Russian version English version
Volume 14   Issue 1   Year 2019
Babushkina N.A., Kuzina E.A., Loos A.A., Belyaeva E.V.

Assessment of the Efficient Strategies for Applying Antitumor Viral Vaccine Therapy Based On Mathematical Modeling

Mathematical Biology & Bioinformatics. 2019;14(1):34-53.

doi: 10.17537/2019.14.34.

References

 

  1. Muceniece A. Oncotropism of viruses and the problem of virotherapy of malignant tumours. Riga; 1972. 435 p. (in Russ.).
  2. Gromova A.Iu. Protivoopukholevye svoistva vaktsinnogo shtamma virusa venesuel'skogo entsefalomielita i ego onkolizata (Antitumor properties of the vaccine strain of Venezuelan encephalomyelitis virus and its oncolysis: Dissertation for the degree of candidate of biological sciences. S. Petersburg; 1999. 114 p. (in Russ.).
  3. Urazova L.N. Effektivnost' i mekhanizmy protivoopukholevogo deistviia virusnykh vaktsin pri eksperimental'nom onkogeneze (Efficacy and mechanisms of the antitumor effect of viral vaccines in experimental oncogenesis): Dissertation for the degree of doctor of biological sciences. S. Petersburg; 2003. 196 p. (in Russ.).
  4. Vidiaeva I.G. Virusnye vaktsiny i ikh onkolizaty v terapii eksperimental'nykh opukholei (Viral vaccines and their oncolysates in the treatment of experimental tumors): Dissertation for the degree of candidate of medical sciences. Tomsk; 2005. 134 p. (in Russ.).
  5. Loktev V.B., Ivan'kina T.Iu., Netesov S.V., Chumakov P.M. Vestnik Rossiiskoi akademii meditsinskikh nauk (Bulletin of the Russian Academy of Medical Sciences). 2012;2:42-47 (in Russ.).
  6. Lezhnin Yu.N., Kravchenko Yu.E., Frolova E.I., Chumakov P.M., Chumakov S.P. Oncotoxic proteins in anticancer therapy: Mechanisms of action. Molecular biology. 2015;49(2):231-243. doi: 10.1134/S0026893315020077
  7. Hristov G., Krämer M., Li J., El-Andaloussi N., Mora R., Daeffler L., Zentgraf H., Rommelaere J., Marchini A. Through its non-structural protein NS1, parvovirus H-1 induces apoptosis via accumulation of reactive oxygen species. Journal of Virology. 2010;84(12):5909-5922. doi: 10.1128/JVI.01797-09
  8. Rommelaere J., Geletneky K., Angelova A.L., Daeffler L., Dinsart C., Kiprianova I., Schlehofer J.R., Raykov Z. Oncolytic parvoviruses as cancer therapeutics. Cytokine & Growth Factor Reviews. 2010;21(2):185-195. doi: 10.1016/j.cytogfr.2010.02.011
  9. Cotmore S.F., Tattersall P. Parvoviral hostrangeand cell entry mechanisms. Advances in Virus Research. 2007;70:183-232. doi: 10.1016/S0065-3527(07)70005-2
  10. Grekova S.P., Aprahamian M., Daeffler L., Leuchs B., Angelova A., Giese T., Galabov A., Heller A., Giese N.A., Rommelaere J., Raykov Z. Interferon γ improves the vaccination potential of oncolytic parvovirus H-1PV for the treatment of peritoneal carcinomatosis in pancreatic cancer. Cancer Biology & Therapy. 2011;12(10):888-895. doi: 10.4161/cbt.12.10.17678
  11. Raykov Z., Grekova S., Galabov A.S., Balboni G., Koch U., Aprahamian M., Rommelaere J. Combined oncolytic and vaccination activities of parvovirus H-1 in a metastatic tumor model. Oncology Reports. 2007;17(6):1493-1500. doi: 10.3892/or.17.6.1493
  12. Angelova A.L., Aprahamian M., Balboni G., Delecluse H.J., Feederle R., Kiprianova I., Grekova S., Galabov A., Witzens-Harig M., Ho A.D., Rommelaere J., Raykov Z. Oncolytic rat parvovirus H-1PV, a candidate for the treatment of human lymphoma: In vitro and in vivo studies. Molecular Therapy. 2009;17(7):1164-1172. doi: 10.1038/mt.2009.78
  13. De Pillis L., Radunskaya A., Wiseman C. A Validated Mathematical Model of Cell-Mediated Immune Response to Tumor Growth. Cancer Res. 2005;65:7950-7958. doi: 10.1158/0008-5472.CAN-05-0564
  14. De Pillis L., Gallegos A., Radunskaya A. A model of dendritie cell therapy for melanoma. Front. Oncol. 2013;3:56-77.
  15. Kose E., Moore S., Ofodile C., Radunskaya A., Ellen R. Immuno-kinetics of immunotherapy: dosing with DCs. Letters in Biomathematics. 2017;4(1):39-58. doi: 10.1080/23737867.2017.1289129
  16. Kim R., Woods T., Radunskaya A. Mathematical Modeling of Tumor Immune Interactions: A Closer Look at a PD-L1 Inhibitor in Cancer Immunotherapy. SPORA: A Journal of Biomathematics. 2018;4(1):25-41.
  17. Babushkina N.A. Probl. Upr. (Management problems). 2013;5:60-65 (in Russ.).
  18. Babushkina N.A. Glumov V.M. In: Trudy XI Mezhdunarodnoi. nauchnoi konferentsii «Fizika i radioelektronika v meditsine i ekologii» (FREME’2014) (Proceedings of the XI International Scientific Conference "Physics and Radio Electronics in Medicine and Ecology"). Russia, Vladimir – Suzdal': Vladimir State University; 2014. Book 1. P. 153-158 (in Russ.).
  19. Babushkina N.A., Glumov V.M., Kuzina E.A. In: Trudy XII Mezhdunarodnoi nauchnoi konferentsii «Fizika i radioelektronika v meditsine i ekologii» (FREME’2016) (Proceedings of the XII International Scientific Conference "Physics and Radio Electronics in Medicine and Ecology"). Russia, Vladimir – Suzdal': Vladimir State University; 2016. Book 1. P. 116-121 (in Russ.).
  20. Babushkina N.A., Glumov V.M., Kuzina E.A. Probl. Upr. (Management problems). 2017;3:49-56 (in Russ.).
  21. Babushkina N., Kuzina E. Analytical study of the antitumor viral vaccine introduction regimens based on mathematical modeling. Advances in Systems Science and Applications. 2018;18(1):59-84.
  22. Marchuk G.I. Mathematical Models in Immunology. Computational Methods and Experiments. New York, Optimization Software, Inc., distributed by Springer–Verlag, Berlin–Heidelberg–New York–Tokyo; 1984.
  23. Pertsev N.V. Sibirskii matematicheskii zhurnal (Siberian Mathematical Journal). 2018;59(1):143-157 (in Russ.).
  24. Romaniukha A.A. Matematicheskie modeli v immunologii i epidemiologii infektsionnykh zabolevanii (Mathematical models in immunology and epidemiology of infectious diseases). Moscow: BINOM. Knowledge Lab.; 2011. 293 p. (in Russ.).
  25. Skipper H.F. Kinetics of mammary tumor cell-growth and implications for therapy. Cancer. 1971;28(6):1479-1499. doi: 10.1002/1097-0142(197112)28:6<1479::AID-CNCR2820280622>3.0.CO;2-M
  26. Rusakov S.V., Chirkov M.V. Mathematical model of immunotherapy effect on the dynamics of immune response. Probl. Upr. (Management problems). 2012;6:45-50 (in Russ.).
  27. Rusakov S.V., Chirkov M.V. Parameter identification and control in mathematical models of the immune response. Russian Journal of Biomechanics. 2014;18(2):226-235.
Table of Contents Original Article
Math. Biol. Bioinf.
2019;14(1):34-53
doi: 10.17537/2019.14.34
published in Russian

Abstract (rus.)
Abstract (eng.)
Full text (rus., pdf)
References

 

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