Purpose Minimal clinical trial participation among adolescents and young adults (AYAs) with cancer limits scientific progress and ultimately their clinical care and outcomes. These analyses examine the current state of AYA clinical research participation at a Midwestern comprehensive cancer center and affiliated pediatric hospital to advise program development and increase availability of trials and AYA participation. Enrollment is examined across all diagnoses, the entire AYA age spectrum (15–39), and both cancer therapeutic and supportive care protocols. Methods This study was a retrospective review of electronic medical records via existing databases and registries for all AYAs. Data were collected for AYAs seen by an oncologist at the adult outpatient cancer center or at the pediatric hospital between the years 2010 and 2014. Descriptive statistics and logistic regression analyses were conducted to characterize this sample. Results In the pediatric setting, 42.3% of AYAs were enrolled in a study compared to 11.2% in the adult setting. Regression analyses in the pediatric setting revealed that AYAs with private insurance or Caucasian race were more likely to participate. Within the adult setting, ethnicity, race, insurance, and diagnosis were associated with study participation; 54.8% of study enrollments were for cancer therapeutic and 43.4% for supportive care studies. Conclusions These results are comparable to previously published data and support the need for new local and national AYA initiatives to increase the availability of and enrollment in therapeutic clinical trials. The same is true for supportive care studies which play a crucial role in improving quality of life.
Purpose: This study determined the molecular characteristics and clinical significance of amplification of the 13q31 chromosomal region in alveolar rhabdomyosarcoma (ARMS), an aggressive pediatric cancer with frequent PAX3-FOXO1 and PAX7-FOXO1 gene fusions.Experimental Design: The 13q31 amplicon was localized in an initial panel of ARMS cases using oligonucleotide arrays. A fluorescence in situ hybridization assay for this localized region was designed, and applied to more ARMS cases to determine the frequency and distribution of amplification. Quantitative reverse transcription-PCR assays were applied to measure gene expression. The clinical significance of copy number and expression was determined with Kaplan-Meier and Cox proportional hazard models.Results: We localized the 13q31 amplicon to a 0.15 Mb region containing the MIR17HG gene encoding the polycistronic microRNA cluster, miR-17-92. This amplicon is present in 23% of ARMS cases with a marked preference for PAX7-FOXO1-positive cases. In tumors with 13q31 amplification, there is significantly increased expression of 5 of 6 microRNA's within the miR-17-92 cluster (miR-17, miR-19a, miR19b, miR-20a, and miR-92a). In addition, a subset of nonamplified tumors with copy number-independent overexpression of all 6 microRNA's was identified. In clinical analyses, there was a significantly worse outcome associated with increased expression of the 5 microRNA's described above in 13q31-amplified cases when compared to nonamplified cases. There was also an improved outcome in 13q31-amplified cases with lower expression of these microRNA's.Conclusions: 13q31 amplification and expression of the miR-17-92 cluster provide novel markers for identifying good and poor prognostic subsets of PAX7-FOXO1-positive ARMS.
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