Clark H F, Kaminski F, Karzon D T
Appl Microbiol. 1970 May;19(5):848-54. doi: 10.1128/am.19.5.848-854.1970.
Establishment of a near-linear temperature gradient in an incubator has been accomplished by the application of heat to one terminus of a conducting body, normally a metal bar, and the removal of heat from the other terminus of the conducting body. Such incubators have been complex and unwieldy because of the need for mechanical refrigeration. We have described a simplified temperature gradient incubator which uses thermoelectric module cooling coupled with electric heating. Along the gradient, 20 stations in two parallel rows of 10, each accommodating a 30-ml plastic cell culture flask, were continually monitored by an electronic thermometer, and the temperatures were recorded. By manipulation of two simple potentiometer controls, any temperature gradient between 0 and 50 C could be obtained. Minor deviations which occurred between theoretically perfect and obtained temperature gradients were reproducible and readily measured. The gradient incubator was particularly applicable to (i) simultaneously studying a given biological activity over the entire temperature range supporting the growth of a given cell, virus, or microorganism, or (ii) precisely defining the upper or lower temperature limits of a biological system by 10-point determinations. Preliminary experiments have demonstrated the usefulness of the apparatus in characterizing the temperature limits for growth in vitro of cells of reptilian cell lines. The gradient incubator was also successfully utilized for the characterization of the effect of temperature on the efficiency of plating of amphibian viruses and possible temperature variants of those viruses.
通过对导体(通常是金属棒)的一端加热并从另一端散热,在培养箱中建立了近似线性的温度梯度。由于需要机械制冷,此类培养箱一直很复杂且笨重。我们描述了一种简化的温度梯度培养箱,它使用热电模块冷却与电加热相结合。沿着梯度方向,两排平行的10个站点,每个站点容纳一个30毫升的塑料细胞培养瓶,由电子温度计持续监测,并记录温度。通过操作两个简单的电位器控制,可以获得0至50摄氏度之间的任何温度梯度。理论上完美的温度梯度与实际获得的温度梯度之间出现的微小偏差是可重复的且易于测量。该梯度培养箱特别适用于:(i)在支持给定细胞、病毒或微生物生长的整个温度范围内同时研究特定的生物活性,或(ii)通过10点测定精确确定生物系统的温度上限或下限。初步实验证明了该仪器在确定爬行动物细胞系细胞体外生长温度极限方面的实用性。该梯度培养箱还成功用于表征温度对两栖动物病毒接种效率的影响以及这些病毒可能的温度变体。