• 제목/요약/키워드: high dose rate

검색결과 882건 처리시간 0.03초

High Dose of FGF-2 Induced Growth Retardation via ERK1/2 De-phosphorylation in Bone Marrow-derived Mesenchymal Stem Cells

  • Shim, Kwang Yong;Saima, Fatema Tuj;Eom, Young Woo
    • 대한의생명과학회지
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    • 제23권2호
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    • pp.49-56
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    • 2017
  • Fibroblast growth factor (FGF)-2 is one of the most effective growth factors to increase the growth rate of mesenchymal stem cells (MSCs). Previously, we reported that low dose of FGF-2 (1 ng/ml) induced proliferation of bone marrow-derived mesenchymal stem cells (BMSCs) through AKT and ERK activation resulting in reduction of autophagy and senescence, but not at a high dose. In this study, we investigated the effects of high dose FGF-2 (10 ng/ml) on proliferation, autophagy and senescence of BMSCs for long term cultures (i.e., 2 months). FGF-2 increased the growth rate of BMSCs in a dose dependent manner for a short term (3 days), while during long term cultures (2 months), population doubling time was increased and accumulated cell number was lower than control in BMSCs when cultured with 10 ng/ml of FGF-2. 10 ng/ml of FGF-2 induced immediate de-phosphorylation of ERK1/2, expression of LC3-II, and increase of senescence associated ${\beta}$-galactosidase (SA-${\beta}$-Gal, senescence marker) expression. In conclusion, we showed that 10 ng/ml of FGF-2 was inadequate for ex vivo expansion of BMSCs because 10 ng/ml of FGF-2 induced growth retardation via ERK1/2 de-phosphorylation and induction of autophagy and senescence in BMSCs.

PET검사 작업환경에 있어서 APRON의 방어에 대한 고찰 (A Consideration of Apron's Shielding in Nuclear Medicine Working Environment)

  • 이성욱;김승현;지봉근;이동욱;김정수;김경목;장영도;방찬석;백종훈;이인수
    • 핵의학기술
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    • 제18권1호
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    • pp.110-114
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    • 2014
  • PET/CT기기의 발달로 인한 검사시간의 단축과 대중화로 인해 검사건수도 꾸준히 증가하고 있다. 이는 방사선 작업종사자의 피폭선량도 함께 증가시키는 결과를 초래한다. 본 연구는 PET/CT 검사에 있어서 에너지가 강한 $^{18}F-FDG$를 apron을 착용 시 방사선 차폐율을 측정하고 차폐효과를 알아보고자 하였다. 또한 $^{99m}TC$과의 차폐율을 비교하여 방사선 작업종사자의 피폭선량을 최소화하는 것에 목적을 두고 진행하였다. 실험방법은 2013년 5월 2일부터 5월 10일까지 8일간 PET/CT 검사를 위해 본원을 방문한 10명의 환자를 대상으로 하였고 PET/CT 주요 작업공간인 $^{18}F-FDG$ 분배실, 환자 안정실($^{18F}$주사 후 환자 대기장소), PET/CT 검사실 모두 3곳을 선정하여 Apron장착 전과 apron장착 후로 나누어 선량율 변화를 측정하였다. 정확한 측정을 위해서 환자 또는 Source부터의 거리는 1 m로 고정하였다. 또한 Apron의 선량감소율을 비교하고자 $^{99m}TC$의 source에도 같은 방법을 적용하여 측정하였다. 측정결과 $^{18F}FDG$ 분배실에서 L-BLOCK만 있는 경우 평균 $0.32{\mu}Sv$였고 L-block+apron의 경우 $0.23{\mu}Sv$이였으며 두 경우의 선량과 선량율의 차이는 각각 $0.09{\mu}Sv$, 26%로 나타났다. 안정실에서 apron이 없는 경우 평균 $33.1{\mu}Sv$였고 apron이 있는 경우 평균 $22.3{\mu}Sv$였다. 두 경우의 선량과 선량율의 차이는 각각 $10.8{\mu}Sv$, 33%로 나타났다. PET/CT실에서의 apron이 없는 경우 평균 $6.9{\mu}Sv$였고 apron이 있는 경우 평균 $5.5{\mu}Sv$였다. 두 경우의 선량과 선량율의 차이는 각각 $1.4{\mu}Sv$, 25%로 나타났다. $^{99m}TC$은 apron이 없는 경우 평균 $23.7{\mu}Sv$였고 apron이 있는 경우 평균 $5.5{\mu}Sv$였다. 두 경우의 선량과 선량율의 차이는 각각 $18.2{\mu}Sv$, 77%나타났다. 실험결과 환자에게 투여한 후의 $^{99m}TC$의 경우 평균 77%의 차폐율을 나타내었고 $^{18}F-FDG$의 경우 평균 27%의 비교적 낮은 차폐율을 보였다. source 자체만을 비교하였을 때에 $^{18}F-FDG$는 17%의 차폐율을 보였고 $^{99m}TC$은 77%의 차폐율을 보였다. $^{99m}TC$에 비해 낮은 차폐효과이지만 $^{18}F-FDG$ 역시 apron에 대한 차폐효과가 있음을 알 수 있었다. 그러므로 PET/CT 검사에 있어서 $^{18}F-FDG$과 같은 고에너지에 맞는 apron을 착용한다면 방사선 작업종사자의 피폭선량을 최소화 할 수 있을 것으로 사료된다.

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Nutritional strategy of early amino acid administration in very low birth weight infants

  • Lee, Byong Sop
    • Clinical and Experimental Pediatrics
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    • 제58권3호
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    • pp.77-83
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    • 2015
  • Relative to a fetus of the same gestational age, very low birth weight (VLBW) infants are more likely to be underfed and to undergo growth restriction during their early hospital stay. The current trend towards "early and aggressive" nutritional strategies in VLBW infants aims to overcome the early nutritional deficiency and thereby boost postnatal catch-up growth, simultaneously improving long-term neurodevelopmental outcomes. Although the minimum starting amino acid (AA) dose to prevent negative nitrogen balance is well established, the upper limit and the rate of increase of early AA doses are controversial. Most randomized controlled trials show that early and high-dose (target, 3.5 to 4.9 g/kg/day) AA regimens, with or without high nonprotein calories, do not improve long-term growth and neurodevelopment. High-dose AA supplementation may lead to early metabolic disturbances and excessive or disproportionate plasma AA levels, particularly in infants of very low gestational age. Further large studies are needed to clarify the optimal strategy for early administration of parenteral AA doses in VLBW infants.

RADIATION DAMAGE IN THE HUMAN BODY ACUTE RADIATION SYNDROME AND MULTIPLE ORGAN FAILURE

  • AKASHI, MAKOTO;TAMURA, TAIJI;TOMINAGA, TAKAKO;ABE, KENICHI;HACHIYA, MISAO;NAKAYAMA, FUMIAKI
    • Nuclear Engineering and Technology
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    • 제38권3호
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    • pp.231-238
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    • 2006
  • Whole-body exposure to high-dose radiation causes injury involving multiple organs that depends on their sensitivity to radiation. This acute radiation syndrome (ARS) is caused by a brief exposure of a major part of the body to radiation at a relatively high dose rate. ARS is characterized by an initial prodromal stage, a latent symptom-free period, a critical or manifestation phase that usually takes one of four forms (three forms): hematologic, gastrointestinal, or cardiovascular and neurological (neurovascular), depending upon the exposure dose, and a recovery phase or death. One of the most important factors in treating victims exposed to radiation is the estimation of the exposure dose. When high-dose exposure is considered, initial dose estimation must be performed in order to make strategy decisions for treatment as soon as possible. Dose estimation can be based on onset and severity of prodromal symptoms, decline in absolute lymphocyte count post exposure, and chromosomal analysis of peripheral blood lymphocytes. Moreover, dose assessment on the basis of calculation from reconstruction of the radiation event may be required. Experience of a criticality accident occurring in 1999 at Tokai-mura, Japan, showed that ARS led to multiple organ failure (MOF). This article will review ARS and discuss the possible mechanisms of MOF developing from ARS.

Determination of optimum gamma ray range for radiation mutagenesis and hormesis in quinoa (Chenopodium quinoa Willd.)

  • Park, Chan Young;Song, Seon Hwa;Sin, Jong Mu;Lee, Hyeon Young;Kim, Jin Baek;Shim, Sang In
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.240-240
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    • 2017
  • Quinoa (Chenopodium quinoa Willd.) is one of the ancient crops cultivated in the Andes region at an altitude of 3,500-4000m in Chile and Bolivia from 5000 BC. It contains a large amount of protein, minerals and vitamins in comparison with other crops. The cultivation area has been increasing worldwide because of its excellent resistance to various abiotic stress such as salinity, drought and low temperature. ${\gamma}$-Ray radiation of high dose is often used as a tool to induce mutations in plant breeding, but it has a deleterious effect on organisms. However, the radiation may have a positive stimulatory effect of 'hormesis' in the low dose range. This experiment was carried out to investigate the optimum dose range for creating the quinoa genetic resources and to investigate the hormesis effect at low dose on the quinoa. This experiment was performed for 120 days from November, 2016 to February, 2017 in the greenhouse of Gyeongsang National University. ${\gamma}$-Ray radiation was irradiated to seeds at 0 Gy, 50 Gy, 100 Gy, 200 Gy, 300 Gy, 400 Gy, 600 Gy, 800 Gy and 1000 Gy for 8 hours. (50 Gy) using the low level radiation facility ($Co^{60}$) of Cooperative Research Institute of Radiation Research Institute, KAERI. Fifty seeds were placed on each petri dish lined with wet filter paper and germination rate was measured at a time interval of 2 hours for 40 hrs. The length of the root length was measured one week after germination. Each treatment was carried out in 3 replicates. The growth of seedlings were investigated for 10 days after transplanting of 30 day-old seedlings. The plant height, NDVI, SPAD, Fv/Fm, and panicle weight were measured. The germination rate was highest at 50Gy and 0Gy and the rate of seeds treated with 400Gy or higher rate decreased to 25% of the seeds treated with 50Gy. The emergence rate of seedling in pot experiment was higher at the dose of 200 Gy, 300 Gy and 400 Gy than at 0 and 50Gy. However, the rate was lower at strong radiation higher than 600Gy at which $1^{st}$ leaf was not expanded fully and dead due to extreme overgrowth at 44 days after treatment (DAT). The highest value of panicle weight was observed at 50Gy (6.15g) and 100Gy (5.57g). On the other hand, the weight at high irradiated dose of 300Gy and 400Gy was decreased by about 55% compared to low dose (50 Gy). NDVI measurement also showed the highest value at 50 Gy as the growth progressed. SPAD was the highest at 400 Gy and showed positive correlation with irradiation dose except 0 Gy. Fv/Fm was high at 50 Gy up to 30 DAT and no difference between treatments was observed except for 400 Gy from 44 DAT. The plant height was the highest in 50Gy during the growing period and was higher in the order of 50Dy, 100Gy, 0Gy, 200Gy, 300Gy and 400Gy in 88 DAT. In this experiment, the optimal radiation dose for hormesis was 50Gy and 100Gy, and the optimal radiation dose for mutagenesis seems to be 400 Gy.

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Radiation Biology in Space; DNA Damage and Biological Effects of Space Radiation

  • Ohnishi, Takeo;Takahashi, Akihisa;Ohnishi, Ken
    • Journal of Photoscience
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    • 제9권3호
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    • pp.37-40
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    • 2002
  • Astronauts are constantly exposed to space radiation at a low-dose rate during long-tenn stays in space. Therefore, it is important to determine correctly the biological effects of space radiation on human health. Space radiations contain various kinds of different energy particles, especially high linear energy transfer (LET) particles. Therefore, we have to study the relative biological effectiveness (RBE) of space radiation under microgravity environment which may change RBE from a stress for cells. Furthermore, the research about space radiation might give us useful information about birth and evolution of life on the earth. We also can realize the importance of preventing the ozone layer from depletion by use of exposure equipment to sunlight at International Space Station (ISS).

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자궁경부암 환자의 고선량률 강내치료 시행 시 직장합병증의 예측 (Prediction of Late Rectal Complication Following High-dose-rate Intracavitary Brachytherapy in Cancer of the Uterine Cervix)

  • 이정은;허승재;박원;임도훈;안용찬
    • Radiation Oncology Journal
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    • 제21권4호
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    • pp.276-282
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    • 2003
  • 목적: 자궁경부암의 고선량률 근접치료는 근치적 치료에서 중요한 역할을 차지하나 만성합병증 특히 직장합병증의 위험도 증가하게 된다. 이에 저자들은 직장합병증과 직장 방사선선량을 비교하여 합병증과 관련된 인자를 알아보고자 하였다. 대상 및 방법: 1995년 7월부터 2001년 12월까지 자궁경부암으로 진단받고 근치적 방사선치료로 외부방사선치료와 고선량률 강내치료를 모두 받은 환자 222명을 대상으로 하였다. 외부방사선치료의 총방사선량 중앙값은 50.4 Gy(30.6$\~$56.4 Gy)이고 고선량률 강내치료는 이리듐(Ir)-192를 이용하여 point A에 3$\~$5.5 Gy (중앙값 4 Gy), 조사횟수는 5$\~$8회(중앙값 6회)로 주 2회 조사하여 총 15$\~$32.5 Gy (중앙값 24 Gy)를 조사하였다. 환자의 중앙 추적기간은 39개월(6$\~$90개월)이었다 결과: 만성 직장합병증은 21명(9.5$\%$)에서 관찰되었다. 이들은 모두 직장출혈을 보였으며 다른 합병증은 나타나지 않았다. 직장합병증이 발생하기까지의 시간은 방사선치료 종료 후 3$\~$44개월(중앙값 13개월)이었다. 이전의 결과와 마찬가지로 직장합병증을 보인 군의 계산직장선량은 합병증을 보이지 않았던 군과 비슷하고 그 차이가 통계적으로 유의하지 않았다. 그러나 직장합병증을 보인 군의 측정직장선량의 평균값과 BED는 합병증을 보이지 않았던 군에 비해 높았으며 통계적으로 유의한 차이를 보였다. 측정 직장선량이 16 Gy를 넘거나 측정 직장선량과 A point 선량과의 비가 70$\%$를 넘는 경우 또는 측정 직장선량의 BED가 120 Gy$_{3}$을 넘는 경우는 직장 합병증의 가능성이 유의하게 증가하였다. 결론: 자궁경부암에서 고선량률 강내치료시 TLD를 이용한 생체 내 선량측정을 하고 이를 조정함으로써 만성 직장합병증을 예측하고 그 가능성을 줄일 수 있을 것으로 생각된다.

Analysis of radioactivity levels and hazard assessment of black sand samples from Rashid area, Egypt

  • Abdel-Rahman, Mohamed A.E.;El-Mongy, Sayed A.
    • Nuclear Engineering and Technology
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    • 제49권8호
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    • pp.1752-1757
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    • 2017
  • The aim of this study is to evaluate the radioactivity levels and radiological impacts of representative black sand samples collected from different locations in the Rashid area, Egypt. These samples were prepared and then analyzed using the high-resolution gamma ray spectroscopy technique with a high-purity germanium detector. The activity concentration ($A_c$), minimum detectable activity, absorbed gamma dose rate, external hazard index ($H_{ex}$), annual effective dose rate equivalent, radium equivalent, as well as external and internal hazard index ($H_{ex}$ and $H_{in}$, respectively) were estimated based on the measured radionuclide concentration of the $^{238}U$($^{226}Ra$) and $^{232}Th$ decay chains and $^{40}K$. The activity concentrations of the $^{238}U$, $^{232}Th$ decay series and $^{40}K$ of these samples varied from $45.11{\pm}3.1Bq/kg$ to $252.38{\pm}34.3Bq/kg$, from $64.65{\pm}6.1Bq/kg$ to $579.84{\pm}53.1Bq/kg$, and from $403.36{\pm}20.8Bq/kg$ to $527.47{\pm}23.1Bq/kg$, respectively. The activity concentration of $^{232}Th$ in Sample 1 has the highest value compared to the other samples; this value is also higher than the worldwide mean range as reported by UNSCEAR 2000. The total absorbed gamma dose rate and the annual effective dose for these samples were found to vary from 81.19 nGy/h to 497.81 nGy/h and from $99.86{\mu}Sv/y$ to $612.31{\mu}Sv/y$, which are higher than the world average values of 59 nGy/h and $70{\mu}Sv/y$, respectively. The $H_{ex}$ values were also calculated to be 3.02, 0.47, 0.63, 0.87, 0.87, 0.51 and 0.91. It was found that the calculated value of $H_{ex}$ for Sample 1 is significantly higher than the international acceptable limit of <1. The results are tabulated, depicted, and discussed within national and international frameworks, levels, and approaches.

IDENTIFICATION OF GENES EXPRESSED IN LOW-DOSE-RATE γ-IRRADIATED MOUSE WHOLE BRAIN

  • Bong, Jin Jong;Kang, Yu Mi;Choi, Seung Jin;Kim, Dong-Kwon;Lee, Kyung Mi;Kim, Hee Sun
    • Journal of Radiation Protection and Research
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    • 제38권4호
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    • pp.166-171
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    • 2013
  • While high-dose ionizing radiation results in long term cellular cytotoxicity, chronic low-dose (<0.2 Gy) of X- or ${\gamma}$-ray irradiation can be beneficial to living organisms by inducing radiation hormesis, stimulating immune function, and adaptive responses. During chronic low-dose-rate radiation (LDR) exposure, whole body of mice is exposed to radiation, however, it remains unclear if LDR causes changes in gene expression of the whole brain. Therefore, we aim to investigate expressed genes (EGs) and signaling pathways specifically regulated by LDR-irradiation ($^{137}Cs$, a cumulative dose of 1.7 Gy for total 100 days) in the whole brain. Using microarray analysis of whole brain RNA extracts harvested from ICR and AKR/J mice after LDR-irradiation, we discovered that two mice strains displayed distinct gene regulation patterns upon LDR-irradiation. In ICR mice, genes involved in ion transport, transition metal ion transport, and developmental cell growth were turned on while, in AKR/J mice, genes involved in sensory perception, cognition, olfactory transduction, G-protein coupled receptor pathways, inflammatory response, proteolysis, and base excision repair were found to be affected by LDR. We validated LDR-sensitive EGs by qPCR and confirmed specific upregulation of S100a7a, Olfr624, and Gm4868 genes in AKR/J mice whole brain. Therefore, our data provide the first report of genetic changes regulated by LDR in the mouse whole brain, which may affect several aspects of brain function.