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Exploring the structural basis of neurotoxicity in C-17-polyacetylenes isolated from water hemlock

机译:探索从铁杉中分离出的C-17-聚乙炔的神经毒性的结构基础

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Water hemlock, Cicuta virosa, belonging to the Umbelliferae, is well-known as a toxic plant responsible for lethal poisonings in humans as well as animals, causing tonic and clonic convulsions and respiratory paralysis. Cicutoxin (1), being a major violent toxin of the plant, is a chemical in the class of C-17-polyacetylenes bearing a long;c-bond conjugation system, a terminal hydroxyl, and an allylic hydroxyl in its structure, and a variety of ifs analogues have been isolated from the plant. In the present study, various derivatives of these toxins were synthesized through acetylation, methylation, and oxidation of cicutoxin(1) and virol A (3) and B (4). 1-Dehydroxyvirol A (28) was prepared through the coupling of (7S)-dodeca-3,5-dien-1-yn-7-ol and 1-iodopentyne under Sonogashira's conditions. A monoacetylenic compound (29) was also prepared through the coupling of (5S)-1-chlorodeca-1,3-dien-5-ol and 1-iodopentyn-5-ol. The structure-activity relationships involved in the acute toxicity of cicutoxin derivatives in mice were investigated, and the length and geometry of rr-bond conjugation and the O-functional groups were found to be important for activity. The potency in inhibition of the specific binding of the noncompetitive GABA antagonist, [H-3]EBOB, to GABA-gated Cl- channels of GABA receptors in rat brain cortex was found to be correlated with acute toxicity, indicating that the ability to bind to these channels plays an important role in the acute toxicity of these compounds. [References: 16]
机译:属于伞形科的铁杉(Cicuta virosa)是一种有毒植物,众所周知,是一种有毒植物,可导致人类和动物致命中毒,导致滋补和阵挛性抽搐和呼吸麻痹。 Cicutoxin(1)是植物的主要暴力毒素,是C-17-聚乙炔类的化学物质,在其结构中具有长的c键共轭体系,末端羟基和烯丙基羟基,以及已从植物中分离出多种ifs类似物。在当前的研究中,这些毒素的各种衍生物是通过西cut毒素(1)和病毒A(3)和B(4)的乙酰化,甲基化和氧化合成的。通过在Sonogashira的条件下将(7S)-dodeca-3,5-dien-1-yn-7-ol和1-iodopentyne偶联制备1-Dehydroxyvirol A(28)。还通过(5S)-1-氯癸-1,3-二烯-5-醇和1-碘戊炔-5-醇的偶联制备单炔化合物(29)。研究了西葫芦毒素衍生物对小鼠的急性毒性所涉及的构效关系,发现rr键结合的长度和几何形状以及O-官能团对活性很重要。发现抑制非竞争性GABA拮抗剂[H-3] EBOB与大鼠大脑皮层GABA受体的GABA门控Cl-通道特异性结合的能力与急性毒性相关,表明其结合能力这些通道的毒性在这些化合物的急性毒性中起重要作用。 [参考:16]

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