Electromagnetic re-warming of cryopreserved tissues: effect of choice of cryoprotectant and sample shape on uniformity of heating

Электромагнитный разогрев криоконсервированных тканей: влияние выбора криопротектора и формы образца на равномерность нагревания
Martin P. Robinson, Monica C. Wusteman, Lihong Wang, David E. Pegg
2002-06-18

cryopreserved tissuescryoprotective agentsdielectric propertieselectromagnetic re-warmingvitrification
A method that has been proposed for the cryopreservation of tissues and organs is to add a cryoprotective agent (CPA) in sufficient concentration to allow vitrification, and to use rapid electromagnetic heating to prevent the formation of ice crystals during the re-warming. We have compared the physical and biological properties of four CPAs, measuring the speed and uniformity of heating in a 36 mm sphere placed in a 434 MHz applicator, and the toxicity to ECV304 endothelial cells. Ethanediol and dimethyl sulfoxide were found to be suitable for rapid, uniform heating but toxic to the endothelial cells at vitrifying concentrations. Butane-2,3-diol was less toxic, but the heating patterns were unacceptably non-uniform. Propane-1,2-diol was not significantly more toxic than butane-2,3-diol, and did allow uniform heating. It is therefore the best choice of CPA for the vitrification of tissues. We have shown that the uniformity of heating correlates with the dielectric properties of the perfusate. Furthermore, we have shown that uniform heating is feasible in non-spherical samples provided they are approximately ellipsoidal.
1
Butane-2,3-diol showed lower endothelial toxicity but produced unacceptably non-uniform heating patterns.
2
Ethanediol and dimethyl sulfoxide enabled rapid, uniform electromagnetic heating but were toxic to endothelial cells at vitrifying concentrations.
3
Heating uniformity correlated with the dielectric properties of the perfusate.
4
Propane-1,2-diol combined acceptable toxicity with uniform heating, making it the best CPA choice among those tested for tissue vitrification.
5
Uniform electromagnetic re-warming was feasible for non-spherical samples when their geometry was approximately ellipsoidal.

Vitrified cryopreserved tissue samples re-warmed by electromagnetic heating, including spherical and approximately ellipsoidal geometries with different cryoprotective agents

The effects of cryoprotectant choice and sample shape on the speed, uniformity, and biological suitability of electromagnetic re-warming, including the relationship between heating uniformity and perfusate dielectric properties

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2002-06-18
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Martin P. Robinson
Monica C. Wusteman
Lihong Wang
David E. Pegg
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