健康和衰老中的系统完整性——一种动物模型方法。

Marije Oostindjer, Gro V Amdam
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引用次数: 2

摘要

通过心理测量(IQ)测试,人类寿命与儿童智力呈正相关。这种相关性的强度类似于吸烟对生命过程的负面影响。这一结果表明,儿童时期在心理测试中表现良好的人可能会保持更健康,寿命更长。然而,这种相关性存在争议:它是完全由社会环境因素引起的,还是也可能有生物成分?系统完整性的生物学特征可能会导致大脑功能和寿命之间的相关性,这一点已经被提出,但尚未得到证实,人们质疑通过理解这些机制可以获得哪些有用的知识。在最近的一项研究中,我们发现蜜蜂的大脑功能与寿命呈正相关。蜜蜂具有高度的社会性,但有助于人类认知-生存相关性的相关社会环境因素在很大程度上不存在于昆虫群落中。因此,我们的研究结果为蜜蜂的相关性提供了生物学解释。在这里,我们认为,压力处理(应对)机制的个体差异可能是系统完整性的一个特征,这种差异既影响蜜蜂在大脑功能测试中的表现,也影响它们的生存。脊椎动物在应对方面的个体差异得到了大量研究,有几个物种提供了有吸引力的模型。在这里,我们讨论了猪是如何成为研究行为、生理和分子机制的一个有趣的模型,这些机制在压力下被招募,并可以推动健康、认知和寿命特征之间的相关性。通过揭示使个人容易受到压力的生物学因素,可能会缓解人们的健康和寿命差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Systems integrity in health and aging - an animal model approach.

Systems integrity in health and aging - an animal model approach.

Systems integrity in health and aging - an animal model approach.

Systems integrity in health and aging - an animal model approach.

Human lifespan is positively correlated with childhood intelligence, as measured by psychometric (IQ) tests. The strength of this correlation is similar to the negative effect that smoking has on the life course. This result suggests that people who perform well on psychometric tests in childhood may remain healthier and live longer. The correlation, however, is debated: is it caused exclusively by social-environmental factors or could it also have a biological component? Biological traits of systems integrity that might result in correlations between brain function and lifespan have been suggested but are not well-established, and it is questioned what useful knowledge can come from understanding such mechanisms. In a recent study, we found a positive correlation between brain function and longevity in honey bees. Honey bees are highly social, but relevant social-environmental factors that contribute to cognition-survival correlations in humans are largely absent from insect colonies. Our results, therefore, suggest a biological explanation for the correlation in the bee. Here, we argue that individual differences in stress handling (coping) mechanisms, which both affect the bees' performance in tests of brain function and their survival could be a trait of systems integrity. Individual differences in coping are much studied in vertebrates, and several species provide attractive models. Here, we discuss how pigs are an interesting model for studying behavioural, physiological and molecular mechanisms that are recruited during stress and that can drive correlations between health, cognition and longevity traits. By revealing biological factors that make individuals susceptible to stress, it might be possible to alleviate health and longevity disparities in people.

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