Reasor M J, Lee P, Kirk R G
Department of Pharmacology, West Virginia University Health Sciences Center, Morgantown 26506.
Exp Mol Pathol. 1990 Aug;53(1):64-71. doi: 10.1016/0014-4800(90)90024-8.
X-ray microanalysis has been used previously to study the accumulation of iodine in alveolar macrophages of rats treated with the iodinated drug, amiodarone. Due to metabolism of the drug in vivo, primarily to desethylamiodarone, it was not possible to identify the source of the iodine signal. In the present study we have utilized primary cell cultures of alveolar macrophages to study the intracellular accumulation of each of these drug species in vitro. Neither drug is metabolized by these cells in culture, permitting characterization of the accumulation of each independent of the other. Cells were incubated with equimolar concentrations of either amiodarone or desethylamiodarone for 42 hr, and X-ray microanalysis of freeze-dried cryosections of cells was used to quantify accumulation by monitoring the iodine signal associated with each drug. For both drug exposures, the highest iodine content was present in amorphous bodies and dense granules, consistent with the pattern following in vivo exposure. Higher levels of desethylamiodarone, compared to amiodarone, were measured in all compartments of the cells. The results of the in vitro investigation further demonstrate the utility of X-ray microanalysis in the study of the cellular response to amiodarone and desethylamiodarone.
X射线微量分析先前已被用于研究用碘化药物胺碘酮治疗的大鼠肺泡巨噬细胞中碘的积累情况。由于该药物在体内的代谢,主要代谢为去乙胺碘酮,因此无法确定碘信号的来源。在本研究中,我们利用肺泡巨噬细胞的原代细胞培养物在体外研究这些药物各自在细胞内的积累情况。在培养过程中,这些细胞均不会代谢这两种药物,从而能够分别表征每种药物的积累情况。将细胞与等摩尔浓度的胺碘酮或去乙胺碘酮孵育42小时,通过监测与每种药物相关的碘信号,利用对细胞冻干冰冻切片进行X射线微量分析来量化积累情况。对于两种药物暴露,最高碘含量均存在于无定形体和致密颗粒中,这与体内暴露后的模式一致。在细胞的所有区室中,所测得的去乙胺碘酮水平均高于胺碘酮。体外研究结果进一步证明了X射线微量分析在研究细胞对胺碘酮和去乙胺碘酮反应中的实用性。