• Title/Summary/Keyword: Whole body irradiation

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Effects of Ixeris dentata Extracts on the Genotoxicity Induced by Gamma Irradiation in Rats

  • Kim, Jin Kyu;Woo, Hyun Jung;Kim, Ji Hyang;Yoon, Yang Dal
    • Korean Journal of Environmental Biology
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    • v.22 no.4
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    • pp.543-549
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    • 2004
  • Ixeris dentata is a typical oriental herb. It is a widely distributed perennial in Korea, Japan and China, which belongs to the Compositae Family. The whole plant of I. dentata has been used for the treatment of pneumonia, contusion, tumor and hepatitis. It has also been used for the treatment of allergic diseases as a folk therapy in Korea. I. dentata is known to have aliphatics, triterpenoids and sesquiterpene glycosides in its composition. The present study was designed to explore the protective effects of water- and ethanol- extracts from I. dentata on irradiated rodents. For oral administration (twice per day), the extractive powder of I. dentata and the positive control (ascorbic acid) were dissolved at a concentration of 0.5 and 250mg $ml^{-1}$ in saline, respectively. Thirty days after irradiation, the ratio of the weight of the testis to the body weight was lower than 50% in the radiation groups than the control group. The ALP concentrations in the group treated with the water-extracts of the leaf were $79.68\pm{1.39%}$ (p<0.05) of those of the radiation control. Both of the SGOT and SGPT in the group treated with the ethanol-extract of the root were $72.68\pm{0.95}\;and\;77.87\pm{5.74}$ (p<0.05) of those of the radiation control, respectively. The levels of DNA damage induced by gamma radiation decreased in the experimental group to which the extracts of I. dentata were administered before irradiation. In conclusion, these results indicate that the extracts of I. dentata have an excellent ability to reduce the radicals and they have a protective effect on DNA breakage caused by radiation.

Radioprotective Effects of Dandelion(Taraxacum officinale) (민들레 추출물의 방사선 방호효과)

  • Choi, Jun-Hyeok;Ji, Tae-Jeong;Min, Byung-In
    • The Journal of the Korea Contents Association
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    • v.13 no.1
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    • pp.287-293
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    • 2013
  • Dandelion(Taraxacum officinale), an oriental herbal medicine, has been shown to favorably affect choleretic, antioxidative and protection of gastric mucosa. The protective effects of common dandelion leaf and root extract were investigated by irradiation in Sprague-Dawley rats. Male SD rats, 6weeks, were orally injected with dandelion extract(100mg/kg) for 10days. Immediately after final injection, rats were whole body irradiated with 10Gy used irradiation facility(Elekta Linac, Sweden). At 24h-15days after irradiation, complete blood counted test and apoptosis in jejunal crypt cell. Stimulated recovery by the extract was observed in platelet but was not showed in the erythrocyte and leucocyte. The jejunal crypt cells were protected significantly(p<0.05) and the radiation-induced apoptosis was reduced(p<0.05). The survival rate were carried for 15days, the survival ratio was 15% and 85% for the control and experimental group. Observations intestinal inhibition of cell death, intestinal mucosa and tissue decreased systemic inflammation and vacuole. Base on these data, we propose that dandelion may be a useful radioprotector, especially since it is a relatively nontoxic natural product.

The RBE of Fractionated Fast Neutron on Walker 256 Carcinosarcoma with KCCH-Cyclotron (Walker 256 Carcinosarcoma의 원자력병원 싸이클로트론 속중성자선 분할조사에 대한 생물학적 효과비에 관한 연구)

  • Yoo, Seong-Yul;Koh, Kyoung-Hwan;Cho, Chul-Koo;Park, Charn-Il;Kang, Wee-Saing
    • Radiation Oncology Journal
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    • v.5 no.2
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    • pp.75-82
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    • 1987
  • For evaluation of biological effect of $p^+(50.5MeV)$ Be neutron beam produced by Korea Cancer Center Hospital (KCCH) cyclotron the RBE had been measured in experimental tumor Walker 256 carcinosarcoma as well as normal tissue, mouse intestine and bone marrow, in single and fractionated irradiation. As pilot study, the RBE had been measured for the mouse jejunal crypt cells in single whole body irradiation of which the result was 2.8. The obtained RBE values of TCD 50 of Walker 256 tumor, bone marrow and intestine En single irraiation were 1.9, 1.9 and 1.5 respectively. In fractionated irradiation, the RBE value of tumor Walker 256 was decreased as increasing of fraction number and increased as increaing of fraction size.

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Basic Measurements and Dosage Compensation for Total Body Irradiation (전신조사를 위한 선량 측정과 보상)

  • 김진기;권형철;김정수;김부길;추성실
    • Progress in Medical Physics
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    • v.3 no.1
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    • pp.25-34
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    • 1992
  • For the TBI with medical linear accelerator(6.10MV), we measured basic data for dosage calculation and designed compensation filters to improve dose uniformity. At the distance of 3.4cm from the source, using the specially designed compensation filters reduced with in ${\pm}$5% for mid-depth dose in the phantom seated with flexion of the legs in the field sige up to 120${\times}$120cm$^2$ for the whole body. In repeated measurements for the dose distribution with humanoid phantom contained paraflin compound, measurement error using the TLD chips were less than ${\pm}$5%.

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Combined Effects of Radiation and Ultrasound on Embryonic Development in Mice (ICR 마우스의 태아(胎兒)에 대(對)한 방사선(放射線)과 초음파(超音波)의 공동효과(共同效果)에 관한 실험적(實驗的) 검토(檢討))

  • Gu, Yeun-Hwa
    • Journal of radiological science and technology
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    • v.14 no.2
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    • pp.37-44
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    • 1991
  • The combined effect of radiation and ultrasound has been studied in mouse embryos. Radiation and/or ultrasound were adminstered to ICR mice on day 8 of gestation. Intrauterine death, gross malformation, and fetal body weight were selected as indicators of effects. Does of whole-body ${\gamma}-irradiation$ were 0.5 to 2.5 Gy and those of ultrasound were $0.5\;W/cm^2$ to $3\;W/cm^2$. Intrautrine mortality increased with increasing radiation dose ; this trend was more remarkable in combination with ultrasound. Gross malformations such as exencephaly and anophthalmia/microphthalmia appeared frequently in the fetuses treated with both radiation and ultrasound. Decreased fetal weight was observed even in mice treated with 1.5 Gy of radiation or $1\;W/cm^2$ of ultrasound. There was a linear relationship between dose and reduction of fetal weight. The fetal weight was sensitive, precise and easy-to-handle indicator for the effects of growth retardation. Intrauterine mortality and frequencies of exencephaly and anophthalmia/microphthalmia were higher than the sum of those induced by radiation and by ultrasound. The results indicatied that the combined action of radiation and ultrasound on intrauterine death and malformations was synergistic.

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In vivo and in vitro Confirmation of Dose Homogeneity in Total Body Irradiation with Thermoluminescent Dosimeter (인체 및 인형 팬톰에서 전신방사선조사시 열형광선량계(TLD)를 이용한 선량분포 균일성 확인)

  • Chie Eui Kyu;Park Suk Won;Kang Wee-Saing;Kim Il Han
    • Radiation Oncology Journal
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    • v.17 no.4
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    • pp.321-328
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    • 1999
  • Purpose : Total body irradiation (TBI) or whole body irradiation is used to acquire immune suppression, to treat malignant lymphoma and leukemia, and as an conditioning regimen for bone marrow transplantation. For these purposes, many methods were developed to obtain homogenous dose distribution. The objective of this study was to analyze and confirm the accuracy and the homogeneity of the treatment setup, the parallel opposed lateral technique, currently used in Seoul National University Hospital. Materials and Metheods : Surface dose data, measured with a thermoluminescent dosimeter, of 8 patients among 10 patients, who were given total body irradiation with the parallel opposed lateral technique between September 1996 to August 1998, at Seoul National University Hospital were analyzed. Surface doses were measured at the head, neck, axilla, thigh, and ankle level. Surface and midline doses were measured with similar set-up and technique in the Humanoid phantom. Results : Measured surface doses relative to prescribed dose for the head, neck, axilla, thight, and ankle leve were $91.3{\pm}7.8,{\;}98.3{\pm}7.5,{\;}95.1{\pm}6.3,{\;}98.3{\pm}5.5$, and $95.3{\pm} 6.3\%$, respectively. The midline doses of the head, neck, axilla, thigh, and ankle level estimated from the surface-to-midline ratios in the Humanoid Phantom were $103.4{\pm}9.0,{\;}107.8{\pm}10.5,{\;}91.1{\pm}6.1,{\pm} 93.8{\pm}4.5,{\;}and{\;}104.5{\pm}9.3\%$, respectively. Measured surface doses and estimated midline doses ranged from $-8.9\%$ to $+7.8\%$. Midline doses at the neck and the axilia level deviated more than $5\%$ from the prescribed doses. The difference of the estimated midline doses at the neck and the axilla level and the actual doses were attributed to the thickness differences between the Humanoid phantom and the patients. Conclusion Distribution of the midline doses as well as the suface doses were measured to be within $-8.7\~{\pm}7.8\%$ range. Actual dose distribution in the patient is expected to be better than the measured dose range mainly attributed to thickness difference between the patient and the Humanoid phantom.

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DIFFERENTIAL EXPRESSION OF RADIATION RESPONSE GENES IN SPLEEN, LUNG, AND LIVER OF RATS FOLLOWING ACUTE OR CHRONIC RADIATION EXPOSURE

  • Jin, Hee;Jin, Yeung Bae;Lee, Ju-Woon;Kim, Jae-Kyung;Lee, Yun-Sil
    • Journal of Radiation Protection and Research
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    • v.40 no.1
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    • pp.25-35
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    • 2015
  • We analyzed the differential effects of histopathology, apoptosis and expression of radiation response genes after chronic low dose rate (LDR) and acute high dose rate (HDR) radiation exposure in spleen, lung and liver of rats. Female 6-week-old Sprague-Dawley rats were used. For chronic low-dose whole body irradiation, rats were maintained for 14 days in a $^{60}Co$ gamma ray irradiated room and received a cumulative dose of 2 Gy or 5 Gy. Rats in the acute whole body exposure group were exposed to an equal dose of radiation delivered as a single pulse ($^{137}Cs$-gamma). At 24 hours after exposure, spleen, lung and liver tissues were extracted for histopathologic examination, western blotting and RT-PCR analysis. 1. The spleen showed the most dramatic differential response to acute and chronic exposure, with the induction of substantial tissue damage by HDR but not by LDR radiation. Effects of LDR radiation on the lung were only apparent at the higher dose (5 Gy), but not at lower dose (2 Gy). In the liver, HDR and LDR exposure induced a similar damage response at both doses. RT-PCR analysis identified cyclin G1 as a LDR-responsive gene in the spleen of rats exposed to 2 Gy and 5 Gy gamma radiation and in the lung of animals irradiated with 5 Gy. 2. The effects of LDR radiation differed among lung, liver, and spleen tissues. The spleen showed the greatest differential effect between HDR and LDR. The response to LDR radiation may involve expression of cyclin G1.

Inhibition of Apoptosis by Elaeocarpus sylvestris in Mice Following Whole-body Exposure to Ionizing Radiation: Implications for Radioprotectors

  • Park, Eun-Jin;Lee, Nam-Ho;Ahn, Gin-Nae;Baik, Jong-Seok;Lee, Je-Hee;Hwang, Kyu-Kye;Park, Jae-Woo;Jee, Young-Heun
    • Food Science and Biotechnology
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    • v.17 no.4
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    • pp.718-722
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    • 2008
  • Elaeocarpus sylvestris var. ellipticus (E.S.), which contains 1, 2, 3, 4, 6-penta-O-galloyl-beta-D-glucose (PGG), is reported to have the ability to scavenge oxygen radicals, thereby protecting rat neuronal cells from oxidative damage. The potential of an E.S. extract, which contains a rich PGG, to protect radiosensitive lymphocytes and intestinal crypt cells from radiation injury induced by a single whole-body irradiation (WBI) in vivo was investigated. Our results demonstrated that in immune cells, E.S. treatment decreased the percent of tail DNA, a parameter of DNA damage, compared with levels in untreated, irradiated controls. Furthermore, apoptosis was significantly decreased in lymphocytes and intestinal crypt cells of E.S.-treated mice compared with irradiated controls. These results suggest that the E.S. extract can strengthen the radioresistance of radiosensitive lymphocytes and crypt cells by preventing apoptosis. Therefore, it was concluded that E.S. extract has the radioprotective effects in vivo through an inhibition of apoptosis.

Change of the Serum Composition in Irradiated Mice (방사선이 조사된 생쥐의 혈청성분 변화)

  • Choi, Seong-Kwan
    • Journal of radiological science and technology
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    • v.31 no.3
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    • pp.293-298
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    • 2008
  • This study is aimed to investigate the change of serum compositions of mice caused by the irradiation. The 3Gy radiation with 10MeV Linac was once irradiated to whole body of mice and their serum was collected to conduct 14 biochemical analyses. With the collected data, t-test was performed. As the result, the significant change was confirmed in the following 3 compositions. First, the glucose level of the normal control group was $185.43{\pm}14.93$, but the irradiation group was found to be $220.00{\pm}17.58$, which shows significant difference(p<0.001). Second, the BUN(blood urea nitrogen) measurement showed lower value($15.70{\pm}1.48$) in the irradiation group than the normal control group($19.61{\pm}1.65$), which indicates the significant difference in mean value (p<0.01). Third, the measurement of albumin resulted in lower value of $2.89{\pm}0.25$ in irradiation group than $3.19{\pm}0.34$ of the normal control group, which shows the significant difference in mean value(p<0.05). In consequence, the serum of the mice irradiated with 3Gy radiation caused significant change in 3 compositions; glucose, Blood urea nitrogen(BUN) and albumin.

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Chromosomal Aberrations Induced in Human Lymphocytes by in vitro Irradiation with $^{60}Co\;{\gamma}-rays$ (체외 방사선조사시 인체 말초혈액 임파구의 염색체이상 빈도에 관한 연구)

  • Ahn, Yong-Chan;Ha, Sung-Whan
    • Journal of Radiation Protection and Research
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    • v.18 no.2
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    • pp.1-16
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    • 1993
  • As guides to decision-making in the management of the victims in case of acute whole body or partial body radiation exposure, we studied the relationship between radiation dose and the frequency of chromosomal aberrations observed in peripheral lymphocytes that were irradiated in vitro with $^{60}Co\;{\gamma}-rays$ at doses ranging from 2Gy to 12Gy. The yields of cells with unstable chromosomal aberrations (dicentric chromosomes, ring chromosomes, and acentric fragment pairs) were 32% at 2Gy, 47% at 4Gy, 80% at 6Gy, 94% at 8Gy, and 100% at 10Gy and over. Ydr, which reflect average dose to the whole body in case of acute whole body exposure, were 1.373 at 2Gy, 0.669 at 4Gy, 1.734 at 6Gy, 2.773 at 8Gy, 3.746 at 10Gy and 5.454 at 12Gy. The relationship between radiation dose (D) and the frequency of dicentric plus ring chromosomes per cell(Ydr) could be expressed as $Ydr=9.322{\times}10^{-2}/Gy {\times}D+2.975{\times}10^{-2}/Gy^2{\times}D^2$. Qdr, which are used in estimating dose of partial body exposure and dose of past exposure, were 1.166 at 2Gy, 1.436 at 4Gy, 2.173 at 6Gy, 2.945 at 8Gy, 3.746 at 10Gy and 5.454 at 12Gy. To see how confidently this dosimetry system may be used, we obtained Qdr values from those who received one fraction of homogenous partial body irradiation of 1.BGy, 2.5Gy, and 7.OGy therapeutically; in vivo Qdr values were 1.109, 1.222 and 2.222 respectively. The estimated doses calculated from these in vivo Qdr values using the equation $Qdr=Ydr/(1- e^{-Ydr})$ were 1.52Gy, 2.48Gy, and 6.54Gy respectively, which were very close to the doses actually given.

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