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首页> 外文期刊>Archives of Toxicology >Toxicological profiles of selected synthetic cannabinoids showing high binding affinities to the cannabinoid receptor subtype CB1
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Toxicological profiles of selected synthetic cannabinoids showing high binding affinities to the cannabinoid receptor subtype CB1

机译:所选合成大麻素对大麻素受体CB1亚型具有高结合亲和力的毒理学概况

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摘要

Products containing synthetic cannabinoids are consumed as a surrogate for marihuana due to their non-detectability with commonly used drug tests and their strong cannabimimetic effects. Because data concerning their toxicological properties are scarce, the cytotoxic, genotoxic, immunomodulatory, and hormonal activities of four naphthoylindole compounds (JWH-018, JWH-073, JWH-122 and JWH-210) and of one benzoylindole (AM-694) were studied in human cell lines and primary cells; tetrahydrocannabinol was included as the classical non-endogenous cannabinoid receptor ligand. All compounds induced damage to the cell membranes of buccal (TR146) and breast (MCF-7) derived cells at concentrations of ≥75-100 μM. No cytotoxic responses were seen in other assays which reflect mitochondrial damage, protein synthesis, and lysosomal activities. JWH-073 and JWH-122 induced DNA migration in buccal and liver cells (HepG2) in single cell gel electrophoresis assays, while JWH-210 was only in the latter cell line active. No estrogenic activities were detected in bone marrow cells (U2-OS), but all compounds caused anti-estrogenic effects at levels between 2.1 and 23.0 μM. Furthermore, no impact on cytokine release (i.e., on IL-10, IL-6, IL-12/23p40 and TNFα levels) was seen in LPS-stimulated human PBMCs, except with JWH-210 and JWH-122 which caused a decrease of TNFα and IL-12/23p40. All toxic effects were observed with concentrations higher than those expected in body fluids of users. Since genotoxic effects are in general linear over a wide concentration range and the exposure levels may be higher in epithelial cells or in serum, further experimental work is required to find out if DNA damage takes place in drug users.
机译:含有合成大麻素的产品被用作大麻的替代品,这是因为它们在常用药物测试中无法检测到,并且具有很强的大麻仿效。由于缺乏有关其毒理学特性的数据,因此分别测定了四种萘基吲哚化合物(JWH-018,JWH-073,JWH-122和JWH-210)和一种苯甲酰基吲哚(AM-694)的细胞毒,遗传毒性,免疫调节和激素活性。在人类细胞系和原代细胞中进行了研究;四氢大麻酚被包括为经典的非内源性大麻素受体配体。所有化合物在≥75-100μM的浓度下都会引起对颊(TR146)和乳腺(MCF-7)细胞的细胞膜的损伤。在其他反映线粒体损伤,蛋白质合成和溶酶体活性的试验中未见细胞毒性反应。在单细胞凝胶电泳分析中,JWH-073和JWH-122诱导颊和肝细胞(HepG2)中的DNA迁移,而JWH-210仅在后者的细胞系中活跃。在骨髓细胞(U2-OS)中未检测到雌激素活性,但所有化合物均在2.1至23.0μM之间引起抗雌激素作用。此外,在LPS刺激的人PBMC中,对细胞因子释放没有影响(即对IL-10,IL-6,IL-12 / 23p40和TNFα水平),但引起JWH-210和JWH-122下降的除外TNFα和IL-12 / 23p40的表达。观察到所有毒性作用的浓度都高于使用者体液中的预期浓度。由于遗传毒性作用通常在较宽的浓度范围内呈线性关系,并且在上皮细胞或血清中的暴露水平可能更高,因此需要进一步的实验工作来确定吸毒者是否会发生DNA损伤。

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