Mathematical Modelling of Pancreatic Adenocarcinoma Progression: Integrating Microenvironmental Influences on Tumor Dynamics

Authors

  • Abdusslam Osman Beitalmal Department of Mathematics, Faculty of Science, Sebha University, Sebha
  • Munyah Fadhl Department of Mathematics, Faculty of Science, Sebha University, Sebha

DOI:

https://doi.org/10.51984/sdyfne56

Keywords:

Pancreatic ductal adenocarcinoma (PDAC), Tumor microenvironment, Mathematical oncology, Composite environmental constant, Combination therapy, Hypoxia and immune modulation

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is a highly treatment‑refractory malignancy characterized by a dense desmoplastic microenvironment that actively shields malignant cells from immune attacks and pharmacological interventions. This paper presents a deterministic mathematical model that modifies the intrinsic proliferation rate of neoplasms using a composite environmental constant ( ). This dimensionless modulator integrates the cumulative effects of hypoxia, immune response, nutrient blockade, and therapeutic dose. Using both analytical solutions and fourth‑order Runge‑Kutta numerical methods, we demonstrate that  is a critical determinant of growth rate and terminal tumor burden, often outweighing the intrinsic growth rate. Simulations indicate that high‑dose monotherapy targeting only cell proliferation cannot alter disease progression in a permissive microenvironment. These findings support an ecology‑based therapeutic strategy combining microenvironment neutralization with specific cytotoxic targeting to achieve meaningful clinical outcomes.

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Published

2026-05-16

How to Cite

Mathematical Modelling of Pancreatic Adenocarcinoma Progression: Integrating Microenvironmental Influences on Tumor Dynamics. (2026). Sebha University Conference Proceedings, 5(1), 28-32. https://doi.org/10.51984/sdyfne56

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