Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 7 de 7
Filter
Add more filters










Database
Language
Publication year range
1.
Cells ; 12(15)2023 07 27.
Article in English | MEDLINE | ID: mdl-37566035

ABSTRACT

Cardiotoxicity due to anthracyclines (CDA) affects cancer patients, but we cannot predict who may suffer from this complication. CDA is a complex trait with a polygenic component that is mainly unidentified. We propose that levels of intermediate molecular phenotypes (IMPs) in the myocardium associated with histopathological damage could explain CDA susceptibility, so variants of genes encoding these IMPs could identify patients susceptible to this complication. Thus, a genetically heterogeneous cohort of mice (n = 165) generated by backcrossing were treated with doxorubicin and docetaxel. We quantified heart fibrosis using an Ariol slide scanner and intramyocardial levels of IMPs using multiplex bead arrays and QPCR. We identified quantitative trait loci linked to IMPs (ipQTLs) and cdaQTLs via linkage analysis. In three cancer patient cohorts, CDA was quantified using echocardiography or Cardiac Magnetic Resonance. CDA behaves as a complex trait in the mouse cohort. IMP levels in the myocardium were associated with CDA. ipQTLs integrated into genetic models with cdaQTLs account for more CDA phenotypic variation than that explained by cda-QTLs alone. Allelic forms of genes encoding IMPs associated with CDA in mice, including AKT1, MAPK14, MAPK8, STAT3, CAS3, and TP53, are genetic determinants of CDA in patients. Two genetic risk scores for pediatric patients (n = 71) and women with breast cancer (n = 420) were generated using machine-learning Least Absolute Shrinkage and Selection Operator (LASSO) regression. Thus, IMPs associated with heart damage identify genetic markers of CDA risk, thereby allowing more personalized patient management.


Subject(s)
Cardiotoxicity , Neoplasms , Female , Animals , Mice , Cardiotoxicity/etiology , Anthracyclines/adverse effects , Genetic Markers , Antibiotics, Antineoplastic/therapeutic use , Neoplasms/drug therapy , Phenotype
2.
bioRxiv ; 2023 Jan 06.
Article in English | MEDLINE | ID: mdl-36712139

ABSTRACT

Cardiotoxicity due to anthracyclines (CDA) affects cancer patients, but we cannot predict who may suffer from this complication. CDA is a complex disease whose polygenic component is mainly unidentified. We propose that levels of intermediate molecular phenotypes in the myocardium associated with histopathological damage could explain CDA susceptibility; so that variants of genes encoding these intermediate molecular phenotypes could identify patients susceptible to this complication. A genetically heterogeneous cohort of mice generated by backcrossing (N = 165) was treated with doxorubicin and docetaxel. Cardiac histopathological damage was measured by fibrosis and cardiomyocyte size by an Ariol slide scanner. We determine intramyocardial levels of intermediate molecular phenotypes of CDA associated with histopathological damage and quantitative trait loci (ipQTLs) linked to them. These ipQTLs seem to contribute to the missing heritability of CDA because they improve the heritability explained by QTL directly linked to CDA (cda-QTLs) through genetic models. Genes encoding these molecular subphenotypes were evaluated as genetic markers of CDA in three cancer patient cohorts (N = 517) whose cardiac damage was quantified by echocardiography or Cardiac Magnetic Resonance. Many SNPs associated with CDA were found using genetic models. LASSO multivariate regression identified two risk score models, one for pediatric cancer patients and the other for women with breast cancer. Molecular intermediate phenotypes associated with heart damage can identify genetic markers of CDA risk, thereby allowing a more personalized patient management. A similar strategy could be applied to identify genetic markers of other complex trait diseases.

3.
Clin Pharmacol Ther ; 109(2): 462-470, 2021 02.
Article in English | MEDLINE | ID: mdl-32757270

ABSTRACT

Capecitabine-induced hand-foot syndrome (CiHFS) is a common dermatological adverse reaction affecting around 30% of patients with capecitabine-treated cancer, and the main cause of dose reductions and chemotherapy delays. To identify novel genetic factors associated with CiHFS in patients with cancer, we carried out an extreme-phenotype genomewide association study in 166 patients with breast and colorectal capecitabine-treated cancer with replication in a second cohort of 85 patients. We discovered and replicated a cluster of four highly correlated single-nucleotide polymorphisms associated with susceptibility to CiHFS at 20q13.33 locus (top hit = rs6129058, hazard ratio = 2.40, 95% confidence interval = 1.78-3.20; P = 1.2 × 10-8 ). Using circular chromosome conformation capture sequencing, we identified a chromatin contact between the locus containing the risk alleles and the promoter of CDH4, located 90 kilobases away. The risk haplotype was associated with decreased levels of CDH4 mRNA and the protein it encodes, R-cadherin (RCAD), which mainly localizes in the granular layer of the epidermis. In human keratinocytes, CDH4 downregulation resulted in reduced expression of involucrin, a protein of the cornified envelope, an essential structure for skin barrier function. Immunohistochemical analyses revealed that skin from patients with severe CiHFS exhibited low levels of RCAD and involucrin before capecitabine treatment. Our results uncover a novel mechanism underlying individual genetic susceptibility to CiHFS with implications for clinically relevant risk prediction.


Subject(s)
Antimetabolites, Antineoplastic/adverse effects , Cadherins/genetics , Capecitabine/adverse effects , Hand-Foot Syndrome/etiology , Hand-Foot Syndrome/genetics , Polymorphism, Single Nucleotide/genetics , Adult , Aged , Aged, 80 and over , Antimetabolites, Antineoplastic/therapeutic use , Capecitabine/therapeutic use , Cell Line , Female , Genetic Predisposition to Disease/genetics , Haplotypes/genetics , Humans , Keratinocytes/drug effects , Male , Middle Aged , Neoplasms/drug therapy , Neoplasms/genetics , Promoter Regions, Genetic/genetics , Risk
4.
Pharmacogenet Genomics ; 28(11): 245-250, 2018 11.
Article in English | MEDLINE | ID: mdl-30334909

ABSTRACT

OBJECTIVES: Taxanes and anthracyclines are widely used in the treatment of breast cancer, although the benefit is limited to a proportion of patients and predictive biomarkers for clinical outcome remain elusive. PATIENTS AND METHODS: We carried out a pharmacogenetic study in 181 patients with locally advanced breast cancer enrolled in a phase 2 randomized clinical trial (NCT00123929), where patients were randomly assigned to receive neoadjuvant single-agent docetaxel 100 mg/m(2) (n=84) or doxorubicin 75 mg/m(2) (n=97). We studied the association of 226 single nucleotide polymorphisms (SNPs) in 15 key drug biotransformation genes with neoadjuvant pathological tumor response residual cancer burden index to docetaxel and to doxorubicin. RESULTS: We identified a significant association for rs162561, an intronic SNP located in the cytochrome P450 family 1 subfamily B member 1 (CYP1B1) gene, with tumor response in patients treated with single-agent docetaxel (dominant model: ß=1.02, 95% confidence interval=0.49-1.55; P=1.77×10(-4)), and for rs717620, an SNP located in the promoter of the ATP-binding cassette subfamily C member 2 (ABCC2) gene, in patients treated with neoadjuvant doxorubicin (recessive model: ß=1.67; 95% confidence interval=0.26-3.11; P=0.02). CONCLUSION: We identified two polymorphisms in CYP1B1 and ABCC2 associated with tumor pathological response following docetaxel or doxorubicin neoadjuvant monotherapy, respectively. Although further validation is required, these variants could be potential predictive genetic markers for treatment outcome in breast cancer patients.


Subject(s)
Breast Neoplasms/drug therapy , Cytochrome P-450 CYP1B1/genetics , Multidrug Resistance-Associated Proteins/genetics , Neoplasm Recurrence, Local/drug therapy , Adult , Aged , Breast Neoplasms/genetics , Breast Neoplasms/pathology , Docetaxel/adverse effects , Docetaxel/therapeutic use , Doxorubicin/adverse effects , Doxorubicin/therapeutic use , Female , Genetic Association Studies , Humans , Middle Aged , Multidrug Resistance-Associated Protein 2 , Neoplasm Recurrence, Local/genetics , Neoplasm Recurrence, Local/pathology , Polymorphism, Single Nucleotide/genetics , Randomized Controlled Trials as Topic
5.
Breast Cancer Res Treat ; 167(1): 249-256, 2018 01.
Article in English | MEDLINE | ID: mdl-28913729

ABSTRACT

PURPOSE: Anthracyclines are widely used chemotherapeutic drugs that can cause progressive and irreversible cardiac damage and fatal heart failure. Several genetic variants associated with anthracycline-induced cardiotoxicity (AIC) have been identified, but they explain only a small proportion of the interindividual differences in AIC susceptibility. METHODS: In this study, we evaluated the association of low-frequency variants with risk of chronic AIC using the Illumina HumanExome BeadChip array in a discovery cohort of 61 anthracycline-treated breast cancer patients with replication in a second independent cohort of 83 anthracycline-treated pediatric cancer patients, using gene-based tests (SKAT-O). RESULTS: The most significant associated gene in the discovery cohort was ETFB (electron transfer flavoprotein beta subunit) involved in mitochondrial ß-oxidation and ATP production (P = 4.16 × 10-4) and this association was replicated in an independent set of anthracycline-treated cancer patients (P = 2.81 × 10-3). Within ETFB, we found that the missense variant rs79338777 (p.Pro52Leu; c.155C > T) made the greatest contribution to the observed gene association and it was associated with increased risk of chronic AIC in the two cohorts separately and when combined (OR 9.00, P = 1.95 × 10-4, 95% CI 2.83-28.6). CONCLUSIONS: We identified and replicated a novel gene, ETFB, strongly associated with chronic AIC independently of age at tumor onset and related to anthracycline-mediated mitochondrial dysfunction. Although experimental verification and further studies in larger patient cohorts are required to confirm our finding, we demonstrated that exome array data analysis represents a valuable strategy to identify novel genes contributing to the susceptibility to chronic AIC.


Subject(s)
Anthracyclines/adverse effects , Breast Neoplasms/genetics , Cardiotoxicity/genetics , Electron-Transferring Flavoproteins/genetics , Adult , Aged , Breast Neoplasms/complications , Breast Neoplasms/drug therapy , Breast Neoplasms/pathology , Cancer Survivors , Cardiotoxicity/physiopathology , Exome/genetics , Female , Gene Expression Regulation, Neoplastic , Genetic Association Studies , Genetic Predisposition to Disease , Heart Failure/chemically induced , Heart Failure/genetics , Heart Failure/pathology , Humans , Middle Aged , Mitochondria/drug effects , Mitochondria/pathology
6.
Pharmacogenet Genomics ; 27(12): 445-453, 2017 Dec.
Article in English | MEDLINE | ID: mdl-28961156

ABSTRACT

OBJECTIVES: Pediatric cancer survivors are a steadily growing population; however, chronic anthracycline-induced cardiotoxicity (AIC) is a serious long-term complication leading to considerable morbidity. We aimed to identify new genes and low-frequency variants influencing the susceptibility to AIC for pediatric cancer patients. PATIENTS AND METHODS: We studied the association of variants on the Illumina HumanExome BeadChip array in 83 anthracycline-treated pediatric cancer patients. In addition to single-variant association tests, we carried out a gene-based analysis to investigate the combined effects of common and low-frequency variants to chronic AIC. RESULTS: Although no single-variant showed an association with chronic AIC that was statistically significant after correction for multiple testing, we identified a novel significant association for G protein-coupled receptor 35 (GPR35) by gene-based testing, a gene with potential roles in cardiac physiology and pathology (P=7.0×10), which remained statistically significant after correction for multiple testing (PFDR=0.03). The greatest contribution to this observed association was made by rs12468485, a missense variant (p.Thr253Met, c.758C>T, minor allele frequency=0.04), with the T allele associated with an increased risk of chronic AIC and more severe symptomatic cardiac manifestations at low anthracycline doses. CONCLUSION: Using exome array data, we identified GPR35 as a novel susceptibility gene associated with chronic AIC in pediatric cancer patients.


Subject(s)
Anthracyclines/adverse effects , Antineoplastic Agents/adverse effects , Exome , Genetic Predisposition to Disease , Heart/drug effects , Leukemia/drug therapy , Osteosarcoma/drug therapy , Receptors, G-Protein-Coupled/genetics , Sarcoma, Ewing/drug therapy , Adolescent , Child , Child, Preschool , Female , Humans , Infant , Leukemia/physiopathology , Male , Osteosarcoma/complications , Sarcoma, Ewing/complications
7.
Drug Metab Pers Ther ; 31(1): 3-8, 2016 Mar.
Article in English | MEDLINE | ID: mdl-26581075

ABSTRACT

In this article, we present the progress driven by the recent technological advances and new revolutionary massive sequencing technologies in the field of human genetics. We discuss this knowledge in relation with drug response prediction, from the germline genetic variation compiled in the 1000 Genomes Project or in the Genotype-Tissue Expression project, to the phenome-genome archives, the international cancer projects, such as The Cancer Genome Atlas or the International Cancer Genome Consortium, and the epigenetic variation and its influence in gene expression, including the regulation of drug metabolism. This review is based on the lectures presented by the speakers of the Symposium "Human Genetics: International Projects & New Technologies" from the VII Conference of the Spanish Pharmacogenetics and Pharmacogenomics Society, held on the 20th and 21st of April 2015.


Subject(s)
Genetics, Medical/trends , Pharmacogenetics/trends , Precision Medicine/trends , Epigenesis, Genetic , Genetic Variation , Genome, Human , Humans , International Cooperation , Sequence Analysis, DNA/methods , Sequence Analysis, DNA/trends
SELECTION OF CITATIONS
SEARCH DETAIL
...