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热变量对冷冻的人原发性前列腺腺癌细胞的影响。

Effect of thermal variables on frozen human primary prostatic adenocarcinoma cells.

作者信息

Tatsutani K, Rubinsky B, Onik G, Dahiya R

机构信息

Department of Mechanical Engineering, University of California, Berkeley 94720, USA.

出版信息

Urology. 1996 Sep;48(3):441-7. doi: 10.1016/S0090-4295(96)00199-9.

Abstract

OBJECTIVES

Recent advances in imaging technology and cryotechnology have rekindled interest in prostate cryosurgery. Cryosurgery, however, cannot be applied precisely without knowing how the thermal variables used during the procedure affect tissue destruction. The goal of this article is to provide quantitative values for the relationship between thermal variables during freezing and the destruction of human primary prostatic adenocarcinoma cells.

METHODS

Human primary prostatic adenocarcinoma cells were frozen with controlled thermal parameters, using a directional solidification apparatus. Cell viability was determined after thawing, using trypan blue and a two-dye fluorescent test and correlated to the thermal variables used during freezing.

RESULTS

Human primary prostatic adenocarcinoma cells are damaged by intracellular chemical damage when frozen with cooling rates lower than 5 degrees C/min and by intracellular ice formation when frozen with cooling rates higher than 25 degrees C/min. A double freeze/thaw cycle is required to ensure complete cell destruction at high subzero temperatures, which must be lower than -40 degrees C for the low cooling rates and lower than -19 degrees C for the higher cooling rate.

CONCLUSIONS

Haphazard freezing does not necessarily destroy tissue during cryosurgery; however, quantitative data on the relation between thermal variables and frozen cell destruction can provide the means for performing cryosurgery more precisely and with greater control over the outcome of the procedure.

摘要

目的

成像技术和冷冻技术的最新进展重新点燃了人们对前列腺冷冻手术的兴趣。然而,在不知道手术过程中使用的热变量如何影响组织破坏的情况下,冷冻手术无法精确应用。本文的目的是提供冷冻过程中的热变量与人类原发性前列腺腺癌细胞破坏之间关系的定量值。

方法

使用定向凝固装置,以可控的热参数冷冻人类原发性前列腺腺癌细胞。解冻后,使用台盼蓝和双染料荧光测试确定细胞活力,并将其与冷冻过程中使用的热变量相关联。

结果

当以低于5℃/分钟的冷却速率冷冻时,人类原发性前列腺腺癌细胞会因细胞内化学损伤而受损;当以高于25℃/分钟的冷却速率冷冻时,会因细胞内结冰而受损。需要进行双冻融循环以确保在零下温度较高时完全破坏细胞,对于低冷却速率,该温度必须低于-40℃,对于较高冷却速率,该温度必须低于-19℃。

结论

在冷冻手术中,随意冷冻不一定会破坏组织;然而,关于热变量与冷冻细胞破坏之间关系的定量数据可以提供更精确地进行冷冻手术并更好地控制手术结果的方法。

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