1. 2010
  2. New water-soluble polymers for construction of biofunctionalized scaffolds for bone tissue engineering: synthesis and adsorption study

    Korzhikov, V., Vlakh, E., Diederichs, S., Roker, S., Tennikova, T. B. & Kasper, C., 2010, Cells and Culture: Proceedings of the 20th ESACT Meeting, Dresden, Germany, June 17-20, 2007. Springer Nature, p. 599-605 (ESACT; vol. 4).

    Research output: Chapter in Book/Report/Conference proceedingConference contributionResearch

  3. 2009
  4. A study on the influence of biocompatible composites with bioactive ligands toward their effect on cell adhesion and growth for the application in bone tissue engineering

    Roeker, S., Böhm, S., Diederichs, S., Bode, F., Quade, A., Korzhikov, V., Van Griensven, M., Tennikova, T. & Kasper, C., 2009, In: Journal of Biomedical Materials Research - Part B Applied Biomaterials. 91B, 1, p. 153-162

    Research output: Contribution to journalArticle

  5. 2008
  6. Synthesis of multifunctional polyvinylsaccharides containing controllable ammounts of biospecific and non-specific ligands

    Korzhikov, V., Roeker, S., Vlakh, E., Kasper, C. & Tennikova, T., 2008, In: Bioconjugate Chemistry. 19, 3, p. 617-625

    Research output: Contribution to journalArticle

  7. Water-soluble aldehyde bearing polymers of 2-deoxy-2-methcarylamido-D-glucose for bone tissue engineering

    Korzhikov, V. A., Diederichs, S., Nazarova, O. V., Vlakh, E. G., Kasper, C., Panarin, E. F. & Tennikova, T. B., 2008, In: Journal of Applied Polymer Science. 108, 4, p. 2386-2397

    Research output: Contribution to journalArticlepeer-review

  8. 2005
  9. Синтез ненасыщенного производного -аланина.

    Химич, Г. Н., Слабоспицкая, М. Ю., Коржиков, В. А. & Тенникова, Т. Б., 2005, In: ЖУРНАЛ ПРИКЛАДНОЙ ХИМИИ. 78, 6, p. 1021-1023

    Research output: Contribution to journalArticlepeer-review

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