一种虚弱小鼠模型的物理和生物学特征

The physical and biological characterization of a frail mouse model.

作者信息

Walston Jeremy, Fedarko Neal, Yang Huanle, Leng Sean, Beamer Brock, Espinoza Sara, Lipton Anne, Zheng Howie, Becker Kevin

机构信息

The Biology of Frailty Working Group, Johns Hopkins University, Baltimore, MD 21224, USA.

出版信息

J Gerontol A Biol Sci Med Sci. 2008 Apr;63(4):391-8. doi: 10.1093/gerona/63.4.391.

Abstract

BACKGROUND

The development of animal models that approximate human frailty is necessary to facilitate etiologic and treatment-focused frailty research. The genetically altered IL-10(tm/tm) mouse does not express the antiinflammatory cytokine interleukin 10 (IL-10) and is, like frail humans, more susceptible to inflammatory pathway activation. We hypothesized that with increasing age, IL-10(tm/tm) mice would develop physical and biological characteristics similar to those of human frailty as compared to C57BL/6J control mice.

METHODS

Strength, activity, serum IL-6, and skeletal muscle gene expression were compared between age-matched and gender-matched IL-10(tm/tm) mice on C57BL/6J background and C57BL/6J control mice using a longitudinal design for physical characteristics and cross-sectional design for biological characteristics.

RESULTS

Strength levels declined significantly faster in IL-10(tm/tm) compared to control mice with increasing age. Serum IL-6 levels were significantly higher in older compared to younger IL-10(tm/tm) mice and were significantly higher in older IL-10(tm/tm) compared to age- and gender-matched C57BL/6J control mice. One hundred twenty-five genes, many related to mitochondrial biology and apoptosis, were differentially expressed in skeletal muscle between 50-week-old IL-10(tm/tm) and 50-week-old C57BL/6J mice. No expression differences between IL-10(tm/tm) age groups were identified by quantitative polymerase chain reaction.

CONCLUSION

These physical and biological findings suggest that the IL-10(tm/tm) mouse develops inflammation and strength decline consistent with human frailty at an earlier age compared to C57BL/6J control type mice. This finding provides rationale for the further development and utilization of the IL-10(tm/tm) mouse to study the biological basis of frailty.

摘要

背景

开发近似人类虚弱状态的动物模型对于推动以病因和治疗为重点的虚弱研究很有必要。基因改造的IL-10(tm/tm)小鼠不表达抗炎细胞因子白细胞介素10(IL-10),并且与虚弱的人类一样,更容易受到炎症途径激活的影响。我们假设,随着年龄增长,与C57BL/6J对照小鼠相比,IL-10(tm/tm)小鼠会出现与人类虚弱状态相似的身体和生物学特征。

方法

采用纵向设计评估身体特征,横断面设计评估生物学特征,对C57BL/6J背景的年龄和性别匹配的IL-10(tm/tm)小鼠与C57BL/6J对照小鼠的力量、活动、血清IL-6以及骨骼肌基因表达进行比较。

结果

随着年龄增长,IL-10(tm/tm)小鼠的力量水平相比对照小鼠显著下降得更快。老年IL-10(tm/tm)小鼠的血清IL-6水平明显高于年轻的IL-10(tm/tm)小鼠,且与年龄和性别匹配的C57BL/6J对照小鼠相比,老年IL-10(tm/tm)小鼠的血清IL-6水平也显著更高。在50周龄的IL-10(tm/tm)小鼠和50周龄的C57BL/6J小鼠的骨骼肌中,有125个基因存在差异表达,其中许多基因与线粒体生物学和细胞凋亡相关。通过定量聚合酶链反应未发现IL-10(tm/tm)年龄组之间存在表达差异。

结论

这些身体和生物学发现表明,与C57BL/6J对照型小鼠相比,IL-10(tm/tm)小鼠在更早的年龄就出现了与人类虚弱状态一致的炎症和力量下降。这一发现为进一步开发和利用IL-10(tm/tm)小鼠来研究虚弱的生物学基础提供了理论依据。

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