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无胸腺裸鼠运动活动昼夜节律的特征分析

Characterization of locomotor activity circadian rhythms in athymic nude mice.

作者信息

Paladino Natalia, Duhart José M, Mul Fedele Malena L, Golombek Diego A

机构信息

Laboratorio de Cronobiología, Universidad Nacional de Quilmes, Nacional de Quilmes, R, S, Peña 180, Bernal, Buenos Aires, 1876, Argentina.

出版信息

J Circadian Rhythms. 2013 Feb 1;11(1):2. doi: 10.1186/1740-3391-11-2.

Abstract

BACKGROUND

The relation between circadian dysregulation and cancer incidence and progression has become a topic of major interest over the last decade. Also, circadian timing has gained attention regarding the use of chronopharmacology-based therapeutics. Given its lack of functional T lymphocytes, due to a failure in thymus development, mice carrying the Foxn1(Δ/Δ) mutation (nude mice) have been traditionally used in studies including implantation of xenogeneic tumors. Since the immune system is able to modulate the circadian clock, we investigated if there were alterations in the circadian system of the athymic mutant mice.

METHODS

General activity circadian rhythms in 2-4 month-old Foxn1(Δ/Δ) mice (from Swiss Webster background) and their corresponding wild type (WT) controls was recorded. The response of the circadian system to different manipulations (constant darkness, light pulses and shifts in the light-dark schedule) was analyzed.

RESULTS

Free-running periods of athymic mice and their wild type counterpart were 23.86 ± 0.03 and 23.88 ± 0.05 hours, respectively. Both strains showed similar phase delays in response to 10 or 120 minutes light pulses applied in the early subjective night and did not differ in the number of c-Fos-expressing cells in the suprachiasmatic nuclei, after a light pulse at circadian time (CT) 15. Similarly, the two groups showed no significant difference in the time needed for resynchronization after 6-hour delays or advances in the light-dark schedule. The proportion of diurnal activity, phase-angle with the zeitgeber, subjective night duration and other activity patterns were similar between the groups.

CONCLUSIONS

Since athymic Foxn1(Δ/Δ) mice presented no differences with the WT controls in the response of the circadian system to the experimental manipulations performed in this work, we conclude that they represent a good model in studies that combine xenograft implants with either alteration of the circadian schedules or chronopharmacological approaches to therapeutics.

摘要

背景

在过去十年中,昼夜节律失调与癌症发生及进展之间的关系已成为一个备受关注的主要话题。此外,昼夜节律在基于时辰药理学的治疗方法的应用方面也受到了关注。由于胸腺发育失败导致缺乏功能性T淋巴细胞,携带Foxn1(Δ/Δ)突变的小鼠(裸鼠)传统上被用于包括异种肿瘤植入在内的研究。由于免疫系统能够调节生物钟,我们研究了无胸腺突变小鼠的昼夜节律系统是否存在改变。

方法

记录2 - 4月龄Foxn1(Δ/Δ)小鼠(瑞士韦伯斯特背景)及其相应野生型(WT)对照的一般活动昼夜节律。分析了昼夜节律系统对不同操作(持续黑暗、光脉冲和明暗周期变化)的反应。

结果

无胸腺小鼠及其野生型对应物的自由运行周期分别为23.86±0.03小时和23.88±0.05小时。在主观夜早期施加10或120分钟光脉冲后,两种品系均表现出相似的相位延迟,并且在昼夜时间(CT)15进行光脉冲后,视交叉上核中表达c-Fos的细胞数量没有差异。同样,两组在明暗周期延迟或提前6小时后重新同步所需的时间上没有显著差异。两组之间的日间活动比例、与授时因子的相位角、主观夜时长和其他活动模式相似。

结论

由于无胸腺的Foxn1(Δ/Δ)小鼠在昼夜节律系统对本研究中进行的实验操作的反应方面与WT对照没有差异,我们得出结论,它们是将异种移植与昼夜节律改变或时辰药理学治疗方法相结合的研究中的良好模型。

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