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放射性碘化磷脂醚立体异构体的合成与生物学评价

Synthesis and biological evaluation of radioiodinated phospholipid ether stereoisomers.

作者信息

Rampy M A, Pinchuk A N, Weichert J P, Skinner R W, Fisher S J, Wahl R L, Gross M D, Counsell R E

机构信息

Department of Pharmacology, University of Michigan Medical School, Ann Arbor 48109-0632, USA.

出版信息

J Med Chem. 1995 Aug 4;38(16):3156-62. doi: 10.1021/jm00016a019.

DOI:10.1021/jm00016a019
PMID:7636878
Abstract

Radioiodinated phospholipid ethers have shown the remarkable ability to selectively accumulate in a variety of animal tumors as well as in human tumor xenografts. It has been suggested that this tumor avidity may arise as a consequence of metabolic differences between tumor and corresponding normal tissue. One such compound, 1-O-[12-(m-iodophenyl)dodecyl]-2-O-methyl-rac-glycero-3-phosphocholine (NM-294), contains a chiral center at the sn-2 position. The unnatural S- and natural R-enantiomers (4 and 5, respectively) of NM-294 were synthesized in order to provide further information on the mechanism(s) responsible for the tumor avidity of phospholipid ethers. In vitro cytotoxicity studies demonstrated a lack of stereospecificity. Biodistribution studies in rats bearing the Walker 256 tumor demonstrated the S- and R-isomers to have similar tissue uptake at 24 and 48 h after administration. Tumor-to-blood ratios at 24 h were 11.1 and 11.0 for the S- and R-isomers, respectively. In addition, gamma-camera scintigrams of tumor-bearing rats at various time points after iv administration of the S- and R-isomers did not show any qualitative differences in the distribution of radioactivity. Prior studies have shown that rac-NM-294 was not a substrate for phosphatidylcholine specific phospholipase C, but was a substrate for two forms of phospholipase D (PLD). Therefore, metabolism studies with 4 and 5 with various forms of PLD were performed. PLD from cabbage demonstrated a degree of stereoselectivity. In the presence of 1% ethanol, the R-isomer was metabolized to the greatest extent, followed by rac-NM-294 and the S-isomer. PLD isolated from Streptomyces chromofuscus failed to demonstrate any stereoselectivity. The results suggest that the mechanism(s) of retention of these compounds in tumors may not involve a highly stereoselective component.

摘要

放射性碘化磷脂醚已显示出在多种动物肿瘤以及人肿瘤异种移植模型中选择性积聚的显著能力。有人提出,这种肿瘤亲和力可能是肿瘤与相应正常组织之间代谢差异的结果。一种这样的化合物,1-O-[12-(间碘苯基)十二烷基]-2-O-甲基-rac-甘油-3-磷酸胆碱(NM-294),在sn-2位含有一个手性中心。合成了NM-294的非天然S-对映体和天然R-对映体(分别为4和5),以便提供有关磷脂醚肿瘤亲和力的机制的更多信息。体外细胞毒性研究表明缺乏立体特异性。在携带Walker 256肿瘤的大鼠中进行的生物分布研究表明,S-异构体和R-异构体在给药后24小时和48小时具有相似的组织摄取。S-异构体和R-异构体在24小时时的肿瘤与血液比值分别为11.1和11.0。此外,在静脉注射S-异构体和R-异构体后的不同时间点,对携带肿瘤的大鼠进行的γ相机闪烁扫描未显示放射性分布有任何定性差异。先前的研究表明,rac-NM-294不是磷脂酰胆碱特异性磷脂酶C的底物,但却是两种形式的磷脂酶D(PLD)的底物。因此,用4和5与各种形式的PLD进行了代谢研究。来自卷心菜的PLD表现出一定程度的立体选择性。在1%乙醇存在下,R-异构体代谢程度最大,其次是rac-NM-294和S-异构体。从暗褐链霉菌中分离出的PLD未显示出任何立体选择性。结果表明,这些化合物在肿瘤中的保留机制可能不涉及高度立体选择性成分。

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Synthesis and biological evaluation of radioiodinated phospholipid ether stereoisomers.放射性碘化磷脂醚立体异构体的合成与生物学评价
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Synthesis and biological evaluation of radioiodinated phospholipid ether analogs.放射性碘化磷脂醚类似物的合成与生物学评价
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