Clinical Department of Nuclear Medicine, Innsbruck Medical University, Innsbruck, Austria.
J Nucl Med. 2010 Apr;51(4):639-45. doi: 10.2967/jnumed.109.072462.
The diagnosis of invasive pulmonary aspergillosis (IPA) is difficult and lacks specificity and sensitivity. In the pathophysiology of Aspergillus fumigatus, iron plays an essential role as a nutrient during infection. A. fumigatus uses a specific and highly efficient iron uptake mechanism based on iron-complexing ferric ion Fe(III) siderophores, which are a requirement for A. fumigatus virulence. We aimed to evaluate the potential of siderophores radiolabeled with (68)Ga, a positron emitter with complexing properties comparable to those of Fe(III), as a radiopharmaceutical for imaging IPA.
(68)Ga radiolabeling of the A. fumigatus siderophores desferri-triacetylfusarinine C (TAFC) and desferri-ferricrocin (FC) was performed at high specific activity. Stability, protein binding, and log P values were determined. In vitro uptake in A. fumigatus cultures was tested under varying conditions. Biodistribution was studied in healthy noninfected BALB/c mice, and uptake was studied in a model of A. fumigatus infection using immunosuppressed Lewis rats.
High-specific-activity (68)Ga labeling could be achieved, and resulting complexes were stable in serum, toward diethylenetriaminepentaacetic acid and Fe(III) challenge. Both siderophores showed hydrophilic properties ((68)Ga-TAFC, log P = -2.59; (68)Ga-FC, log P = -3.17) with low values of protein binding for (68)Ga-TAFC (<2%). Uptake of both siderophores was highly dependent on the mycelial iron load and could be blocked with an excess (10 microM) of siderophore or NaN(3), indicating specific, energy-dependent uptake. In noninfected mice, (68)Ga-TAFC showed rapid renal excretion and low blood values (1.6 +/- 0.37 percentage injected dose per gram [%ID/g] at 30 min); in urine only intact (68)Ga-TAFC was detected. In contrast, (68)Ga-FC revealed high retention in blood (16.1 +/- 1.07 %ID/g at 90 min) and rapid metabolism. In the rat IPA model, lung uptake of (68)Ga-TAFC was dependent on the severity of infection, with less than 0.04 %ID/g in control rats (n = 5) and 0.29 +/- 0.11 %ID/g in mildly infected (n = 3) and 0.95 +/- 0.37 %ID/g in severely infected (n = 4) rats. PET showed focal accumulation in infected lung tissue.
Both siderophores bound (68)Ga with high affinity, and (68)Ga-TAFC, especially, showed high stability. (68)Ga-TAFC displayed highly selective accumulation by A. fumigatus subspecies in vitro and in vivo. The high and specific uptake by A. fumigatus proves the potential of (68)Ga-labeled siderophores for the specific detection of A. fumigatus during infection. They hold promise as new PET agents for IPA.
评估与三价铁(Fe(III))具有复杂配位性能的正电子发射体[68Ga]标记的曲霉属真菌铁载体作为成像侵袭性肺曲霉病(IPA)的放射性药物的潜力。
采用高比活度对烟曲霉属真菌铁载体去铁三乙酰基-俘精氨酸菌素 C(TAFC)和去铁-铁高利福平(FC)进行[68Ga]标记。测定了其稳定性、蛋白结合率和 log P 值。在不同条件下检测了在烟曲霉属真菌培养物中的摄取情况。在健康未感染 BALB/c 小鼠中进行了生物分布研究,并在使用免疫抑制性 Lewis 大鼠的烟曲霉属真菌感染模型中进行了摄取研究。
可以实现高比活度的[68Ga]标记,且所得络合物在血清中、二乙三胺五乙酸和 Fe(III)的挑战下稳定。两种铁载体均具有亲水性特性([68Ga]-TAFC,log P=-2.59;[68Ga]-FC,log P=-3.17),[68Ga]-TAFC 的蛋白结合率较低(<2%)。两种铁载体的摄取均高度依赖于菌丝体的铁负荷,且可以用过量(10 μM)铁载体或NaN3 阻断,表明为特异性、能量依赖性摄取。在未感染的小鼠中,[68Ga]-TAFC 迅速从肾脏排泄,血液值较低(30 min 时为 1.6±0.37%注入剂量/克 [%ID/g]);尿液中仅检测到完整的[68Ga]-TAFC。相比之下,[68Ga]-FC 在血液中保留较高(90 min 时为 16.1±1.07%ID/g),且代谢迅速。在大鼠 IPA 模型中,[68Ga]-TAFC 的肺部摄取取决于感染的严重程度,对照组(n=5)的摄取小于 0.04%ID/g,轻度感染组(n=3)和重度感染组(n=4)的摄取分别为 0.29±0.11%ID/g和 0.95±0.37%ID/g。PET 显示感染肺组织的局灶性聚集。
两种铁载体均与[68Ga]具有高亲和力结合,尤其是[68Ga]-TAFC,其稳定性较高。[68Ga]-TAFC 在体外和体内均表现出对烟曲霉属真菌亚种的高度选择性积聚。烟曲霉属真菌的高特异性摄取证明了[68Ga]标记的铁载体在感染期间用于检测烟曲霉属真菌的潜力。它们有望成为 IPA 的新型正电子发射断层扫描(PET)剂。