DocumentCode
2682620
Title
De Novo Obtained Nanosize Matrix Carrier Substances Ingel Form for Human Stem Cells Cryopreservation, Transportation and Cultivation
Author
Orlova, E.V. ; Maevsky, E.I.
Author_Institution
Inst. of Theor. & Exp. Biophys., Pushchino, Russia
fYear
2012
fDate
28-30 May 2012
Firstpage
996
Lastpage
998
Abstract
There were developed new inert nontoxic nanosize matrix carrier substances (gel form) which can be used for: 1. Cryopreservations (without DMSO or other crioprotectors) which safes intra - and extra cellular structures stem and pluripotent cells and does not damage cell surface antigens. 2. Transportation means of a biological material (i.e. stem cells) without frozen at -196°C and without observance of a temperature mode, more than 3 days, and prevents change of a phase of a cell cycle (for cell cultures). 3. Cultivation of cellular cultures for the purpose of formation of a true monolayer (a cornea of eyes). At use of this matrix carrier substance there is spontaneous synchronization of a cell cycle, without appearance of oncomarkers.
Keywords
cellular transport; eye; freezing; gels; monolayers; nanomedicine; nanostructured materials; synchronisation; DMSO; biological material; cell surface antigens; cornea; crioprotectors; de novo obtained nanosize matrix carrier substances in-gel form; extracellular structures; eyes; freezing; human stem cell cryopreservation; human stem cell cultivation; human stem cell transportation; inert nontoxic nanosize matrix carrier substances; intracellular structures; monolayer; oncomarkers; pluripotent cells; spontaneous synchronization; temperature -196 degC; Bones; Electron tubes; Humans; Nanobioscience; Stem cells; Synchronization; Transportation; cryopreservation; cultivation; nanosize gel matrix carrier substances; stem cells; transportation means;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Engineering and Biotechnology (iCBEB), 2012 International Conference on
Conference_Location
Macao
Print_ISBN
978-1-4577-1987-5
Type
conf
DOI
10.1109/iCBEB.2012.123
Filename
6245292
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