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  • CERULEIN  (1)
  • Key words: Rhenium-188 diethylene triamine penta-acetic acid – Dosimetry – MIRD – Endovascular brachytherapy – Prevention of restenosis  (1)
  • 1
    ISSN: 1573-2568
    Keywords: OXYGEN FREE RADICALS ; LIPID PEROXIDATION ; CERULEIN ; PANCREATITIS ; MELATONIN
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Since oxygen free radicals and lipidperoxidation have been implicated in the pathogenesis ofan early stage of acute pancreatitis, we examinedwhether melatonin, a recently discovered free-radicalscavenger, could attenuate pancreatic injury inSprague-Dawley rats with cerulein-induced pancreatitis.Acute pancreatitis was induced by four intraperitonealinjections of cerulein (50 μg/kg body wt) given at1-hr intervals. Thirty minutes after the lastcerulein injection, the rats were killed and the degreeof pancreatic edema, the level of lipid peroxidation inthe pancreas, and serum amylase activity were increased significantly. Pretreatment with melatonin (10or 50 mg/kg body wt) 30 min before each ceruleininjection resulted in a significant reduction inpancreatic edema and the levels of lipid peroxidation.Serum amylase activity, however, was notsignificantly influenced by either dose of melatonin.Moreover, we found that cerulein administration wasassociated with stomach edema as well as high levels oflipid peroxidation in the stomach and smallintestine, which were also reduced by melatonin.Melatonin's protective effects in cerulein-treated ratspresumably relate to its radical scavenging ability andto other antioxidative processes induced bymelatonin.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1619-7089
    Keywords: Key words: Rhenium-188 diethylene triamine penta-acetic acid – Dosimetry – MIRD – Endovascular brachytherapy – Prevention of restenosis
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract. To examine the possibility of using rhenium-188 diethylene triamine penta-acetic acid (DTPA) for endovascular intra-balloon brachytherapy after angioplasty, dose distribution around the balloon was calculated and validated by film dosimetry. Medical internal radiation dosimetry (MIRD) was calculated assuming that the balloon had ruptured and that the contents had been released into the systemic circulation. 188Re-perrhenate eluate from the 188W/188Re generator was concentrated using an ion column and used to label DTPA. The dose distibution around the angioplasty balloon (20 mm length, 3 mm diameter cylinder) was estimated by Monte Carlo simulation using the EGS4 code. The time required for 17.6 Gy to be absorbed at 1 mm from the balloon’s surface following application of 3700 MBq/ml of 188Re was found to be 278 s. Fifty percent of the energy was deposited in the first millimetre of the vessel wall from the balloon’s surface. The calculated radiation absorbed dose agreed with that measured by film dosimetry, which was performed using a water phantom, with errors ranging from 9.4% to 17%. Upon balloon rupture the total amount of 188Re-DTPA was presumed to enter the systemic circulation. The resulting radiation absorbed dose was calculated using the MIRDOSE3 program and residence times obtained from dogs and amounted to 0.0056 mGy/MBq to the whole body and 4.56 mGy/MBq to the urinary bladder. The absorbed dose of 188Re-DTPA to the whole body was one-tenth of that of 188Re-perrhenate. A window-based program was developed to calculate the exposure time and the radiation dose absorbed as a function of the 188Re concentration and the arbitrary distance from the balloon to the surrounding tissues. We conclude that 188Re-DTPA is easy to prepare, safe to use and suitable for intra-balloon brachytherapy after coronary angioplasty.
    Type of Medium: Electronic Resource
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