Mathematical modelling of tissue growth control by positive and negative feedbacks

This study investigates the regulation of tissue growth through mathematical modeling of systemic and local feedback mechanisms. Employing reaction-diffusion equations, the models explore the dynamics of tissue growth, emphasizing endocrine signaling and inter-tissue communication. The analysis identifies critical factors influencing the emergence of spatial structures, bifurcation phenomena, the existence and stability of stationary pulse and wave solutions. It also elucidates mechanisms for achieving coordinated tissue growth. In particular, if negative feedback is sufficiently strong, their final finite size is provided by a stable pulse, otherwise they manifest unlimited growth in the form of a wave. These findings contribute to the theoretical insights into biological processes such as embryogenesis, regeneration, and tumor development, while highlighting the role of feedback systems in maintaining physiological homeostasis. © 2025 Elsevier B.V., All rights reserved.

Авторы
Kaźmierczak Bogdan 1 , Volpert Vitaly A. 2, 3
Журнал
Издательство
Public Library of Science
Номер выпуска
8 August
Язык
Английский
Статус
Опубликовано
Номер
e0319120
Том
20
Год
2025
Организации
  • 1 Institute of Fundamental Technological Research of the Polish Academy of Sciences, Warsaw, Poland
  • 2 Institut Camille Jordan, Villeurbanne, France
  • 3 RUDN University, Moscow, Russian Federation
Ключевые слова
apoptosis; Article; cell communication; cell division; cell proliferation; embryo development; erythropoiesis; fibroblast; growth rate; growth regulation; hematopoietic stem cell; homeostasis; mathematical model; negative feedback; physiological homeostasis; positive feedback; simulation; tissue growth; tumor microenvironment; wound healing; animal; biological model; human; physiological feedback; signal transduction; theoretical model; Animals; Feedback, Physiological; Humans; Models, Biological; Models, Theoretical
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