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Biomedical subjects

J M Ladero

Publications and source records attributed to J M Ladero.

At least 19 recordsLinked to original sources

Leflunomide-induced acute hepatitis.

Leflunomide, a new immunomodulatory agent, was prescribed to a 67-year-old female patient with rheumatoid arthritis. Fifteen days later she developed diarrhoea and elevated liver enzymes. A liver biopsy showed a pattern of acute hepatitis. The patient was homozygous for the rare CYP2C9*3 allele, which determines the slowest metabolic rate for CYP2C9 enzymatic activity, that is probably involved in the metabolism of leflunomide. Liver damage subsided in few weeks. This case illustrates the risk of hepatotoxicity by leflunomide and suggests that it is possibly related to CYP2C9 polymorphism.

Adjuvants, Immunologic↗

Hereditary hyperferritinemia-cataract syndrome. Study of a new family in Spain.

The hyperferritinemia-cataract syndrome, inherited as a Mendelian dominant trait, is due to mutations in the 5' non-coding region of the ferritin light chain gene that modifies the shape of the IRE (iron responsive element) region, which loses its normal function of regulating the synthesis of ferritin light chains. Excess of light chains results in complexes that accumulate into the lens giving rise to early cataracts. We present a Spanish family with seven affected members through three generations. A genetic study reveals a substitution of a single base (C-->T) at position 33 in the IRE sequence in the index case and in one affected brother, whereas a non-affected sister shows the normal sequence. The hyperferritinemia-cataract syndrome was identified in 1995 and is still poorly understood. Clinicians should suspect it when treating any subject with early cataracts, even more if they are familial, or in patients with very high levels of ferritinemia without evidence of iron overload. There are no known consequences of the syndrome other than cataracts, and its proper diagnosis carries a favorable prognosis and eliminates the risk of unnecessary phlebotomies.

Adult↗

[HFE gene mutations, hepatic iron content, and histological severity in hepatitis C virus-induced chronic hepatitis].

OBJECTIVE: To study whether any relationship exists between the C282Y and H63D mutations of the HFE gene, iron liver content, and the severity of histological damage in patients with hepatitis C virus (HCV)-induced chronic hepatitis. MATERIAL AND METHODS: In 72 patients diagnosed with HCV-chronic infection, naïve for antiviral therapy, and undergoing liver biopsy, the Knodell index was established, a morphometric evaluation of hepatic hemosiderin deposits was performed by using a semiautomatic method of image analysis, and mutations of the HFE gene were identified through a polymerase chain reaction on leukocyte genomic DNA by using specific restriction enzymes. The control group for the distribution of HFE genetic variants was composed of 181 healthy individuals with the same ethnic and geographical (white Spaniards) origin. RESULTS: (Cases/controls): 1. Genotype distribution: a) mutation C282Y: no homozygotes, 6/23 heterozygotes, 66/158 without the mutation (not significant, n.s.); b) mutation H63D: 2/5 homozygotes, 26/52 heterozygotes, 44/124 without the mutation (n.s.). compound heterozygotes 2/6. 2. Allele frequencies: a) mutation C282Y: 0.042/0.064 (n.s.); b) mutation H63D: 0.208/0.171 (n.s.). Four C282Y heterozygous patients had stainable liver iron (p=0.015 vs patients without mutations). Sixty-six patients were not carriers of the C282Y mutation; among them, 26.9% of 26 carriers and 15% of 40 non-carriers of the H63D mutation had liver stainable iron (n.s.). Knodell index score, gender, age at diagnosis, mode of transmission, and serum and liver iron values were not related to the HFE genotype. CONCLUSIONS: our results suggest that the C282Y mutation, but not the H63D mutation, of the HFE gene is frequently associated with stainable iron in the liver in HCV-related chronic hepatitis. The HFE genotype is not related to the histological severity of the disease.

Adult↗

N-acetyltransferase 2 polymorphism is not related to the risk of advanced alcoholic liver disease.

BACKGROUND: Ethanol abuse is the most prevalent cause of liver cirrhosis in Spain. Genetic polymorphisms affect the activity of the enzymes involved in ethanol metabolism and in processing the toxic by-products generated in the liver. N-acetyltransferase 2 (NAT2) is a polymorphic phase 2 enzyme not involved in these processes, but recent data suggest that the most prevalent slow acetylator genotype protects against the risk of advanced alcoholic liver disease (ALD). We have identified six single nucleotide polymorphisms (SNP) at the NAT2 gene locus in order to disclose whether such an association exists. METHODS: Genomic DNA from 95 ALD patients (15 with superimposed hepatocellular carcinoma (HCC)) and from 258 healthy individuals was analysed for SNPs at the coding region of the NAT2 gene by means of allele-specific polymerase chain reaction. RESULTS: There are no differences in the relative frequencies of the eight identified NAT2 alleles (including the wild-type allele) nor in the distribution of predicted phenotypes (54% of slow acetylators in each group). Twelve patients with HCC (80%) were slow acetylators (P < 0.05). CONCLUSIONS: There is no relationship between the NAT2 genotype and the risk of ALD. Slow acetylator genotype may predispose to the development of HCC in severe ALD patients not infected by the hepatitis C virus.

Adult↗

High frequency of mutations related to impaired CYP2C9 metabolism in a Caucasian population.

OBJECTIVE: To search for ethnic variability in the impact of cytochrome P450 2C9 (CYP2C9) polymorphism. METHODS: CYP2C9 allelic variants related to impaired CYP2C9 metabolism were analysed in genomic DNA from 157 Spanish healthy subjects using amplification-restriction and sequencing procedures. RESULTS: The frequency for CYP2C9 mutated alleles is higher among the Spanish subjects analysed than that reported for other Caucasian individuals: CYP2C9*2, 0.143 and CYP2C9*3, 0.162 (P = 0.0001). Nearly 10% of the individuals studied are expected to metabolise deficiently CYP2C9 substrates. CONCLUSION: In some Caucasian populations the impact of the CYP2C9 polymorphism may be much higher than that estimated from genotyping studies published to date.

Adult↗

Association of CYP2C9 genotypes leading to high enzyme activity and colorectal cancer risk.

CYP2C9 enzyme activity is involved in the metabolism of substances related to colorectal cancer, and it is functionally linked to a genetic polymorphism. Two allelic variants of the CYP2C9 gene, namely CYP2C9*2 and CYP2C9*3, differ from wild-type CYP2C9*1 by single amino acid substitutions. These mutated alleles encode enzymes with altered properties that are associated with impaired metabolism. The present study evaluates the impact of CYP2C9 genotypes leading to high enzyme activity on colorectal cancer risk. For this, the frequency of allelic variants of the CYP2C9 gene was analysed in genomic DNA from 129 patients with colorectal cancer and in 150 healthy controls. Patients with colorectal cancer showed a statistically significant increase in the frequency of genotypes homozygous for the active CYP2C9*1 gene, as compared with healthy individuals. Such a high frequency is more significant among patients with cancer in proximal segments of the colon (P < 0.025; odds ratio 2.36 95% CI 1.18-4.72), and decreases in more distal tumour locations. We conclude that CYP2C9 polymorphism can be considered as a secondary risk factor for colorectal cancer in the studied population: those individuals with genotypes leading to high enzyme activity were at increased risk. The association of the CYP2C9 polymorphism to colorectal cancer risk could be related to CYP2C9-mediated metabolic activation of polycyclic aromatic hydrocarbons and heterocyclic aromatic amines. In addition, the key role of CYP2C9 in the metabolic inactivation of non-steroidal anti- inflammatory drugs could diminish the protective effect of these drugs against colorectal cancer.

Alleles↗

Functionally active duplications of the CYP2D6 gene are more prevalent among larynx and lung cancer patients.

The cytochrome P450 CYP2D6 is a polymorphic drug-metabolizing enzyme that is involved in the metabolism of several drugs and xenobiotics. Several independent studies indicate that the CYP2D6 metabolic status is a secondary factor in the risk of developing lung cancer, with individuals with high activity being at increased risk. The occurrence of functionally active duplications of the CYP2D6 gene is a phenomenon that affects 3-8% of Caucasians and up to 30% in some ethnic groups. These duplications cause ultrarapid metabolism of CYP2D6 substrates. In order to establish whether the highest CYP2D6 enzyme activity is associated with an increased risk of cancer, we analyzed the frequency of CYP2D6 gene duplications and enzyme-inactivating mutations in 199 Caucasian patients with lung or larynx cancer and in 335 healthy controls. A significantly increased frequency of carriers of the CYP2D6 gene duplication were found among lung and larynx cancer patients (13%), as compared with healthy controls (6.9%; p < 0.02). The frequency of the mutated active CYP2D6*9 allele was increased in lung cancer patients (p < 0.01) but not in larynx cancer patients. Global findings indicate that over 20% patients with lung or larynx cancer show CYP2D6 genotypes leading to ultrarapid metabolism or to the expression of an enzyme with altered kinetics (p < 0.01 vs. healthy controls). This may influence the metabolism of CYP2D6 substrates, including antineoplastic drugs and opioid derivatives used for pain relief in cancer patients. These patients would require higher doses than those considered as standard. We conclude that dosages for CYP2D6 substrates should be adapted to lung and larynx cancer patients.

Adult↗

N-acetyltransferase 2 (NAT2) genotype and colorectal carcinoma: risk variability according to tumour site?

BACKGROUND: Dietary heterocyclic aromatic amines (HAAs) are members of a family of chemicals that comprise highly mutagenic compounds related to colon cancer. The polymorphic N-acetyltransferase 2 enzyme (NAT2, E.C. 2.3.1.5) plays a key role in the transformation of HAAs to ultimate carcinogens. NAT2 enzyme activity is expressed in a genotype-dependent manner in colon epithelium. Therefore local activation of HAAs in colon, and hence increased risk to develop colon cancer, is likely to be related to high NAT2 enzyme activity. This study is aimed at analysing the association between genotypes leading to high NAT2 activity and colorectal cancer risk. METHODS: Genomic DNA from 120 colorectal cancer patients and 258 healthy individuals were analysed for enzyme-inactivating mutations at the coding region of the NAT2 gene by means of a mutation-specific polymerase chain reaction. RESULTS: Among patients with sigmoid colon cancer, a significant excess of individuals with genotypes leading to high NAT2 activity was observed as compared both to controls and to the rest of patients with colorectal cancer (P < 0.05). CONCLUSIONS: Our findings, which require independent confirmation, suggest that the NAT2 genotype constitutes a secondary risk factor to develop sigmoid colon cancer.

Adolescent↗

Cigarette smoking, N-acetyltransferase 2 acetylation status, and bladder cancer risk: a case-series meta-analysis of a gene-environment interaction.

Tobacco use is an established cause of bladder cancer. The ability to detoxify aromatic amines, which are present in tobacco and are potent bladder carcinogens, is compromised in persons with the N-acetyltransferase 2 slow acetylation polymorphism. The relationship of cigarette smoking with bladder cancer risk therefore has been hypothesized to be stronger among slow acetylators. The few studies to formally explore such a possibility have produced inconsistent results, however. To assess this potential gene-environment interaction in as many bladder cancer studies as possible and to summarize results, we conducted a meta-analysis using data from 16 bladder cancer studies conducted in the general population (n = 1999 cases), Most had been conducted in European countries. Because control subjects were unavailable for a number of these studies, we used a case-series design, which can be used to assess multiplicative gene-environment interaction without inclusion of control subjects. A case-series interaction odds ratio (OR) > 1.0 indicates that the relationship of cigarette smoking and bladder cancer risk is stronger among slow acetylators as compared with rapid acetylators. We observed an interaction between smoking and N-acetyltransferase 2 slow acetylation (OR, 1.3; 95% confidence interval, 1.0-1.6) that was somewhat stronger when analyses were restricted to studies conducted in Europe (OR, 1.5; confidence interval, 1.1-1.9), a pooling that included nearly 80% of the collected data. Using the predominantly male European study population and assuming a 2.5-fold elevation in bladder cancer risk from smoking, we estimated that the population attributable risk percent was 35% for slow acetylators who had ever smoked and 13% for rapid acetylators who had ever smoked. These results suggest that the relationship of smoking and bladder cancer is stronger among slow acetylators than among rapid acetylators.

Acetylation↗

Expression in human prostate of drug- and carcinogen-metabolizing enzymes: association with prostate cancer risk.

The role of two common polymorphisms of enzymes involved in the metabolism of drugs and carcinogens was studied in relation to prostate cancer. The gene encoding one of these enzymes (NAT2) is located in an area where frequent allelic loss occurs in prostate cancer. Mutations at the genes CYP2D6 and NAT2 were analysed by allele-specific polymerase chain reaction and restriction mapping in DNA from 94 subjects with prostate cancer and 160 male healthy control subjects. Eleven prostate specimens were analysed for genotype and enzymatic activities NAT2, CYP2D6 and CYP3A by using the enzyme-specific substrates sulphamethazine and dextromethorphan. Enzyme activities with substrate specificities corresponding to NAT2, CYP2D6 and CYP3A are present in human prostate tissue, with mean +/-s.d. activities of 4.8+/-4.4 pmol min(-1) mg(-1) protein, 156+/-91 and 112+/-72 nmol min(-1) mg(-1) protein respectively. The Km values for the prostate CYP2D6 and CYP3A enzyme activities corresponded to that of liver CYP2D6 and CYP3A activities, and the CYP2D6 enzyme activity is related to the CYP2D6 genotype. The N-acetyltransferase, in contrast, had a higher Km than NAT2 and was independent of the NAT2 genotype. The CYP2D6 and CYP3A enzymes, and an N-acetyltransferase activity that is independent of the regulation of the NAT2 gene, are expressed in human prostate tissue. The presence of carcinogen-metabolizing enzymes in human prostate with a high interindividual variability may be involved in the regulation of local levels of carcinogens and mutagens and may underlie interindividual differences in cancer susceptibility.

Aged↗

Hepatitis G virus infection in Spanish patients with hepatocellular carcinoma.

AIMS/BACKGROUND: To establish the rate of infection with a newly discovered Flaviviridae family member hepatitis G virus (HGV) -- in Spanish patients with hepatocellular carcinoma (HCC), chronic alcoholic liver disease (CALD) with cirrhosis, or hepatitis C virus (HCV)-induced chronic hepatitis (CH). METHODS: The presence of HGV-RNA was assessed in sera of 117 patients divided in three groups: group 1: 40 patients with HCC (35 men, mean age 62.7 years, SD 10.9 years); group 2: 41 patients with chronic alcoholic liver disease (CALD) (36 men, mean age 52.5 years, SD 9.8 years); group 3: 36 patients with HCV-induced CH (27 men, mean age 35.8 years, SD 8.5 years). Serum samples were tested for HGV-RNA by specific reverse transcriptase-polymerase chain reaction (RT-PCR). Serological markers of hepatitis B virus (HBV) and HCV were investigated in all patients and were negative in CALD patients, as a prerequisite for their inclusion in the study. All patients in group 1 were also tested for HBV-DNA. RESULTS: Rates of HGV-RNA positivity were, respectively, 47%, 10% and 28% in groups 1, 2 and 3. Differences were significant between groups 1 and 2 (p=0.00017) and groups 2 and 3 (p= 0.042), but not between groups 1 and 3 (p=0.079). CONCLUSIONS: HGV infection is common in HCC patients, but usually in association with HCV, indicating that both agents share common routes of infection. HGV was the only hepatitis virus detected in 12% of HCC patients, but its possible role in the pathogenesis of HCC remains unclear.

Adult↗

Slow allotypic variants of the NAT2 gene and susceptibility to early-onset Parkinson's disease.

OBJECTIVE: To determine the frequency and the linkage distribution of seven mutations at the polymorphic gene coding for the arylamine N-acetyl transferase (NAT2; EC 2.3.1.5) in 121 unrelated patients with sporadic PD and in 121 unrelated healthy volunteers. METHODS: The study was performed with mutation-specific PCR using genomic DNA obtained from blood of the probands. RESULTS: Comparison of the NAT2 genotypes of the overall PD patients and control subjects did not indicate statistically significant differences. However, patients with early-onset PD (onset before the age of 50 years, n=37) showed a higher frequency of slow-acetylation genotypes (78.4% patients) compared with both healthy control subjects (55.4%) and with late-onset (onset after 51 years of age, n=84) PD patients (54.8%). Such a difference was statistically significant (p < 0.015) and was the result of a homogeneous increase in the frequency of slow-acetylation alleles. All subgroups analyzed in the study were in Hardy-Weinberg equilibrium for mutations at the NAT2 gene. CONCLUSIONS: Slow-acetylation-mutated alleles may be considered low-penetrance genes in early-onset PD pathogenesis, with a relative risk ratio for individuals with slow-acetylation genotype of 2.92 (95% CI, 1.26 to 6.78). This study provides evidence for the interaction of genetic and environmental factors in the etiology of sporadic PD.

Adult↗

CYP2D6, NAT2 and CYP2E1 genetic polymorphisms in nonagenarians.

BACKGROUND: enzymatic polymorphisms affecting the metabolic disposition of xenobiotics may modulate the rate of activation or deactivation of carcinogens and other toxic environmental chemicals. Hence, these polymorphisms may influence the risk of suffering some types of cancer and other degenerative diseases that are incompatible with extreme longevity. AIMS: to establish the distribution of three well known enzymatic polymorphisms that affect the CYP2D6, NAT-2 and CYP2E1 genes and the activity of their enzymatic gene products, involved in the disposition of many xenobiotics, in a group of nonagenarians and in much younger controls. PATIENTS: the three genotypes were determined in 41 nonagenarians (10 males, mean age 92.2 years, range 90-98) free of known malignancies or neurodegenerative diseases. The control groups comprised 217 healthy volunteers (128 males, mean age 36.3 years; SD, 12.7) for the CYP2D6 and NAT2 genotypes and 137 (116 males, mean age 32 years; SD, 18.8) for the CYP2E1 genotype. METHODS: after extraction of DNA from white blood cells, polymerase chain reaction and restriction fragment polymorphism methods were used to identify the allelic variants of the three genotypes. RESULTS: we found no qualitative or quantitative difference in the mutations underlying the three genetic polymorphisms studied, nor in the expected enzymatic phenotypes. Instead, a close parallelism exists between advanced age and younger groups. CONCLUSION: longevity does not seem to be related to any special configuration of these three polymorphic traits. Comparisons with younger controls may be adequate when studying the distribution of these polymorphisms in diseases affecting old people. No genetically determined differences in the activation of drugs metabolized by these enzymes are to be expected in very old people.

Aged↗