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Influence of Mushroom on Pb Toxicokinetic in Pregnant Rats

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Publisher MDPI
Date 2023 Feb 25
PMID 36833809
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Abstract

(Pb) is a toxic metal, responsible for several damages to human health. (Ab) is a mushroom with promising antioxidant properties to be used as an alternative chelator in Pb intoxication. The aim was to understand the Pb toxicokinetic and the potential of Ab as a protective agent. A total of 20 female Wistar rats were distributed into 4 groups (n = 5/group): Control (receiving water); Group Ab 100 mg/kg (gavage); Group Pb 100 mg/L in water; and Group Ab + Pb-100 mg/kg + 100 mg/L (gavage and water). Pb administration occurred daily until the 19th day of pregnancy. On day 19 of gestation, the rats were euthanized, and the blood and tissues were collected for Pb measurement, using an inductively coupled plasma mass spectrometer. The results showed that the levels of Pb in the blood, placenta, and liver of the mothers, and in the brain of the fetuses increased significantly in the Pb group. On the other hand, the combined exposure to Pb + Ab showed a significant decrease in the metal concentration in relation to the Pb group, returning to normal levels. Kidney and bone lead levels also increased significantly in the Pb group. However, in the combined exposure group, levels did not return to the control amounts; there was protection, but the Pb concentration was still significantly higher than in the control. In the brain, no significant differences were observed. In conclusion, we suggest is a natural chelator, because the co-administration of the mushroom was able to interact with Pb ions, minimizing the Pb absorption and distribution. These effects are suggested since have antioxidants and beta glucan that interact with Pb, chelating it and, thus, reducing its toxic effects.

References
1.
Bortey-Sam N, Nakayama S, Ikenaka Y, Akoto O, Baidoo E, Yohannes Y . Human health risks from metals and metalloid via consumption of food animals near gold mines in Tarkwa, Ghana: estimation of the daily intakes and target hazard quotients (THQs). Ecotoxicol Environ Saf. 2014; 111:160-7. DOI: 10.1016/j.ecoenv.2014.09.008. View

2.
Visweswar K, Sunil A, Harsha A, Janardhana C . Interaction studies of lead(II) ion with cyclic β-(1→3),(1→6) glucans extracted from Bradyrhizobium japonicum based on 'chelation enhanced fluorescence' (CHEF) effect. Luminescence. 2018; 33(7):1202-1208. DOI: 10.1002/bio.3536. View

3.
Gerenutti M, Tribuiani N, Oliveira B, Rosa-Castro R, Frizo I, Oshima-Franco Y . Safety assessment of the royal sun mushroom, Agaricus brasiliensis (higher Basidiomycetes) intake during rat pregnancy. Int J Med Mushrooms. 2014; 16(6):519-28. DOI: 10.1615/intjmedmushrooms.v16.i6.20. View

4.
Pachauri V, Saxena G, Mehta A, Mishra D, Flora S . Combinational chelation therapy abrogates lead-induced neurodegeneration in rats. Toxicol Appl Pharmacol. 2009; 240(2):255-64. DOI: 10.1016/j.taap.2009.07.001. View

5.
Nakayama S, Ikenaka Y, Hamada K, Muzandu K, Choongo K, Yabe J . Accumulation and biological effects of metals in wild rats in mining areas of Zambia. Environ Monit Assess. 2012; 185(6):4907-18. DOI: 10.1007/s10661-012-2912-6. View