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体内3H标记寡核苷酸的生物分布与代谢。II. 3',5'-封闭寡核苷酸。

Biodistribution and metabolism of internally 3H-labeled oligonucleotides. II. 3',5'-blocked oligonucleotides.

作者信息

Sands H, Gorey-Feret L J, Ho S P, Bao Y, Cocuzza A J, Chidester D, Hobbs F W

机构信息

DuPont Merck Pharmaceutical Company, Wilmington, Delaware 19880.

出版信息

Mol Pharmacol. 1995 Mar;47(3):636-46.

PMID:7700261
Abstract

The pharmacokinetics and metabolism of four radiolabeled phosphodiester oligonucleotides with 3'- and 5'-blocked ends were studied in mice and compared with previously studied, unblocked, all-phosphodiester and all-phosphorothioate oligonucleotides. The radiolabel was a tritiated methyl group enzymatically attached at an internal cytidine. The ends of the blocked phosphodiester oligonucleotides were protected by cyclization or by incorporation of either phosphorothioate or methylphosphonate linkages. Although these modifications protected the blocked oligonucleotides from degradation by exonucleases present in mouse serum, degradation initiated by endonucleases was 50% complete in 0.5-5 hr. After intravenous injection, the blocked oligonucleotides were much less stable than the all-phosphorothioate oligonucleotide and only marginally more stable than the previously studied, unblocked phosphodiester oligonucleotide. Even a "chimeric" blocked oligonucleotide with 16 phosphorothioate linkages and eight contiguous phosphodiester linkages was rapidly degraded. Despite the favorable serum binding, tissue accumulation, and stability observed with phosphorothioate oligonucleotides, these properties did not provide the chimeric oligonucleotide access to a compartment where its phosphodiester linkages were stable. In other respects, the blocked and chimeric phosphodiester oligonucleotides also resembled the unblocked phosphodiester oligonucleotide; radiolabel was cleared rapidly from the blood, there was little evidence of tissue accumulation, high performance liquid chromatographic analysis of tissue extracts showed extremely rapid degradation to mononucleotides, and only mononucleotide metabolites were present in urine. In summary, blocked phosphodiester oligonucleotides are rapidly attacked by endonucleases present in mice. Unless this problem is less serious in primates, such blocked oligonucleotides will be relatively unattractive candidates for drug development.

摘要

研究了四种带有3'-和5'-封闭末端的放射性标记磷酸二酯寡核苷酸在小鼠体内的药代动力学和代谢情况,并与之前研究的未封闭的全磷酸二酯和全硫代磷酸酯寡核苷酸进行了比较。放射性标记是通过酶促反应连接在内侧胞苷上的氚化甲基。封闭的磷酸二酯寡核苷酸的末端通过环化或掺入硫代磷酸酯或甲基膦酸酯键进行保护。尽管这些修饰可保护封闭的寡核苷酸不被小鼠血清中的核酸外切酶降解,但核酸内切酶引发的降解在0.5 - 5小时内完成了50%。静脉注射后,封闭的寡核苷酸比全硫代磷酸酯寡核苷酸稳定性差得多,仅比之前研究的未封闭磷酸二酯寡核苷酸稍稳定一些。即使是具有16个硫代磷酸酯键和8个连续磷酸二酯键的“嵌合”封闭寡核苷酸也会迅速降解。尽管硫代磷酸酯寡核苷酸具有良好的血清结合、组织蓄积和稳定性,但这些特性并未使嵌合寡核苷酸进入其磷酸二酯键稳定的区室。在其他方面,封闭的和嵌合的磷酸二酯寡核苷酸也与未封闭的磷酸二酯寡核苷酸相似;放射性标记从血液中迅速清除,几乎没有组织蓄积的证据,组织提取物的高效液相色谱分析显示其迅速降解为单核苷酸,尿液中仅存在单核苷酸代谢产物。总之,封闭的磷酸二酯寡核苷酸会被小鼠体内的核酸内切酶迅速攻击。除非在灵长类动物中这个问题不那么严重,否则这类封闭的寡核苷酸作为药物开发的候选物相对缺乏吸引力。

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