Scripps Institution of Oceanography, University of California at San Diego, 9500 Gilman Drive, MC 0212, La Jolla, CA 92093-0212, USA.
Toxicon. 2010 Feb-Mar;55(2-3):204-10. doi: 10.1016/j.toxicon.2009.07.020. Epub 2009 Jul 26.
Primary fractions from the extract of a tropical red alga mixed with filamentous cyanobacteria, collected from Papua New Guinea, were active in a neurotoxicity assay. Bioassay-guided isolation led to two natural products (1,2) with relatively potent calcium ion influx properties. The more prevalent of the neurotoxic compounds (1) was characterized by extensive NMR, mass spectrometry, and X-ray crystallography, and shown to be identical to a polybrominated diphenyl ether metabolite present in the literature, but reported with different NMR properties. To clarify this anomalous result, we synthesized a candidate isomeric polybrominated diphenyl ether (3), but this clearly had different NMR shifts than the reported compound. We conclude that the original isolate of 3,4,5-tribromo-2-(2,4-dibromophenoxy)phenol was contaminated with a minor compound, giving rise to the observed anomalous NMR shifts. The second and less abundant natural product (2) isolated in this study was a more highly brominated species. All three compounds showed a low micromolar ability to increase intracellular calcium ion concentrations in mouse neocortical neurons as well as toxicity to zebrafish. Because polybrominated diphenyl ethers have both natural as well as anthropomorphic origins, and accumulate in marine organisms at higher trophic level (mammals, fish, birds), these neurotoxic properties are of environmental significance and concern.
从巴布亚新几内亚采集的一种与丝状蓝藻混合的热带红藻提取物的初级馏分在神经毒性测定中具有活性。基于生物测定的分离导致两种具有相对较强钙离子内流特性的天然产物(1、2)的出现。更为流行的神经毒性化合物(1)通过广泛的 NMR、质谱和 X 射线晶体学进行了表征,被证明与文献中存在的多溴二苯醚代谢物相同,但具有不同的 NMR 性质。为了澄清这一异常结果,我们合成了一种候选的多溴二苯醚异构体(3),但它的 NMR 位移显然与报道的化合物不同。我们得出结论,3,4,5-三溴-2-(2,4-二溴苯氧基)苯酚的原始分离物受到了少量杂质的污染,导致了观察到的异常 NMR 位移。本研究中分离得到的第二种且较少的天然产物(2)是一种溴化程度更高的物质。所有三种化合物均显示出在小鼠新皮层神经元中增加细胞内钙离子浓度的低微摩尔能力,以及对斑马鱼的毒性。由于多溴二苯醚既有天然来源也有人为来源,并且在海洋生物中在更高的营养级(哺乳动物、鱼类、鸟类)积累,因此这些神经毒性特性具有环境意义和关注。