• Title/Summary/Keyword: 방사선조사효과

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Electrical Properties of MOS Capacitors Irradiated with $CO^{60}-\gamma$ Ray ($CO^{60}-\gamma$선이 조사된 MOS Capacitors에서의 전기적 특성)

  • 권순석;박흥우;임기조;류부형;강성화
    • Journal of the Korean Vacuum Society
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    • v.4 no.4
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    • pp.402-406
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    • 1995
  • MOS(금속 산화막 반도체 접합) 소자가 방사선에 노출되면, 산화막재에 양의 공간전하가 생성되고 Si-SiO2 계면에 계면준위가 생성된다. MOS 커패시터의 방사선 조사효과를 방사선 피폭량과 산화막의 두께를 달리하는 시편에서 정전용량과 전류변화를 측정하여 고찰하였다. 정전용량-바이어스 전압 특성 실험결과로부터 플렛밴드 전압 및 계면상태밀도를 계산하였다. 또한 전압-전류 특성은 방사선 조사로 산화막내에 생성된 양의 공간전하와 Si-SiO2 계면에 포획된 전하에 의해서 설명이 가능하였다.

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Radioprotective effect of naringin and naringenin against cellular damage and oxidative stress of γ-irradiated mice (감마선을 조사한 마우스의 세포 손상과 산화적 스트레스에 대한 나린진과 나린제닌의 방사선방호 효과)

  • Kang, Jung Ae;Kim, Hye Rim;Yoon, Seon Hye;Jang, Beom-Su;Choi, Dae Seong;Park, Sang Hyun
    • Korean Journal of Food Science and Technology
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    • v.49 no.6
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    • pp.659-667
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    • 2017
  • The present study was designed to evaluate the antioxidant activity and radioprotective effects of Naringin and Naringenin in ${\gamma}$-irradiated mice. The antioxidant activity of Naringin and Naringenin was evaluated by 2,2'-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) and ferric reducing antioxidant power (FRAP) assays. Healthy female BALB/c mice were administered Naringin and Naringenin orally ($90{\mu}M/dose$ and $180{\mu}M/dose$) for 7 consecutive days prior to ${\gamma}$-irradiation (6 Gy). Naringenin displayed a much higher antioxidant activity in ABTS and FRAP than naringin. ${\gamma}$-irradiation resulted in cellular damage with decreased spleen and thymus indices and white blood cells (WBC) count. Additionally, ${\gamma}$-irradiation significantly increased lipid peroxidation and decreased the levels of antioxidant enzymes and glutathione (GSH) in the liver tissue. Strikingly, prior administration of Naringenin resulted in considerable prevention of these symptoms. Protection against ${\gamma}$-irradiation-induced cellular damage by Naringenin is likely due to its higher its antioxidant activity. Together, these results confirm that Naringenin is a potent antioxidant and radioprotector.

Radioprotective Effect of Quercetin Post-Treatment against γ-Irradiation-Induced Hepatocellular and Hematopoiectic System Damage in Mice (감마선 조사로 유도된 간세포와 조혈계 손상 마우스에서 퀘르세틴 투여 후의 방사선방호 효과)

  • Kang, Jung Ae;Yoon, Seon Hye;Rho, Jong Kook;Choi, Dae Seong;Jang, Beom-Su;Park, Sang Hyun
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.7
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    • pp.970-974
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    • 2015
  • This study was designed to evaluate the therapeutic effect of quercetin against radiation-induced hepatocellular and hematopoiectic damage in BALB/c mice. Mice were exposed to 6 Gy of ${\gamma}$-radiation and orally administered quercetin (25, 50 mg/kg b.w.) for 7 consecutive days. ${\gamma}$-Irradiation caused marked elevation of serum aspartate aminotransferase and alanine aminotransferase, levels as well as reduction of spleen index, thymus index, and the number of white blood cells. In addition, ${\gamma}$-irradiation induced significant elevation of lipid peroxidation as well as reduction of antioxidant enzyme activities, including superoxide dismutase, catalase, and glutathione peroxidase. However, post-treatment with quercetin resulted in a significant recovery of all of these parameters. These results suggest that quercetin acts as a potent radioprotector against irradiation-induced cellular damage in mice.

Effects of Low-Dose Fractionated Total Body Irradiation on Murine Immune System (마우스에서 전신 저선량 분할 방사선 조사에 의한 면역학적 변화 평가)

  • Kim, Mi-Hyoung;Rhu, Sang-Young;Lim, Dae-Seog;Song, Jie-Young
    • Journal of Radiation Protection and Research
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    • v.39 no.3
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    • pp.134-141
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    • 2014
  • Along with the wide use of radiotherapy in cancer treatment, there is growing interest in beneficial effect of low-dose irradiation (LDI) in cancer therapy. Therefore, we investigate how LDI affects immune responses in mice model. Total body irradiation (TBI) on C57BL/6 mice was given at low-dose rate of $1mGy{\cdot}min^{-1}$ using $^{137}Cs$ source at three times for consecutive three days. Hematological examination, total cell numbers of spleen, populations and characteristics of splenocytes were determined. Total numbers of RBC or platelet in irradiated mice showed no significant changes. WBC counts were decreased in a dose-dependent manner 2 days after TBI, however, these differences are gradually waned until 28 days. Dose-dependent decrease in the number of splenocytes of TBI mice at day 2 was also improved as time progressed. While the level of Foxp3 mRNA was decreased, the frequency of $CD4^+$ T cells and $CD69^+$ cells in spleen was increased at day 2 and 14. Fractionated low-dose TBI on mice exhibited normal body weight with no distinguishable behavior during whole experimental periods. These results suggest that some parameters of immune system could be altered and evaluated by fractionated low-dose TBI and be used to broaden boundary of low dose radiation research.

The Radioprotective Effects of Grifola umbellata Hot Water Extract on Mice (저령(Grifola umbellata)의 열수 추출물이 생쥐에 미치는 방사선 방호 효과)

  • Park, Jun-Chul
    • Journal of radiological science and technology
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    • v.28 no.4
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    • pp.333-340
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    • 2005
  • In this study, the radioprotective effects of Grifola umbellata hot water extracts (Gu-extract) on mice were investigated. Single pre-administration of Gu-extract increased the 40-day survival ratio of irradiated mice from 65.5% to 78.6%. The growth of 3 week old male mice in the irradiated group was slightly retarded as compared to those of the control and Gu-extract treated mice. The average spleen and thymus weights of the irradiated mice were lower than those of the control and Gu-extract treated mice. The weight reduction of testis in the irradiated mice was significant. While it was relatively slight in the Gu-extract treated mice as compared to that of control mice. No significant difference in the weight was observed in heart, kidney or liver among three groups. The leukocytes of the Gu-extract treated mice did not decrease dramatically as in the irradiated group, but recovery patterns were similar in both groups. Reduction of erythrocytes were similar in both groups but its recovery occurred more rapidly in the extract treated group. The glucose level of the Gu-extract treated group did not change during the period examined, while it was still higher in the irradiated group than the level in the control group in two weeks. The cholesterol levels in the irradiated and the Gu-extract treated groups were higher than that of control group on day 7, but decreased to the level of the control group on day 14. No difference was observed in total protein amount of the serum among the three groups. SDS-polyacrylamide gel electrophoresis of the soluble proteins extracted from various organs did not reveal differences to any extent in all groups except in the livers of the irradiated and extract treated groups, in which some proteins were missing or less present.

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Effect of the Paclitaxel and Radiation on the Gastric Mucosa of the Rat (흰쥐의 위점막에 Paclitaxel (Taxol)과 방사선조사의 효과)

  • Lee Kyung-ja;Koo Heasoo
    • Radiation Oncology Journal
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    • v.17 no.4
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    • pp.314-320
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    • 1999
  • Purpose : Paclitaxel is a chemotherapeutic agent with potent microtubule stabilizing activity that arrests cells in $G_2$-M phase. Because $G_2$ and M are the most radiosensitive phase of the cell cycle, paclitaxel has potential role as a cell-cycle specific radiosensitizer. This study was peformed to see the effects of paclitaxel on the radiation-induced damage of gastric mucosa of the rat. Materials and Methods : The rats were divided into the three groups i.e., paclitaxel alone group, radiation alone group and, a combination of paclitaxel and radiation in combined group. A single intraperitoneal infusion of paclitaxel (10 mg/kg) was done in paclitaxel alone group. In radiation alone group, a single fraction of irradiation (8 Gy, x-ray) to the whole abdomen and, a combination of a single fraction of irradiation (8 Gy, x-ray) to the whole abdomen was given 24 hrs after paclitaxel infusion In combined group of paclitaxel and radiation. The incidence of mitosis and apoptosis as well as histologic changes of the gastric mucosa were evaluated at 6 hrs, 24 hrs, 3 days and 5 days after treatment. Results : The number of the mitosis was not increased by paclitaxel infusion. The incidence of the apoptosis was similar from 6 hrs to 3 days after paclitaxel infusion and was decreased at 5 days. Paclitaxel induced minimal glandular dilatation and cellular atypia of gastric mucosa at 24 hrs and 3 days. In irradiation group, the incidence of apoptosis was $6.0\%$ in 6 hrs and $1.25\%$ in 24 hrs after irradiation and minimal glandular dilatation and cellular atypia were noted throughout the experimental period. The incidence of apoptosis in the combined group of paclitaxel and irradiation ($4.5\%$) was significantly higher than irradiation alone group ($1.25\%$) at 3 days (p<0.05). Conclusion : Paclitaxel had no mitotic on mitotic arrest in gastric mucosa of the rat. Increased number of apoptosis in combined paclitaxel and irradiation group suggested the additive effects of paclitaxel on irradiation.

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Hypoxic Tumor Can be More Responsive to Fractionated Irradiation Combined with SR 4233 (Tirapazamine) (분할방사선조사와 SR 4233 병용에 의한 저산소분압 종양의 반응증강)

  • Kim, Il-Han;J.-Martin-Brown
    • Radiation Oncology Journal
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    • v.12 no.1
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    • pp.9-16
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    • 1994
  • Hypothesis that hypoxic tumors should be more responsive to the addition of preferential hypoxic cell cytotoxin SR 4233 (tirapazamine) to fractionated irradiation was tested in the mouse SCCVll carcinoma and RIF-1 sarcoma, Model of hypoxic tumor was established using the tumor bed effect: tumors growing in the preirradiated tissue (preirradiated tumors) were more hypoxic than tumors growing in the unirradiated tissue (unirradiated tumors). When the tumors reached a mean volume of 100 $mm^{3}$, both unirradiated and preirradiated tumors were treated with a fractionated course of 6${\times}$2 Gy in 3 days or 8${\times}$2.5 Gy in 4 days with SR 4233 (0.08 mmol/kg/injection) given 30 minutes before each irradiation or without SR 4233. Compared to the unirradiated tumors, hypoxic preirradiated tumors were approximately 5 times more resistant to fractionated irradiation alone but were approximately 5 times more responsive to SR 4233. Addition of SR 4233 Potentiated the effect of fractionated irradiation in both unirradiated and preirradiated tumors. Potentiation in the preirradiated tumors was morequal to or greater than that in the unirradiated tumors and seemed to be higher for more fractionated treatment. We confirm the hypothesis in a transplantable mouse tumor. Present results suggest that radioresistance of some hypoxic tumors can be overcome with hypoxic cytotoxin.

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The Effect of Heat Treatment on Biological Response and Mutation Frequency of Gamma Irradiated Rice Seeds (수도종자의 방사선조사에 있어서 열처리의 효과)

  • Chang-Yawl Harn;J. L.Won;Kwang-Tae Choi
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.10
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    • pp.45-50
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    • 1971
  • For the purpose of finding out the effect of heat treatment on biological response and mutation rate, rice seeds were heat treated before and after gamma irradiation. 1. At a dose of 20 KR, pre-irradiation heat treatment showed reduced biological damage and increased mutation rate as compared with non-heat treatment. 2. Mutation frequency was increased in post-treatment of heat shock than in pre-irradiation heat treatment and non-heat treatment. 3. Pre-irradiation heat treatment at 6$0^{\circ}C$ for 30 minutes markedly reduced the biological damage and increased the mutation rate. 4. Mutation spectrum in heat treatment was different from non-treatment.

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The Effect of Ginkgo Biloba Extract on the Fractionsted Radiation Therapy in C3H Mouse Fibrosarcoma (Ginkgo Biloba Extract가 C3H 마우스 섬유육종의 분할 방사선치료에 미치는 영향)

  • Kim, Jong-Hoon;Ha, Sung-Whan;Park, Charn-Il
    • Radiation Oncology Journal
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    • v.20 no.2
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    • pp.155-164
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    • 2002
  • Purpose : A ginkgo biloba extract (GBE) has been known as a hypoxic cell radiosensitizer. Its mechanisms of action are increase of the red blood cell deformability, decrease the blood viscosity, and decrease the hypoxic cell fraction in the tumor. The aims of this study were to estimate the effect of GBE on fractionated radiotherapy and to clarify the mechanism of action of the GBE by estimating the blood flow in tumor and normal muscle. Materials and Methods : Fibrosarcoma (FSall) growing in a C3H mouse leg muscle was used as the tumor model. When the tumor size reached 7 mm in diameter, the GBE was given intraperitoneally at 1 and 25 hours prior to irradiation. The tumor growth delay was measured according to the various doses of radiation (3, 6, 9, 12 Gy and 15 Gy) and to the fractionation (single and fractionated irradiation) with and without the GBE injection. The radiation dose to the tumor the response relationships and the enhancement ratio of the GBE were measured. In addition, the blood flow of a normal muscle and a tumor was compared by laser Doppler flowmetry according to the GBE treatment. Results : When the GBE was used with single fraction irradiation with doses ranging from 3 to 12 Gy, GBE increased the tumor growth delay significantly (p<0.05) and the enhancement ratio of the GBE was 1.16. In fractionated irradiation with 3 Gy per day, the relationships between the radiation dose (D) and the tumor growth delay (TGD) were TGD $(days)=0.26{\times}D$ (Gy)+0.13 in the radiation alone group, and the TGD $(days)=0.30{\times}D$ (Gy)+0.13 in the radiation with GBE group. As a result, the enhancement ratio was 1.19 ($95\%$ confidence interval; $1.13\~1.27$). Laser Doppler flowmetry was used to measure the blood flow. The mean blood flow was higher in the muscle (7.78 mL/100 g/min in tumor and the 10.15 mL/100 g/min in muscle, p=0.005) and the low blood flow fraction (less than 2 mL/100 g/min) was higher in the tumor $(0.5\%\;vs.\;5.2\%,\;p=0.005)$. The blood flow was not changed with the GBE in normal muscle, but was increased by $23.5\%$ ( p=0.0004) in the tumor. Conclusion : Based on these results, it can be concluded that the GBE enhanced the radiation effect significantly when used with fractionated radiotherapy as well as with single fraction irradiation. Furthermore, the GBE increased the blood flow of the tumor selectively.

Radiation Protection Effect of Selenium on the Rat's Prostate (흰쥐의 전립선에 대한 셀레늄(Se)의 방사선 방호효과)

  • Choi, Hyung-Seok;Choi, Jun-Hyeok;Jung, Do-Young;Kim, Jang-Oh;Shin, Ji-Hye;Kim, Joo-Hee;Min, Byung-In
    • Journal of radiological science and technology
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    • v.40 no.2
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    • pp.317-322
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    • 2017
  • High-tech medical equipment has increased the utilization of radiation in the medical field. As a result, research on radiation protection using natural materials has become an important social issue. Selenium is a natural substance that is highly expressed in prostate known that an essential role in prostate cells. Selenium was orally administered to Rat and irradiated with 10 Gy of radiation. Then, the prostate tissue w as used as a target organ for 1 day, 7 days and 21 days to investigate the radiation protection effect of selenium through changes of blood components, Superoxide Dismutase and histological changes. As a result, there was a significant protective effect of hematopoietic immune system(hemoglobin concentration, neutrophil, platelet) in the group irradiated with selenium(p<0.05). the observation of tissue changes selenium is an effective component to increase Superoxide Dismutase activity, and it was confirmed that it has an effect of inhibiting the expression of hypertrophy of prostate by irradiation. Therefore, it is considered that selenium can be utilized as a radioprotective agent by inducing prevention of prostate-related diseases.