• 제목/요약/키워드: Endocrine function

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Studies on the Toxicity of Benzophenone in the Developing Chick Embryo (계배 발생과정에서 benzophenone의 독성에 관한 연구)

  • Yoo, Min;Kim, Su-Won
    • Journal of Life Science
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    • v.19 no.9
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    • pp.1309-1313
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    • 2009
  • Endocrine disruptors are chemicals which can be found in our normal daily lives. Chemicals such as bisphenol A, DDT, benzophenone and phenylphenol can be easily ingested through plastic food containers and pesticides. Endocrine disruptors can be very harmful and toxic because they disrupt the normal function of the endocrine system. It has been reported that endocrine disruptions can cause fatal strikes in the cardiovascular, reproductive, and central nervous systems, and other parts of the body. Therefore we examined if benzophenone as an endocrine disruptor inhibits development in or induces malformation of chick embryos. Chick embryos which received a single injection of benzophenone ($1{\mu}g$/egg $\sim$ $500{\mu}g$/egg) via the yolk sac at designated times (6, 9, 12, 15, 18 and 21 days after incubation) were investigated. Body weight reduction was observed in middle doses ($40{\mu}g$/egg $\sim$ $60{\mu}g$/egg). High mortality rates and teratogenic signs such as abnormal wry beak and abnormal eyeballs were seen in high doses ($80{\mu}g$/egg $\sim$ $500{\mu}g$/egg). In conclusion, it is suggested that benzophenone induces malformation of chick embryos and seriously inhibits development.

Behavior Alterations and Expression of Estrogen Receptors in Mice Exposed to Bisphenol A (미성숙 마우스에 Bisphenol A 노출시 신경내분비계에서 에스트로겐 수용체 발현 및 신경행동 변화)

  • Seoung Min Jae;Shin Im Cheol;Lee Yoot Mo;Son Dong Ju;Song Youn Sook;Jeon Kei Hyun;Kim Yun Bae;Lee Beum Jun;Kim Dae Joong;Yun Young Won;Kim Tae Seong;Han Soon Young;Song Suk Gil
    • Toxicological Research
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    • v.20 no.3
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    • pp.251-261
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    • 2004
  • A large number of chemical pollutants including phthalates, alkylphenolic compounds and organochlorine pesticides have the ability to disrupt endocrine function in animals, and alter cog-nitive function. Because hormone mediated events play an important role in central nervous system development and function, the changes in cognitive function seem to be mediated by the endocrine-like action of these chemicals. The present study therefore was designed to investigate effect of bisphenol A (BPA), an endocrine disrupting chemical on neuro-behavial patterns, and expression of estrogen receptors and tyrosine hydroxylase, a limiting enzyme of dopamine synthesis pathway. BPA was treated orally for 3 weeks into 3 week old mice, and then the neuro-behavial patterns (stereo-type behaviors such as jumping rearing and forepaw tremor, climbing behavior, tail flick, rotarod and locomotor activity), and the expression of estrogen receptors and tyrosine hydroxylase were deter-mined every 3 week for 9 weeks. During the treatment of BPA, the food uptake and body weight increase were not significantly changed. BPA resulted in the increased stereotype behaviors (jump-ing, rearing and forepaw tremor) 6 or 9 weeks after treatment. The time response to tail flick and locomotor activity were decreased by the treatment of BPA, whereas the time for rotarod was increased by the treatment of BPA. The expression of estrogen receptor alpha and beta was increased in the brain and pituitary gland. Maximum expression was found in the brain after 9 week of 100 mg/kg BPA treatment and in the pituitary gland after 6 week of 100 mg/kg BPA treatment. Tyrosine hydroxylase was increased in dose and time dependent manners in the brain but no change was found in the pituitary gland. The present data show that exposure of BPA in the young mice could alter expression of estrogen receptors and dopamine synthesis pathway, thereby modulate neuro-behavial patterns (increase of stereotype behaviors but decrease locomotor activity).

Endocrine dysfunction after bone marrow transplantation during childhood and adolescence (소아 및 청소년기에서 골수이식 후에 발생할 수 있는 내분비 기능 부전)

  • Jin, Hye Young;Choi, Jin-Ho;Im, Ho-Joon;Seo, Jong-Jin;Moon, Hyung-Nam;Yoo, Han-Wook
    • Clinical and Experimental Pediatrics
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    • v.53 no.3
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    • pp.420-427
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    • 2010
  • Purpose : Several complications can occur in patients who received bone marrow transplantation (BMT) during childhood and adolescence. This study aims to investigate endocrine dysfunctions after BMT so that better care can be provided to care for long-term survivors of BMT. Methods : One hundred patients (61 males, 39 females) were included in this study. Clinical parameters such as initial diagnosis, age at BMT, conditioning regimen, presence of graft-versus-host disease (GVHD), growth pattern, thyroid function, and pubertal status were retrospectively reviewed to evaluate risk factors associated with endocrine dysfunction. Results : Height standard deviation score (SDS) at BMT, after 1 year of BMT, and at the last visit were $0.08{\pm}1.04$, $-0.09{\pm}1.02$, and $-0.27{\pm}1.18$, respectively (P =0.001). Height SDS significantly decreased in patients who received total body irradiation (TBI) (P =0.017). One of the patients who received TBI demonstrated growth hormone deficiency. Thirty (31.9%) of 94 patients had compensated hypothyroidism. Incidence of compensated hypothyroidism was higher among those who had GVHD (odds ratio 2.82, P =0.025). Of the 32 patients (17 males, 15 females) who were over 14 years in male and 13 years in female at the last visit, 16 (3 males, 13 females) had increased luteinizing hormone (LH) or follicle-stimulating hormone (FSH). Abnormal elevation of LH or FSH was more common in females (odds ratio 30.3, P =0.001). Conclusion : The most common endocrine dysfunction was ovarian insufficiency. Regular check-up for endocrine function needs to be required due to high incidence of endocrine dysfunction in patients with BMT.

Effects of Bisphenol A and BPA Alternatives on the Nervous System (Bisphenol A와 대체물질들이 신경계에 미치는 영향)

  • Ha Jung Moon;Seung Hyun Lee;Hyun Seung Shin;Eui-Man Jung
    • Journal of Life Science
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    • v.33 no.4
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    • pp.371-381
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    • 2023
  • Endocrine disrupting chemicals (EDCs), used in a variety of products in modern society, are hormone-like substances that cause various diseases. Humans are exposed to EDCs through their inclusion in pesticides, plastics, cosmetics, detergents, and drugs. Bisphenol A (BPA), one of the representative endocrine disruptors, is an estrogen-like substance that has been widely used commercially in plastic and epoxy resins. BPA is a chemical that can disrupt the endocrine system, leading to reduced reproductive function, obesity, cancer, and neurodevelopmental disorders. Since the adverse health effects of BPA began to be reported the use of BPA has been regulated worldwide. Various alternatives to BPA have been widely used worldwide; representatively, bisphenol S (BPS) and bisphenol F (BPF) are the most commonly used in commercial contexts. BPS and BPF may cause endocrine-disrupting effects like those of BPA due to their similar chemical structures. Recent studies have reported that BPS and BPF disrupt the neurodevelopmental process and cause neurodevelopmental disorders. Therefore, future studies will be required for safety verification of BPA alternatives and the development of new alternatives to BPA for brain health. In this review, we reviewed the effects of BPA and the alternatives, BPS and BPF, on the nervous system.

Effects of Acute Oral Administration of Mancozeb on the Immune Function in Mice (Mancozeb의 급성노출이 마우스의 면역기능에 미치는 영향)

  • 정애희;표명윤
    • YAKHAK HOEJI
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    • v.48 no.1
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    • pp.41-46
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    • 2004
  • Mancozeb, a polymeric complex of zinc and manganese salts of ethylene bisthiocarbamate (EBDC), is used widely in agriculture as fungicides, insecticides, and herbicides. Mancozeb can be occupationally and environmentally exposed to human and has been reported to induce estrogenic activity, therein it is considered as an endocrine disrupter, We investigated the effects of acute exposure of Mancozeb on the immune function in mice. After single oral administration of Mancozeb to female ICR mice, the immunopathological parameters (body- and organ-weight, splenic cellularity hematological parameters), mitogen (Con A, PHA+IL-2, LPS)-induced splenocyte proliferation (SP) and splenic IgM plaque forming cell (PFC). WBC and splenic cellularity were decreased, but liver-, kidney-, and spleen-weight were increased when compared with control group. Splenic IgM PFC against SRBC was slightly lowered. Mitogen-induced proliferation of spleen cells from Mancozeb-treated mice was not signifcantly changed ex vivo, however, SP in vitro were significantly lowered in concentration dependent manner. These results indicate that Mancozeb could affect the immune function in mice.

Protective Effect of KunYangDan on Motility and Viability of Sperms Exposed by Diethylhexyl Phthalate (Diethylhexyl Phthalate 처치후 건양단이 정자 생성능 및 운동성에 미치는 영향 연구)

  • Nam, Chang-Uk;Park, Kyeong-Soo;Ma, Jin-Yeul
    • Korean Journal of Oriental Medicine
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    • v.12 no.1
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    • pp.91-102
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    • 2006
  • We treated KunYangDan (KYK) in SD rats in order toexamine the protective effect against cell damage induced by diethylhexyl phthalate (DEHP). KYD reduced DEHP toxicity by increasing the function of immune cell numbers weight increase of spleen.red blood cells,HB,and HCT content,sperm number and mobility,resulting in improving reproductive function by judging from the recovery of testosterone content. Interestingly the hormone change of testosterone by KYD significantly recovered the decreased its leve. Taken together,these results suggest that KYD specifically affect the reproductive function induced by DEHP,an endocrine disruptor.

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Pediatric Kidney Transplantation

  • Lee, Yeon Hee;Kang, Hee Gyung
    • Childhood Kidney Diseases
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    • v.25 no.1
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    • pp.8-13
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    • 2021
  • Pediatric kidney transplantation is the best option since it can achieve near normal glomerular filtration rate, adequate fluid balance, and autonomic endocrine function of the kidney in end-stage kidney disease. However, pediatric kidney transplantation is difficult because children are developing and growing, management and complications of pediatric kidney transplantation are different from those of adults. This review covers the current status of pediatric kidney transplantation in Korea, key considerations that must be taken before kidney transplantation in children, and management strategy of immunosuppression and common complications.

Multiple Endocrinologic Complications in Thalassemia Major

  • Wong, Siong Hu;Omar, Julia;Ismail, Tuan Salwani Tuan
    • Korean Journal of Clinical Laboratory Science
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    • v.49 no.4
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    • pp.495-497
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    • 2017
  • Thalassemia major is a genetic disorder with a defective synthesis of either the alpha or the beta chain of hemoglobin A. Blood transfusion is crucial for the survival in these patients. Unfortunately, endocrine dysfunction is a very common complication in these patients and is principally due to excessive iron overload as a result of frequent blood transfusions. Although regular blood transfusion may increase life expectancy, disturbances in growth and pubertal development, abnormal gonadal functions, impaired thyroid, parathyroid and adrenal functions, diabetes, and disorderly bone growth are common side effects. We hereby present a case of a 23-year-old, unmarried woman with beta thalassemia major presenting with primary amenorrhea, poor development of secondary sexual character, and short stature. Thorough history, clinical examination, and laboratory investigation, including dynamic function test (insulin tolerance test) were conducted. These tests confirmed that she had multiple endocrinopathies, including hypogonadotropic hypogonadism, growth hormone deficiency, and subclinical adrenal insufficiency, which were caused by iron overload. She required hormone replacement therapy. Early recognition of possible deficiencies in hypothalamo-pituitary-end organ hormones caused by iron overload in thalassemia patients that undergo frequent blood transfusion procedures is essential. Appropriate treatments, including transfusion regimen and chelation therapy, as well as specific treatment of each complication are the crucial for the successful management and improvement of quality of life these patients.

Effect of Sexual Function Improvement Program for Breast Cancer Survivors on Sexual Distress, Sexual Satisfaction and Marital Intimacy (성기능증진 프로그램이 유방암 생존 여성의 성스트레스, 성만족 및 부부친밀감에 미치는 효과)

  • Moon, Duck Hee
    • Women's Health Nursing
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    • v.22 no.1
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    • pp.30-38
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    • 2016
  • Purpose: This study was conducted to examine effects of a sexual function improvement program on sexual distress, sexual satisfaction and marital intimacy among breast cancer survivors. Methods: With quasi-experimental design, a total of 54 women after breast surgery were assigned into experimental group (n=28) and control group (n=26) after recruited via convenience sampling. They were endocrine surgery outpatients in university hospital at Chonnam province. Experimental group received a sexual function improvement program 5 sessions over 5 weeks. Sexual distress, sexual satisfaction, and marital intimacy were examined with self-report structured questionaries. Data were analyzed using $x^2$ test, Fisher's exact, independent t-test, and analysis of covariance with SPSS 17.0/window program. Results: Women who participated in the sexual function improvement program had lower sexual distress (F=27.29, p<.001), higher sexual satisfaction (t=3.09, p=.003) higher marital intimacy (F=17.51, p<.001) than the women who did not participate. Conclusion: Results suggest that a sexual function improvement program can be effective strategy to improve sexual distress, sexual satisfaction and marital intimacy. Therefore, this program can be regarded as useful nursing intervention program for breast cancer survivors.

Prediction of Parathyroid Hormone Signalling Potency Using SVMs

  • Yoo, Ahrim;Ko, Sunggeon;Lim, Sung-Kil;Lee, Weontae;Yang, Dae Ryook
    • Molecules and Cells
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    • v.27 no.5
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    • pp.547-556
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    • 2009
  • Parathyroid hormone is the most important endocrine regulator of calcium concentration. Its N-terminal fragment (1-34) has sufficient activity for biological function. Recently, site-directed mutagenesis studies demonstrated that substitutions at several positions within shorter analogues (1-14) can enhance the bioactivity to greater than that of PTH (1-34). However, designing the optimal sequence combination is not simple due to complex combinatorial problems. In this study, support vector machines were introduced to predict the biological activity of modified PTH (1-14) analogues using mono-substituted experimental data and to analyze the key physicochemical properties at each position that correlated with bioactivity. This systematic approach can reduce the time and effort needed to obtain desirable molecules by bench experiments and provide useful information in the design of simpler activating molecules.