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4-(9-anthracylmethyl)-5-(1-methoxycarbonyl-4-piperidyl)-3-isoxazolol | 321904-92-1

中文名称
——
中文别名
——
英文名称
4-(9-anthracylmethyl)-5-(1-methoxycarbonyl-4-piperidyl)-3-isoxazolol
英文别名
5-(1-methoxycarbonyl-4-piperidyl)-4-(9-anthracylmethyl)-3-isoxazolol;Methyl 4-[4-(anthracen-9-ylmethyl)-3-oxo-1,2-oxazol-5-yl]piperidine-1-carboxylate
4-(9-anthracylmethyl)-5-(1-methoxycarbonyl-4-piperidyl)-3-isoxazolol化学式
CAS
321904-92-1
化学式
C25H24N2O4
mdl
——
分子量
416.477
InChiKey
AWZSSCDREIWPQL-UHFFFAOYSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

计算性质

  • 辛醇/水分配系数(LogP):
    4.6
  • 重原子数:
    31
  • 可旋转键数:
    4
  • 环数:
    5.0
  • sp3杂化的碳原子比例:
    0.28
  • 拓扑面积:
    67.9
  • 氢给体数:
    1
  • 氢受体数:
    4

反应信息

  • 作为反应物:
    描述:
    4-(9-anthracylmethyl)-5-(1-methoxycarbonyl-4-piperidyl)-3-isoxazolol氢溴酸溶剂黄146 作用下, 反应 16.0h, 以58%的产率得到4-(Anthracen-9-ylmethyl)-5-piperidin-4-yl-1,2-oxazol-3-one;hydrobromide
    参考文献:
    名称:
    Novel Class of Potent 4-Arylalkyl Substituted 3-Isoxazolol GABAA Antagonists:  Synthesis, Pharmacology, and Molecular Modeling
    摘要:
    A number of analogues of the low-efficacy partial GABA(A) agonist 5-(4-piperidyl)-3-isoxazolol (4-PIOL, 5), in which the 4-position of the 3-isoxazolol ring was substituted by different groups, were synthesized and tested as GABA(A) receptor ligands. Substituents of different size and structural flexibility such as alkyl, phenylalkyl, diphenylalkyl, and naphthylalkyl were explored. Pharmacological characterization of the synthesized compounds was carried out using receptor binding assays and by electrophysiological experiments using whole-cell patch-clamp techniques. Whereas none of these compounds significantly affected GABA(B) receptor sites or GABA uptake, they did show affinity for the GABA(A) receptor site. While alkyl or benzyl substitution, compounds 7a-h, provided receptor affinities comparable with that of 5 (K-i = 9.1 muM), diphenylalkyl and naphthylalkyl substitution, as in compounds 7m-t, resulted in a dramatic increase in affinity relative to 5. The 3,3-diphenylpropyl and the 2-naphthylmethyl analogues, compounds 7s and 7m, respectively, showed the highest affinities of the series (K-i = 0.074 muM and K-i = 0.049 muM). In whole-cell patch-clamp recordings from cultured cerebral cortical neurons, all of the tested compounds were able to inhibit the effect of the specific GABA(A) agonist isoguvacine (1), compounds 7m and 7s showing antagonist potency (IC50 = 0.37 muM and IC50 = 0.02 muM) comparable with or markedly higher than that of the standard GABA(A) antagonist 4 (IC50 = 0.24 muM). Highly potent convulsant activity was demonstrated in mice with compounds 7m (ED50 = 0.024 mumol/kg) and 7s (ED50 = 0.21 mumol/kg) after intracerebroventricular administration, whereas no effects were found after subcutaneous administration. According to a previously proposed pharmacophore model for GABA(A) receptor agonists, a receptor cavity in the vicinity of the 4-position of the 3-isoxazolol ring in 4-PIOL exists. A molecular modeling study, based on compounds 7o,m,l,q,s, was performed to explore the dimensions and other properties of the receptor cavity. This study demonstrates the importance of the arylalkyl substituents in 7m and 7s and the considerable dimensions of this proposed receptor cavity.
    DOI:
    10.1021/jm020027o
  • 作为产物:
    参考文献:
    名称:
    A Novel Class of Potent 3-Isoxazolol GABAA Antagonists:  Design, Synthesis, and Pharmacology
    摘要:
    DOI:
    10.1021/jm000371q
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文献信息

  • A Novel Class of Potent 3-Isoxazolol GABA<sub>A</sub> Antagonists:  Design, Synthesis, and Pharmacology
    作者:Bente Frølund、Lena Tagmose、Tommy Liljefors、Tine Bryan Stensbøl、Christine Engblom、Uffe Kristiansen、Povl Krogsgaard-Larsen
    DOI:10.1021/jm000371q
    日期:2000.12.1
  • Novel Class of Potent 4-Arylalkyl Substituted 3-Isoxazolol GABA<sub>A</sub> Antagonists:  Synthesis, Pharmacology, and Molecular Modeling
    作者:Bente Frølund、Anne T. Jørgensen、Lena Tagmose、Tine B. Stensbøl、Henrik T. Vestergaard、Christine Engblom、Uffe Kristiansen、Connie Sanchez、Povl Krogsgaard-Larsen、Tommy Liljefors
    DOI:10.1021/jm020027o
    日期:2002.6.1
    A number of analogues of the low-efficacy partial GABA(A) agonist 5-(4-piperidyl)-3-isoxazolol (4-PIOL, 5), in which the 4-position of the 3-isoxazolol ring was substituted by different groups, were synthesized and tested as GABA(A) receptor ligands. Substituents of different size and structural flexibility such as alkyl, phenylalkyl, diphenylalkyl, and naphthylalkyl were explored. Pharmacological characterization of the synthesized compounds was carried out using receptor binding assays and by electrophysiological experiments using whole-cell patch-clamp techniques. Whereas none of these compounds significantly affected GABA(B) receptor sites or GABA uptake, they did show affinity for the GABA(A) receptor site. While alkyl or benzyl substitution, compounds 7a-h, provided receptor affinities comparable with that of 5 (K-i = 9.1 muM), diphenylalkyl and naphthylalkyl substitution, as in compounds 7m-t, resulted in a dramatic increase in affinity relative to 5. The 3,3-diphenylpropyl and the 2-naphthylmethyl analogues, compounds 7s and 7m, respectively, showed the highest affinities of the series (K-i = 0.074 muM and K-i = 0.049 muM). In whole-cell patch-clamp recordings from cultured cerebral cortical neurons, all of the tested compounds were able to inhibit the effect of the specific GABA(A) agonist isoguvacine (1), compounds 7m and 7s showing antagonist potency (IC50 = 0.37 muM and IC50 = 0.02 muM) comparable with or markedly higher than that of the standard GABA(A) antagonist 4 (IC50 = 0.24 muM). Highly potent convulsant activity was demonstrated in mice with compounds 7m (ED50 = 0.024 mumol/kg) and 7s (ED50 = 0.21 mumol/kg) after intracerebroventricular administration, whereas no effects were found after subcutaneous administration. According to a previously proposed pharmacophore model for GABA(A) receptor agonists, a receptor cavity in the vicinity of the 4-position of the 3-isoxazolol ring in 4-PIOL exists. A molecular modeling study, based on compounds 7o,m,l,q,s, was performed to explore the dimensions and other properties of the receptor cavity. This study demonstrates the importance of the arylalkyl substituents in 7m and 7s and the considerable dimensions of this proposed receptor cavity.
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同类化合物

齐斯托醌 黄决明素 马普替林杂质E(N-甲基马普替林) 马普替林杂质D 马普替林 颜料黄199 颜料黄147 颜料黄123 颜料黄108 颜料红89 颜料红85 颜料红251 颜料红177 颜料紫27 顺式-1-(9-蒽基)-2-硝基乙烯 阿美蒽醌 阳离子蓝3RL 长蠕孢素 镁蒽四氢呋喃络合物 镁蒽 锈色洋地黄醌醇 锂钠2-[[4-[[3-[(4-氨基-9,10-二氧代-3-磺基-1-蒽基)氨基]-2,2-二甲基-丙基]氨基]-6-氯-1,3,5-三嗪-2-基]氨基]苯-1,4-二磺酸酯 锂胭脂红 链蠕孢素 铷离子载体I 铝洋红 铂(2+)二氯化1-({2-[(2-氨基乙基)氨基]乙基}氨基)蒽-9,10-二酮(1:1) 钾6,11-二氧代-6,11-二氢-1H-蒽并[1,2-d][1,2,3]三唑-4-磺酸酯 钠6,11-二氧代-6,11-二氢-1H-蒽并[1,2-d][1,2,3]三唑-4-磺酸酯 钠4-({4-[乙酰基(乙基)氨基]苯基}氨基)-1-氨基-9,10-二氧代-9,10-二氢-2-蒽磺酸酯 钠2-[(4-氨基-9,10-二氧代-3-磺基-9,10-二氢-1-蒽基)氨基]-4-{[2-(磺基氧基)乙基]磺酰基}苯甲酸酯 钠1-氨基-9,10-二氢-4-[[4-(1,1-二甲基乙基)-2-甲基苯基]氨基]-9,10-二氧代蒽-2-磺酸盐 钠1-氨基-4-[(3-{[(4-甲基苯基)磺酰基]氨基}苯基)氨基]-9,10-二氧代-9,10-二氢-2-蒽磺酸酯 钠1-氨基-4-[(3,4-二甲基苯基)氨基]-9,10-二氧代-9,10-二氢-2-蒽磺酸酯 钠1-氨基-4-(1,3-苯并噻唑-2-基硫基)-9,10-二氧代蒽-2-磺酸盐 醌茜隐色体 醌茜素 酸性蓝127:1 酸性紫48 酸性紫43 酸性兰62 酸性兰25 酸性兰182 酸性兰140 酸性兰138 酸性兰 129 透明蓝R 透明蓝AP 透明红FBL 透明紫BS