Beekman A C, Woerdenbag H J, van Uden W, Pras N, Konings A W, Wikström H V, Schmidt T J
Department of Pharmaceutical Biology, University Centre for Pharmacy, Groningen Institute for Drug Studies, University of Groningen, The Netherlands.
J Nat Prod. 1997 Mar;60(3):252-7. doi: 10.1021/np960517h.
This study deals with the cytotoxicity of helenanolide-type (10 alpha-methylpseudoguaianolide) sesquiterpene lactones. We determined the influence of substitution patterns on the toxicity of 21 helenanolides to a cloned Ehrlich ascites tumor cell line, EN2. Within a series of helenalin esters, the acetate (2) and isobutyrate (3) were more toxic than helenalin itself (1). Esters with larger acyl groups (tiglate 4 and isovalerate 5) exhibited a decreased toxicity compared with the parent alcohol (1). Similar relationships were observed between the 6,8-diastereomer of helenalin, mexicanin I (6) and its acetate (7) and isovalerate (8). In contrast, cytotoxicity within a series of 11 alpha, 13-dihydrohelenalin esters (9-12) was shown to be directly related to the size and lipophilicity of the ester side chain, dihydrohelenalin (9) being the least toxic compound in this group. Investigation of several 2,3-dihydrohelenalin derivatives (13-21) with 2 alpha-hydroxy-4-oxo- and 2 alpha,4 alpha-dihydroxy- or -O-acyl-substituted cyclopentane rings (arnifolins and chamissonolides, respectively), for which no pharmacological data have been reported so far, revealed further interesting influences of the substitution pattern on cytotoxicity. The results may be interpreted in terms of lipophilicity and steric effects on the accessibility of the reactive sites considered responsible for biological activity.
本研究涉及海伦内酯型(10α-甲基伪愈创木内酯)倍半萜内酯的细胞毒性。我们测定了21种海伦内酯的取代模式对克隆的艾氏腹水瘤细胞系EN2毒性的影响。在一系列海伦内酯酯中,乙酸酯(2)和异丁酸酯(3)比海伦内酯本身(1)毒性更大。与母体醇(1)相比,具有较大酰基的酯(惕各酸酯4和异戊酸酯5)毒性降低。在海伦内酯的6,8-非对映异构体、墨西哥菊酯I(6)及其乙酸酯(7)和异戊酸酯(8)之间也观察到了类似的关系。相比之下,一系列11α,13-二氢海伦内酯酯(9 - 12)的细胞毒性与酯侧链的大小和亲脂性直接相关,二氢海伦内酯(9)是该组中毒性最小的化合物。对几种2,3-二氢海伦内酯衍生物(13 - 21)进行了研究,这些衍生物具有2α-羟基-4-氧代-和2α,4α-二羟基-或-O-酰基取代的环戊烷环(分别为紫菀内酯和春黄菊内酯),目前尚未报道其药理学数据,结果显示取代模式对细胞毒性有进一步有趣的影响。这些结果可以根据亲脂性和空间效应对被认为是生物活性负责的反应位点可及性的影响来解释。