Modeling ex vivo hematopoiesis using chemical engineering metaphors


Autoria(s): Nielsen, LK; Papoutsakis, ET; Miller, WM
Data(s)

01/01/1998

Resumo

Ex vivo hematopoiesis is increasingly used for clinical applications. Models of ex vivo hematopoiesis are required to better understand the complex dynamics and to optimize hematopoietic culture processes. A general mathematical modeling framework is developed which uses traditional chemical engineering metaphors to describe the complex hematopoietic dynamics. Tanks and tubular reactors are used to describe the (pseudo-) stochastic and deterministic elements of hematopoiesis, respectively. Cells at any point in the differentiation process can belong to either an immobilized, inert phase (quiescent cells) or a mobile, active phase (cycling cells). The model describes five processes: (1) flow (differentiation), (2) autocatalytic formation (growth),(3) degradation (death), (4) phase transition from immobilized to mobile phase (quiescent to cycling transition), and (5) phase transition from mobile to immobilized phase (cycling to quiescent transition). The modeling framework is illustrated with an example concerning the effect of TGF-beta 1 on erythropoiesis. (C) 1998 Published by Elsevier Science Ltd. All rights reserved.

Identificador

http://espace.library.uq.edu.au/view/UQ:34971

Idioma(s)

eng

Palavras-Chave #Engineering, Chemical #Hematopoiesis #Mathematical Model #Differentiation #Tgf-beta 1 #Erythropoiesis #Growth-factor-beta #Tgf-beta #C-kit #Transforming Growth-factor-beta-1 #Cd34(+) Cells #Steel Factor #Cord-blood #Tnf-alpha #Progenitors #Differentiation
Tipo

Journal Article