The relevance of cryoprotectant "toxicity" to cryobiology.
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[1] J. Lovelock,et al. The haemolysis of human red blood-cells by freezing and thawing. , 1953, Biochimica et biophysica acta.
[2] H. Meryman. The Relationship between Dehydration and Freezing Injury in the Human Erythrocyte , 1967 .
[3] J. Finley,et al. Oxidation of sulfhydryl groups to disulfides by sulfoxides. , 1975, Biochemical and biophysical research communications.
[4] G. Rapatz. Cryoprotective effect of methanol during cooling of frog hearts. , 1971, Cryobiology.
[5] G. Fahy. Prevention of toxicity from high concentrations of cryoprotective agents , 1982 .
[6] P. Mazur,et al. Physical-chemical basis of the protection of slowly frozen human erythrocytes by glycerol. , 1978, Biophysical journal.
[7] D. Pegg,et al. The contribution of the cryoprotectant to total injury in rabbit hearts frozen with ethylene glycol. , 1979, Cryobiology.
[8] W. Fishbein,et al. Parameters of Freezing Damage to Enzymes , 1979 .
[9] P. Steponkus. Role of the Plasma Membrane in Freezing Injury and Cold Acclimation , 1984 .
[10] S. Leibo. Freezing damage of bovine erythrocytes: simulation using glycerol concentration changes at subzero temperatures. , 1976, Cryobiology.
[11] A. Karow,et al. The influence of temperature on the function of renal cortical slices frozen in various cryoprotectants. , 1985, Cryobiology.
[12] The Effect of Ethylene Glycol and DMSO on Fusion of Isolated Sarcoplasmic Reticulum Membranes , 1976, Zeitschrift fur Naturforschung. Section C, Biosciences.
[13] G. H. Lathe,et al. Biochemical effects of kidney of exposure to high concentrations of dimethyl sulphoxide. , 1971, Biochemical pharmacology.
[14] T. Takahashi,et al. Multifaceted freezing injury in human polymorphonuclear cells at high subfreezing temperatures. , 1985, Cryobiology.
[15] R. Klebe,et al. Enhancement of polyethylene glycol-mediated cell hybridization by inducers of erythroleukemia cell differentiation , 1982, Somatic cell genetics.
[16] L. van den Berg,et al. Effect of glycerol and dimethyl sulfoxide on changes in composition and pH of buffer salt solutions during freezing. , 1969, Cryobiology.
[17] H. Meryman. Freezing injury and its prevention in living cells. , 1974, Annual review of biophysics and bioengineering.
[18] G. Fahy,et al. Ultrastructure-function correlative studies for cardiac cryopreservation. V. Absence of a correlation between electrolyte toxicity and cryoinjury in the slowly frozen, cryoprotected rat heart. , 1977, Cryobiology.
[19] G. Fahy,et al. Analysis of "solution effects" injury: rabbit renal cortex frozen in the presence of dimethyl sulfoxide. , 1980, Cryobiology.
[20] A. S. Parkes,et al. Revival of Spermatozoa after Vitrification and Dehydration at Low Temperatures , 1949, Nature.
[21] Kahn Ra. Biochemical changes in frozen platelets. , 1978 .
[22] H. Meryman. Modified Model for the Mechanism of Freezing Injury in Erythrocytes , 1968, Nature.
[23] D. Pegg. The mechanism of cryoinjury in glycerol-treated rabbit kidneys , 1979 .
[24] P. Mazur. Cryobiology: the freezing of biological systems. , 1970, Science.
[25] D. Rammler. THE EFFECT OF DMSO ON SEVERAL ENZYME SYSTEMS * , 1967, Annals of the New York Academy of Sciences.
[26] L. Pratsch,et al. Effect of poly(ethylene glycol) on phospholipid hydration and polarity of the external phase. , 1983, Biochimica et biophysica acta.
[27] T. E. Conover. INFLUENCE OF NONIONIC ORGANIC SOLUTES ON VARIOUS REACTIONS OF ENERGY CONSERVATION AND UTILIZATION , 1975, Annals of the New York Academy of Sciences.
[28] G. Fahy. Simplified calculation of cell water content during freezing and thawing in nonideal solutions of cryoprotective agents and its possible application to the study of "solution effects" injury. , 1981, Cryobiology.
[29] R. Keener,et al. Effect of concentration of ethylene glycol on the recovery of frog hearts after freezing to low temperatures , 1974 .
[30] G. Fahy. Analysis of "solution effects" injury. Equations for calculating phase diagram information for the ternary systems NaCl-dimethylsulfoxide-water and NaCl-glycerol-water. , 1980, Biophysical journal.
[31] P. Mazur,et al. Relative contributions of the fraction of unfrozen water and of salt concentration to the survival of slowly frozen human erythrocytes. , 1981, Biophysical journal.
[32] G M Fahy,et al. Vitrification as an approach to cryopreservation. , 1984, Cryobiology.
[33] H. Meryman,et al. Freezing injury from "solution effects" and its prevention by natural or artificial cryoprotection. , 1977, Cryobiology.
[34] D. Lee. The effect of dimethylsulphoxide on the permeability of the lysosomal membrane. , 1971, Biochimica et biophysica acta.