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Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
Published on: March 6, 2018
Lactational exposure to abamectin induced mortality and adverse biochemical and histopathological effects in suckling
Abdel-Tawab H Mossa1, Mona A Abdel Rasoul2, Samia M M Mohafrash3
1Environmental Toxicology Research Unit (ETRU), Pesticide Chemistry Department, National Research Centre (NRC), 33 El Bohouth Street (former El Tahrir St.), Dokki, P.O. 12622, Giza, Egypt. abdeltawab.mossa@yahoo.com.
Insights
Lactation transfer of abamectin (ABA) caused significant toxicity and mortality in rat pups. This pesticide exposure led to oxidative stress, liver, and kidney damage in both mothers and offspring, highlighting risks for breastfed infants.
Area of Science:
- Toxicology
- Environmental Health
- Developmental Biology
Background:
- Lactational transfer of abamectin (ABA) poses potential risks to human infants, particularly in regions where breastfeeding is primary.
- Understanding ABA's effects on infant health via maternal exposure is crucial for public health initiatives.
Purpose of the Study:
- To evaluate the adverse effects of maternal exposure to abamectin (ABA) during lactation on oxidative damage and organ function in suckling rat pups.
- To assess the dose-dependent toxicity and accumulation of ABA in milk and its impact on offspring.
Main Methods:
- Dams were administered varying doses of ABA (2.21-22.10 mg a.i./kg b.wt) from postnatal day 1 to 20.
- Evaluated pup mortality, body weight changes, relative organ weights, oxidative stress markers (MDA, SOD, GST), serum biomarkers, and histopathology in liver and kidney.
Main Results:
- High mortality and toxicity observed in pups exposed to the highest ABA dose (22.1 mg a.i./kg b.wt).
- ABA exposure decreased body weight, increased relative liver weight, induced oxidative stress (increased MDA, decreased SOD/GST), and altered liver/kidney function biomarkers.
- Histopathological changes in maternal and pup liver and kidney tissues confirmed ABA-induced damage.
Conclusions:
- Abamectin accumulates in maternal milk and is transferred to suckling pups, causing significant mortality and adverse effects.
- Lactational exposure to ABA induces oxidative stress, lipid peroxidation, and organ dysfunction in both mothers and offspring.
- Findings underscore the potential health risks of abamectin exposure to breastfed infants, especially in developing countries.
Abstract:
Information about the adverse effects of lactation transfer of abamectin (ABA) is important for human health, especially in the third-world countries where breastfeeding is the only source of nutrition for infants. So, the present study was undertaken to evaluate the adverse effects of breastfeeding exposure to ABA on oxidative damage and liver and kidney dysfunction in suckling rats. Dams were orally administered ABA at a doses 22.10, 11.05, and 2.21 mg a.i./kg b.wt from postnatal day 1 (PND1) until day 20 (PND20). The signs of toxicity and high mortality were recorded in suckling male (67.5%) and female (55.0%) pups whose mother exposed to the ABA at dose 22.1 mg a.i./kg b.wt. ABA induced significantly decrease in body weights of mothers and their male and female pups and significant increase in relative liver weights. It caused oxidative stress in the liver and kidney of mothers and their pups by increasing the level of malondialdehyde (MDA) and decreased activities of superoxide dismutase (SOD) and glutathione-transferase (GST). ABA altered the level of serum liver and kidney dysfunction biomarkers either in the mothers or their male and female pups in a dose-dependent manner. It caused histopathological alterations in the liver and kidney tissues. It can be decided that ABA was accumulated in mother's milk, transferred through breast feeding, and induced mortality in their suckling pups. It caused oxidative stress, lipid peroxidation, and biochemical and histopathological alterations in the liver and kidney of mothers and their suckling pups. The results in the present study add some information about the adverse effect of lactation transfer of ABA, which is important for human health in the third-world countries where breastfeeding may be the only source of nutrition for infants in the first and most critical weeks of life.
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