Rich J N, Elion G B, Wellner D, Colvin O M, Groothuis D R, Hilton J H, Schlageter K E, Bigner D D, Griffith O W, Friedman H S
Department of Medicine, Johns Hopkins Hospital, Baltimore, MD 21205, USA.
Cancer Chemother Pharmacol. 1995;36(5):379-84. doi: 10.1007/BF00686186.
We have previously shown that diet restriction-induced depletion of large neutral amino acids (LNAAs) in murine plasma to 46% of control significantly enhances intracranial delivery of melphalan without enhancing delivery to other organs. Studies have now been conducted to determine whether more substantial LNAA depletion could further enhance intracranial delivery of melphalan. Treatment with L-amino acid oxidase (LOX) significantly depleted murine plasma LNAAs: phenylalanine, leucine, and tyrosine (> 95%); methionine (83%); isoleucine (70%); and valine (46%). Experiments evaluating the intracellular uptake of melphalan and high-pressure liquid chromatography quantitation of melphalan metabolites revealed, however, that melphalan is rapidly degraded in the presence of LOX, and that the timing of the administration of melphalan following the use of LOX to deplete LNAAs is crucial. Conditions were found under which LOX-mediated degradation of melphalan was minimized and LNAA depletion was maximized, resulting in a potentiation of the antitumor effect of melphalan on human glioma xenografts in nude mice. Such potentiation could not be obtained using diet restriction alone.
我们之前已经表明,饮食限制导致小鼠血浆中的大中性氨基酸(LNAA)耗竭至对照水平的46%,可显著增强美法仑的颅内递送,而不会增强其向其他器官的递送。现已开展研究以确定更大量的LNAA耗竭是否能进一步增强美法仑的颅内递送。用L-氨基酸氧化酶(LOX)进行治疗可显著耗尽小鼠血浆中的LNAA:苯丙氨酸、亮氨酸和酪氨酸(>95%);蛋氨酸(83%);异亮氨酸(70%);以及缬氨酸(46%)。然而,评估美法仑细胞内摄取情况以及对美法仑代谢物进行高压液相色谱定量的实验表明,在有LOX存在的情况下美法仑会迅速降解,并且在使用LOX耗尽LNAA后给予美法仑的时间至关重要。已发现一些条件,在这些条件下美法仑的LOX介导降解降至最低,而LNAA耗竭达到最大,从而增强了美法仑对裸鼠人胶质瘤异种移植物的抗肿瘤作用。单独使用饮食限制无法获得这种增强效果。