Mathematical modeling of tumor-immune cell interactions
GE Mahlbacher, KC Reihmer, HB Frieboes - Journal of Theoretical Biology, 2019 - Elsevier
The anti-tumor activity of the immune system is increasingly recognized as critical for the
mounting of a prolonged and effective response to cancer growth and invasion, and for …
mounting of a prolonged and effective response to cancer growth and invasion, and for …
Hyperchaotic behaviors, optimal control, and synchronization of a nonautonomous cardiac conduction system
In this paper, the hyperchaos analysis, optimal control, and synchronization of a
nonautonomous cardiac conduction system are investigated. We mainly analyze, control …
nonautonomous cardiac conduction system are investigated. We mainly analyze, control …
[HTML][HTML] Cancer modeling: From mechanistic to data-driven approaches, and from fundamental insights to clinical applications
Cancer is still one of the major causes of death worldwide. Even if its comprehension is
improving continuously, the complexity and heterogeneity of this group of diseases …
improving continuously, the complexity and heterogeneity of this group of diseases …
A new fractional model and optimal control of a tumor-immune surveillance with non-singular derivative operator
In this paper, we present a new fractional-order mathematical model for a tumor-immune
surveillance mechanism. We analyze the interactions between various tumor cell …
surveillance mechanism. We analyze the interactions between various tumor cell …
A computational multiscale agent-based model for simulating spatio-temporal tumour immune response to PD1 and PDL1 inhibition
When the immune system responds to tumour development, patterns of immune infiltrates
emerge, highlighted by the expression of immune checkpoint-related molecules such as …
emerge, highlighted by the expression of immune checkpoint-related molecules such as …
A tumor–immune interaction model with the effect of impulse therapy
M Sardar, S Khajanchi, B Ahmad - Communications in Nonlinear Science …, 2023 - Elsevier
A mathematical model describing the growth of tumor cells and the effect of impulsive
therapy is studied in this paper. The governing equations and parameters related to the …
therapy is studied in this paper. The governing equations and parameters related to the …
Circulating immune cell phenotype dynamics reflect the strength of tumor–immune cell interactions in patients during immunotherapy
JI Griffiths, P Wallet, LT Pflieger… - Proceedings of the …, 2020 - National Acad Sciences
The extent to which immune cell phenotypes in the peripheral blood reflect within-tumor
immune activity prior to and early in cancer therapy is unclear. To address this question, we …
immune activity prior to and early in cancer therapy is unclear. To address this question, we …
Mathematical modeling and computational prediction of cancer drug resistance
Diverse forms of resistance to anticancer drugs can lead to the failure of chemotherapy.
Drug resistance is one of the most intractable issues for successfully treating cancer in …
Drug resistance is one of the most intractable issues for successfully treating cancer in …
[PDF][PDF] Mathematical modelling of COVID-19 disease dynamics: Interaction between immune system and SARS-CoV-2 within host
S Chowdhury, JT Chowdhury, SF Ahmed… - AIMS …, 2022 - researchgate.net
SARS-COV-2 (Coronavirus) viral growth kinetics within-host become a key fact to
understand the COVID-19 disease progression and disease severity since the year 2020 …
understand the COVID-19 disease progression and disease severity since the year 2020 …
Mesenchymal stem cells used as carrier cells of oncolytic adenovirus results in enhanced oncolytic virotherapy
Mesenchymal stem cells (MSCs) loaded with oncolytic viruses are presently being
investigated as a new modality of advanced/metastatic tumors treatment and enhancement …
investigated as a new modality of advanced/metastatic tumors treatment and enhancement …