1.The effect of Endocrine disrupting chemicals on myocardial fibrosis and related mechanism.
Chinese Journal of Industrial Hygiene and Occupational Diseases 2022;40(2):156-160
Endocrine-disrupting chemicals (EDCs) an exogenous agent that interferes with the synthesis, secretion, transport, binding, action, or can mimic the occurrence of natural hormones that damage for the balance of homeostasis. Exposure to EDCs results in damage to human health that may persist in the long term. In recent years, accumulative evidence has demonstrated that EDCs also play a pivotal role in the onset and development of myocardial fibrosis, including heart failure, hypertension and vascular stiffening. Studies indicate that EDCs plays the negative effects of the cardiovascular system, however, EDCs-induced toxicity on heart remains unclear. This review summarized EDCs-induced myocardial fibrosis, and discuss the possible mechanisms of myocardial fibrosis induced by EDCs. This paper could provide further understandings for prevention, diagnosis and treatment of myocardial fibrosis.
Endocrine Disruptors/toxicity*
;
Environmental Exposure
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Environmental Pollutants
;
Fibrosis
;
Humans
2.Chronic exposure of bisphenol S (BPS) affect hypothalamic-pituitary-testicular activities in adult male rats: possible in estrogenic mode of action.
Hizb ULLAH ; Faizan ULLAH ; Owais REHMAN ; Sarwat JAHAN ; Tayyaba AFSAR ; Dara AL-DISI ; Ali ALMAJWAL ; Suhail RAZAK
Environmental Health and Preventive Medicine 2021;26(1):31-31
BACKGROUND:
The industrial revolution has resulted in increased synthesis and the introduction of a variety of compounds into the environment and their potentially hazardous effects have been observed in the biota. The present study was aimed to evaluate the potential endocrine-disrupting effects of chronic exposure to the low concentrations of bisphenol S (BPS) in male rats.
METHODS:
Weaning male Sprague-Dawley rats (22 days old) were either exposed to water containing 0.1% ethanol for control or different concentrations of BPS (0.5, 5, and 50 μg/L) in drinking water for 48 weeks in the chronic exposure study. After completion of the experimental period, animals were dissected and different parameters (hormone concentrations, histology of testis and epididymis, oxidative stress and level of antioxidant enzymes in the testis, daily sperm production (DSP), and sperm parameters) were determined.
RESULTS:
Results of the present study showed a significant alteration in the gonadosomatic index (GSI) and relative reproductive organ weights. Oxidative stress in the testis was significantly elevated while sperm motility, daily sperm production, and the number of sperm in epididymis were reduced. Plasma testosterone, luteinizing hormone (LH), and follicle-stimulating hormone (FSH) concentrations were reduced and estradiol levels were high in the 50 μg/L-exposed group. Histological observations involved a significant reduction in the epithelial height of the testis along with disrupted spermatogenesis, an empty lumen of the seminiferous tubules, and the caput region of the epididymis.
CONCLUSION
These results suggest that exposure to 5 and 50 μg/L of BPS for the chronic duration started from an early age can induce structural changes in testicular tissue architecture and endocrine alterations in the male reproductive system which may lead to infertility in males.
Animals
;
Biomarkers
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Endocrine Disruptors/toxicity*
;
Environmental Exposure/adverse effects*
;
Environmental Pollutants/toxicity*
;
Hypothalamo-Hypophyseal System/physiopathology*
;
Infertility, Male/physiopathology*
;
Male
;
Phenols/toxicity*
;
Rats
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Rats, Sprague-Dawley
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Sulfones/toxicity*
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Testis/physiopathology*
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Toxicity Tests, Chronic
3.Di (2-ethylhexyl) phthalate Disorders Lipid Metabolism via TYK2/STAT1 and Autophagy in Rats.
Yue Zhu ZHANG ; Zhao Ming ZHANG ; Li Ting ZHOU ; Jian ZHU ; Xiao Han ZHANG ; Wen QI ; Shuang DING ; Qi XU ; Xu HAN ; Ya Ming ZHAO ; Xin Yue SONG ; Tian Yang ZHAO ; Lin YE
Biomedical and Environmental Sciences 2019;32(6):406-418
OBJECTIVE:
Previous studies have indicated that the plasticizer di (2-ethylhexyl) phthalate (DEHP) affects lipid accumulation; however, its underlying mechanism remains unclear. We aim to clarify the effect of DEHP on lipid metabolism and the role of TYK2/STAT1 and autophagy.
METHODS:
In total, 160 Wistar rats were exposed to DEHP [0, 5, 50, 500 mg/(kg•d)] for 8 weeks. Lipid levels, as well as mRNA and protein levels of TYK2, STAT1, PPARγ, AOX, FAS, LPL, and LC3 were detected.
RESULTS:
The results indicate that DEHP exposure may lead to increased weight gain and altered serum lipids. We observed that DEHP exposure affected liver parenchyma and increased the volume or number of fat cells. In adipose tissue, decreased TYK2 and STAT1 promoted the expression of PPARγ and FAS. The mRNA and protein expression of LC3 in 50 and 500 mg/(kg•d) groups was increased significantly. In the liver, TYK2 and STAT1 increased compensatorily; however, the expression of FAS and AOX increased, while LPL expression decreased. Joint exposure to both a high-fat diet and DEHP led to complete disorder of lipid metabolism.
CONCLUSION
It is suggested that DEHP induces lipid metabolism disorder by regulating TYK2/STAT1. Autophagy may play a potential role in this process as well. High-fat diet, in combination with DEHP exposure, may jointly have an effect on lipid metabolism disorder.
Adipose Tissue
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drug effects
;
metabolism
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Animals
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Autophagy
;
drug effects
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Body Weight
;
drug effects
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Diet, High-Fat
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adverse effects
;
Diethylhexyl Phthalate
;
toxicity
;
Endocrine Disruptors
;
toxicity
;
Female
;
Lipid Metabolism
;
drug effects
;
Lipid Metabolism Disorders
;
chemically induced
;
Liver
;
drug effects
;
metabolism
;
Male
;
Rats, Wistar
;
STAT1 Transcription Factor
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metabolism
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TYK2 Kinase
;
metabolism
4.Analysis of individual and combined estrogenic effects of bisphenol, nonylphenol and diethylstilbestrol in immature rats with mathematical models.
Weifeng MAO ; Yan SONG ; Haixia SUI ; Pei CAO ; Zhaoping LIU
Environmental Health and Preventive Medicine 2019;24(1):32-32
BACKGROUND:
Traditional toxicological studies focus on individual compounds. However, this single-compound approach neglects the fact that the mixture exposed to human may act additively or synergistically to induce greater toxicity than the single compounds exposure due to their similarities in the mode of action and targets. Mixture effects can occur even when all mixture components are present at levels that individually do not produce observable effects. So the individual chemical effect thresholds do not necessarily protect against combination effects, an understanding of the rules governing the interactive effects in mixtures is needed. The aim of the study was to test and analyze the individual and combined estrogenic effects of a mixture of three endocrine disrupting chemicals (EDCs), bisphenol A (BPA), nonylphenol (NP) and diethylstilbestrol (DES) in immature rats with mathematical models.
METHOD:
In the present study, the data of individual estrogenic effects of BPA, NP and DES were obtained in uterotrophic bioassay respectively, the reference points for BPA, NP and DES were derived from the dose-response ralationship by using the traditional no observed adverse effect (NOAEL) or lowest observed adverse effect level (LOAEL) methods, and the benchmark dose (BMD) method. Then LOAEL values and the benchmark dose lower confidence limit (BMDL) of single EDCs as the dose design basis for the study of the combined action pattern. Mixed prediction models, the 3 × 2 factorial design model and the concentration addition (CA) model, were employed to analyze the combined estrogenic effect of the three EDCs.
RESULTS:
From the dose-response relationship of estrogenic effects of BPA, NP and DES in the model of the prepuberty rats, the BMDL(NOAEL) of the estrogenic effects of BPA, NP and DES were 90(120) mg/kg body weight, 6 mg/kg body weight and 0.10(0.25) μg/kg body weight, and the LOAEL of the the estrogenic effects of three EDCs were 240 mg/kg body weight, 15 mg/kg body weight and 0.50 μg/kg body weight, respectively. At BMDL doses based on the CA concept and the factorial analysis, the mode of combined effects of the three EDCs were dose addition. Mixtures in LOAEL doses, NP and DES combined effects on rat uterine/body weight ratio indicates antagonistic based on the CA concept but additive based on the factorial analysis. Combined effects of other mixtures are all additive by using the two models.
CONCLUSION
Our results showed that CA model provide more accurate results than the factorial analysis, the mode of combined effects of the three EDCs were dose addition, except mixtures in LOAEL doses, NP and DES combined effects indicates antagonistic effects based on the CA model but additive based on the factorial analysis. In particular, BPA and NP produced combination effects that are larger than the effect of each mixture component applied separately at BMDL doses, which show that additivity is important in the assessment of chemicals with estrogenic effects. The use of BMDL as point of departure in risk assessment may lead to underestimation of risk, and a more balanced approach should be considered in risk assessment.
Animals
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Benzhydryl Compounds
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toxicity
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Diethylstilbestrol
;
toxicity
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Dose-Response Relationship, Drug
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Drug Interactions
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Endocrine Disruptors
;
toxicity
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Estrogens
;
toxicity
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Models, Theoretical
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Phenols
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toxicity
;
Rats
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Rats, Sprague-Dawley
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Risk Assessment
5.Toxicological characteristics of Ochratoxin A and its impact on male reproduction.
Tian-Yu ZHANG ; Yong ZHAO ; Lan LI ; Wei SHEN
National Journal of Andrology 2017;23(8):757-762
Ochratoxin A (OTA) is found not only nephrotoxic, teratogenic, neurotoxic, and immunotoxic, but also reprotoxic for human and animals. In the recent decade, more attention has been paid to the impact of OTA on human reproduction and the studies of its underlying mechanisms. Many studies show that OTA affects the function of the reproductive system by acting as an endocrine disrupter and, as a testicular toxin, decreases sperm quality and even induces testis cancer. This review summarizes the toxicological characteristics and toxicokinetic process of OTA as well as recent progress in the studies of various toxic effects of OTA and their underlying mechanisms, hoping to call the attention from more people to the toxicity of OTA to male reproductive health.
Animals
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Endocrine Disruptors
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pharmacokinetics
;
toxicity
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Fertility
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drug effects
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Humans
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Male
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Ochratoxins
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pharmacokinetics
;
toxicity
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Reproduction
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drug effects
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Spermatozoa
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drug effects
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Testicular Neoplasms
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chemically induced
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Testis
;
drug effects
6.Male reproductive toxicity of bisphenol A.
National Journal of Andrology 2015;21(11):1026-1030
The reproductive toxicity of environmental endocrine disruptors has attracted substantial attention from researchers in recent years. Bisphenol A (BPA) is among the most prominent environmental estrogens worldwide, demonstrated to be related with the impairment of male reproductive function as well as other health problems, such as diabetes, obesity, cardiovascular diseases, and cancer. BPA acts primarily by mimicking antiandrogenic and estrogenic effects, disturbing the hypothalamic-pituitary-testicular axis and modulating gene expressions and enzyme activities in the hormone biosynthesis affecting steroids or its receptors. BPA is also involved in DNA methylation and the effects of epigenetics, resulting in dyszoospermia, oligoasthenoteratospermia/azoospermia and/or infertility in males. This review addresses the effects of BPA on male reproductive function, focusing on the mechanisms of its toxicity on spermatogenesis, semen quality, and the reproductive system.
Benzhydryl Compounds
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toxicity
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Endocrine Disruptors
;
toxicity
;
Endocrine System
;
drug effects
;
Environmental Pollutants
;
toxicity
;
Estrogens
;
toxicity
;
Humans
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Infertility, Male
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chemically induced
;
Male
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Phenols
;
toxicity
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Semen Analysis
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Spermatogenesis
;
drug effects
8.Oxidative Metabolism of Estrone Modified by Genistein and Bisphenol A in Rat Liver Microsomes.
Ana-Maria GHELDIU ; Daniela-Saveta POPA ; Felicia LOGHIN ; Laurian VLASE
Biomedical and Environmental Sciences 2015;28(11):834-838
Animals
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Benzhydryl Compounds
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toxicity
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Biomarkers
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analysis
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blood
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Breast Neoplasms
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chemically induced
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Drug Synergism
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Endocrine Disruptors
;
toxicity
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Estrone
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metabolism
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Genistein
;
adverse effects
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Hydroxyestrones
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analysis
;
Male
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Microsomes, Liver
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drug effects
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metabolism
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Oxidation-Reduction
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Phenols
;
toxicity
;
Rats, Wistar
9.Influence of Genista tinctoria L. or methylparaben on subchronic toxicity of bisphenol A in rats.
Daniela-Saveta POPA ; Pompei BOLFA ; Bela KISS ; Laurian VLASE ; Ramona PĂLTINEAN ; Anca POP ; Cornel CĂTOI ; Gianina CRIŞAN ; Felicia LOGHIN
Biomedical and Environmental Sciences 2014;27(2):85-96
OBJECTIVETo evaluate the influence of an extract of Genista tinctoria L. herba (GT) or methylparaben (MP) on histopathological changes and 2 biomarkers of oxidative stress in rats subchronicly exposed to bisphenol A (BPA).
METHODSAdult female Wistar rats were orally exposed for 90 d to BPA (50 mg/kg), BPA+GT (35 mg isoflavones/kg) or BPA+MP (250 mg/kg). Plasma and tissue samples were taken from liver, kidney, thyroid, uterus, ovary, and mammary gland after 30, 60, and 90 d of exposure respectively. Lipid peroxidation and in vivo hydroxyl radical production were evaluated by histological analysis along with malondialdehyde and 2,3-dihydroxybenzoic acid detection.
RESULTSThe severity of histopathological changes in liver and kidneys was lower after GT treatment than after BPA or BPA+MP treatment. A minimal thyroid receptor antagonist effect was only observed after BPA+MP treatment. The abnormal folliculogenesis increased in a time-dependent manner, and the number of corpus luteum decreased. No significant histological alterations were found in the uterus. The mammary gland displayed specific estrogen stimulation changes at all periods. Both MP and GT revealed antioxidant properties reducing lipid peroxidation and BPA-induced hydroxyl radical generation.
CONCLUSIONGT L. extract ameliorates the toxic effects of BPA and is proved to have antioxidant potential and antitoxic effect. MP has antioxidant properties, but has either no effect or exacerbates the BPA-induced histopathological changes.
Animals ; Benzhydryl Compounds ; toxicity ; Chemical and Drug Induced Liver Injury ; pathology ; prevention & control ; Endocrine Disruptors ; toxicity ; Female ; Genista ; Hydroxyl Radical ; blood ; Lipid Peroxidation ; drug effects ; Liver ; pathology ; Oxidative Stress ; drug effects ; Parabens ; toxicity ; Phenols ; toxicity ; Phytotherapy ; Plant Extracts ; pharmacology ; therapeutic use ; Rats ; Rats, Wistar
10.Endocrine disruption of cadmium in rats using the OECD enhanced TG 407 test system.
Heng Juan WANG ; Zhao Ping LIU ; Xu Dong JIA ; Hao CHEN ; Yan Jun TAN
Biomedical and Environmental Sciences 2014;27(12):950-959
OBJECTIVETo evaluate the endocrine disrupting effects of cadmium (Cd) using OECD enhanced TG407 test guideline.
METHODSSprague-Dawley (SD) rats were randomly divided into six groups and accordingly administered with 0, 1, 2.5, 5, 10, 20 mg/kg•BW/day of Cd by gavage for 28 days. Body weight, food consumption, hematology, biochemistry, sex hormone levels, urinary β2-microglobulin, organ weights and histopathology and estrous cycle were detected.
RESULTSCd could significantly decrease animals' body weight (P<0.05). Serum luteinizing hormone (LH) at 10-20 mg/kg•BW groups and testosterone (T) at 2.5 and 10 mg/kg•BW groups decreased significantly (P<0.05). However, no statistically significant change was found in urinary β2-microglobulin among Cd-treatment groups (P>0.05). Endpoints related to female reproduction including uterus weight and histopathological change at 10-20 mg/kg•BW groups showed significant increase (P<0.05). While among male rats in 2.5, 10, 20 mg/kg•BW groups, weight of prostate, thyroids, and seminal vesicle glands significantly decreased (P<0.05). Moreover, no histopathological change was observed in kidney.
CONCLUSIONResults suggested that Cd can cause endocrine disrupting effects in SD rats. Comparing with possible renal toxicity of Cd, its toxicity on endocrine system was more sensitive.
Animals ; Body Weight ; drug effects ; Cadmium ; toxicity ; Eating ; drug effects ; Endocrine Disruptors ; toxicity ; Female ; Hormones ; blood ; Kidney ; drug effects ; Male ; Organisation for Economic Co-Operation and Development ; Random Allocation ; Rats, Sprague-Dawley ; Uterus ; drug effects ; beta 2-Microglobulin ; urine

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