Pregled bibliografske jedinice broj: 182276
Simulation of Mammalian Cell Population Dynamics
Simulation of Mammalian Cell Population Dynamics // Proceedings of the 26-th International Conference on Information Technology Interfaces / Luzar-Stiffler, Vesna ; Dobric-Hljuz, Vesna (ur.).
Zagreb: Sveučilišni računski centar Sveučilišta u Zagrebu (Srce), 2004. str. 35-41
CROSBI ID: 182276 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
Simulation of Mammalian Cell Population Dynamics
Autori
Kurtanjek, Zelimir
Vrsta, podvrsta i kategorija rada
Poglavlja u knjigama, znanstveni
Knjiga
Proceedings of the 26-th International Conference on Information Technology Interfaces
Urednik/ci
Luzar-Stiffler, Vesna ; Dobric-Hljuz, Vesna
Izdavač
Sveučilišni računski centar Sveučilišta u Zagrebu (Srce)
Grad
Zagreb
Godina
2004
Raspon stranica
35-41
ISBN
953-96769-9-1
Ključne riječi
mammalian cell, cell cycle, bioreactor control
Sažetak
Applied is a systems view to modelling of mammalian cell cultivation in a bioreactor for biotechnological applications. Proposed is a model with a hierarchical structure with three levels: the macroscopic level of a reactor, microscopic level of a cell population, and mo-lecular level of protein interactions with cyclin dependent kineases. The macroscopic model pro-vides basis for production process control by op-timal feeding of nutrients and growth factors during cultivation. The microscopic model sim-plifies a cell population into three pools of cells: P proliferating, Q quiescent, and D dead cells. Dynamics of cell population is determined by the least square estimation of the specific rates of the pool transitions. The molecular model enables theoretical basis for prediction of G1/S transition and the rate of transition from proliferating cells into quiescent state. Conceptual application of the molecular model in conjunction with the mammalian cell production system is discussed.
Izvorni jezik
Engleski
Znanstvena područja
Biotehnologija
POVEZANOST RADA
Projekti:
0058012
Ustanove:
Prehrambeno-biotehnološki fakultet, Zagreb
Profili:
Želimir Kurtanjek
(autor)