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Regulatory feedback effects on tissue growth dynamics in a two-stage cell lineage model
- Source :
- Physical review. E, vol 104, iss 3-1, Phys Rev E
- Publication Year :
- 2021
- Publisher :
- eScholarship, University of California, 2021.
-
Abstract
- Identifying the mechanism of intercellular feedback regulation is critical for the basic understanding of tissue growth control in organisms. In this paper, we analyze a tissue growth model consisting of a single lineage of two cell types regulated by negative feedback signalling molecules that undergo spatial diffusion. By deriving the fixed points for the uniform steady states and carrying out linear stability analysis, phase diagrams are obtained analytically for arbitrary parameters of the model. Two different generic growth modes are found: blow-up growth and final-state controlled growth which are governed by the non-trivial fixed point and the trivial fixed point respectively, and can be sensitively switched by varying the negative feedback regulation on the proliferation of the stem cells. Analytic expressions for the characteristic time scales for these two growth modes are also derived. Remarkably, the trivial and non-trivial uniform steady states can coexist and a sharp transition occurs in the bistable regime as the relevant parameters are varied. Furthermore, the bi-stable growth properties allows for the external control to switch between these two growth modes. In addition, the condition for an early accelerated growth followed by a retarded growth can be derived. These analytical results are further verified by numerical simulations and provide insights on the growth behavior of the tissue. Our results are also discussed in the light of possible realistic biological experiments and tissue growth control strategy. Furthermore, by external feedback control of the concentration of regulatory molecules, it is possible to achieve a desired growth mode, as demonstrated with an analysis of boosted growth, catch-up growth and the design for the target of a linear growth dynamic.<br />Comment: to be published in Physical Review E
- Subjects :
- Cell signaling
Bistability
Physiological
1.1 Normal biological development and functioning
Fluids & Plasmas
FOS: Physical sciences
Cell lineage
Fixed point
Models, Biological
01 natural sciences
Article
Mathematical Sciences
Feedback
03 medical and health sciences
Engineering
Models
Underpinning research
Negative feedback
0103 physical sciences
Cell Lineage
Physics - Biological Physics
010306 general physics
Tissues and Organs (q-bio.TO)
030304 developmental biology
Phase diagram
Feedback, Physiological
Physics
0303 health sciences
Stem Cells
Dynamics (mechanics)
Quantitative Biology - Tissues and Organs
Biological
Accelerated Growth
Biological Physics (physics.bio-ph)
FOS: Biological sciences
Physical Sciences
Generic health relevance
Biological system
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Physical review. E, vol 104, iss 3-1, Phys Rev E
- Accession number :
- edsair.doi.dedup.....125fbba77d7266bc0675fc1147236832