首页> 外文期刊>Journal of Medicinal Chemistry >Selective protection and functionalization of morphine: synthesis and opioid receptor binding properties of 3-amino-3-desoxymorphine derivatives.
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Selective protection and functionalization of morphine: synthesis and opioid receptor binding properties of 3-amino-3-desoxymorphine derivatives.

机译:吗啡的选择性保护和功能化:3-氨基-3-脱氧吗啡衍生物的合成和阿片样物质受体结合特性。

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As part of an effort to identify novel opioid receptor interactive agents, we recently prepared a series of 8-(substituted)amino analogues of cyclazocine. We found the chiral 8-phenylamino (NHC(6)H(5)) cyclazocine derivative to have subnanomolar affinity for kappa opioid receptors and a 2-fold lower affinity for mu, opioid receptors. To determine if the benefits of (substituted)amino groups could be extended to the morphine core structure, we have made five novel 3-amino-3-desoxymorphine derivatives of general structure 5 where RR'N = H(2)N, CH(3)NH, (CH(3))(2)N, C(6)H(5)NH, and C(6)H(5)CH(2)NH. Relative to morphine, these derivatives had 38-273-fold, 11-41-fold, and 10-141-fold lower affinity for mu, delta, and kappa opioid receptors, respectively. Target compounds were made via Pd-catalyzed amination of a morphine 3-trifluoromethylsulfonate substrate where the 6-OH group was protected with a tert-butyldiphenylsilyl group. To make 6-tert-butyldiphenylsilyloxymorphine selectively, a new high-yield method was developed whereby morphine was bis-silylated using normal conditions followed by selective removal of the 3-tert-butyldiphenylsilyl group with catalytic tetrabutylammonium fluoride.
机译:作为鉴定新型阿片受体相互作用剂的努力的一部分,我们最近制备了环唑嗪的一系列8-(取代)氨基类似物。我们发现手性8-苯基氨基(NHC(6)H(5))环偶氮衍生物对kappa阿片受体具有亚纳摩尔亲和力,对mu,阿片受体具有较低的2倍亲和力。为了确定(取代)氨基的益处是否可以扩展到吗啡核心结构,我们制备了5个通式5的新颖3-氨基-3-脱氧吗啡衍生物,其中RR'N = H(2)N,CH( 3)NH,(CH(3))(2)N,C(6)H(5)NH和C(6)H(5)CH(2)NH。相对于吗啡,这些衍生物对mu,delta和kappa类阿片受体的亲和力分别低38-273倍,11-41倍和10-141倍。通过Pd催化的吗啡3-三氟甲基磺酸酯底物的氨化制备目标化合物,其中6-OH基团被叔丁基二苯基甲硅烷基保护。为了选择性地制备6-叔丁基二苯基甲硅烷基氧基吗啡,开发了一种新的高产率方法,其中在正常条件下将吗啡双甲硅烷基化,然后用催化四丁基氟化铵选择性除去3-叔丁基二苯基甲硅烷基甲氧基。

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