Development thermostatted perfusion system for stromal cells culture within three-dimensional porous scaffolds
Saved in:
| Date: | 2010 |
|---|---|
| Main Authors: | E. A. Lebeda, Ju. A. Petrenko |
| Format: | Article |
| Language: | English |
| Published: |
2010
|
| Series: | Problems of cryobiology and cryomedicine |
| Online Access: | http://jnas.nbuv.gov.ua/article/UJRN-0000556313 |
| Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
| Journal Title: | Library portal of National Academy of Sciences of Ukraine | LibNAS |
Institution
Library portal of National Academy of Sciences of Ukraine | LibNASSimilar Items
Mesenchymal stromal cells within wide-porous three-dimensional alginate-gelatin scaffolds
by: Ju. A. Petrenko, et al.
Published: (2013)
by: Ju. A. Petrenko, et al.
Published: (2013)
Properties of Mesenchymal Stromal Cells During 3D Culturing Within Scaffolds of Different Origin
by: Ju. A. Petrenko
Published: (2012)
by: Ju. A. Petrenko
Published: (2012)
Cultivation and differentiation of mesenchymal stromal cells within the scaffolds based on skeletons derived from the marine sponge Ianthella basta
by: V. V. Mutsenko, et al.
Published: (2013)
by: V. V. Mutsenko, et al.
Published: (2013)
Growth and Adipogenic Differentiation of Human Bone Marrow and Dermis Derived Mesenchymal Stromal Cells during 2D and 3D Culturing within Alginate Microbeads and Macroporous Scaffolds
by: A. I. Pravdjuk, et al.
Published: (2012)
by: A. I. Pravdjuk, et al.
Published: (2012)
Adhesion and proliferation of adipose derived mesenchymal stromal cells on chitosan scaffolds with different degree of deacetylation
by: Yu. Rogulska, et al.
Published: (2014)
by: Yu. Rogulska, et al.
Published: (2014)
The response of mesenchymal stromal cells to cryopreservation within scaffolds derived from the skeletons of marine sponges Ianthella basta (pilot study)
by: V. V. Mutsenko, et al.
Published: (2015)
by: V. V. Mutsenko, et al.
Published: (2015)
Cryopreservation of Mesenchymal Stromal Cells Within Alginate Microspheres
by: Ju. Petrenko, et al.
Published: (2012)
by: Ju. Petrenko, et al.
Published: (2012)
Pretreatment with Sucrose Increases Cryoresistance of Mesenchymal Stromal Cells Cryopreserved on Two- and Three-Dimensional Carriers
by: V. V. Mutsenko, et al.
Published: (2016)
by: V. V. Mutsenko, et al.
Published: (2016)
The Response of Mesenchymal Stromal Cells to Cryopreservation within Scaffolds Derived from the Skeletons of Marine Sponges Ianthella basta (Pilot Study)
by: Mutsenko, Vitaliy V., et al.
Published: (2015)
by: Mutsenko, Vitaliy V., et al.
Published: (2015)
Culturing of cryopreserved stromal cells on carbon microfibers
by: Ju. A. Petrenko, et al.
Published: (2008)
by: Ju. A. Petrenko, et al.
Published: (2008)
Culture and differentiation of human adipose tissue mesenchymal stromal cells within carriers based on sea sponge chitin skeletons
by: Ju. Rogulskaja, et al.
Published: (2013)
by: Ju. Rogulskaja, et al.
Published: (2013)
Mesenchymal Stromal Cells Within Fibrin Gel Stimulate Healing of Full-Thickness Wounds in Mice
by: O. A. Tikhvinskaja, et al.
Published: (2017)
by: O. A. Tikhvinskaja, et al.
Published: (2017)
Interaction of stromal cells with carbon composite materials under culture conditions
by: Ju. A. Petrenko, et al.
Published: (2007)
by: Ju. A. Petrenko, et al.
Published: (2007)
3D Scaffolds Based on Chitosan for Cell Cultures and Tissue Engineering
by: O. V. Kalinkevich, et al.
Published: (2012)
by: O. V. Kalinkevich, et al.
Published: (2012)
Cryosensitivity of Mesenchymal Stromal Cells Cryopreserved Within Marine Sponge Ianthella basta Skeleton-Based Carriers
by: V. V. Mutsenko, et al.
Published: (2016)
by: V. V. Mutsenko, et al.
Published: (2016)
Development and characterization of porous functionalized collagen scaffolds for delivery of FGF-2
by: Ia. O. Pokholenko, et al.
Published: (2014)
by: Ia. O. Pokholenko, et al.
Published: (2014)
Identification of the Thermal Resistance at a Known Dislocation for Thermostatic Deformation of Composite Cylinders
by: A. A. Aralova
Published: (2017)
by: A. A. Aralova
Published: (2017)
Vitrification of Mesenchymal Stromal Cells in Alginate Microbeads
by: V. S. Zajkov, et al.
Published: (2012)
by: V. S. Zajkov, et al.
Published: (2012)
Cryopreservation of mesenchymal stromal cells in alginate microbeads
by: A. I. Pravdjuk, et al.
Published: (2009)
by: A. I. Pravdjuk, et al.
Published: (2009)
Character of Spreading and Cytoskeleton Structure of Bone Marrow Mesenchymal Stem Cells Cultured on Chitosan Scaffolds
by: A. V. Kisel, et al.
Published: (2016)
by: A. V. Kisel, et al.
Published: (2016)
Cryosensitivity of mesenchymal stromal cells encapsulated in alginate microbeads
by: A. I. Pravdjuk, et al.
Published: (2010)
by: A. I. Pravdjuk, et al.
Published: (2010)
Platelet lysate enhances efficiency of cryopreservation of mesenchymal stromal cells
by: Ju. Rogulskaja, et al.
Published: (2014)
by: Ju. Rogulskaja, et al.
Published: (2014)
Cryopreservation of human mesenchymal stromal cells using sucrose
by: V. V. Mutsenko, et al.
Published: (2011)
by: V. V. Mutsenko, et al.
Published: (2011)
Cryopreservation of human mesenchymal stromal cells using oligosaccharides
by: Ju. Rogulskaja, et al.
Published: (2013)
by: Ju. Rogulskaja, et al.
Published: (2013)
Efficiency of the sucrose-based solution and UW solution for hypothermic storage of human mesenchymal stromal cells in suspension or within alginate microspheres
by: D. N. Tarusin, et al.
Published: (2015)
by: D. N. Tarusin, et al.
Published: (2015)
Choice of media for culturing and cryopreservation of bone marrow stromal cells
by: A. A. Lavrik, et al.
Published: (2015)
by: A. A. Lavrik, et al.
Published: (2015)
Encapsulation of mesenchymal stromal cells in alginate microspheres
by: D. Tarusin, et al.
Published: (2016)
by: D. Tarusin, et al.
Published: (2016)
Hypothermic Machine Perfusion of Human Donor Livers Using a Pressure Controlled Perfusion System. Initial Results on Single or Dual-Flow Modalities
by: B. Fuller, et al.
Published: (2012)
by: B. Fuller, et al.
Published: (2012)
Localization and Metabolic Activity of Mesenchymal Stromal Cells Within Solid and Liquid Core Alginate Beads
by: Ju. V. Nemirovskaja, et al.
Published: (2019)
by: Ju. V. Nemirovskaja, et al.
Published: (2019)
New Approach to Cryopreservation of Mesenchymal Stromal Cells
by: Ju. A. Petrenko, et al.
Published: (2012)
by: Ju. A. Petrenko, et al.
Published: (2012)
Hypothermic perfusion for organ preservation: back to the future in 2005
by: B. J. Fuller, et al.
Published: (2005)
by: B. J. Fuller, et al.
Published: (2005)
Assessment methods of adipogenic and osteogenic differentiation of cryopreserved mesenchymal stromal cells
by: Ju. A. Poverennaja, et al.
Published: (2010)
by: Ju. A. Poverennaja, et al.
Published: (2010)
Phenotypical properties and ability to multilineage differentiation of adipose tissue stromal cells during subculturing
by: Ju. A. Petrenko, et al.
Published: (2012)
by: Ju. A. Petrenko, et al.
Published: (2012)
Vitrification of mesenchymal stromal cells encapsulated in alginate microspheres
by: V. S. Zajkov, et al.
Published: (2010)
by: V. S. Zajkov, et al.
Published: (2010)
Study of Morphological Characteristics of Cryopreserved Cell Cultures of Stromal Origin
by: N. O. Volkova
Published: (2012)
by: N. O. Volkova
Published: (2012)
Properties of mesenchymal stromal human cells encapsulated in alginate microbeads
by: A. I. Pravdjuk, et al.
Published: (2010)
by: A. I. Pravdjuk, et al.
Published: (2010)
Effect of cryopreservation on viability, immunophenotype and differentiation properties of mesenchymal stromal cells of early organogenetic stage
by: N. A. Trufanova, et al.
Published: (2010)
by: N. A. Trufanova, et al.
Published: (2010)
Biocompatibility of human adipose tissue mesenchymal stromal cells with osteoplastic composite materials
by: Ju. A. Petrenko, et al.
Published: (2012)
by: Ju. A. Petrenko, et al.
Published: (2012)
Adipose tissue derived mesenchymal stromal cells: differentiation capacities and potential for low temperature preservation
by: Ju. A. Petrenko
Published: (2010)
by: Ju. A. Petrenko
Published: (2010)
Effect of cryopreservation using slow freezing or vitrification on viability and metabolic activity of mesenchymal stromal cells encapsulated within alginate spheres with diameter of 1 mm and more
by: V. S. Zajkov, et al.
Published: (2014)
by: V. S. Zajkov, et al.
Published: (2014)
Similar Items
-
Mesenchymal stromal cells within wide-porous three-dimensional alginate-gelatin scaffolds
by: Ju. A. Petrenko, et al.
Published: (2013) -
Properties of Mesenchymal Stromal Cells During 3D Culturing Within Scaffolds of Different Origin
by: Ju. A. Petrenko
Published: (2012) -
Cultivation and differentiation of mesenchymal stromal cells within the scaffolds based on skeletons derived from the marine sponge Ianthella basta
by: V. V. Mutsenko, et al.
Published: (2013) -
Growth and Adipogenic Differentiation of Human Bone Marrow and Dermis Derived Mesenchymal Stromal Cells during 2D and 3D Culturing within Alginate Microbeads and Macroporous Scaffolds
by: A. I. Pravdjuk, et al.
Published: (2012) -
Adhesion and proliferation of adipose derived mesenchymal stromal cells on chitosan scaffolds with different degree of deacetylation
by: Yu. Rogulska, et al.
Published: (2014)