Brian J. Aneskievich
Professor/Pharmaceutical Science
Storrs Mansfield
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Scholarly Contributions
69 Scholarly Contributions
Organotypic modeling of human keratinocyte response to peroxisome proliferators
2012
Research Type: Journal Article
PPARγ and NF-κB regulate the gene promoter activity of their shared repressor, TNIP1
2012
Research Type: Journal Article
Phosphorylation of integrin in differentiating tsRous sarcoma virusinfected myogenic cells
Research Type: Conference Proceedings
Receptor Control of Human Skin Cell Regeneration and Maturation
2011
Research Type: Poster/Presentation
Repressive Control of Keratinocyte Cytoplasmic Inflammatory Signaling
2023
Research Type: Journal Article
Seeing Keratinocyte Proteins through the Looking Glass of Intrinsic Disorder.
2021
Research Type: Journal Article
Sp sites contribute to basal and inducible expression of the human TNFα-Inducible Protein 3-Interacting Protein 1 (TNIP1) promoter
2013
Research Type: Journal Article
Substrate adsorbed collagen and cell secreted fibronectin concertedly induce cell migration on polylactideglycolide substrates
Research Type: Conference Proceedings
TNIP1 Regulates the Cell Stress Response through Repression of Heat Shock Proteins A6 and A1A.
2013
Research Type: Poster/Presentation
TNIP1 deficiency primes cells for increased signaling when challenged with TLR agonists
2016
Research Type: Poster/Presentation
TNIP1 deficiency promotes increased TLR signaling in keratinocytes
2017
Research Type: Poster/Presentation
TNIP1 in Autoimmune Diseases: Regulation of Toll-like Receptor Signaling
2018
Research Type: Journal Article
TNIP1 is a Novel Transcriptional Repressor of Heat Shock Protein A6
2012
Research Type: Poster/Presentation
TNIP1 loss sensitizes post-receptor signaling following exposure to TLR agonists
2016
Research Type: Poster/Presentation
TNIP1 reduction of HSPA6 gene expression occurs in promoter regions lacking binding sites for known TNIP1-repressed transcription factors.
2015
Research Type: Journal Article
TNIP1 reduction sensitizes keratinocytes to post-receptor signalling following exposure to TLR agonists.
2018
Research Type: Journal Article