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Maripat Corr

Researcher at University of California, San Diego

Publications -  181
Citations -  16492

Maripat Corr is an academic researcher from University of California, San Diego. The author has contributed to research in topics: Arthritis & Antigen. The author has an hindex of 63, co-authored 173 publications receiving 15253 citations. Previous affiliations of Maripat Corr include Veterans Health Administration & University of Rochester.

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HIF-1α Is Essential for Myeloid Cell-Mediated Inflammation

TL;DR: It is found that activation of HIF-1alpha is essential for myeloid cell infiltration and activation in vivo through a mechanism independent of VEGF, and its direct regulation of survival and function in the inflammatory microenvironment is demonstrated.
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Immunostimulatory DNA Sequences Necessary for Effective Intradermal Gene Immunization

TL;DR: Although ISS are necessary for gene vaccination, they down-regulate gene expression and thus may interfere with gene replacement therapy by inducing proinflammatory cytokines.
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Preferential induction of a Th1 immune response and inhibition of specific IgE antibody formation by plasmid DNA immunization

TL;DR: The data demonstrate that gene immunization induces a Th1 response that dominates over an ongoing protein-induced Th2 response in an antigen-specific manner, and suggests that immunization with pDNA encoding for allergens may provide a novel type of immunotherapy for allergic diseases.
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Gene vaccination with naked plasmid DNA: mechanism of CTL priming.

TL;DR: In this article, the injection of naked plasmid DNA directly into the muscle cells of mice has been shown to induce potent humoral and cellular immune responses, which are restricted to the MHC haplotype of the bone marrow alone and not to the second haplotype expressed by the recipient's myocytes.
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IL-5 links adaptive and natural immunity specific for epitopes of oxidized LDL and protects from atherosclerosis

TL;DR: IL-5 links adaptive and natural immunity specific to epitopes of OxLDL and protects from atherosclerosis, in part by stimulating the expansion of atheroprotective natural IgM specific for OxLDl.