New insights into morphological, stereological and functional studies of the adrenal gland under exposure to the potent goitrogen thiourea.

Q3 Environmental Science Interdisciplinary Toxicology Pub Date : 2018-05-01 Epub Date: 2018-08-06 DOI:10.2478/intox-2018-0005
Arijit Chakraborty, Deotima Sarkar, Priyanki Dey, Amar K Chandra
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引用次数: 2

Abstract

Thiourea (thiophen-3-yl-acetic acid) is a well established antithyroid drug used for treating hyperactivity of the thyroid gland as it blocks the conversion of thyroxine (T4) to triiodothyronine (T3) in peripheral tissues. Human exposures to thiourea include contaminated drinking water and vegetables for its extensive use in fertilizers. Chronic thiourea exposure can cause thyroid dysfunction leading to redox imbalance. However, such effects on morphological, quantitative, functional and hypothalamo-pituitary-adrenocortical axis (HPA) analysis of the adrenal gland are yet to be explored. The aim was to explore the effect of thiourea on structural and functional status of the adrenocortical region with special reference to the HPA axis. Control rats were fed a normal laboratory standardized diet whereas to experimental rats, thiourea at a dose of 0.3 mg/day/Kg body weight was administered orally, once every day for consecutive 28 days. Histology and histometry, including morphometry of the adrenal, adrenal Δ5 3β HSD and 17β HSD activity, LPO level and serum corticosterone profile were assessed. Statistical significance was studied by 'Mann-Whitney U' test at p<0.05. Hypertrophy and hyperplasia of the adrenocortical cells was found especially in the layer zona fasciculata (p=0.0027) and enhanced adrenal Δ5 3β HSD activity (p=0.0067) in comparison to that of the control. Increased lipid peroxidation (p=0.0054) and up-regulated corticosterone release (p=0.0064) through adrenocortical stress signalling pathway were also noted. Stereological analysis of the left adrenal gland showed significant increase in volume (p=0.0025) and mass of cells (p=0.0031) in adrenocortical region in comparison to that of control animals. This study concludes that thiourea, in addition to its antithyroidal activity, develops stress in the adrenal as evident by enhanced lipid peroxidation in the gland that in turn through the HPA axis causes hypertrophy and hyperplasia of adrenocortical cells to enhance synthesis and release of corticosterone secretion to counteract the stress developed under the influence of this potent chemical agent.

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暴露于强效甲状腺素硫脲下的肾上腺形态学、体视学和功能研究的新见解。
硫脲(噻吩-3-基乙酸)是一种公认的抗甲状腺药物,用于治疗甲状腺亢进,因为它阻断了外周组织中甲状腺素(T4)向三碘甲状腺原氨酸(T3)的转化。人类接触到硫脲包括受污染的饮用水和蔬菜,因为硫脲广泛用于化肥中。慢性硫脲暴露可引起甲状腺功能障碍,导致氧化还原失衡。然而,这些对肾上腺形态学、定量、功能和下丘脑-垂体-肾上腺皮质轴(HPA)分析的影响尚待探讨。目的是探讨硫脲对肾上腺皮质区域结构和功能状态的影响,特别是对下丘脑轴的影响。对照大鼠饲喂实验室标准饲料,实验大鼠按0.3 mg/d /Kg体重剂量口服硫脲,每天1次,连续28 d。组织学和组织计量学,包括肾上腺形态测定、肾上腺Δ5 3β HSD和17β HSD活性、LPO水平和血清皮质酮水平。采用“Mann-Whitney U”检验,p
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Interdisciplinary Toxicology
Interdisciplinary Toxicology Pharmacology, Toxicology and Pharmaceutics-Pharmacology
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