Logge W, Kingham J, Karl T
Neuroscience Research Australia (NeuRA), Randwick; Schizophrenia Research Institute, Darlinghurst.
Genes Brain Behav. 2014 Sep;13(7):713-20. doi: 10.1111/gbb.12149. Epub 2014 Jul 23.
Technological developments over recent decades have produced a novel housing system for laboratory mice, so-called 'individually ventilated cage' (IVC) systems. IVCs present a cage environment which is different to conventional filter-top cages (FILTER). Nothing is known about the consequences of IVC housing on genetic mouse models, despite studies reporting IVC-mediated changes to the phenotypes of inbred mouse strains. Thus, in this study, we systematically compared the established behavioural phenotype of a validated mouse model for the schizophrenia risk gene neuregulin 1 (TM Nrg1 HET) kept in FILTER housing with Nrg1 mutant mice raised in IVC systems. We found that particular schizophrenia-relevant endophenotypes of TM Nrg1 HETs which had been established and widely published using FILTER housing were altered when mice were raised in IVC housing. IVCs diminished the schizophrenia-relevant prepulse inhibition deficit of Nrg1 mutant males. Furthermore, IVC housing had a sex-dependent moderate effect on the locomotive phenotype of Nrg1 mice across test paradigms. Behavioural effects of IVC housing were less prominent in female mice. Thus, transferring the breeding colony of mouse mutants from FILTER to IVC systems can shift disease-relevant behaviours and therefore challenge the face validity of these mice. Researchers facing an upgrade of their mouse breeding or holding facilities to IVC systems must be aware of the potential impact this upgrade might have on their genetic mouse models. Future publications should provide more details on the cage system used to allow appropriate data comparison across research sites.
近几十年来的技术发展为实验小鼠带来了一种新型饲养系统,即所谓的“独立通风笼盒”(IVC)系统。IVC提供了一种与传统滤顶笼盒(FILTER)不同的笼盒环境。尽管有研究报道IVC会介导近交系小鼠品系表型的变化,但关于IVC饲养对基因工程小鼠模型的影响却一无所知。因此,在本研究中,我们系统地比较了饲养在FILTER笼盒中的精神分裂症风险基因神经调节蛋白1(TM Nrg1 HET)验证小鼠模型已确立的行为表型与饲养在IVC系统中的Nrg1突变小鼠。我们发现,当小鼠饲养在IVC笼盒中时,此前在FILTER笼盒饲养条件下已确立并广泛发表的TM Nrg1 HETs的特定精神分裂症相关内表型发生了改变。IVC减轻了Nrg1突变雄性小鼠与精神分裂症相关的前脉冲抑制缺陷。此外,在各种测试范式中,IVC饲养对Nrg1小鼠的运动表型有性别依赖性的中度影响。IVC饲养对雌性小鼠行为的影响较小。因此,将小鼠突变体的繁殖群体从FILTER转移到IVC系统可能会改变与疾病相关的行为,从而挑战这些小鼠的表面效度。面临将小鼠饲养或维持设施升级到IVC系统的研究人员必须意识到这种升级可能对其基因工程小鼠模型产生的潜在影响。未来的出版物应提供更多关于所使用笼盒系统的细节信息,以便在不同研究地点之间进行适当的数据比较。