Agata Jarząb, Aneta Grabarska, Krystyna Skalicka-Woźniak, Andrzej Stepulak
{"title":"蛇床子素的药理特征。","authors":"Agata Jarząb, Aneta Grabarska, Krystyna Skalicka-Woźniak, Andrzej Stepulak","doi":"10.5604/01.3001.0010.3824","DOIUrl":null,"url":null,"abstract":"<p><p>Coumarins are a group of naturally occurring compounds common in the plant world. These substances and their derivatives exhibit a broad range of biological activities. One of the naturally occurring coumarins is osthole, which can most frequently be found in plants of the Apiaceae family. Cnidium monnieri (L.) Cusson ex Juss. Angelica pubescens Maxim. and Peucedanum ostruthium (L.). It has anti-proliferative, anti-inflammatory, anti-convulsant, and antiallergic properties; apart from that, inhibition of platelet aggregation has also been proved. The impact of osthole on bone metabolism has been demonstrated; also its hepatoprotective and neuroprotective properties have been confirmed. The inhibitory effect of this metokcompound on the development of neurodegenerative diseases has been proved in experimental models. Anticancer features of osthole have been also demonstrated both in vitro on different cell lines, and in vivo using animals xenografts. Osthole inhibited proliferation, motility and invasiveness of tumor cells, which may be associated with the induction of apoptosis and cell cycle slowdown. The exact molecular mechanism of osthole anti-cancer mode of action has not been fully elucidated. A synergistic effect of osthole with other anti-tumor substances has been also reported. Modification of its chemical structure led to the synthesis of many derivatives with significant anticancer effects. To sum up, osthole is an interesting therapeutic option, due to both its direct effect on tumor cells, as well as its neuroprotective or anti-inflammatory properties. Thus, there is a chance to use osthole or its synthetic derivatives in the treatment of cancer.</p>","PeriodicalId":87132,"journal":{"name":"Postepy higieny i medycyny doswiadczalnej (Online)","volume":"71 0","pages":"411-421"},"PeriodicalIF":0.0000,"publicationDate":"2017-05-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"19","resultStr":"{\"title\":\"Pharmacological features of osthole.\",\"authors\":\"Agata Jarząb, Aneta Grabarska, Krystyna Skalicka-Woźniak, Andrzej Stepulak\",\"doi\":\"10.5604/01.3001.0010.3824\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Coumarins are a group of naturally occurring compounds common in the plant world. These substances and their derivatives exhibit a broad range of biological activities. One of the naturally occurring coumarins is osthole, which can most frequently be found in plants of the Apiaceae family. Cnidium monnieri (L.) Cusson ex Juss. Angelica pubescens Maxim. and Peucedanum ostruthium (L.). It has anti-proliferative, anti-inflammatory, anti-convulsant, and antiallergic properties; apart from that, inhibition of platelet aggregation has also been proved. The impact of osthole on bone metabolism has been demonstrated; also its hepatoprotective and neuroprotective properties have been confirmed. The inhibitory effect of this metokcompound on the development of neurodegenerative diseases has been proved in experimental models. Anticancer features of osthole have been also demonstrated both in vitro on different cell lines, and in vivo using animals xenografts. Osthole inhibited proliferation, motility and invasiveness of tumor cells, which may be associated with the induction of apoptosis and cell cycle slowdown. The exact molecular mechanism of osthole anti-cancer mode of action has not been fully elucidated. A synergistic effect of osthole with other anti-tumor substances has been also reported. Modification of its chemical structure led to the synthesis of many derivatives with significant anticancer effects. To sum up, osthole is an interesting therapeutic option, due to both its direct effect on tumor cells, as well as its neuroprotective or anti-inflammatory properties. 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引用次数: 19
摘要
香豆素是植物世界中常见的一组天然化合物。这些物质及其衍生物具有广泛的生物活性。其中一种天然存在的香豆素是蛇床子素,它最常出现在Apiaceae家族的植物中。蛇床子(L.)Cusson ex Juss。当归。(2)、ostruthium (L.)。它具有抗增殖、抗炎、抗惊厥和抗过敏的特性;除此之外,抑制血小板聚集也已被证实。蛇床子素对骨代谢的影响已得到证实;其肝保护和神经保护作用也已得到证实。该化合物对神经退行性疾病发展的抑制作用已在实验模型中得到证实。蛇床子的抗癌特性也已在体外不同细胞系和体内动物异种移植中得到证实。蛇床子素抑制肿瘤细胞的增殖、运动和侵袭性,这可能与诱导细胞凋亡和细胞周期减慢有关。蛇床子素抗癌作用的确切分子机制尚未完全阐明。蛇床子素与其他抗肿瘤物质的协同作用也有报道。通过对其化学结构的修饰,合成了许多具有显著抗癌作用的衍生物。综上所述,蛇床子素是一种有趣的治疗选择,因为它既对肿瘤细胞有直接作用,又具有神经保护或抗炎特性。因此,有可能将蛇床子素或其合成衍生物用于癌症的治疗。
Coumarins are a group of naturally occurring compounds common in the plant world. These substances and their derivatives exhibit a broad range of biological activities. One of the naturally occurring coumarins is osthole, which can most frequently be found in plants of the Apiaceae family. Cnidium monnieri (L.) Cusson ex Juss. Angelica pubescens Maxim. and Peucedanum ostruthium (L.). It has anti-proliferative, anti-inflammatory, anti-convulsant, and antiallergic properties; apart from that, inhibition of platelet aggregation has also been proved. The impact of osthole on bone metabolism has been demonstrated; also its hepatoprotective and neuroprotective properties have been confirmed. The inhibitory effect of this metokcompound on the development of neurodegenerative diseases has been proved in experimental models. Anticancer features of osthole have been also demonstrated both in vitro on different cell lines, and in vivo using animals xenografts. Osthole inhibited proliferation, motility and invasiveness of tumor cells, which may be associated with the induction of apoptosis and cell cycle slowdown. The exact molecular mechanism of osthole anti-cancer mode of action has not been fully elucidated. A synergistic effect of osthole with other anti-tumor substances has been also reported. Modification of its chemical structure led to the synthesis of many derivatives with significant anticancer effects. To sum up, osthole is an interesting therapeutic option, due to both its direct effect on tumor cells, as well as its neuroprotective or anti-inflammatory properties. Thus, there is a chance to use osthole or its synthetic derivatives in the treatment of cancer.