This article considers a mathematical model for tumour growth based on an acid-mediated hypothesis, i.e. the assumption that tumour progression is facilitated by acidification of the region around the tumour-host interface. The resulting destruction of the normal tissue environment promotes tumour growth. We will derive and analyse a reaction-diffusion model for tumour progression that includes different aspects of pathological and healthy cell metabolism to check tumour growth. Our results can provide insights into the governing dynamics of invasive processes that may suggest possible intervention strategies, leading to the design of new and better experiments or treatments
We propose a model for acid-mediated tumour invasion involving two different scales: the microscopic...
We present a mathematical model of the growth of tumours. The cells in the tumour are taken to proli...
The modelling of cancer provides an enormous mathematical challenge because of its inherent multisca...
Acidic pH is a common characteristic of human tumours. It has a significant impact on tumour progres...
The acid-mediation hypothesis, that is, the hypothesis that acid produced by tumours, as a result of...
Acidic pH is a common characteristic of human tumours. It has a significant impact on tumour progres...
Acidic pH is a common characteristic of human tumours. It has a significant impact on tumour progres...
We model the metabolism and behaviour of a developing cancer tumour in the context of its microenvir...
Human cancers exhibit the common phenotype of elevated glycolytic metabolism, which causes acidifica...
It is well established that the tumour microenvironment can both promote and suppress tumour growth ...
It is well established that the tumour microenvironment can both promote and suppress tumour growth ...
Hypoxia and the pH level of the tumor microenvironment have a great impact on the treatment of tumor...
Despite major scientific, medical and technological advances over the last few decades, a cure for c...
Despite major scientific, medical and technological advances over the last few decades, a cure for c...
Acid-mediated tumour invasion is receiving increasing experimental and clinical attention. Previous ...
We propose a model for acid-mediated tumour invasion involving two different scales: the microscopic...
We present a mathematical model of the growth of tumours. The cells in the tumour are taken to proli...
The modelling of cancer provides an enormous mathematical challenge because of its inherent multisca...
Acidic pH is a common characteristic of human tumours. It has a significant impact on tumour progres...
The acid-mediation hypothesis, that is, the hypothesis that acid produced by tumours, as a result of...
Acidic pH is a common characteristic of human tumours. It has a significant impact on tumour progres...
Acidic pH is a common characteristic of human tumours. It has a significant impact on tumour progres...
We model the metabolism and behaviour of a developing cancer tumour in the context of its microenvir...
Human cancers exhibit the common phenotype of elevated glycolytic metabolism, which causes acidifica...
It is well established that the tumour microenvironment can both promote and suppress tumour growth ...
It is well established that the tumour microenvironment can both promote and suppress tumour growth ...
Hypoxia and the pH level of the tumor microenvironment have a great impact on the treatment of tumor...
Despite major scientific, medical and technological advances over the last few decades, a cure for c...
Despite major scientific, medical and technological advances over the last few decades, a cure for c...
Acid-mediated tumour invasion is receiving increasing experimental and clinical attention. Previous ...
We propose a model for acid-mediated tumour invasion involving two different scales: the microscopic...
We present a mathematical model of the growth of tumours. The cells in the tumour are taken to proli...
The modelling of cancer provides an enormous mathematical challenge because of its inherent multisca...