Literature DB >> 15919179

Prenatal and early childhood blood lead levels and cardiovascular functioning in 9(1/2) year old children.

Brooks B Gump1, Paul Stewart, Jacki Reihman, Ed Lonky, Tom Darvill, Karen A Matthews, Patrick J Parsons.   

Abstract

A number of studies have found that increasing lead exposure is associated with increases in blood pressure in humans. Studies with animals suggest that lead-induced increases in vascular resistance account for these increases in blood pressure. The present study assessed cardiovascular functioning at rest and in response to acute stress for 9(1/2) year old children (N=122) having relatively low prenatal (cord) blood lead levels (M=1.98 microg/dL, SD=1.75) and low postnatal (early childhood) blood lead levels (M=4.62 microg/dL, SD=2.51). Higher cord blood levels were associated with higher baseline systolic blood pressure (SBP), and higher early childhood lead levels were associated with greater total peripheral (vascular) resistance (TPR) responses to acute stress. In addition, a negative association between blood lead levels and stroke volume (SV) suggests that lead-induced increases in vascular resistance were sufficient to produce cardiac afterload, a situation arising when blood pressure in the aorta makes it difficult for the left ventricle to eject blood. These effects were not mediated by differences in task performance or emotional responses to the acute stress tasks. Finally, these effects were significant for lead levels considered low, notably, below the 10 microg/dL threshold currently adopted by the CDC for deleterious effects.

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Year:  2005        PMID: 15919179     DOI: 10.1016/j.ntt.2005.04.002

Source DB:  PubMed          Journal:  Neurotoxicol Teratol        ISSN: 0892-0362            Impact factor:   3.763


  26 in total

1.  Effects of developmental stress and lead (Pb) on corticosterone after chronic and acute stress, brain monoamines, and blood Pb levels in rats.

Authors:  Devon L Graham; Curtis E Grace; Amanda A Braun; Tori L Schaefer; Matthew R Skelton; Peter H Tang; Charles V Vorhees; Michael T Williams
Journal:  Int J Dev Neurosci       Date:  2010-10-08       Impact factor: 2.457

2.  Exploring potential sources of differential vulnerability and susceptibility in risk from environmental hazards to expand the scope of risk assessment.

Authors:  Joel Schwartz; David Bellinger; Thomas Glass
Journal:  Am J Public Health       Date:  2011-10-20       Impact factor: 9.308

3.  Effects of lead and mercury on the blood proteome of children.

Authors:  Robert E Birdsall; Michael P Kiley; Zaneer M Segu; Christopher D Palmer; Milan Madera; Brooks B Gump; James A MacKenzie; Patrick J Parsons; Yehia Mechref; Milos V Novotny; Kestutis G Bendinskas
Journal:  J Proteome Res       Date:  2010-09-03       Impact factor: 4.466

4.  Low-level Pb and cardiovascular responses to acute stress in children: the role of cardiac autonomic regulation.

Authors:  Brooks B Gump; James A Mackenzie; Kestutis Bendinskas; Robert Morgan; Amy K Dumas; Christopher D Palmer; Patrick J Parsons
Journal:  Neurotoxicol Teratol       Date:  2010-10-08       Impact factor: 3.763

5.  Trajectories of maternal depressive symptoms over her child's life span: relation to adrenocortical, cardiovascular, and emotional functioning in children.

Authors:  Brooks B Gump; Jacki Reihman; Paul Stewart; Ed Lonky; Tom Darvill; Douglas A Granger; Karen A Matthews
Journal:  Dev Psychopathol       Date:  2009

6.  Blood lead (Pb) levels: further evidence for an environmental mechanism explaining the association between socioeconomic status and psychophysiological dysregulation in children.

Authors:  Brooks B Gump; Jacki Reihman; Paul Stewart; Ed Lonky; Douglas A Granger; Karen A Matthews
Journal:  Health Psychol       Date:  2009-09       Impact factor: 4.267

7.  Developmental stress and lead (Pb): Effects of maternal separation and/or Pb on corticosterone, monoamines, and blood Pb in rats.

Authors:  Robyn M Amos-Kroohs; Devon L Graham; Curtis E Grace; Amanda A Braun; Tori L Schaefer; Matthew R Skelton; Charles V Vorhees; Michael T Williams
Journal:  Neurotoxicology       Date:  2016-03-02       Impact factor: 4.294

8.  Dietary contributions to increased background lead, mercury, and cadmium in 9-11 Year old children: Accounting for racial differences.

Authors:  Brooks B Gump; Bryce Hruska; Patrick J Parsons; Christopher D Palmer; James A MacKenzie; Kestutis Bendinskas; Lynn Brann
Journal:  Environ Res       Date:  2020-03-04       Impact factor: 6.498

9.  Neighborhood psychosocial hazards and the association of cumulative lead dose with cognitive function in older adults.

Authors:  Thomas A Glass; Karen Bandeen-Roche; Matthew McAtee; Karen Bolla; Andrew C Todd; Brian S Schwartz
Journal:  Am J Epidemiol       Date:  2009-01-20       Impact factor: 4.897

10.  Developmental manganese, lead, and barren cage exposure have adverse long-term neurocognitive, behavioral and monoamine effects in Sprague-Dawley rats.

Authors:  Jenna L N Sprowles; Robyn M Amos-Kroohs; Amanda A Braun; Chiho Sugimoto; Charles V Vorhees; Michael T Williams
Journal:  Neurotoxicol Teratol       Date:  2018-04-07       Impact factor: 3.763

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