Young Colin Raymond, Prasad Kalpna
Walter Reed National Military Medical Center, Bethesda, MD, USA.
World J Nucl Med. 2017 Apr-Jun;16(2):156-159. doi: 10.4103/1450-1147.203063.
Sporadic supply interruptions of select radiopharmaceuticals on the global market require consideration of alternative agents to support continuity of essential nuclear medicine examinations. During an acute shortage of Xenon-133 and technetium-99 metastable (Tc-99m) diethylene-triamine-pentaacetate (DTPA), our institution used aerosolized Tc-99m hydroxymethylene diphosphonate (HDP), a radiopharmaceutical traditionally used in bone scintigraphy, in lieu of traditional ventilation agents, for two cases of suspected pulmonary embolism. Similar to Tc-99m-DTPA, Tc-99m-HDP was readily available and easily compounded in our pharmacy, and tolerated well by patients. Identical delivery equipment was used for administration of Tc-99m-HDP as that used in Tc-99m-DTPA, and thus, there was no requirement for a negative pressure room. Similar to Tc-99m-DTPA and unlike Xenon-133, Tc-99m-HDP allowed direct comparison of all 8 ventilation-perfusion images. In addition, the cost per dose of Tc-99m-HDP proved to be less than Tc-99m-DTPA. Despite these favorable characteristics of Tc-99m-HDP, our experience identified an important challenge in obtaining an optimal flux override ratio of > 3 in a reasonable time frame while obtaining ventilation and perfusion images sequentially despite reversing the imaging order in an attempt to overcome this limitation. Although our experience with Tc-99m-HDP in these two cases was favorable, more clinical experience and investigation are warranted before Tc-99m-HDP can be incorporated as a standard alternative ventilation agent.
全球市场上某些放射性药物偶尔出现供应中断,这就需要考虑使用替代药物来支持基本核医学检查的连续性。在氙-133和锝-99亚稳态(Tc-99m)二乙三胺五乙酸(DTPA)严重短缺期间,我们机构使用了雾化的Tc-99m羟亚甲基二膦酸盐(HDP),一种传统上用于骨闪烁显像的放射性药物,替代传统的通气剂,用于两例疑似肺栓塞患者。与Tc-99m-DTPA类似,Tc-99m-HDP在我们药房很容易获得且易于配制,患者耐受性良好。用于施用Tc-99m-HDP的递送设备与用于Tc-99m-DTPA的相同,因此,不需要负压室。与Tc-99m-DTPA类似且与氙-133不同,Tc-99m-HDP允许直接比较所有8幅通气-灌注图像。此外,事实证明,Tc-99m-HDP的每剂成本低于Tc-99m-DTPA。尽管Tc-99m-HDP具有这些有利特性,但我们的经验发现了一个重要挑战,即在合理的时间范围内获得大于3的最佳通量超越率,同时尽管颠倒了成像顺序以试图克服这一限制,但仍依次获取通气和灌注图像。尽管我们在这两例患者中使用Tc-99m-HDP的经验是有利的,但在将Tc-99m-HDP纳入标准替代通气剂之前,还需要更多的临床经验和研究。