Active control of the nucleation temperature enhances freezing survival of multipotent mesenchymal stromal cells.

Abstract:

:Cryopreservation is a technique that has been extensively used for storage of multipotent mesenchymal stromal cells (MSCs) in regenerative medicine. Therefore, improving current cryopreservation procedures in terms of increasing cell viability and functionality is important. In this study, we optimized the cryopreservation protocol of MSCs derived from the common marmoset Callithrix jacchus (cj), which can be used as a non-human primate model in various pathological and transplantation studies and have a great potential for regenerative medicine. We have investigated the effect of the active control of the nucleation temperature using induced nucleation at a broad range of temperatures and two different dimethylsulfoxide concentrations (Me2SO, 5% (v/v) and 10%, (v/v)) to evaluate the overall effect on the viability, metabolic activity and recovery of cells after thawing. Survival rate and metabolic activity displayed an optimum when ice formation was induced at -10 °C. Cryomicroscopy studies indicated differences in ice crystal morphologies as well as differences in intracellular ice formation with different nucleation temperatures. High subzero nucleation temperatures resulted in larger extracellular ice crystals and cellular dehydration, whereas low subzero nucleation temperatures resulted in smaller ice crystals and intracellular ice formation.

journal_name

Cryobiology

journal_title

Cryobiology

authors

Lauterboeck L,Hofmann N,Mueller T,Glasmacher B

doi

10.1016/j.cryobiol.2015.10.145

subject

Has Abstract

pub_date

2015-12-01 00:00:00

pages

384-90

issue

3

eissn

0011-2240

issn

1090-2392

pii

S0011-2240(15)00395-8

journal_volume

71

pub_type

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