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Bulletin of Experimental Biology and Medicine|November 19, 2014
Relationship between gelatin concentrations in silk fibroin-based composite scaffolds and adhesion and proliferation of mouse embryo fibroblastsA A Orlova, M S Kotlyarova, V S Lavrenov, et al.Acta Naturae|April 29, 2014
Composite Scaffolds Containing Silk Fibroin, Gelatin, and Hydroxyapatite for Bone Tissue Regeneration and 3D Cell CulturingM M Moisenovich, A Yu Arkhipova, A A Orlova, et al.Bulletin of Experimental Biology and Medicine|February 23, 2016
New Silk Fibroin-Based Bioresorbable MicrocarriersA Yu Arkhipova, M C Kotlyarova, S G Novichkova, et al.Doklady. Biochemistry and Biophysics|November 7, 2016
Changes in morphology of actin filaments and expression of alkaline phosphatase at 3D cultivation of MG-63 osteoblast-like cells on mineralized fibroin scaffoldsA V Goncharenko, N V Malyuchenko, A M Moisenovich, et al.Doklady. Biochemistry and Biophysics|March 31, 2016
Recombinant 1F9 spidroin microgels for murine full-thickness wound repairingM M Moisenovich, N V Malyuchenko, A Yu Arkhipova, et al.Terapevticheskii Arkhiv|March 16, 2016
[Fundamental bases for the use of silk fibroin-based bioresorbable microvehicles as an example of skin regeneration in therapeutic practice]M M Moisenovich, D A Kulikov, A Yu Arkhipova, et al.Biochemistry. Biokhimiia|October 12, 2020
Recombinant Spidroin Films Attenuate Individual Markers of Glucose Induced Aging in NIH 3T3 FibroblastsA M Moysenovich, M M Moisenovich, A K Sudina, et al.Bulletin of Experimental Biology and Medicine|November 24, 2019
Fibroin-Gelatin Composite Stimulates the Regeneration of a Splinted Full-Thickness Skin Wound in MiceA Yu Arkhipova, D A Kulikov, A M Moisenovich, et al.Pageof 1