Banerjee2015 - A Mathematical Model to Elucidate BrainTumor Abrogation by Immunotherapywith T11 Target Structure

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Model Identifier
MODEL1912090003
Short description
T11 Target structure (T11TS), a membrane glycoprotein isolated from sheep erythrocytes, reverses the immune suppressed state of brain tumor induced animals by boosting the functional status of the immune cells. This study aims at aiding in the design of more efficacious brain tumor therapies with T11 target structure. We propose a mathematical model for brain tumor (glioma) and the immune system interactions, which aims in designing efficacious brain tumor therapy. The model encompasses considerations of the interactive dynamics of glioma cells, macrophages, cytotoxic T-lymphocytes (CD8(+) T-cells), TGF-β, IFN-γ and the T11TS. The system undergoes sensitivity analysis, that determines which state variables are sensitive to the given parameters and the parameters are estimated from the published data. Computer simulations were used for model verification and validation, which highlight the importance of T11 target structure in brain tumor therapy.
Format
SBML (L2V4)
Related Publication
  • A mathematical model to elucidate brain tumor abrogation by immunotherapy with T11 target structure.
  • Banerjee S, Khajanchi S, Chaudhuri S
  • PloS one , 1/ 2015 , Volume 10 , Issue 5 , pages: e0123611 , PubMed ID: 25955428
  • Department of Mathematics, Indian Institute of Technology Roorkee, Roorkee - 247667, Uttaranchal, India.
  • T11 Target structure (T11TS), a membrane glycoprotein isolated from sheep erythrocytes, reverses the immune suppressed state of brain tumor induced animals by boosting the functional status of the immune cells. This study aims at aiding in the design of more efficacious brain tumor therapies with T11 target structure. We propose a mathematical model for brain tumor (glioma) and the immune system interactions, which aims in designing efficacious brain tumor therapy. The model encompasses considerations of the interactive dynamics of glioma cells, macrophages, cytotoxic T-lymphocytes (CD8(+) T-cells), TGF-β, IFN-γ and the T11TS. The system undergoes sensitivity analysis, that determines which state variables are sensitive to the given parameters and the parameters are estimated from the published data. Computer simulations were used for model verification and validation, which highlight the importance of T11 target structure in brain tumor therapy.
Contributors
Submitter of the first revision: Mohammad Umer Sharif Shohan
Submitter of this revision: Mohammad Umer Sharif Shohan
Modellers: Mohammad Umer Sharif Shohan

Metadata information


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Non-curated


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Banerjee2015.xml SBML L2V4 representation of Banerjee2015 - A Mathematical Model to Elucidate BrainTumor Abrogation by Immunotherapywith T11 Target Structure 36.15 KB Preview | Download

  • Model originally submitted by : Mohammad Umer Sharif Shohan
  • Submitted: Dec 9, 2019 3:12:58 PM
  • Last Modified: Dec 9, 2019 3:12:58 PM
Revisions
  • Version: 2 public model Download this version
    • Submitted on: Dec 9, 2019 3:12:58 PM
    • Submitted by: Mohammad Umer Sharif Shohan
    • With comment: Edited model metadata online.