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增强和扩展生物学性能及恢复力。

Enhancing and Extending Biological Performance and Resilience.

作者信息

Leak Rehana K, Calabrese Edward J, Kozumbo Walter J, Gidday Jeffrey M, Johnson Thomas E, Mitchell James R, Ozaki C Keith, Wetzker Reinhard, Bast Aalt, Belz Regina G, Bøtker Hans E, Koch Sebastian, Mattson Mark P, Simon Roger P, Jirtle Randy L, Andersen Melvin E

机构信息

Graduate School of Pharmaceutical Sciences, Duquesne University, Pittsburgh, PA, USA.

School of Public Health and Health Sciences, University of Massachusetts, Amherst, MA, USA.

出版信息

Dose Response. 2018 Aug 15;16(3):1559325818784501. doi: 10.1177/1559325818784501. eCollection 2018 Jul-Sep.

Abstract

Human performance, endurance, and resilience have biological limits that are genetically and epigenetically predetermined but perhaps not yet optimized. There are few systematic, rigorous studies on how to raise these limits and reach the true maxima. Achieving this goal might accelerate translation of the theoretical concepts of conditioning, hormesis, and stress adaptation into technological advancements. In 2017, an Air Force-sponsored conference was held at the University of Massachusetts for discipline experts to display data showing that the amplitude and duration of biological performance might be magnified and to discuss whether there might be harmful consequences of exceeding typical maxima. The charge of the workshop was "to examine and discuss and, if possible, recommend approaches to control and exploit endogenous defense mechanisms to enhance the structure and function of biological tissues." The goal of this white paper is to fulfill and extend this workshop charge. First, a few of the established methods to exploit endogenous defense mechanisms are described, based on workshop presentations. Next, the white paper accomplishes the following goals to provide: (1) synthesis and critical analysis of concepts across some of the published work on endogenous defenses, (2) generation of new ideas on augmenting biological performance and resilience, and (3) specific recommendations for researchers to not only examine a wider range of stimulus doses but to also systematically modify the temporal dimension in stimulus inputs (timing, number, frequency, and duration of exposures) and in measurement outputs (interval until assay end point, and lifespan). Thus, a path forward is proposed for researchers hoping to optimize protocols that support human health and longevity, whether in civilians, soldiers, athletes, or the elderly patients. The long-term goal of these specific recommendations is to accelerate the discovery of practical methods to conquer what were once considered intractable constraints on performance maxima.

摘要

人类的表现、耐力和恢复力存在生物学极限,这些极限在基因和表观遗传层面上是预先确定的,但可能尚未达到最佳状态。关于如何提高这些极限并达到真正的最大值,很少有系统、严谨的研究。实现这一目标可能会加速将调节、应激适应和应激兴奋效应等理论概念转化为技术进步。2017年,美国空军赞助在马萨诸塞大学召开了一次会议,学科专家们展示了数据,表明生物学表现的幅度和持续时间可能会被放大,并讨论了超过典型最大值是否可能产生有害后果。研讨会的任务是“审查和讨论,并在可能的情况下推荐控制和利用内源性防御机制以增强生物组织结构和功能的方法”。本白皮书的目标是完成并扩展该研讨会的任务。首先,基于研讨会上的报告,描述了一些利用内源性防御机制的既定方法。接下来,白皮书实现以下目标以提供:(1)对已发表的关于内源性防御的一些工作中的概念进行综合和批判性分析;(2)提出关于增强生物学表现和恢复力的新想法;(3)为研究人员提供具体建议,不仅要研究更广泛的刺激剂量范围,还要系统地改变刺激输入(暴露的时间、次数、频率和持续时间)和测量输出(直到测定终点的间隔和寿命)的时间维度。因此,为希望优化支持人类健康和长寿方案的研究人员提出了一条前进的道路,无论对象是平民、士兵、运动员还是老年患者。这些具体建议的长期目标是加速发现切实可行的方法,以攻克曾经被认为对表现最大值构成难以解决的限制因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7ad/6096685/9e6497217661/10.1177_1559325818784501-fig1.jpg

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