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首页> 外文期刊>Journal of Medicinal Chemistry >Defunctionalized Lobeline Analogues:Structure-Activity of Novel Ligands for the Vesicular Monoamine Transporter
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Defunctionalized Lobeline Analogues:Structure-Activity of Novel Ligands for the Vesicular Monoamine Transporter

机译:去官能化的Lobeline类似物:用于水泡单胺转运蛋白的新型配体的结构活性。

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(-)-Lobeline (2R,6S,10S;la),an antagonist at nicotinic acetylcholine receptors (nAChRs),inhibits the neurochemical and behavioral effects of methamphetamine and inhibits dopamine transporter (DAT) and vesicular monoamine transporter (VMAT2) function.VMAT2 is a target for the development of treatments for methamphetamine abuse.Structural modification of lobeline affords the defunctionalized analogues meso-transdiene (MTD) and lobelane,which have high potency and selectivity for VMAT2.To establish the structure-activity relationships within this novel class of VMAT2 ligands,specific stereochemical forms of MTD,lobelane,and other structurally related analogues have been synthesized.These compounds have been evaluated for inhibition of [~3H]nicotine ([~3H]NIC) binding (alpha4beta2~* nAChR),[~3H]methyllycac-onitine ([~3H]MLA) binding (alpha7~* nAChR),and [~3H]dihydrotetrabenazine ([~3H]DTBZ) binding (VMAT2).Generally,all of these analogues had lower affinities at alpha4beta2~* and alpha7~* nAChRs compared to lobeline,thereby increasing selectivity for VMAT2.The following structural modifications resulted in only modest changes in affinity for VMAT2,affording analogues that were less potent than the lead compound,lobelane:(1) altering the stereochemistry at the C-2 and C-6 positions of the piperidino ring,(2) varying unsaturation in the piperidino C-2 and C-6 substituents,(3) introducing unsaturation into the piperidine ring,(4) ring-opening or eliminating the piperidine ring,and (5) removing the piperidino N-methyl group.Furthermore,incorporating a quaternary ammonium group into defunctionalized lobeline molecules in the cis-series resulted in significant loss of affinity for VMAT2,whereas only a modest change in affinity was obtained in the trans-series.The most potent (K_i = 630 nM) and VMAT2-selective compound evaluated was the N-methyl-2,6-cis-bis(naphthaleneethyl)piperidine analogue 28b (1-NAP-lobelane),in which the phenyl groups of lobelane were replaced with 1-naphthyl moieties.Thus,initial structure-activity relationship studies reveal that the most promising structural changes to the lobeline molecule that lead to enhancement of VMAT2 affinity and selectivity are defunctionalization,affording lobelane and MTD,and replacement of the phenyl rings of lobelane with other aromatic moieties that have a pi-extended structure.
机译:(-)-Lobeline(2R,6S,10S; la)是烟碱乙酰胆碱受体(nAChRs)的拮抗剂,可抑制甲基苯丙胺的神经化学和行为作用,并抑制多巴胺转运蛋白(DAT)和水泡单胺转运蛋白(VMAT2)的功能。是对甲基苯丙胺滥用治疗方法的开发目标。对肝油碱的结构修饰提供了对VMAT2具有高效力和选择性的去官能化的类似物中观跨二烯(MTD)和洛贝烷。合成了VMAT2配体,MTD的特定立体化学形式,叶黄烷和其他与结构相关的类似物。已评估了这些化合物对[〜3H]烟碱([〜3H] NIC)结合(alpha4beta2〜* nAChR),[〜 3H]甲基-烟碱([〜3H] MLA)结合(alpha7〜* nAChR)和[〜3H]二氢丁苯那嗪([〜3H] DTBZ)结合(VMAT2)。通常,所有这些类似物在alpha4beta2〜上具有较低的亲和力*和alpha7〜* nAChRs与肝胆碱相比,增加了对VMAT2的选择性。以下结构修饰仅导致对VMAT2的亲和力发生适度变化,从而提供了比先导化合物效力低的类似物洛贝烷:(1)改变C-2的立体化学和哌啶子基环的C-6位置,(2)改变哌啶子基C-2和C-6取代基的不饱和度,(3)将不饱和度引入哌啶环,(4)开环或消除哌啶环,和( 5)除去哌啶子基的N-甲基。此外,将季铵基团引入顺式系列的去官能化的Lobeline分子中导致对VMAT2的亲和力的显着损失,而反式系列中仅获得了适度的亲和力变化。评估的最有效的(K_i = 630 nM)和VMAT2选择性化合物是N-甲基-2,6-顺式-双(萘乙基)哌啶类似物28b(1-NAP-lobelane),其中Lobelane的苯基为换成1-nap因此,初步的结构-活性关系研究表明,导致VMAT2亲和力和选择性增强的,最有前途的肝叶分子结构变化是去官能化,降低了去甲环烷和MTD的负担,以及用其他芳族化合物取代了去甲环烷的苯环具有pi扩展结构的部分。

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