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Medicine and Health Sciences Commons

Open Access. Powered by Scholars. Published by Universities.®

Medical Cell Biology

Thomas Jefferson University

2010

Department of Biochemistry and Molecular Biology

Articles 1 - 2 of 2

Full-Text Articles in Medicine and Health Sciences

Phosphorylation Meets Nuclear Import: A Review., Jonathan D Nardozzi, Kaylen Lott, Gino Cingolani Dec 2010

Phosphorylation Meets Nuclear Import: A Review., Jonathan D Nardozzi, Kaylen Lott, Gino Cingolani

Department of Biochemistry and Molecular Biology Faculty Papers

Phosphorylation is the most common and pleiotropic modification in biology, which plays a vital role in regulating and finely tuning a multitude of biological pathways. Transport across the nuclear envelope is also an essential cellular function and is intimately linked to many degeneration processes that lead to disease. It is therefore not surprising that phosphorylation of cargos trafficking between the cytoplasm and nucleus is emerging as an important step to regulate nuclear availability, which directly affects gene expression, cell growth and proliferation. However, the literature on phosphorylation of nucleocytoplasmic trafficking cargos is often confusing. Phosphorylation, and its mirror process dephosphorylation, …


Physiologically Based Pharmacokinetics Of Molecular Imaging Nanoparticles For Mrna Detection Determined In Tumor-Bearing Mice., Armin W Opitz, Eric Wickstrom, Mathew L Thakur, Norman J Wagner Jun 2010

Physiologically Based Pharmacokinetics Of Molecular Imaging Nanoparticles For Mrna Detection Determined In Tumor-Bearing Mice., Armin W Opitz, Eric Wickstrom, Mathew L Thakur, Norman J Wagner

Kimmel Cancer Center Faculty Papers

Disease detection and management might benefit from external imaging of disease gene mRNAs. Previously we designed molecular imaging nanoparticles (MINs) based on peptide nucleic acids complementary to cancer gene mRNAs. The MINs included contrast agents and analogs of insulin-like growth factor 1 (IGF-1). Analysis of MIN tumor uptake data showed stronger binding in tumors than in surrounding tissues. We hypothesized that MINs with an IGF-1 analog stay in circulation by binding to IGF-binding proteins. To test that hypothesis, we fit the tissue distribution results of several MINs in xenograft-bearing mice to a physiological pharmacokinetics model. Fitting experimental tissue distribution data …