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一类2-氨基-3-羟基丙酰胺和2-氨基乙酰胺衍生物的合成及抗惊厥活性

Synthesis and anticonvulsant activity of a class of 2-amino 3-hydroxypropanamide and 2-aminoacetamide derivatives.

作者信息

Ghidini Eleonora, Delcanale Maurizio, De Fanti Renato, Rizzi Andrea, Mazzuferi Manuela, Rodi Donata, Simonato Michele, Lipreri Milco, Bassani Franco, Battipaglia Loredana, Bergamaschi Marco, Villetti Gino

机构信息

R&D Department, Chiesi Farmaceutici S.p.a., Via Palermo 26/A, 43100 Parma, Italy.

出版信息

Bioorg Med Chem. 2006 May 15;14(10):3263-74. doi: 10.1016/j.bmc.2005.12.064. Epub 2006 Feb 3.

Abstract

Several studies have demonstrated that N-substituted amino acid derivatives exhibit weak anticonvulsant activities in vivo. In the present study, a series of amides of aminoacids structurally related to aminoacetamide have been synthesised and investigated for anticonvulsant activity. Among the molecules investigated, those containing a bicyclic (tetralinyl, indanyl) group linked to the aminoacetamide chain (40, 47 and 59) were among the most active as anticonvulsants (ED50 > 10, <100 mg/kg after oral administration) against tonic seizures in the mouse maximal electroshock, bicuculline and picrotoxin tests at doses devoid of neurotoxic activity. Altogether, these results suggest the described compounds as a class of orally available anticonvulsants. The ability of these compounds to partially block veratridine-induced aspartate efflux from rat cortical synaptosomes suggests that their anticonvulsant activity may be only partly the consequence of an interaction with neuronal voltage-dependent sodium channels. Some of the most potent compounds appear worthy of a further investigation aimed at assessing their anticonvulsant activity in other models and at elucidating the underlying mechanism of action.

摘要

多项研究表明,N-取代氨基酸衍生物在体内表现出微弱的抗惊厥活性。在本研究中,合成了一系列与氨基乙酰胺结构相关的氨基酸酰胺,并对其抗惊厥活性进行了研究。在所研究的分子中,那些含有与氨基乙酰胺链相连的双环(四氢萘基、茚满基)基团的分子(40、47和59)在小鼠最大电休克、荷包牡丹碱和印防己毒素试验中,作为抗惊厥药(口服给药后ED50>10、<100mg/kg)对强直性惊厥最为有效,且在无神经毒性活性的剂量下有效。总之,这些结果表明所描述的化合物是一类口服有效的抗惊厥药。这些化合物能够部分阻断藜芦碱诱导的大鼠皮质突触体天冬氨酸外流,这表明它们的抗惊厥活性可能只是与神经元电压依赖性钠通道相互作用的部分结果。一些最有效的化合物似乎值得进一步研究,以评估它们在其他模型中的抗惊厥活性,并阐明其潜在的作用机制。

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