Aaron D. Bossler, Ph.D.

Affiliations: 
2001 University of Iowa, Iowa City, IA 
Area:
Molecular Biology
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"Aaron Bossler"

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Lubomir P. Turek grad student 2001 University of Iowa
 (Keratinocyte-dependent regulation of the human papillomavirus oncogenes.)
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Publications

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Goel A, Nishikawa K, Futaya E, et al. (2019) Abstract LB-230: Quantitative immunohistochemistry for melanocortin 1 receptor using phosphor integrated dots Cancer Research. 79
Guseva NV, Jaber O, Stence AA, et al. (2018) Simultaneous detection of single-nucleotide variant, deletion/insertion, and fusion in lung and thyroid carcinoma using cytology specimen and an RNA-based next-generation sequencing assay. Cancer Cytopathology
Ferrand C, Deschamps M, Levitas A, et al. (2017) Xpert® BCR-ABL Ultra, a High Sensitivity Assay, Demonstrates a Limit of Detection Reaching MR4.5 and below Blood. 130: 1610-1610
Tilak A, Sompallae R, Stence A, et al. (2016) Abstract 01: Development of a targeted panel for acute myeloid leukemia (AML) by using next-generation sequencing (NGS) Clinical Cancer Research. 22: 1-1
Harris G, Bossler A. (2010) PTPN13 Expression Correlates with Survival in HPV+ HNSCC Otolaryngology–Head and Neck Surgery. 143: P70-P70
Lace MJ, Anson JR, Klingelhutz AJ, et al. (2009) Human papillomavirus (HPV) type 18 induces extended growth in primary human cervical, tonsillar, or foreskin keratinocytes more effectively than other high-risk mucosal HPVs. Journal of Virology. 83: 11784-94
Hoover AC, Strand GL, Nowicki PN, et al. (2009) Impaired PTPN13 phosphatase activity in spontaneous or HPV-induced squamous cell carcinomas potentiates oncogene signaling through the MAP kinase pathway. Oncogene. 28: 3960-70
Lace MJ, Anson JR, Klingelhutz AJ, et al. (2009) Interferon-beta treatment increases human papillomavirus early gene transcription and viral plasmid genome replication by activating interferon regulatory factor (IRF)-1. Carcinogenesis. 30: 1336-44
Nowicki P, Hoover A, De Geest K, et al. (2009) Protein tyrosine phosphatase nonreceptor 13 (PTPN13) is targeted by human papillomavirus 16 E6 in cervical epithelium Infectious Agents and Cancer. 4
Hoover A, Strand G, Nowicki P, et al. (2009) An invasion mechanism for human papillomavirus related cancers: HPV 16 E6 degrades PTPN13 allowing enhanced map kinase signaling Infectious Agents and Cancer. 4: 1-1
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