dietary patterns were assessed using a semi-quantitative food frequency questionnaire. RESULTS: Patients with Ki-ras mutations in codon 12 (K12) consumed significantly less vitamin A (p=0.02), B1 (p=0.01), D (p=0.02) and iron (p=0.03) than controls, whereas patients without these mutations had similar intakes of these nutrients to controls. The consumption of fiber, folate, vitamin E and potassium was lower in the two subgroups of patients (K12-positive or -negative) than in controls. Mutation in codon 13 was not associated with any nutrient deficit. CONCLUSION: These results support previous findings that certain micronutrients protect against colorectal neoplasia and emphasize the importance of considering the different molecular forms of CRC as etiologically distinct diseases.

Aged↗