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Elizabeth A. Rondini

Researcher at Wayne State University

Publications -  12
Citations -  382

Elizabeth A. Rondini is an academic researcher from Wayne State University. The author has contributed to research in topics: Regulation of gene expression & Constitutive androstane receptor. The author has an hindex of 7, co-authored 12 publications receiving 225 citations.

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Deconstructing Adipogenesis Induced by β3-Adrenergic Receptor Activation with Single-Cell Expression Profiling.

TL;DR: The power of scRNA-seq to deconstruct adipogenic niches is demonstrated and novel functional interactions among resident stromal cell subpopulations are suggested to suggest novel functional interaction among resident immune cells.
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Single cell approaches to address adipose tissue stromal cell heterogeneity

TL;DR: Single cell RNA sequencing (scRNAseq) has emerged as a powerful tool for deconvolving cellular heterogeneity and holds promise for understanding the development and plasticity of adipose tissue under normal and pathological conditions.
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Novel pharmacological probes reveal ABHD5 as a locus of lipolysis control in white and brown adipocytes.

TL;DR: The results indicate that the overall pattern of lipolysis controlled by AB HD5 ligands is similar to that of isoproterenol, and that ABHD5 plays a central role in the regulation of adipocytelipolysis.
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Regulation of Human Cytosolic Sulfotransferases 1C2 and 1C3 by Nuclear Signaling Pathways in LS180 Colorectal Adenocarcinoma Cells

TL;DR: These findings are the first to characterize the regulation of human SULT1C2 and SULT2C3 expression by several transcription factor activators and determined that responsive regions for LXR and VDR are likely contained within intron 1 of the SULT 1C2 gene.
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Farnesol induces fatty acid oxidation and decreases triglyceride accumulation in steatotic HepaRG cells.

TL;DR: It is shown that FOH treatment increases fatty acid oxidation and decreases TG accumulation in steatotic HepaRG cells, which is likely attributable to PPAR&agr;‐mediated induction of mitochondrial fatty acids oxidation.