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Elementary,Middle School,High School,College,University,PHD
| Teaching Since: | Jul 2017 |
| Last Sign in: | 364 Weeks Ago, 1 Day Ago |
| Questions Answered: | 1850 |
| Tutorials Posted: | 1850 |
Graduate in Biology and Nutrition, MBA Finance
Florida State University
Aug-2000 - Jul-2007
Ass. Relationship Manager
Penn-Florida
Mar-2009 - Feb-2016
Logic Gates in Genetic Engineering (6% Total)
A wide range of bacterial species are known to localize to tumors after intravenous (IV) injection. This occurs for a wide variety of solid tumors, including brain, and breast cancers. These microbes impart their selectivity for tumors by exploiting the hypoxic microenvironment (i.e., low oxygen concentration), poor immune surveillance, and the increased availability of nutrients. This provides an additional cue that could be exploited to restrict infection to the tumor microenvironment (Figure 1). Using a genetic engineering approach, the capacity of bacteria to invade mammalian cells can be linked with the density of bacteria by placing invasin under the control of a simple hypoxia sensing genetic circuit.
Figure 1: Design for induction- dependent invasion of a cancer cell. Under conditions of low cell-density or normal aerobic growth, engineered bacteria are non-invasive. Above a critical cell density or in a hypoxic environment, sensors are activated resulting in the synthesis of invasin from the bacteria and the invasion of tumor cells.
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