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Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model

SIMPLE SUMMARY: Osteosarcoma is a rare type of cancer with poor prognoses. However, to the best of our knowledge, there are no mathematical models that study the impact of chemotherapy treatments on the osteosarcoma microenvironment. In this study, we developed a data driven mathematical model to an...

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Autores principales: Le, Trang, Su, Sumeyye, Shahriyari, Leili
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8394778/
https://www.ncbi.nlm.nih.gov/pubmed/34440778
http://dx.doi.org/10.3390/cells10082009
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author Le, Trang
Su, Sumeyye
Shahriyari, Leili
author_facet Le, Trang
Su, Sumeyye
Shahriyari, Leili
author_sort Le, Trang
collection PubMed
description SIMPLE SUMMARY: Osteosarcoma is a rare type of cancer with poor prognoses. However, to the best of our knowledge, there are no mathematical models that study the impact of chemotherapy treatments on the osteosarcoma microenvironment. In this study, we developed a data driven mathematical model to analyze the dynamics of the important players in three groups of osteosarcoma tumors with distinct immune patterns in the presence of the most common chemotherapy drugs. The results indicate that the treatments’ start times and optimal dosages depend on the unique growth rate of the tumor, which implies the necessity of personalized medicine. Furthermore, the developed model can be extended by others to build models that can recommend individual-specific optimal dosages. ABSTRACT: Since all tumors are unique, they may respond differently to the same treatments. Therefore, it is necessary to study their characteristics individually to find their best treatment options. We built a mathematical model for the interactions between the most common chemotherapy drugs and the osteosarcoma microenvironments of three clusters of tumors with unique immune profiles. We then investigated the effects of chemotherapy with different treatment regimens and various treatment start times on the behaviors of immune and cancer cells in each cluster. Saliently, we suggest the optimal drug dosages for the tumors in each cluster. The results show that abundances of dendritic cells and HMGB1 increase when drugs are given and decrease when drugs are absent. Populations of helper T cells, cytotoxic cells, and IFN- [Formula: see text] grow, and populations of cancer cells and other immune cells shrink during treatment. According to the model, the MAP regimen does a good job at killing cancer, and is more effective than doxorubicin and cisplatin combined or methotrexate alone. The results also indicate that it is important to consider the tumor’s unique growth rate when deciding the treatment details, as fast growing tumors need early treatment start times and high dosages.
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spelling pubmed-83947782021-08-28 Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model Le, Trang Su, Sumeyye Shahriyari, Leili Cells Article SIMPLE SUMMARY: Osteosarcoma is a rare type of cancer with poor prognoses. However, to the best of our knowledge, there are no mathematical models that study the impact of chemotherapy treatments on the osteosarcoma microenvironment. In this study, we developed a data driven mathematical model to analyze the dynamics of the important players in three groups of osteosarcoma tumors with distinct immune patterns in the presence of the most common chemotherapy drugs. The results indicate that the treatments’ start times and optimal dosages depend on the unique growth rate of the tumor, which implies the necessity of personalized medicine. Furthermore, the developed model can be extended by others to build models that can recommend individual-specific optimal dosages. ABSTRACT: Since all tumors are unique, they may respond differently to the same treatments. Therefore, it is necessary to study their characteristics individually to find their best treatment options. We built a mathematical model for the interactions between the most common chemotherapy drugs and the osteosarcoma microenvironments of three clusters of tumors with unique immune profiles. We then investigated the effects of chemotherapy with different treatment regimens and various treatment start times on the behaviors of immune and cancer cells in each cluster. Saliently, we suggest the optimal drug dosages for the tumors in each cluster. The results show that abundances of dendritic cells and HMGB1 increase when drugs are given and decrease when drugs are absent. Populations of helper T cells, cytotoxic cells, and IFN- [Formula: see text] grow, and populations of cancer cells and other immune cells shrink during treatment. According to the model, the MAP regimen does a good job at killing cancer, and is more effective than doxorubicin and cisplatin combined or methotrexate alone. The results also indicate that it is important to consider the tumor’s unique growth rate when deciding the treatment details, as fast growing tumors need early treatment start times and high dosages. MDPI 2021-08-06 /pmc/articles/PMC8394778/ /pubmed/34440778 http://dx.doi.org/10.3390/cells10082009 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Le, Trang
Su, Sumeyye
Shahriyari, Leili
Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model
title Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model
title_full Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model
title_fullStr Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model
title_full_unstemmed Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model
title_short Investigating Optimal Chemotherapy Options for Osteosarcoma Patients through a Mathematical Model
title_sort investigating optimal chemotherapy options for osteosarcoma patients through a mathematical model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8394778/
https://www.ncbi.nlm.nih.gov/pubmed/34440778
http://dx.doi.org/10.3390/cells10082009
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