DocumentCode :
550660
Title :
Cellular communication-induced dynamics in a multicellular system
Author :
Yi Qizhi ; Du Yan
Author_Institution :
Sch. of Math. & Inf. Sci., Jiangxi Normal Univ., Nanchang, China
fYear :
2011
fDate :
22-24 July 2011
Firstpage :
5680
Lastpage :
5686
Abstract :
Traditionally, the main role of cell-cell communication was thought of as synchronizing a population of cells, thereby coordinating cellular behavior. Here, we show that cell density, which quantifies cellular communication, can induce multistability and multirhythmicity in a synthetic multicellular system, where individual oscillators are a merge of repressilator and hysteresis-based oscillator and are coupled through a quorum-sensing mechanism. Specifically, for moderately small cell densities, the coupled system can exhibit multistability including stable homogenous and inhomogeneous steady states. For moderately large cell densities, it has potentials to generate multirhythmicity including multi-mode oscillations such as in-phase period-1 oscillation, antiphase period-2 oscillation, asymmetric period-2 oscillation, and oscillations with mixed modes, coexistence of periodic orbits of several different modes, and bursting oscillations such as periodic bursting, torus quasi-periodic bursting, and chaos. Such versatility of cell-cell communication would be beneficial for cells or organisms to live in diversely changeable environments.
Keywords :
biological techniques; cellular biophysics; cellular radio; microorganisms; oscillators; antiphase period-2 oscillation; asymmetric period-2 oscillation; cell density; cell population; cell-cell communication; cellular communication-induced dynamics; coupled system; hysteresis-based oscillator; in-phase period-1 oscillation; mixed modes; multimode oscillations; multirhythmicity; periodic orbits; quorum-sensing mechanism; stable homogenous states; stable inhomogeneous steady states; synthetic multicellular system; torus quasiperiodic bursting; Bifurcation; Chaos; Limit-cycles; Orbits; Oscillators; Sensors; Steady-state; Multirhythmicity; Multistability; Quorum sensing; Synthetic genetic oscillator;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2011 30th Chinese
Conference_Location :
Yantai
ISSN :
1934-1768
Print_ISBN :
978-1-4577-0677-6
Electronic_ISBN :
1934-1768
Type :
conf
Filename :
6000999
Link To Document :
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