Purpose of review The objective of this review is to provide an update on our evolving understanding of the effects of stress in pregnancy and during early development on the onset of asthma-related phenotypes across childhood, adolescence, and into early adulthood. Recent findings Accumulating evidence over the past 2 decades has established that prenatal and early-life psychological stress and stress correlates (e.g., maternal anxiety or depression) increase the risk for childhood respiratory disorders. Recent systematic reviews and meta-analyses including numerous prospective epidemiological and case–control studies substantiate a significant effect of prenatal stress and stress in early childhood on the development of wheeze, asthma, and other atopic-related disorders (eczema and allergic rhinitis), with many studies showing an exposure–response relationship. Offspring of both sexes are susceptible to perinatal stress, but effects differ. The impact of stress on child wheeze/asthma can also be modified by exposure timing. Moreover, coexposure to prenatal stress can enhance the effect of chemical stressors, such as prenatal traffic-related air pollution, on childhood respiratory disease risk. Understanding complex interactions among exposure dose, timing, child sex, and concurrent environmental exposures promises to more fully characterize stress effects and identify susceptible subgroups. Although the link between perinatal stress and childhood asthma-related phenotypes is now well established, pathways by which stress predisposes children to chronic respiratory disorders are not as well delineated. Mechanisms central to the pathophysiology of wheeze/asthma and lung growth and development overlap and involve a cascade of events that include disrupted immune, neuroendocrine, and autonomic function as well as oxidative stress. Altered homeostatic functioning of these integrated systems during development can enhance vulnerability to asthma and altered lung development. Summary Mechanistic studies that more comprehensively assess biomarkers reflecting alterations across interrelated stress response systems and associated regulatory processes, in both pregnant women and young children, could be highly informative. Leveraging high-throughput systems-wide technologies to include epigenomics (e.g., DNA methylation, microRNAs), transcriptomics, and microbiomics as well as integrated multiomics are needed to advance this field of science. Understanding stress-induced physiological changes occurring during vulnerable life periods that contribute to chronic respiratory disease risk could lead to the development of preventive strategies and novel therapeutic interventions.
http://ift.tt/2HSaqNi
Σφακιανάκης Αλέξανδρος
ΩτοΡινοΛαρυγγολόγος
Αναπαύσεως 5 Άγιος Νικόλαος
Κρήτη 72100
00302841026182
00306932607174
alsfakia@gmail.com
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- Copeptin in hyponatremia: is there a role for this...
- First evidence of anticoagulant rodenticides in fi...
- Special issue: developments in water management te...
- Ecotoxicological assessment of oil-based paint usi...
- Correction to: Effects-based spatial assessment of...
- Are oral mucosal nevi potential precursors for ora...
- RE: “IMPACT OF BLAST INJURY ON HEARING IN A SCREEN...
- RE: “HORMONE THERAPY USE AND RISK OF CHRONIC DISEA...
- Multiple Imputation for Incomplete Data in Epidemi...
- Sudden Unexpected Cardiac Death on Monday in Young...
- George et al. Respond to “Diabetes and Cardiovascu...
- Invited Commentary: Sex and Race Differences in Di...
- Breast Cancer Incidence and Exposure to Metalworki...
- Association of DNA Methylation-Based Biological Ag...
- Possible Mediation by Methylation in Acute Inflamm...
- Sickle Cell Trait and Heat Injury Among US Army So...
- Understanding Causal Distributional and Subgroup E...
- The Mental Health Benefits of Acquiring a Home in ...
- When to Censor?
- Invited Commentary: “Bedroom Light Exposure at Nig...
- Obayashi et al. Respond to “Light at Night Predict...
- Bedroom Light Exposure at Night and the Incidence ...
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- Cumulative effects of cascade hydropower stations ...
- Fabrication and characterization of β-cypermethrin...
- Experimental investigation on emission reduction i...
- Impact of military on biofuels consumption and GHG...
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- Evidence establishing a link between prenatal and ...
- Role of epigenetics in the development of childhoo...
- Health surveillance for occupational asthma
- Editorial introductions
- The emerging spectrum of exposure-related bronchio...
- Assessing the impact of air pollution on childhood...
- Biomarkers and asthma management: analysis and pot...
- Asthma in inner city children: recent insights Uni...
- Development of allergic sensitization and its rele...
- Precision medicine in the treatment of primary imm...
- Hypereosinophilic syndrome presenting acutely with...
- Displacement of the Recurrent Laryngeal Nerve in P...
- Editorial board
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- Editor's Choice
- The role of the OVOL1–OVOL2 axis in normal and dis...
- Heat shock protein 90 inhibitor enhances apoptosis...
- Reduced-HMGB1 suppresses poly(I:C)-induced inflamm...
- Localization of collagen type 5 in the papillary d...
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- Reply: lymph stasis promotes tumor growth
- Protective role of 6-formylindolo[3,2-b]carbazole ...
- Introduction of the TERT and BMI1 Genes into Murin...
- The UVA-induced long non-coding RNA GS1-600G8.5 re...
- A heterozygous mutation in the SAM domain of p63 u...
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- ‘Investigation of the activation of temporalis and...
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- Synthetic design of growth factor sequestering ext...
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