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Full-Text Articles in Medical Physiology

Standardization Of The Experimental Autoimmune Myasthenia Gravis (Eamg) Model By Immunization Of Rats With Torpedo Californica Acetylcholine Receptors- Recommendations For Methods And Experimental Designs., Mario Losen, Pilar Martinez-Martinez, Peter C. Molenaar, Konstantinos Lazaridis, Socrates Tzartos, Talma Brenner, Rui-Sheng Duan, Jie Luo, Jon Lindstrom, Linda Kusner Aug 2015

Standardization Of The Experimental Autoimmune Myasthenia Gravis (Eamg) Model By Immunization Of Rats With Torpedo Californica Acetylcholine Receptors- Recommendations For Methods And Experimental Designs., Mario Losen, Pilar Martinez-Martinez, Peter C. Molenaar, Konstantinos Lazaridis, Socrates Tzartos, Talma Brenner, Rui-Sheng Duan, Jie Luo, Jon Lindstrom, Linda Kusner

Pharmacology and Physiology Faculty Publications

Myasthenia gravis (MG) with antibodies against the acetylcholine receptor (AChR) is characterized by a chronic, fatigable weakness of voluntary muscles. The production of autoantibodies involves the dysregulation of T cells which provide the environment for the development of autoreactive B cells. The symptoms are caused by destruction of the postsynaptic membrane and degradation of the AChR by IgG autoantibodies, predominantly of the G1 and G3 subclasses. Active immunization of animals with AChR from mammalian muscles, AChR from Torpedo or Electrophorus electric organs, and recombinant or synthetic AChR fragments generates a chronic model of MG, termed experimental autoimmune myasthenia gravis (EAMG). …


Exposure To Phthalates Affects Calcium Handling And Intercellular Connectivity Of Human Stem Cell-Derived Cardiomyocytes, Nikki G. Posnack, Rabia Idrees, Hao Ding, Rafael Jaimes Iii, Gulnaz Stybayeva, Zaruhi Karabekian, Michael A. Laflamme, Narine Sarvazyan Mar 2015

Exposure To Phthalates Affects Calcium Handling And Intercellular Connectivity Of Human Stem Cell-Derived Cardiomyocytes, Nikki G. Posnack, Rabia Idrees, Hao Ding, Rafael Jaimes Iii, Gulnaz Stybayeva, Zaruhi Karabekian, Michael A. Laflamme, Narine Sarvazyan

Pharmacology and Physiology Faculty Publications

Background

The pervasive nature of plastics has raised concerns about the impact of continuous exposure to plastic additives on human health. Of particular concern is the use of phthalates in the production of flexible polyvinyl chloride (PVC) products. Di-2-ethylhexyl-phthalate (DEHP) is a commonly used phthalate ester plasticizer that imparts flexibility and elasticity to PVC products. Recent epidemiological studies have reported correlations between urinary phthalate concentrations and cardiovascular disease, including an increased risk of high blood pressure and coronary risk. Yet, there is little direct evidence linking phthalate exposure to adverse effects in human cells, including cardiomyocytes.

Methods and Results

The …


Guidelines For Pre-Clinical Assessment Of The Acetylcholine Receptor-Specific Passive Transfer Myasthenia Gravis Model - Recommendations For Methods And Experimental Designs., Linda L. Kusner, Mario Losen, Angela Vincent, Jon Lindstrom, Socrates Tzartos, Konstantinos Lazaridis, Pilar Martinez-Martinez Mar 2015

Guidelines For Pre-Clinical Assessment Of The Acetylcholine Receptor-Specific Passive Transfer Myasthenia Gravis Model - Recommendations For Methods And Experimental Designs., Linda L. Kusner, Mario Losen, Angela Vincent, Jon Lindstrom, Socrates Tzartos, Konstantinos Lazaridis, Pilar Martinez-Martinez

Pharmacology and Physiology Faculty Publications

Antibodies against the muscle acetylcholine receptor (AChR) are the most common cause of myasthenia gravis (MG). Passive transfer of AChR antibodies from MG patients into animals reproduces key features of human disease, including antigenic modulation of the AChR, complement-mediated damage of the neuromuscular junction, and muscle weakness. Similarly, AChR antibodies generated by active immunization in experimental autoimmune MG models can subsequently be passively transferred to other animals and induce weakness. The passive transfer model is useful to test therapeutic strategies aimed at the effector mechanism of the autoantibodies. Here we summarize published and unpublished experience using the AChR passive transfer …


Voltage-Gated Na+ Channel Activity Increases Colon Cancer Transcriptional Activity And Invasion Via Persistent Mapk Signaling, Carrie D. House, Bi-Dar Wang, Kristin Ceniccola, Russell Williams, May Simaan, Norman H. Lee, +7 Additional Authors Jan 2015

Voltage-Gated Na+ Channel Activity Increases Colon Cancer Transcriptional Activity And Invasion Via Persistent Mapk Signaling, Carrie D. House, Bi-Dar Wang, Kristin Ceniccola, Russell Williams, May Simaan, Norman H. Lee, +7 Additional Authors

Pharmacology and Physiology Faculty Publications

Functional expression of voltage-gated Na+ channels (VGSCs) has been demonstrated in multiple cancer cell types where channel activity induces invasive activity. The signaling mechanisms by which VGSCs promote oncogenesis remain poorly understood. We explored the signal transduction process critical to VGSC-mediated invasion on the basis of reports linking channel activity to gene expression changes in excitable cells. Coincidentally, many genes transcriptionally regulated by the SCN5A isoform in colon cancer have an over-representation of cis-acting sites for transcription factors phosphorylated by ERK1/2 MAPK. We hypothesized that VGSC activity promotes MAPK activation to induce transcriptional changes in invasion-related genes. Using …