Please use this identifier to cite or link to this item: https://hdl.handle.net/20.500.14365/3685
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dc.contributor.authorGonzález M.M.-
dc.contributor.authorJoa J.A.G.-
dc.contributor.authorCabrales L.E.B.-
dc.contributor.authorPupo A.E.B.-
dc.contributor.authorSchneider B.-
dc.contributor.authorKondakçı, Süleyman-
dc.contributor.authorCiria H.M.C.-
dc.date.accessioned2023-06-16T15:01:57Z-
dc.date.available2023-06-16T15:01:57Z-
dc.date.issued2017-
dc.identifier.issn1471-2407-
dc.identifier.urihttps://doi.org/10.1186/s12885-017-3159-y-
dc.identifier.urihttps://hdl.handle.net/20.500.14365/3685-
dc.description.abstractBackground: Unperturbed tumor growth kinetics is one of the more studied cancer topics; however, it is poorly understood. Mathematical modeling is a useful tool to elucidate new mechanisms involved in tumor growth kinetics, which can be relevant to understand cancer genesis and select the most suitable treatment. Methods: The classical Kolmogorov-Johnson-Mehl-Avrami as well as the modified Kolmogorov-Johnson-Mehl-Avrami models to describe unperturbed fibrosarcoma Sa-37 tumor growth are used and compared with the Gompertz modified and Logistic models. Viable tumor cells (1×105) are inoculated to 28 BALB/c male mice. Results: Modified Gompertz, Logistic, Kolmogorov-Johnson-Mehl-Avrami classical and modified Kolmogorov-Johnson-Mehl-Avrami models fit well to the experimental data and agree with one another. A jump in the time behaviors of the instantaneous slopes of classical and modified Kolmogorov-Johnson-Mehl-Avrami models and high values of these instantaneous slopes at very early stages of tumor growth kinetics are observed. Conclusions: The modified Kolmogorov-Johnson-Mehl-Avrami equation can be used to describe unperturbed fibrosarcoma Sa-37 tumor growth. It reveals that diffusion-controlled nucleation/growth and impingement mechanisms are involved in tumor growth kinetics. On the other hand, tumor development kinetics reveals dynamical structural transformations rather than a pure growth curve. Tumor fractal property prevails during entire TGK. © 2017 The Author(s).en_US
dc.description.sponsorship7227, 7228; Instituto Politécnico Nacional, IPNen_US
dc.description.sponsorshipAll authors are supported by the Ministry of Higher Education, Republic of Cuba. Our special thanks to Rosa Ivette Robles Matos and Yenia Infante Frómeta for their technical assistances. Further, Ana Elisa Bergues Pupo (at present in Max Planck Institute of Colloids and Interfaces, department Theory and Bio-Systems, Potsdam, Germany) thanks Dr. Jesús Manuel Bergues Cabrales (Universidad de San Jorge, Zaragoza, Spain) for his support. We would like to give our special thanks to the Editor in Chief and reviewers of this article for their expert help and invaluable feedback.en_US
dc.description.sponsorshipThis work has been partially supported by the Oriente University, Cuba, under the grants # 7227 and 7228, Cuba. In addition, Baruch Schneider is partially supported by the Izmir University of Economics. Suleyman Kondakci supports this manuscript. Juan Bory Reyes is partially supported by the ESIME-Zacatenco, Instituto Politécnico Nacional (IPN), Mexico, in the framework of SIP programs.en_US
dc.language.isoenen_US
dc.publisherBioMed Central Ltd.en_US
dc.relation.ispartofBMC Canceren_US
dc.rightsinfo:eu-repo/semantics/openAccessen_US
dc.subjectDiffusion-controlled nucleation/growth mechanismsen_US
dc.subjectFibrosarcoma Sa-37 tumoren_US
dc.subjectImpingement mechanismsen_US
dc.subjectIsothermal dynamical structural transformationen_US
dc.subjectanimal experimenten_US
dc.subjectanimal modelen_US
dc.subjectanimal tissueen_US
dc.subjectArticleen_US
dc.subjectcancer stagingen_US
dc.subjectcontrolled studyen_US
dc.subjectfibrosarcomaen_US
dc.subjectgrowth curveen_US
dc.subjecthumanen_US
dc.subjecthuman cellen_US
dc.subjectintermethod comparisonen_US
dc.subjectKolmogorov Johnson Mehl Avram modelen_US
dc.subjectlogistic modelen_US
dc.subjectmaleen_US
dc.subjectmalignant neoplasmen_US
dc.subjectmalignant transformationen_US
dc.subjectmathematical modelen_US
dc.subjectmodified Gompertz modelen_US
dc.subjectmodified Kolmogorov Johnson Mehl Avram modelen_US
dc.subjectmouseen_US
dc.subjectnonbiological modelen_US
dc.subjectnonhumanen_US
dc.subjectphysical phenomenaen_US
dc.subjecttumor differentiationen_US
dc.subjecttumor growth curveen_US
dc.subjecttumor growth kineticsen_US
dc.subjectanimalen_US
dc.subjectcell proliferationen_US
dc.subjectdrug screeningen_US
dc.subjectkineticsen_US
dc.subjectpathologyen_US
dc.subjecttheoretical modelen_US
dc.subjecttumor cell lineen_US
dc.subjectAnimalsen_US
dc.subjectCell Line, Tumoren_US
dc.subjectCell Proliferationen_US
dc.subjectFibrosarcomaen_US
dc.subjectHumansen_US
dc.subjectKineticsen_US
dc.subjectMiceen_US
dc.subjectModels, Theoreticalen_US
dc.subjectXenograft Model Antitumor Assaysen_US
dc.titleIs cancer a pure growth curve or does it follow a kinetics of dynamical structural transformation?en_US
dc.typeArticleen_US
dc.identifier.doi10.1186/s12885-017-3159-y-
dc.identifier.pmid28270135en_US
dc.identifier.scopus2-s2.0-85014596006en_US
dc.authorscopusid35746058500-
dc.authorscopusid24069681800-
dc.authorscopusid51565614900-
dc.authorscopusid7402401839-
dc.authorscopusid15061511300-
dc.authorscopusid24070069800-
dc.authorscopusid56041797600-
dc.identifier.volume17en_US
dc.identifier.issue1en_US
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US
dc.identifier.scopusqualityQ2-
dc.identifier.wosqualityQ2-
item.grantfulltextopen-
item.openairetypeArticle-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.fulltextWith Fulltext-
item.languageiso639-1en-
item.cerifentitytypePublications-
crisitem.author.dept02.02. Mathematics-
crisitem.author.dept05.05. Computer Engineering-
Appears in Collections:PubMed İndeksli Yayınlar Koleksiyonu / PubMed Indexed Publications Collection
Scopus İndeksli Yayınlar Koleksiyonu / Scopus Indexed Publications Collection
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