School of Chemistry and Chemical Engineering Harbin Institute of Technology, No. 92, West Dazhi Street, Nan Gang District, Harbin, Heilongjiang, China 150001.
Nanoscale. 2018 Feb 22;10(8):3639-3643. doi: 10.1039/c7nr08368h.
Since the late 1980s, low molecular weight gelators (LMWGs) based on different classes of natural products have been reported. Until 2011, pure natural LMWGs (i.e., natural product gelators, NPGs) were not found. However, today only five NPGs are reported. We think that this may be due to the lack of awareness about the importance of NPGs and suitable methods to discover new NPGs. Here we illustrate the potential significance of NPGs, and present a general and efficient method for obtaining NPGs from organisms, which provides specific and important guidance to researchers for easy discovery of new NPGs from organisms in the future. Using this method, we screened a total of 64 kinds of organisms (including plants, animals and fungi), and 6 extracts with a gelation ability were tracked and isolated to yield six new NPGs. These new NPGs include new types of NPGs such as tricyclic triterpenes (1) and tetracyclic triterpenes (2), and new classes of NPGs such as steroids (4 and 5) and glycosides (6), which greatly expand the class of NPGs in the LMWG field.
自 20 世纪 80 年代末以来,已有报道称基于不同类别天然产物的低分子量凝胶剂(LMWG)。直到 2011 年,还没有发现纯天然的 LMWG(即天然产物凝胶剂,NPG)。然而,如今仅报道了五种 NPG。我们认为这可能是由于人们对 NPG 的重要性认识不足,以及缺乏发现新 NPG 的合适方法。在这里,我们说明了 NPG 的潜在意义,并提出了一种从生物体中获得 NPG 的通用且高效的方法,为研究人员提供了具体而重要的指导,便于他们在未来从生物体中轻松发现新的 NPG。使用这种方法,我们总共筛选了 64 种生物体(包括植物、动物和真菌),并跟踪和分离了 6 种具有凝胶能力的提取物,以得到 6 种新的 NPG。这些新的 NPG 包括新型 NPG,如三环三萜(1)和四环三萜(2),以及新型 NPG,如甾体(4 和 5)和糖苷(6),极大地扩展了 LMWG 领域中的 NPG 类别。