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首页> 外文期刊>The Biochemical Journal >TILORONE-INDUCED LYSOSOMAL LESIONS - THE BISBASIC CHARACTER OF THE DRUG IS ESSENTIAL FOR ITS HIGH POTENCY TO CAUSE STORAGE OF SULPHATED GLYCOSAMINOGLYCANS
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TILORONE-INDUCED LYSOSOMAL LESIONS - THE BISBASIC CHARACTER OF THE DRUG IS ESSENTIAL FOR ITS HIGH POTENCY TO CAUSE STORAGE OF SULPHATED GLYCOSAMINOGLYCANS

机译:提洛酮诱导的溶酶体病变-药物的双基础特征是其高强度必不可少的原因,因为它会导致硫糖多糖的储存

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The immunomodulatory agent tilorone {2,7-[2-(diethyl-amino) ethoxy]fluoren-9-one} and congeners are potent inducers of lysosomal storage of sulphated glycosaminoglycans (GAGs) in animals and cultured fibroblasts of animals and man. All potent inducers of GAG storage hitherto described are bisbasic polycyclic aromatic compounds. They are accumulated in lysosomes and disturb the degradation of GAGs, mainly dermatan sulphate. It has been proposed that the drugs crosslink the polyanionic GAG chains giving rise to undegradable drug-GAG complexes. This hypothesis implies that the bisbasic character of the drug molecules is essential for the side effect in question. In the present study, this was tested by comparing tilorone and its monobasic derivative (MT) with respect to (i) induction of GAG storage in cultured bovine corneal fibroblasts and (ii) physicochemical interactions with GAGs in vitro. The intralysosomal concentration of MT achieved after 1-3 days was of the same order of magnitude as previously shown for tilorone. Nevertheless, under conditions that did not enhance the secretion of a lysosomal enzyme (beta-hexosaminidase, EC 3.2.1.52), the ability of MT to cause storage of [S-35]GAGs was significantly lower than that of tilorone. Morphological observations showed that MT was much more potent in causing lysosomal storage of polar lipids than of GAGs. CD spectroscopy with tilorone revealed that the presence of GAGs caused the primarily achiral drug molecules to display CD. This suggested a helical orientation of the tilorone molecules within GAG-drug complexes, and short intermolecular distances which allowed electronic coupling of the aromatic ring systems of adjacent drug molecules. In contrast, MT failed to display any induced optical activity, indicating the absence of highly ordered GAG-drug complexes. In conclusion, the present results show that the substitution of the planar aromatic ring system with two basic side chains is essential for the high potency of tilorone in inducing lysosomal GAG storage. This is paralleled by, and presumably causally related to, strong physicochemical interactions with GAGs.
机译:免疫调节剂tilorone {2,7- [2-(二乙基-氨基)乙氧基] fluoren-9-one}和同类物是动物体内​​以及动物和人类培养的成纤维细胞溶酶体储存硫酸糖胺聚糖(GAG)的有效诱导剂。迄今描述的所有有效的GAG存储诱导剂都是二元多环芳族化合物。它们积累在溶酶体中,并干扰GAG(主要是硫酸皮肤素)的降解。已经提出,药物使聚阴离子GAG链交联,产生不可降解的药物-GAG复合物。该假设暗示药物分子的二元特性对于所讨论的副作用至关重要。在本研究中,通过比较tilorone及其一元衍生物(MT)在以下方面进行了测试:(i)诱导培养的牛角膜成纤维细胞中GAG的储存,以及(ii)体外与GAG的物理化学相互作用。 1-3天后达到的MT溶酶体内浓度与先前对替洛酮显示的量级相同。然而,在不增强溶酶体酶(β-己糖胺酶,EC 3.2.1.52)分泌的条件下,MT引起[S-35] GAG的存储能力明显低于tilorone。形态学观察表明,MT在引起极性脂质的溶酶体贮藏方面比GAG更有效。用替罗龙的CD光谱显示,GAG的存在导致主要非手性药物分子显示CD。这表明替罗酮分子在GAG-药物复合物中呈螺旋取向,分子间距离短,这使得相邻药物分子的芳环系统可以电子偶联。相反,MT不能显示任何诱导的光学活性,表明不存在高度有序的GAG-药物复合物。总之,目前的结果表明,用两个基本侧链取代平面芳环系统对于tilorone诱导溶酶体GAG储存的高效力至关重要。这与GAG的强烈物理化学相互作用平行,并且可能与之有因果关系。

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