Sub-chronic exposure to Kalach 360 SL, Glyphosate-based Herbicide, induced bone rarefaction in female Wistar rats

[Display omitted] We investigated the effects of Kalach 360 SL (KL), Glyphosate (G)-based herbicide, on bone tissue in different groups of female Wistar rats. Group 1 (n = 6) received a standard diet and served as a control, groups 2 and 3 (n = 6 each) received 0.07 ml (D1: 126 mg/Kg) and 0.175 ml (...

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Veröffentlicht in:Toxicology (Amsterdam) 2020-04, Vol.436, p.152412, Article 152412
Hauptverfasser: Hamdaoui, Latifa, Oudadesse, Hassane, Lefeuvre, Bertrand, Mahmoud, Asma, Naifer, Manel, Badraoui, Riadh, Ayadi, Fatma, Rebai, Tarek
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container_start_page 152412
container_title Toxicology (Amsterdam)
container_volume 436
creator Hamdaoui, Latifa
Oudadesse, Hassane
Lefeuvre, Bertrand
Mahmoud, Asma
Naifer, Manel
Badraoui, Riadh
Ayadi, Fatma
Rebai, Tarek
description [Display omitted] We investigated the effects of Kalach 360 SL (KL), Glyphosate (G)-based herbicide, on bone tissue in different groups of female Wistar rats. Group 1 (n = 6) received a standard diet and served as a control, groups 2 and 3 (n = 6 each) received 0.07 ml (D1: 126 mg/Kg) and 0.175 ml (D2: 315 mg/Kg) of KL dissolved in the water for 60 days. The plasma was used to examine the metabolic balance markers (calcium, phosphorus, phosphatase alkaline (PAL), and vitamin D (vit D) and hormonal status (oestrogen and thyroid hormones). As a result, sub-chronic exposure to KL induced a perturbation of bone metabolism (calcium and phosphorus) and hormonal status disturbance. The histological and immunohistochemical study of the thyroid gland revealed a disturbance in morphological structure and thyroid cells function. Moreover, the KL disrupting eff ;ect on thyroid function was investigated by measuring changes in plasma levels of thyroid hormones. Free triiodothyronine (FT3) and thyroxine (FT4) were decreased in female rats breast-fed from rats treated with D and D2 of KL. This eff ;ect was associated with an increase in the plasma level of thyroid-stimulating hormone (TSH). Thus, that KL leads to hypothyroidism. Decrease in levels of oestrogen and thyroid dysfunction led to a disruption in the skeletal bone. The histological study and SEM in bone results allowed us to observe, in rats exposed to KL, the thinning and discontinuity of bone trabecular with a significant decrease in the number of nodes (intertrabecular links).In conclusion, KL sub-chronic exposure caused an aspect of osteoporosis.
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Group 1 (n = 6) received a standard diet and served as a control, groups 2 and 3 (n = 6 each) received 0.07 ml (D1: 126 mg/Kg) and 0.175 ml (D2: 315 mg/Kg) of KL dissolved in the water for 60 days. The plasma was used to examine the metabolic balance markers (calcium, phosphorus, phosphatase alkaline (PAL), and vitamin D (vit D) and hormonal status (oestrogen and thyroid hormones). As a result, sub-chronic exposure to KL induced a perturbation of bone metabolism (calcium and phosphorus) and hormonal status disturbance. The histological and immunohistochemical study of the thyroid gland revealed a disturbance in morphological structure and thyroid cells function. Moreover, the KL disrupting eff ;ect on thyroid function was investigated by measuring changes in plasma levels of thyroid hormones. Free triiodothyronine (FT3) and thyroxine (FT4) were decreased in female rats breast-fed from rats treated with D and D2 of KL. This eff ;ect was associated with an increase in the plasma level of thyroid-stimulating hormone (TSH). Thus, that KL leads to hypothyroidism. Decrease in levels of oestrogen and thyroid dysfunction led to a disruption in the skeletal bone. 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This eff ;ect was associated with an increase in the plasma level of thyroid-stimulating hormone (TSH). Thus, that KL leads to hypothyroidism. Decrease in levels of oestrogen and thyroid dysfunction led to a disruption in the skeletal bone. The histological study and SEM in bone results allowed us to observe, in rats exposed to KL, the thinning and discontinuity of bone trabecular with a significant decrease in the number of nodes (intertrabecular links).In conclusion, KL sub-chronic exposure caused an aspect of osteoporosis.</description><subject>Animals</subject><subject>Biomarkers - blood</subject><subject>Bone Density - drug effects</subject><subject>Bone remodeling</subject><subject>Bone Remodeling - drug effects</subject><subject>Bone tissue</subject><subject>Estrogens - blood</subject><subject>Female</subject><subject>Femur - drug effects</subject><subject>Femur - metabolism</subject><subject>Femur - ultrastructure</subject><subject>Glycine - analogs &amp; derivatives</subject><subject>Glycine - toxicity</subject><subject>Glyphosate</subject><subject>Herbicides - toxicity</subject><subject>Hypothyroidism - blood</subject><subject>Hypothyroidism - chemically induced</subject><subject>Hypothyroidism - pathology</subject><subject>Kalach 360 SL</subject><subject>Life Sciences</subject><subject>Osteoporosis</subject><subject>Osteoporosis - blood</subject><subject>Osteoporosis - chemically induced</subject><subject>Osteoporosis - pathology</subject><subject>Rats</subject><subject>Rats, Wistar</subject><subject>Thyroid Gland - drug effects</subject><subject>Thyroid Gland - metabolism</subject><subject>Thyroid Gland - pathology</subject><subject>Thyroid Hormones - blood</subject><subject>Toxicology</subject><issn>0300-483X</issn><issn>1879-3185</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNp9kE9P4zAQxa0VaCmFD7CXla9ITfG_JI44VWhpV1TiAAhulmOPVVdpXOwUwbdfV9nluKfRzLz3pPdD6Aclc0podb2dD-FjzgjLe8kEZd_QhMq6KTiV5QmaEE5IISR_PUPnKW0JIYyL6js644yKkot6gt4eD21hNjH03mD42Id0iICHgO91p80G84rgx_UML7vP_SYkPUDR6gQWryC23ngLM-x7ezD51IYecNQRnDaDD31-YAc73QF-8WnQMT-HdIFOne4SXP6dU_R89-vpdlWsH5a_bxfrwghOhkKWeYImsnTWyYbVrKVcSsO5E1LUIKljtWQ1gCtZU1rRaE5rVzXMWbCc8Cm6GnM3ulP76Hc6fqqgvVot1up4I6zknFbynWYtHbUmhpRygS8DJeqIWm1VRq2OqNWIOnt-jp79od2B_XL8Y5sFN6MAcst3D1El46HPpHwEMygb_H_i_wA3IY2M</recordid><startdate>20200430</startdate><enddate>20200430</enddate><creator>Hamdaoui, Latifa</creator><creator>Oudadesse, Hassane</creator><creator>Lefeuvre, Bertrand</creator><creator>Mahmoud, Asma</creator><creator>Naifer, Manel</creator><creator>Badraoui, Riadh</creator><creator>Ayadi, Fatma</creator><creator>Rebai, Tarek</creator><general>Elsevier B.V</general><general>Elsevier</general><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>1XC</scope><scope>VOOES</scope><orcidid>https://orcid.org/0000-0002-1834-1407</orcidid></search><sort><creationdate>20200430</creationdate><title>Sub-chronic exposure to Kalach 360 SL, Glyphosate-based Herbicide, induced bone rarefaction in female Wistar rats</title><author>Hamdaoui, Latifa ; 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Group 1 (n = 6) received a standard diet and served as a control, groups 2 and 3 (n = 6 each) received 0.07 ml (D1: 126 mg/Kg) and 0.175 ml (D2: 315 mg/Kg) of KL dissolved in the water for 60 days. The plasma was used to examine the metabolic balance markers (calcium, phosphorus, phosphatase alkaline (PAL), and vitamin D (vit D) and hormonal status (oestrogen and thyroid hormones). As a result, sub-chronic exposure to KL induced a perturbation of bone metabolism (calcium and phosphorus) and hormonal status disturbance. The histological and immunohistochemical study of the thyroid gland revealed a disturbance in morphological structure and thyroid cells function. Moreover, the KL disrupting eff ;ect on thyroid function was investigated by measuring changes in plasma levels of thyroid hormones. Free triiodothyronine (FT3) and thyroxine (FT4) were decreased in female rats breast-fed from rats treated with D and D2 of KL. This eff ;ect was associated with an increase in the plasma level of thyroid-stimulating hormone (TSH). Thus, that KL leads to hypothyroidism. Decrease in levels of oestrogen and thyroid dysfunction led to a disruption in the skeletal bone. The histological study and SEM in bone results allowed us to observe, in rats exposed to KL, the thinning and discontinuity of bone trabecular with a significant decrease in the number of nodes (intertrabecular links).In conclusion, KL sub-chronic exposure caused an aspect of osteoporosis.</abstract><cop>Ireland</cop><pub>Elsevier B.V</pub><pmid>32145347</pmid><doi>10.1016/j.tox.2020.152412</doi><orcidid>https://orcid.org/0000-0002-1834-1407</orcidid><oa>free_for_read</oa></addata></record>
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identifier ISSN: 0300-483X
ispartof Toxicology (Amsterdam), 2020-04, Vol.436, p.152412, Article 152412
issn 0300-483X
1879-3185
language eng
recordid cdi_hal_primary_oai_HAL_hal_02533168v1
source MEDLINE; Access via ScienceDirect (Elsevier)
subjects Animals
Biomarkers - blood
Bone Density - drug effects
Bone remodeling
Bone Remodeling - drug effects
Bone tissue
Estrogens - blood
Female
Femur - drug effects
Femur - metabolism
Femur - ultrastructure
Glycine - analogs & derivatives
Glycine - toxicity
Glyphosate
Herbicides - toxicity
Hypothyroidism - blood
Hypothyroidism - chemically induced
Hypothyroidism - pathology
Kalach 360 SL
Life Sciences
Osteoporosis
Osteoporosis - blood
Osteoporosis - chemically induced
Osteoporosis - pathology
Rats
Rats, Wistar
Thyroid Gland - drug effects
Thyroid Gland - metabolism
Thyroid Gland - pathology
Thyroid Hormones - blood
Toxicology
title Sub-chronic exposure to Kalach 360 SL, Glyphosate-based Herbicide, induced bone rarefaction in female Wistar rats
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