压力与健康研究中的多组学:推动该领域发展的研究设计。

IF 2.6 4区 心理学 Q2 BEHAVIORAL SCIENCES Stress-The International Journal on the Biology of Stress Pub Date : 2024-01-01 Epub Date: 2024-02-29 DOI:10.1080/10253890.2024.2321610
Summer Mengelkoch, Jeffrey Gassen, Shahar Lev-Ari, Jenna C Alley, Sophia Miryam Schüssler-Fiorenza Rose, Michael P Snyder, George M Slavich
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引用次数: 0

摘要

尽管压力研究已经进行了几十年,但我们对社会、环境和生物因素如何相互作用并与发展过程中接触的压力源、对压力源的认知评价以及社会心理应对过程相结合,从而形成个体的压力反应性、健康和疾病风险的认识仍然存在很大差距。被称为多组学的相对较新的生物剖析方法有助于解决这些问题,它使研究人员能够从单个血液或组织样本中量化成千上万的分子,从而从系统的角度提供生物体内发生的分子过程的全景快照。在这篇综述中,我们总结了最适合采用多组学方法的两类研究设计,并介绍了这些方法如何帮助我们加深对应激过程以及应激相关病症的发展、预防和治疗的理解。我们首先讨论将多组学方法纳入理论丰富的密集型纵向研究设计中,以高分辨率描述整个发育过程中与压力相关的多系统功能障碍和疾病的转变过程。接下来,我们将讨论如何将多组学方法纳入干预研究,以更好地了解从压力相关功能障碍向健康的过渡,这有助于为管理压力和培养生物心理社会复原力的新型精准医学方法提供信息。在整个过程中,我们为有助于推进压力研究的研究类型提出了具体建议,并将多组学数据转化为更好的健康和医疗保健。
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Multi-omics in stress and health research: study designs that will drive the field forward.

Despite decades of stress research, there still exist substantial gaps in our understanding of how social, environmental, and biological factors interact and combine with developmental stressor exposures, cognitive appraisals of stressors, and psychosocial coping processes to shape individuals' stress reactivity, health, and disease risk. Relatively new biological profiling approaches, called multi-omics, are helping address these issues by enabling researchers to quantify thousands of molecules from a single blood or tissue sample, thus providing a panoramic snapshot of the molecular processes occurring in an organism from a systems perspective. In this review, we summarize two types of research designs for which multi-omics approaches are best suited, and describe how these approaches can help advance our understanding of stress processes and the development, prevention, and treatment of stress-related pathologies. We first discuss incorporating multi-omics approaches into theory-rich, intensive longitudinal study designs to characterize, in high-resolution, the transition to stress-related multisystem dysfunction and disease throughout development. Next, we discuss how multi-omics approaches should be incorporated into intervention research to better understand the transition from stress-related dysfunction back to health, which can help inform novel precision medicine approaches to managing stress and fostering biopsychosocial resilience. Throughout, we provide concrete recommendations for types of studies that will help advance stress research, and translate multi-omics data into better health and health care.

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来源期刊
CiteScore
5.60
自引率
0.00%
发文量
25
审稿时长
6-12 weeks
期刊介绍: The journal Stress aims to provide scientists involved in stress research with the possibility of reading a more integrated view of the field. Peer reviewed papers, invited reviews and short communications will deal with interdisciplinary aspects of stress in terms of: the mechanisms of stressful stimulation, including within and between individuals; the physiological and behavioural responses to stress, and their regulation, in both the short and long term; adaptive mechanisms, coping strategies and the pathological consequences of stress. Stress will publish the latest developments in physiology, neurobiology, molecular biology, genetics research, immunology, and behavioural studies as they impact on the understanding of stress and its adverse consequences and their amelioration. Specific approaches may include transgenic/knockout animals, developmental/programming studies, electrophysiology, histochemistry, neurochemistry, neuropharmacology, neuroanatomy, neuroimaging, endocrinology, autonomic physiology, immunology, chronic pain, ethological and other behavioural studies and clinical measures.
期刊最新文献
Inhibition of prefrontal cortex parvalbumin interneurons mitigates behavioral and physiological sequelae of chronic stress in male mice. Maternal prenatal distress exposure negatively associates with the stability of neonatal frontoparietal network. Decreased amygdala-sensorimotor connectivity mediates the association between prenatal stress and broad autism phenotype in young adults: Project Ice Storm. Accumbal μ-opioid receptors and salt taste-elicited hedonic responses in a rodent model of prenatal adversity, and their correlates using human functional genomics. Behavior, synaptic mitochondria, and microglia are differentially impacted by chronic adolescent stress and repeated endotoxin exposure in male and female rats.
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