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抗艾滋病药物。52. 羟甲基(3'R,4'R)-3',4'-二-O-(S)-樟脑酰基-(+)-顺式凯刺内酯衍生物的合成及其抗HIV活性

Anti-AIDS agents. 52. Synthesis and anti-HIV activity of hydroxymethyl (3'R,4'R)-3',4'-di-O-(S)-camphanoyl-(+)-cis-khellactone derivatives.

作者信息

Xie Lan, Yu Donglei, Wild Carl, Allaway Graham, Turpin Jim, Smith Philip C, Lee Kuo-Hsiung

机构信息

Natural Products Laboratory, School of Pharmacy, University of North Carolina, Chapel Hill, North Carolina 27599, USA.

出版信息

J Med Chem. 2004 Jan 29;47(3):756-60. doi: 10.1021/jm030416y.

Abstract

To enhance the water solubility and oral bioavailability of DCK analogues, 12 new mono- and disubstituted (3'R,4'R)-3',4'-di-O-(S)-camphanoyl-(+)-cis-khellactone (DCK) analogues were synthesized and evaluated for inhibition of HIV-1 replication in H9 lymphocytes. 3-Hydroxymethyl-4-methyl-DCK (4c) exhibited significant anti-HIV activity in H9 lymphocytes and primary peripheral blood mononuclear cells with EC(50) values of 0.004 and 0.024 microM, respectively. Although this compound was not as potent as 4-methyl-DCK (2) and 3-bromomethyl-4-methyl-DCK (4a), it provides increased water solubility and possible linkage to other moieties. Of particular note, 4c exhibits moderate oral bioavailability (15%) when administered as a carboxymethylcellulose suspension to rats, whereas 2 is not orally bioavailable in the same formulation. Further studies on mechanism of action suggest that 4c inhibits the production of double-stranded viral DNA from the single-stranded DNA intermediate. In addition, 4a is the most potent compound in this series of new analogues, with EC(50) and TI values of 0.00011 microM and 189,600, respectively. Thus, further modification at the 3-position of the coumarin ring can improve the potency of new DCK analogues.

摘要

为提高DCK类似物的水溶性和口服生物利用度,合成了12种新的单取代和双取代(3'R,4'R)-3',4'-二-O-(S)-樟脑酰基-(+)-顺式凯拉内酯(DCK)类似物,并评估了它们对H9淋巴细胞中HIV-1复制的抑制作用。3-羟甲基-4-甲基-DCK(4c)在H9淋巴细胞和原代外周血单核细胞中表现出显著的抗HIV活性,其EC(50)值分别为0.004和0.024 microM。尽管该化合物不如4-甲基-DCK(2)和3-溴甲基-4-甲基-DCK(4a)有效,但它提高了水溶性,并可能与其他部分连接。特别值得注意的是,当以羧甲基纤维素混悬液给大鼠给药时,4c表现出中等的口服生物利用度(15%),而2在相同制剂中无口服生物利用度。对作用机制的进一步研究表明,4c抑制单链DNA中间体产生双链病毒DNA。此外,4a是该系列新类似物中最有效的化合物,其EC(50)和TI值分别为0.00011 microM和189,600。因此,在香豆素环的3位进行进一步修饰可以提高新DCK类似物的效力。

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