paper-with-me

홈 › Papers

The impact of cellular characteristics on the evolution of shape homeostasis

2017-02-17

The importance of individual cells in a developing multicellular organism is well known but precisely how the individual cellular characteristics of those cells collectively drive the emergence of robust, homeostatic structures is less well understood. For example cell communication via a diffusible factor allows for information to travel across large distances within the population, and cell polarisation makes it possible to form structures with a particular orientation, but how do these processes interact to produce a more robust and regulated structure? In this study we investigate the ability of cells with different cellular characteristics to grow and maintain homeostatic structures. We do this in the context of an individual-based model where cell behaviour is driven by an intra-cellular network that determines the cell phenotype. More precisely, we investigated evolution with 96 different permutations of our model, where cell motility, cell death, long-range growth factor (LGF), short-range growth factor (SGF) and cell polarisation were either present or absent. The results show that LGF has the largest positive impact on the fitness of the evolved solutions. SGF and polarisation also contribute, but all other capabilities essentially increase the search space, effectively making it more difficult to achieve a solution. By perturbing the evolved solutions, we found that they are highly robust to both mutations and wounding. In addition, we observed that by evolving solutions in more unstable environments they produce structures that were more robust and adaptive. In conclusion, our results suggest that robust collective behaviour is most likely to evolve when cells are endowed with long range communication, cell polarisation, and selection pressure from an unstable environment.

📄 PDF Abstract BibTeX arXiv:1512.02474

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Selection for short-term empowerment accelerates the evolution of homeostatic neural cellular automata

2023-05-24 · Caitlin Grasso, Josh Bongard

Empowerment -- a domain independent, information-theoretic metric -- has previously been shown to assist in the evolutionary search for neural cellular automata (NCA) capable of homeostasis when employed as a fitness fun…

The morphodynamics of 3D migrating cancer cells

2018-07-27 · Christopher Z. Eddy, Xinyao Wang, Fuxin Li, Bo Sun

Cell shape is an important biomarker that is directly linked to cell function. However, cell morphodynamics, namely the temporal fluctuation of cell shape is much less understood. We study the morphodynamics of MDA-MB-23…

Adaptability and Homeostasis in the Game of Life interacting with the evolved Cellular Automata

2024-05-09 · Keisuke Suzuki, Takashi Ikegami

In this paper we study the emergence of homeostasis in a two-layer system of the Game of Life, in which the Game of Life in the first layer couples with another system of cellular automata in the second layer. Homeostasi…

An increase in membrane cholesterol by graphene oxide disrupts calcium homeostasis in primary astrocytes

2019-03-20

The use of graphene nanomaterials (GNMs) for biomedical applications targeted to the central nervous system is exponentially increasing, although precise information on their effects on brain cells is lacking. In this wo…

Quantitative analysis of cell size control mechanisms

2025-05-26 · Shuqi Fan, Jinzhi Lei

Cell size control is crucial for maintaining cellular function and homeostasis. In this study, we develop a first-order partial differential equation model to examine the effects of three key size control mechanisms: the…