Literature DB >> 26957308

Gene Expression Profiling of Evening Fatigue in Women Undergoing Chemotherapy for Breast Cancer.

Kord M Kober1, Laura Dunn2, Judy Mastick1, Bruce Cooper1, Dale Langford1, Michelle Melisko2, Alan Venook2, Lee-May Chen2, Fay Wright3, Marilyn Hammer3, Brian L Schmidt4, Jon Levine2, Christine Miaskowski1, Bradley E Aouizerat5.   

Abstract

Moderate-to-severe fatigue occurs in up to 94% of oncology patients undergoing active treatment. Current interventions for fatigue are not efficacious. A major impediment to the development of effective treatments is a lack of understanding of the fundamental mechanisms underlying fatigue. In the current study, differences in phenotypic characteristics and gene expression profiles were evaluated in a sample of breast cancer patients undergoing chemotherapy (CTX) who reported low (n = 19) and high (n = 25) levels of evening fatigue. Compared to the low group, patients in the high evening fatigue group reported lower functional status scores, higher comorbidity scores, and fewer prior cancer treatments. One gene was identified as upregulated and 11 as downregulated in the high evening fatigue group. Gene set analysis found 24 downregulated and 94 simultaneously up- and downregulated pathways between the two fatigue groups. Transcript origin analysis found that differential expression (DE) originated primarily from monocytes and dendritic cell types. Query of public data sources found 18 gene expression experiments with similar DE profiles. Our analyses revealed that inflammation, neurotransmitter regulation, and energy metabolism are likely mechanisms associated with evening fatigue severity; that CTX may contribute to fatigue seen in oncology patients; and that the patterns of gene expression may be shared with other models of fatigue (e.g., physical exercise and pathogen-induced sickness behavior). These results suggest that the mechanisms that underlie fatigue in oncology patients are multifactorial.
© The Author(s) 2016.

Entities:  

Keywords:  breast cancer; cancer; chemotherapy; diurnal variations in fatigue; fatigue; gene expression; inflammation

Mesh:

Substances:

Year:  2016        PMID: 26957308      PMCID: PMC5575784          DOI: 10.1177/1099800416629209

Source DB:  PubMed          Journal:  Biol Res Nurs        ISSN: 1099-8004            Impact factor:   2.522


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