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January 28, 2014Journal of Clinical Oncology161 citations

Hyaluronan Synthase 3 Variant and Anthracycline-Related Cardiomyopathy: A Report From the Children's Oncology Group

XWXuexia WangWLWei LiuCSCan-Lan Sun

Structured PICO

Does the rs2232228 AA genotype in the HAS3 gene increase the risk of anthracycline-related cardiomyopathy in patients exposed to high-dose anthracyclines?

P
Population
363 patients from the Children's Oncology Group exposed to anthracyclines, comprising a discovery cohort of 287 patients (93 cases with cardiomyopathy, 194 matched controls) and an independent replication cohort of 76 patients with anthracycline-related cardiomyopathy.
I
Intervention
rs2232228 AA genotype in the hyaluronan synthase 3 (HAS3) gene, particularly in the context of high-dose (> 250 mg/m2) anthracycline exposure
C
Comparator
rs2232228 GG genotype
O
Outcome
Anthracycline-related cardiomyopathyhard clinical

The rs2232228 AA genotype in the HAS3 gene significantly increases the risk of anthracycline-related cardiomyopathy in patients exposed to high doses, suggesting a genetic susceptibility to anthracycline cardiotoxicity.

Abstract

PURPOSE: The strong dose-dependent association between anthracyclines and cardiomyopathy is further exacerbated by the co-occurrence of cardiovascular risk factors (diabetes and hypertension). The high morbidity associated with cardiomyopathy necessitates an understanding of the underlying pathogenesis so that targeted interventions can be developed. PATIENTS AND METHODS: By using a two-stage design, we investigated host susceptibility to anthracycline-related cardiomyopathy by using the ITMAT/Broad CARe cardiovascular single nucleotide polymorphism (SNP) array to profile common SNPs in 2,100 genes considered relevant to de novo cardiovascular disease. RESULTS: By using a matched case-control design (93 cases, 194 controls), we identified a common SNP, rs2232228, in the hyaluronan synthase 3 (HAS3) gene that exerts a modifying effect on anthracycline dose-dependent cardiomyopathy risk (P = 5.3 × 10(-7)). Among individuals with rs2232228 GG genotype, cardiomyopathy was infrequent and not dose related. However, in individuals exposed to high-dose (> 250 mg/m(2)) anthracyclines, the rs2232228 AA genotype conferred an 8.9-fold (95% CI, 2.1- to 37.5-fold; P = .003) increased cardiomyopathy risk compared with the GG genotype. This gene-environment interaction was successfully replicated in an independent set of 76 patients with anthracycline-related cardiomyopathy. Relative HAS3 mRNA levels measured in healthy hearts tended to be lower among individuals with AA compared with GA genotypes (P = .09). CONCLUSION: Hyaluronan (HA) produced by HAS3 is a ubiquitous component of the extracellular matrix and plays an active role in tissue remodeling. In addition, HA is known to reduce reactive oxygen species (ROS) -induced cardiac injury. The high cardiomyopathy risk associated with AA genotype could be due to inadequate remodeling and/or inadequate protection of the heart from ROS-mediated injury on high anthracycline exposure.

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Cite This Study

Wang et al. (2014) studied this question.

synapsesocial.com/papers/6a87d521f8efd6d7e4fb18f0https://doi.org/10.1200/jco.2013.50.3557
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