Gent Yoony Y J, Weijers Karin, Molthoff Carla F M, Windhorst Albert D, Huisman Marc C, Smith Desirée E C, Kularatne Sumith A, Jansen Gerrit, Low Philip S, Lammertsma Adriaan A, van der Laken Conny J
Arthritis Res Ther. 2013 Mar 1;15(2):R37. doi: 10.1186/ar4191.
Detection of (subclinical) synovitis is relevant for both early diagnosis and monitoring of therapy of rheumatoid arthritis (RA). Previously, the potential of imaging (sub)clinical arthritis was demonstrated by targeting the translocator protein in activated macrophages using (R)-[11C]PK11195 and positron emission tomography (PET). Images, however, also showed significant peri-articular background activity. The folate receptor (FR)-β is a potential alternative target for imaging activated macrophages. Therefore, the PET tracer [18F]fluoro-PEG-folate was synthesized and evaluated in both in vitro and ex vivo studies using a methylated BSA induced arthritis model.
[18F]fluoro-PEG-folate was synthesized in a two-step procedure. Relative binding affinities of non-radioactive fluoro-PEG-folate, folic acid and naturally circulating 5-methyltetrahydrofolate (5-Me-THF) to FR were determined using KB cells with high expression of FR. Both in vivo [18F]fluoro-PEG-folate PET and ex vivo tissue distribution studies were performed in arthritic and normal rats and results were compared with those of the established macrophage tracer (R)-[11C]PK11195.
[18F]fluoro-PEG-folate was synthesized with a purity >97%, a yield of 300 to 1,700 MBq and a specific activity between 40 and 70 GBq/µmol. Relative in vitro binding affinity for FR of F-PEG-folate was 1.8-fold lower than that of folic acid, but 3-fold higher than that of 5-Me-THF. In the rat model, [18F]fluoro-PEG-folate uptake in arthritic knees was increased compared with both contralateral knees and knees of normal rats. Uptake in arthritic knees could be blocked by an excess of glucosamine-folate, consistent with [18F]fluoro-PEG-folate being specifically bound to FR. Arthritic knee-to-bone and arthritic knee-to-blood ratios of [18F]fluoro-PEG-folate were increased compared with those of (R)-[11C]PK11195. Reduction of 5-Me-THF levels in rat plasma to those mimicking human levels increased absolute [18F]fluoro-PEG-folate uptake in arthritic joints, but without improving target-to-background ratios.
The novel PET tracer [18F]fluoro-PEG-folate, designed to target FR on activated macrophages provided improved contrast in a rat model of arthritis compared with the accepted macrophage tracer (R)-[11C]PK11195. These results warrant further exploration of [18F]fluoro-PEG-folate as a putative PET tracer for imaging (sub)clinical arthritis in RA patients.
(亚临床)滑膜炎的检测对于类风湿性关节炎(RA)的早期诊断和治疗监测都具有重要意义。此前,通过使用(R)-[11C]PK11195靶向活化巨噬细胞中的转位蛋白,并结合正电子发射断层扫描(PET),已证明成像(亚)临床关节炎的潜力。然而,图像也显示出明显的关节周围背景活性。叶酸受体(FR)-β是成像活化巨噬细胞的潜在替代靶点。因此,合成了PET示踪剂[18F]氟-聚乙二醇-叶酸,并使用甲基化牛血清白蛋白诱导的关节炎模型进行了体外和体内研究。
[18F]氟-聚乙二醇-叶酸通过两步法合成。使用高表达FR的KB细胞测定非放射性氟-聚乙二醇-叶酸、叶酸和天然循环的5-甲基四氢叶酸(5-Me-THF)与FR的相对结合亲和力。在关节炎大鼠和正常大鼠中进行了体内[18F]氟-聚乙二醇-叶酸PET和体外组织分布研究,并将结果与已有的巨噬细胞示踪剂(R)-[11C]PK11195进行比较。
[18F]氟-聚乙二醇-叶酸合成的纯度>97%,产率为300至1700MBq,比活度在40至70GBq/µmol之间。F-聚乙二醇-叶酸对FR的体外相对结合亲和力比叶酸低1.8倍,但比5-Me-THF高3倍。在大鼠模型中,与对侧膝关节和正常大鼠的膝关节相比,关节炎膝关节对[18F]氟-聚乙二醇-叶酸的摄取增加。过量的葡糖胺-叶酸可阻断关节炎膝关节的摄取,这与[18F]氟-聚乙二醇-叶酸特异性结合FR一致。与(R)-[11C]PK11195相比,[18F]氟-聚乙二醇-叶酸的关节炎膝关节与骨骼及关节炎膝关节与血液的比值增加。将大鼠血浆中5-Me-THF水平降低至模拟人类水平可增加关节炎关节中[18F]氟-聚乙二醇-叶酸的绝对摄取,但未改善靶本底比值。
设计用于靶向活化巨噬细胞上FR的新型PET示踪剂[18F]氟-聚乙二醇-叶酸,与公认的巨噬细胞示踪剂(R)-[11C]PK11195相比,在大鼠关节炎模型中提供了更好的对比度。这些结果值得进一步探索[18F]氟-聚乙二醇-叶酸作为RA患者成像(亚)临床关节炎的潜在PET示踪剂。