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Pagadala, S.

Publications and source records attributed to Pagadala, S..

2 recordsLinked to original sources

Perinatal exposure to individual and a metal mixture induces persistent and sex-specific alterations to the cardiac transcriptome of offspring

Exposure to heavy metals, such as lead, arsenic, cadmium, and chromium, has been individually linked to cardiac dysfunction during development and into adulthood. Although these metals are commonly encountered as a mixture, few studies have investigated the mixture effects of gestational exposure to these metals on the developing postnatal heart. To this end, we investigated the transcriptomic effects of individual heavy metals (arsenic, cadmium, chromium, and lead) and the combined mixture on female C57BI/6 mice prior to gestation through lactation. RNA was extracted from whole offspring hearts, and total RNA was sent for bulk RNA-sequencing. We found heavy metal exposure altered genes associated with circadian rhythm, cell division and DNA damage repair, and immune signaling. Moreover, we detected changes to the cellular composition of these hearts and an increase in Il2ra expression, indicating an increase in activated natural killer cells. When targeting postnatal heart development and maturation pathways, we found the mixture induced a general upregulation of almost all targeted pathways, which seemed to be driven by co-exposure to all metals instead of one metal driving the mixture phenotype, and revealed a potential functional-energetic mismatch. This study is one of the first to show that perinatal exposure to heavy metals altered circadian rhythm and immune signaling gene expression in a metal- and sex-specific manner, disrupted normal cardiac cellular composition, and upregulated genes associated with postnatal heart maturation.

pharmacology and toxicology↗

Perinatal Exposure to Metal Mixtures Disrupts Neuronal Function and Behavior

BackgroundEnvironmental exposure to heavy metals such as lead (Pb), arsenic (As), hexavalent chromium [Cr(VI)], and cadmium (Cd), (PACC), is linked to neurodevelopmental disorders. These metals often co-occur in contaminated environments, but their combined effects on brain development remain poorly understood. ObjectiveTo test the hypothesis that perinatal exposure to a mixture of environmentally relevant levels of Pb, As, Cd, and Cr(VI), causes developmental defects in cognition, behavior, and neuronal function. MethodsFemale C57BL/6J mice were exposed to either a single metal or the PACC mixture in drinking water. Exposure began two weeks preconception and continued until weaning at postnatal day 21. Juvenile mice were tested at 4-5 weeks of age in open field (locomotion), novel object recognition (short-term memory), Y-maze (working memory), and elevated plus maze (anxiety-like behavior). A subset of animals underwent Whole-cell patch-clamp recordings in the medial prefrontal cortex (mPFC) and hippocampal CA1 neurons. ResultsPerinatal exposure to PACC metal mixture increased anxiety-like behavior and impaired short-term memory but not locomotion or working memory. Pyramidal neurons in mPFC and hippocampal CA1 displayed increased intrinsic excitability, mPFC neurons also showed elevated amplitude in spontaneous excitatory postsynaptic currents. DiscussionOur findings suggest that perinatal exposure to the PACC metal mixture impairs cognition, increases anxiety-like behavior, and alters neuronal function in specific brain regions of juvenile mice, leading to disruption in neuronal function and behavior later in life. Further studies are needed to provide mechanistic insight into how perinatal heavy metal exposure affects neuronal development. HighlightsO_LIPerinatal exposure to a metal mixture including lead (Pb), arsenic (As), hexavalent chromium (Cr(VI)), and cadmium (Cd), collectively termed PACC metal mixture--impairs cognition and increases anxiety in mice. C_LIO_LINeuronal excitability and synaptic transmission are altered in medial prefrontal cortex after PACC metal mixture exposure. C_LIO_LIPACC mixture exposure decreases short-term memory in both males and females, and increases anxiety in males C_LIO_LIPrincipal component and clustering analyses reveal that PACC mixture exposure and control mice form distinct, nonoverlapping populations in physiological-behavioral space. C_LIO_LIEnvironmentally relevant PACC metal mixtures exert stronger effects than individual metals alone. C_LI

pharmacology and toxicology↗