Publications by authors named "Clayton Bell"

Bladder cancers, and specifically urothelial carcinoma, have few effective treatment options, and tumors typically develop resistance against standard of care chemotherapies leading to significant mortality. The development of alternative therapies with increased selectivity and improved tolerability would significantly impact this patient population. Here, we investigate a novel colchicine derivative, CR42-24, with increased selectivity for the βIII tubulin subtype as a treatment for urothelial carcinoma.

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The biological effects of terahertz (THz) radiation have been observed across multiple levels of biological organization, however the sub-cellular mechanisms underlying the phenotypic changes remain to be elucidated. Filamentous protein complexes such as microtubules are essential cytoskeletal structures that regulate diverse biological functions, and these may be an important target for THz interactions underlying THz-induced effects observed at the cellular or tissue level. Here, we show disassembly of microtubules within minutes of exposure to extended trains of intense, picosecond-duration THz pulses.

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Objective: As a protective response, during starvation organisms withdraw energy from growth and reproduction to focus on cellular maintenance. Cancer cells cannot undergo this differential response which has been theorized as an adjunct to improve both the effect of chemotherapy treatment and reduce treatment side effects. We sought to investigate the feasibility and effect of short-term fasting in patients receiving chemotherapy for gynecologic malignancy.

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Background: Breast cancer is the second leading cause of cancer death for women in the United States and mortality from cancer is more common among individuals in the Appalachian region compared to the rest of the country. We examined how risk factors for long-term health outcomes for Estrogen positive breast cancer patients differed by county economic status in southern Appalachia.

Methods: Data was collected through retrospective data mining of patient medical files (N = 238).

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Microtubules (MTs), which are cylindrical protein filaments that play crucial roles in eukaryotic cell functions, have been implicated in electrical signalling as biological nanowires. We report on the small-signal AC ("alternating current") conductance of electrolytic solutions containing MTs and tubulin dimers, using a microelectrode system. We find that MTs (212 nM tubulin) in a 20-fold diluted BRB80 electrolyte increase solution conductance by 23% at 100 kHz, and this effect is directly proportional to the concentration of MTs in solution.

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