School of Biomedicine, Far Eastern Federal University, Vladivostok, Russian Federation.
National Scientific Center for Marine Biology, Far Eastern Branch of Russian Academy of Sciences, Vladivostok, Russia.
Sci Rep. 2017 Sep 20;7(1):11964. doi: 10.1038/s41598-017-12232-7.
Pro-proliferative oncogenic signaling is one of the hallmarks of cancer. Specific targeting of such signaling pathways is one of the main approaches to modern anti-cancer drug discovery, as opposed to more traditional search for general cytotoxic agents. Natural products, especially from marine sources, represent a largely untapped source of chemical diversity, which so far have mostly been screened for cytotoxicity. Here we present a pioneering pipeline of high-throughput screening of marine-based activities targeted against the Wnt signaling pathway, which is one of the key factors in oncogenic transformation, growth and metastasis in different cancers, including the devastating triple-negative breast cancer (TNBC) currently lacking any targeted therapies. This pipeline consisted of collection and characterization of numerous invertebrates during the SokhoBio expedition to the Kuril Basin in North Pacific, preparation of extracts from these specimen, and their screening in dedicated assays monitoring Wnt signaling in TNBC cells. This approach yielded a number of promising hits, including highly specific anti-Wnt activities targeting multiple levels within the Wnt pathway from Ophiura irrorata and other Pacific brittle stars.
促有丝分裂致癌信号是癌症的特征之一。与更传统的寻找一般细胞毒性剂相比,针对这种信号通路的特定靶向是现代抗癌药物发现的主要方法之一。天然产物,尤其是来自海洋的天然产物,代表了一种尚未充分开发的化学多样性来源,迄今为止,这些天然产物主要是针对细胞毒性进行筛选的。在这里,我们提出了一个开创性的高通量筛选海洋活性物质的流水线,该流水线针对的是 Wnt 信号通路,这是致癌转化、不同癌症(包括目前缺乏任何靶向治疗的毁灭性三阴性乳腺癌 (TNBC))中的生长和转移的关键因素之一。该流水线包括在北太平洋千岛海盆的 SokhoBio 考察期间收集和表征大量无脊椎动物,从这些标本中制备提取物,并在专门的测定中筛选这些提取物,以监测 TNBC 细胞中的 Wnt 信号。这种方法产生了一些有前途的苗头化合物,包括来自 Ophiura irrorata 和其他太平洋海蛇尾的针对 Wnt 通路多个水平的高度特异性抗 Wnt 活性。