An integrative model of cancer cell differentiation with immunotherapy

In order to improve cancer treatments, cancer cell differentiation and immunotherapy are the subjects of several studies in different branches of interdisciplinary sciences. In this work, we develop a new population model that integrates other complementary ones, thus emphasizing the relationship be...

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Published inPhysical biology Vol. 18; no. 6; p. 66007
Main Authors Margarit, David H, González, Nadia S, Romanelli, Lilia M, Fendrik, Alejandro J, Scagliotti, Ariel F, Reale, Marcela V
Format Journal Article
LanguageEnglish
Published England 01.11.2021
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Abstract In order to improve cancer treatments, cancer cell differentiation and immunotherapy are the subjects of several studies in different branches of interdisciplinary sciences. In this work, we develop a new population model that integrates other complementary ones, thus emphasizing the relationship between cancer cells at different differentiation stages and the main immune system cells. For this new system, specific ranges were found where transdifferentiation of differentiated cancer cells can occur. In addition, a specific therapy against cancer stem cells was analysed by simulating cytotoxic cell vaccines. In reference to the latter, the different combinations of parameters that optimize it were studied.
AbstractList In order to improve cancer treatments, cancer cell differentiation and immunotherapy are the subjects of several studies in different branches of interdisciplinary sciences. In this work, we develop a new population model that integrates other complementary ones, thus emphasizing the relationship between cancer cells at different differentiation stages and the main immune system cells. For this new system, specific ranges were found where transdifferentiation of differentiated cancer cells can occur. In addition, a specific therapy against cancer stem cells was analysed by simulating cytotoxic cell vaccines. In reference to the latter, the different combinations of parameters that optimize it were studied.In order to improve cancer treatments, cancer cell differentiation and immunotherapy are the subjects of several studies in different branches of interdisciplinary sciences. In this work, we develop a new population model that integrates other complementary ones, thus emphasizing the relationship between cancer cells at different differentiation stages and the main immune system cells. For this new system, specific ranges were found where transdifferentiation of differentiated cancer cells can occur. In addition, a specific therapy against cancer stem cells was analysed by simulating cytotoxic cell vaccines. In reference to the latter, the different combinations of parameters that optimize it were studied.
In order to improve cancer treatments, cancer cell differentiation and immunotherapy are the subjects of several studies in different branches of interdisciplinary sciences. In this work, we develop a new population model that integrates other complementary ones, thus emphasizing the relationship between cancer cells at different differentiation stages and the main immune system cells. For this new system, specific ranges were found where transdifferentiation of differentiated cancer cells can occur. In addition, a specific therapy against cancer stem cells was analysed by simulating cytotoxic cell vaccines. In reference to the latter, the different combinations of parameters that optimize it were studied.
Author Margarit, David H
Romanelli, Lilia M
Reale, Marcela V
González, Nadia S
Fendrik, Alejandro J
Scagliotti, Ariel F
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Snippet In order to improve cancer treatments, cancer cell differentiation and immunotherapy are the subjects of several studies in different branches of...
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SubjectTerms Cell Differentiation
Humans
Immunotherapy
Neoplasms - therapy
Neoplastic Stem Cells
Title An integrative model of cancer cell differentiation with immunotherapy
URI https://www.ncbi.nlm.nih.gov/pubmed/34633296
https://www.proquest.com/docview/2580932946
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