Salucci Sara, Burattini Sabrina, Buontempo Francesca, Orsini Ester, Furiassi Lucia, Mari Michele, Lucarini Simone, Martelli Alberto M, Falcieri Elisabetta
University of Urbino, Department of Biomolecular Sciences.
Eur J Histochem. 2018 Apr 10;62(2):2881. doi: 10.4081/ejh.2018.2881.
Marine organisms such as corals, sponges and tunicates produce active molecules which could represent a valid starting point for new drug development processes. Among the various structural classes, the attention has been focused on 2,2-bis(6-bromo-3-indolyl) ethylamine, a marine alkaloid which showed a good anticancer activity against several tumor cell lines. Here, for the first time, the mechanisms of action of 2,2-bis(6-bromo-3-indolyl) ethylamine have been evaluated in a U937 tumor cell model. Morpho-functional and molecular analyses, highlighting its preferred signaling pathway, demonstrated that apoptosis is the major death response induced by this marine compund. Chromatin condensation, micronuclei formation, blebbing and in situ DNA fragmentation, occurring through caspase activation (extrinsic and intrinsic pathways), were observed. In particular, the bisindole alkaloid induces a mitochondrial involvement in apoptosis machinery activation with Blc-2/Bcl-x down-regulation and Bax up-regulation. These findings demonstrated that 2,2-bis(6-bromo-3-indolyl) ethylamine alkaloid-induced apoptosis is regulated by the Bcl-2 protein family upstream of caspase activation.
珊瑚、海绵和被囊动物等海洋生物会产生活性分子,这些分子可能是新药研发过程的一个有效起点。在各种结构类别中,人们的注意力集中在2,2 - 双(6 - 溴 - 3 - 吲哚基)乙胺上,这是一种海洋生物碱,对多种肿瘤细胞系显示出良好的抗癌活性。在此,首次在U937肿瘤细胞模型中评估了2,2 - 双(6 - 溴 - 3 - 吲哚基)乙胺的作用机制。形态功能和分子分析突出了其偏好的信号通路,表明凋亡是这种海洋化合物诱导的主要死亡反应。观察到通过半胱天冬酶激活(外在和内在途径)发生的染色质浓缩、微核形成、细胞起泡和原位DNA片段化。特别是,双吲哚生物碱通过下调Blc - 2/Bcl - x和上调Bax诱导线粒体参与凋亡机制的激活。这些发现表明,2,2 - 双(6 - 溴 - 3 - 吲哚基)乙胺生物碱诱导的凋亡受半胱天冬酶激活上游的Bcl - 2蛋白家族调控。