Search Results - "Heninger, Erika"

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    Augmenting antitumor immune responses with epigenetic modifying agents by Héninger, Erika, Krueger, Timothy E G, Lang, Joshua M

    Published in Frontiers in immunology (04-02-2015)
    “…Epigenetic silencing of immune-related genes is a striking feature of the cancer genome that occurs in the process of tumorigenesis. This phenomena impacts…”
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    TPL2 kinase regulates the inflammatory milieu of the myeloma niche by Hope, Chelsea, Ollar, Samuel J., Heninger, Erika, Hebron, Ellen, Jensen, Jeffrey L., Kim, Jaehyup, Maroulakou, Ioanna, Miyamoto, Shigeki, Leith, Catherine, Yang, David T., Callander, Natalie, Hematti, Peiman, Chesi, Marta, Bergsagel, P. Leif, Asimakopoulos, Fotis

    Published in Blood (22-05-2014)
    “…Targeted modulation of microenvironmental regulatory pathways may be essential to control myeloma and other genetically/clonally heterogeneous cancers. Here we…”
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    Tc17 cells mediate vaccine immunity against lethal fungal pneumonia in immune deficient hosts lacking CD4+ T cells by Nanjappa, Som Gowda, Heninger, Erika, Wüthrich, Marcel, Gasper, David Joseph, Klein, Bruce S

    Published in PLoS pathogens (01-07-2012)
    “…Vaccines may help reduce the growing incidence of fungal infections in immune-suppressed patients. We have found that, even in the absence of CD4(+) T-cell…”
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    Reversible epigenetic alterations regulate class I HLA loss in prostate cancer by Rodems, Tamara S., Heninger, Erika, Stahlfeld, Charlotte N., Gilsdorf, Cole S., Carlson, Kristin N., Kircher, Madison R., Singh, Anupama, Krueger, Timothy E. G., Beebe, David J., Jarrard, David F., McNeel, Douglas G., Haffner, Michael C., Lang, Joshua M.

    Published in Communications biology (01-09-2022)
    “…Downregulation of HLA class I (HLA-I) impairs immune recognition and surveillance in prostate cancer and may underlie the ineffectiveness of checkpoint…”
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    Innate-adaptive crosstalk: how dendritic cells shape immune responses in the CNS by Clarkson, Benjamin D, Héninger, Erika, Harris, Melissa G, Lee, JangEun, Sandor, Matyas, Fabry, Zsuzsanna

    “…Dendritic cells (DCs) are a heterogeneous group of professional antigen presenting cells that lie in a nexus between innate and adaptive immunity because they…”
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    Mycobacteria-Induced Suppression of Autoimmunity in the Central Nervous System by Lee, JangEun, Sandor, Matyas, Heninger, Erika, Fabry, Zsuzsanna

    Published in Journal of neuroimmune pharmacology (01-06-2010)
    “…Mycobacterial suppression of central nervous system (CNS) autoimmunity has been demonstrated in various experimental models, epidemiological studies, and…”
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    Pin1 modulates the type 1 immune response by Esnault, Stephane, Braun, Ruedi K, Shen, Zhong-Jian, Xiang, Zhuzai, Heninger, Erika, Love, Robert B, Sandor, Matyas, Malter, James S

    Published in PloS one (21-02-2007)
    “…BACKGROUND/ABSTRACT: Immune responses initiated by T cell receptor (TCR) and costimulatory molecule mediated signaling culminate in maximal cytokine mRNA…”
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    Virally Activated CD8 T Cells Home to Mycobacterium bovis BCG-Induced Granulomas but Enhance Antimycobacterial Protection Only in Immunodeficient Mice by Hogan, Laura H, Co, Dominic O, Karman, Jozsef, Heninger, Erika, Suresh, M, Sandor, Matyas

    Published in Infection and Immunity (01-03-2007)
    “…The effect of secondary infections on CD4 T-cell-regulated chronic granulomatous inflammation is not well understood. Here, we have investigated the effect of…”
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    Protein Kinase Cε, Which Is Linked to Ultraviolet Radiation-Induced Development of Squamous Cell Carcinomas, Stimulates Rapid Turnover of Adult Hair Follicle Stem Cells by Singh, Ashok, Singh, Anupama, Sand, Jordan M., Heninger, Erika, Hafeez, Bilal Bin, Verma, Ajit K.

    Published in Journal of Skin Cancer (01-01-2013)
    “…To find clues about the mechanism by which kinase C epsilon (PKCε) may impart susceptibility to ultraviolet radiation (UVR)-induced development of cutaneous…”
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    Seasonal changes of proapoptotic soluble Fas ligand level in allergic rhinitis combined with asthma by Mezei, Györgyi, Lévay, Magdolna, Sepler, Zsuzsanna, Héninger, Erika, Kozma, Gergely Tibor, Cserháti, Endre

    Published in Pediatric allergy and immunology (01-09-2006)
    “…The function of apoptosis is to eliminate unnecessary or dangerous cells. The balance between production and death is important in the control of cell numbers…”
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    Abstract 1078: An immunosuppressive signature in bone marrow as a potential biomarker for recurrence of metastatic prostate cancer after prostatectomy by Sethakorn, Nan, Heninger, Erika, Sperger, Jamie M., Pienta, Kenneth J., Lang, Joshua M.

    Published in Cancer research (Chicago, Ill.) (01-07-2019)
    “…Abstract Background: Metastatic prostate cancer is the second leading cause of cancer-related deaths in US men. Nearly one-third of men develop recurrence…”
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    Integrated analysis of the tumor microenvironment using a reconfigurable microfluidic cell culture platform by Sethakorn, Nan, Heninger, Erika, Breneman, Matthew T., Recchia, Emma, Ding, Adeline B., Jarrard, David F., Hematti, Peiman, Beebe, David J., Kosoff, David

    Published in The FASEB journal (01-10-2022)
    “…The tumor microenvironment (TME) is a complex network of non‐malignant cells and stroma that perform a wide array of vital roles in tumor growth, immune…”
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    Abstract B24: A multicellular, microfluidic model of the human bone marrow niche in metastatic cancers by Sethakorn, Nan, Kosoff, David, Heninger, Erika, Soto, Jasmine Martinez, Yu, Jiaquan, Das, Rahul, Jarrard, David, Galipeau, Jacques, Hematti, Peiman, Dehm, Scott, Beebe, David J., Lang, Joshua M.

    Published in Cancer research (Chicago, Ill.) (01-06-2020)
    “…Abstract Bone metastases cause significant morbidity in solid tumors, with prostate, breast, lung, and kidney cancers representing the most common primary…”
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    Protective antifungal memory CD8(+) T cells are maintained in the absence of CD4(+) T cell help and cognate antigen in mice by Nanjappa, Som G, Heninger, Erika, Wüthrich, Marcel, Sullivan, Thomas, Klein, Bruce

    Published in The Journal of clinical investigation (01-03-2012)
    “…Individuals who are immunocompromised, including AIDS patients with few CD4(+) T cells, are at increased risk for opportunistic fungal infections. The…”
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