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用1,2 - 丙二醇对人体皮肤进行冷冻保存。

Cryopreservation of human skin with propane-1,2-diol.

作者信息

Villalba R, Benitez J, No-Lowis E D, Rioja L F, Gómez-Villagrán J L

机构信息

Unidad de Criobiología del centro Regional de Transfusión Sanguńea Hospital Reina Sofía, Córdoba, Spain.

出版信息

Cryobiology. 1996 Oct;33(5):525-9. doi: 10.1006/cryo.1996.0056.

Abstract

The tolerance and cryoprotective effect of propane-1,2-diol on human skin was evaluated using tetrazolium reductase enzyme activity to assess tissue viability. The tolerance of human skin was tested by exposing the skin to increasing concentrations of propane-1,2-diol (10, 20, and 40% v/v), at two permeation temperatures (4 degrees C or room temperature), in a stepwise manner, to reduce osmotically induced changes in cell volume. There was no evidence of specific toxicity attributable to the cryoprotectant during the permeation period, even at a concentration of 40%; however a significant decrease in human skin viability was observed after freezing and thawing with high concentrations of cryoprotectant. The only useful protocol was that employing a low cooling rate (-1 degree C min-1) with 10 or 20% (v/v) propane-1,2-diol at a low permeation temperature. The data suggest that propane-1,2-diol does not produced improved results when compared with other cryoprotectants used for skin cryopreservation.

摘要

使用四唑还原酶活性评估组织活力,以此来评价丙二醇对人体皮肤的耐受性和冷冻保护作用。通过将皮肤逐步暴露于不同浓度(10%、20%和40% v/v)的丙二醇中,在两个渗透温度(4℃或室温)下,以降低渗透压诱导的细胞体积变化,来测试人体皮肤的耐受性。在渗透期间,即使在40%的浓度下,也没有证据表明冷冻保护剂具有特定毒性;然而,在用高浓度冷冻保护剂进行冷冻和解冻后,观察到人体皮肤活力显著下降。唯一有效的方案是在低渗透温度下,使用低冷却速率(-1℃/分钟)以及10%或20%(v/v)的丙二醇。数据表明,与用于皮肤冷冻保存的其他冷冻保护剂相比,丙二醇并未产生更好的效果。

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