Eisenhut M, Barber J, Taylor D M
Int J Rad Appl Instrum A. 1987;38(7):535-40. doi: 10.1016/0883-2889(87)90201-2.
Palliative treatment of bone pain induced by disseminated bone metastases can be performed with osteotropic, beta(-)-emitting radionuclides. Newly developed 131I labeled benzylidenediphosphonic acid (BDP) derivatives show osteotropic characteristics which suggest that they might possibly be useful radiopharmaceuticals for that purpose. Six BDP derivatives were synthesized with H, OH or NH2 in the 4- and alpha-position. Syntheses were performed by the formal addition of 2 mol of phosphorous acid in the presence of PBr3 to 1 mol of the respective benzonitrile. Transformation of the 4-methoxy and 4-nitro substituents, which were stable during the diphosphonate formation, to 4-HO and 4-NH2 was achieved by hydrolytic ether cleavage in boiling HBr and catalytic hydrogenation with Pd/C, respectively. Transformation of the alpha-amino to alpha-hydroxy group was achieved by the action of NaNO2 in HCl. 4-Hydroxybenzylidenediphosphonic acid (9) was formed unexpectedly during the reaction of 4-hydroxybenzoic acid with H3PO3/PBr3. The addition of 2 mol of phosphorous acid to the benzoic acid was accompanied by an additional reduction at the alpha-carbon. The new BDP derivatives were analyzed by HPLC, NMR and elemental analysis. After labeling with 131I the BDP derivatives were tested in female Sprague-Dawley rats to obtain organ uptake and kinetic data. The various substituents showed an influence on the bone affinity and the uptake in other organs. Among the BDP derivatives tested alpha-amino-(3-[131I]iodo-4-hydroxybenzylidene)diphosphonate (4a) showed the best biological characteristics.
可使用亲骨性、发射β射线的放射性核素对弥漫性骨转移引起的骨痛进行姑息治疗。新开发的131I标记的亚苄基二膦酸(BDP)衍生物显示出亲骨性特征,这表明它们可能是用于该目的的有用放射性药物。合成了6种在4位和α位带有H、OH或NH2的BDP衍生物。合成方法是在PBr3存在下将2摩尔亚磷酸正式加成到1摩尔相应的苄腈中。在二膦酸盐形成过程中稳定的4-甲氧基和4-硝基取代基分别通过在沸腾的HBr中进行水解醚裂解和用Pd/C催化氢化转化为4-HO和4-NH2。通过在HCl中用NaNO2作用将α-氨基转化为α-羟基。在4-羟基苯甲酸与H3PO3/PBr3反应过程中意外形成了4-羟基苄基二膦酸(9)。向苯甲酸中加入2摩尔亚磷酸时,α-碳处会伴随额外的还原反应。通过高效液相色谱法、核磁共振法和元素分析法对新的BDP衍生物进行了分析。用131I标记后,在雌性Sprague-Dawley大鼠中对BDP衍生物进行了测试,以获得器官摄取和动力学数据。各种取代基对骨亲和力和在其他器官中的摄取有影响。在所测试的BDP衍生物中,α-氨基-(3-[131I]碘-4-羟基亚苄基)二膦酸(4a)显示出最佳的生物学特性。