Although extrinsic factors, such as nutritional status, and some intrinsic genetic factors may modify susceptibility to developmental lead (Pb) poisoning, no studies have specifically examined the influence of genetic background on outcomes from Pb exposure. In this study, we used gene microarray profiling to identify Pb-responsive genes in rats of different genetic backgrounds, including inbred (Fischer 344 (F344)) and outbred (Long Evans (LE), Sprague Dawley (SD)) strains, to investigate the role that genetic variation may play in influencing outcomes from developmental Pb exposure. Male and female animals received either perinatal (gestation through lactation) or postnatal (birth through weaning) exposure to Pb in food (0, 250, or 750 pp...
Abstract Background Lead (Pb2+) is an environmental neurotoxicant that disrupts neurodevelopment, co...
Lead exposure is highly neurotoxic, particularly to the developing brain. A potential mechanism thro...
In this study, we assessed global gene expression patterns in adolescent mice exposed to lead (Pb) a...
D ow nloaded from While extrinsic factors, such as nutritional status, and some intrinsic genetic fa...
Exposure to lead (Pb) remains a significant public health concern. Lead exposure in early life impai...
Early life lead (Pb) exposure is detrimental to neurobehavioral development. The quality of the envi...
Abstract Background Neurodevelopment is a complex process involving both genetic and environmental f...
<div><p>Exposure to environmental toxicants during embryonic life causes changes in the expression o...
Exposure to environmental toxicants during embryonic life causes changes in the expression of develo...
Lead (Pb) exposure is associated with a wide range of neurological deficits. Environmental exposures...
Background: Lead (Pb) adversely affects neurodevelopment in children. Neural stem cells (NSCs) play ...
Lead (Pb2+) is a developmental neurotoxicant that causes lifelong cognitive deficiencies. Previous s...
Background\ud \ud A complete explanation of the mechanisms by which Pb2+ exerts toxic effects on dev...
Lead (Pb) exposure in the earliest stages of neurodevelopment leads to lasting deficits in cognitive...
Thesis (Ph.D.)--University of Washington, 2016-06Alzheimer’s disease (AD) is characterized by progre...
Abstract Background Lead (Pb2+) is an environmental neurotoxicant that disrupts neurodevelopment, co...
Lead exposure is highly neurotoxic, particularly to the developing brain. A potential mechanism thro...
In this study, we assessed global gene expression patterns in adolescent mice exposed to lead (Pb) a...
D ow nloaded from While extrinsic factors, such as nutritional status, and some intrinsic genetic fa...
Exposure to lead (Pb) remains a significant public health concern. Lead exposure in early life impai...
Early life lead (Pb) exposure is detrimental to neurobehavioral development. The quality of the envi...
Abstract Background Neurodevelopment is a complex process involving both genetic and environmental f...
<div><p>Exposure to environmental toxicants during embryonic life causes changes in the expression o...
Exposure to environmental toxicants during embryonic life causes changes in the expression of develo...
Lead (Pb) exposure is associated with a wide range of neurological deficits. Environmental exposures...
Background: Lead (Pb) adversely affects neurodevelopment in children. Neural stem cells (NSCs) play ...
Lead (Pb2+) is a developmental neurotoxicant that causes lifelong cognitive deficiencies. Previous s...
Background\ud \ud A complete explanation of the mechanisms by which Pb2+ exerts toxic effects on dev...
Lead (Pb) exposure in the earliest stages of neurodevelopment leads to lasting deficits in cognitive...
Thesis (Ph.D.)--University of Washington, 2016-06Alzheimer’s disease (AD) is characterized by progre...
Abstract Background Lead (Pb2+) is an environmental neurotoxicant that disrupts neurodevelopment, co...
Lead exposure is highly neurotoxic, particularly to the developing brain. A potential mechanism thro...
In this study, we assessed global gene expression patterns in adolescent mice exposed to lead (Pb) a...