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照射后功能性小鼠外泌汗腺数量的时间演变:使用增殖和功能组织模型对实验数据进行定量分析

Time evolution of the number of functional murine eccrine sweat glands after irradiation: a quantitative analysis of experimental data using a model of proliferative and functional organization.

作者信息

Judas L, Bentzen S M, Johns H, Joiner M C, Morris W J

机构信息

Danish Cancer Society, Department of Experimental Clinical Oncology, Aarhus.

出版信息

Int J Radiat Biol. 1995 May;67(5):565-75. doi: 10.1080/09553009514550681.

Abstract

The function of eccrine sweat glands in the beta-pad of the mouse foot after irradiation was followed over time. Graded doses of X-rays were given to the foot, either as single doses or in two equal fractions separated by a 24-h interval. A quantitative, non-invasive, functional assay was used allowing repeated evaluation of the animals. Sweat gland function was assessed once a week for the first 6 weeks, and at 8, 10, 14, 18, 28, 38 and 45 weeks after irradiation. The beta-pad of the unirradiated foot was used as a control. The function dropped to a nadir within 8-10 weeks after irradiation, whereafter it gradually recovered, reaching a stable level 20-25 weeks after irradiation. These data were analyzed using a mathematical model of proliferative and functional organization of the sweat pore. The model provides a description of the time evolution of pore function, and its basic features were as follows. The functional subunit is a single sweat pore, which will be assayed as functional provided that it contains a number of functional cells above a critical threshold. The functional cells are capable of self renewal (a so-called 'flexible' tissue), and the proportion of proliferating cells is subject to homeostatic control. Irradiation is assumed to transfer a certain fraction of the cells into a state with a limited probability of successful division. This fraction is assumed to have a linear-quadratic dependence on dose. The values of all free model parameters were optimized by a maximum-likelihood fit to the experimental data. With optimized parameter values, the initial decrease, nadir, and long-term level of tissue function estimated from the model were in close agreement with the experimental observations for all the 28 dose groups. Some of the estimated model parameters are: growth fraction 4.2 +/- 0.2%; cell cycle time, 0.95 +/- 0.04 days; number of functional cells in a single pore in the unirradiated animal, 9.9 +/- 0.5; and alpha/beta ratio, 4.3 Gy (95% confidence interval 3.1-5.0 Gy). It is concluded that the present model, despite its relative mathematical simplicity, provides a close description of the postirradiation kinetics of functional cells in the mouse sweat gland.

摘要

对辐照后小鼠足部β垫中汗腺的功能随时间变化情况进行了跟踪研究。对足部给予不同剂量的X射线,分为单次剂量照射或分两次等量照射,两次照射间隔24小时。采用定量、非侵入性的功能测定方法,以便对动物进行重复评估。在辐照后的前6周每周评估一次汗腺功能,之后在第8、10、14、18、28、38和45周进行评估。未辐照足部的β垫用作对照。功能在辐照后8 - 10周降至最低点,之后逐渐恢复,在辐照后20 - 25周达到稳定水平。使用汗腺增殖和功能组织的数学模型对这些数据进行了分析。该模型描述了毛孔功能随时间的演变,其基本特征如下。功能亚单位是单个汗腺孔,只要其中功能性细胞数量高于临界阈值,就会被测定为具有功能。功能性细胞能够自我更新(一种所谓的“灵活”组织),增殖细胞的比例受到稳态控制。假设辐照会使一定比例的细胞进入成功分裂概率有限的状态。该比例假定与剂量呈线性二次关系。通过对实验数据进行最大似然拟合,优化了所有自由模型参数的值。在参数值优化后,该模型估计的组织功能的初始下降、最低点和长期水平与所有28个剂量组的实验观察结果密切一致。一些估计的模型参数为:生长分数4.2±0.2%;细胞周期时间,0.95±0.04天;未辐照动物单个毛孔中的功能性细胞数量,9.9±0.5;以及α/β比值,4.3 Gy(95%置信区间3.1 - 5.0 Gy)。得出的结论是,尽管本模型在数学上相对简单,但它对小鼠汗腺中功能性细胞的辐照后动力学提供了精确描述。

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