Natural Products Unit, King Fahd Medical Research Centre, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Suez Canal University Hospital, Suez Canal University, Ismailia 41522, Egypt.
Mar Drugs. 2019 Feb 1;17(2):92. doi: 10.3390/md17020092.
The bioactive bromotyrosine-derived alkaloids and unique morphologically-defined fibrous skeleton of chitin origin have been found recently in marine demosponges of the order Verongiida. The sophisticated three-dimensional (3D) structure of skeletal chitinous scaffolds supported their use in biomedicine, tissue engineering as well as in diverse modern technologies. The goal of this study was the screening of new species of the order Verongiida to find another renewable source of naturally prefabricated 3D chitinous scaffolds. Special attention was paid to demosponge species, which could be farmed on large scale using marine aquaculture methods. In this study, the demosponge collected in the coastal waters of the Egyptian Red Sea was examined as a potential source of chitin for the first time. Various bioanalytical tools including scanning electron microscopy (SEM), fluorescence microscopy, FTIR analysis, Calcofluor white staining, electrospray ionization mass spectrometry (ESI-MS), as well as a chitinase digestion assay were successfully used to confirm the discovery of α-chitin within the skeleton of . The current finding should make an important contribution to the field of application of this verongiid sponge as a novel renewable source of biologically-active metabolites and chitin, which are important for development of the blue biotechnology especially in marine oriented biomedicine.
最近在属于 Verongiida 目(Order Verongiida)的海洋软珊瑚中发现了生物活性的溴代酪氨酸衍生生物碱和独特形态定义的源自几丁质的纤维状骨架。骨架几丁质支架的复杂三维(3D)结构支持它们在生物医学、组织工程以及各种现代技术中的应用。本研究的目的是筛选 Verongiida 目的新物种,以寻找另一种可再生的天然预制 3D 几丁质支架来源。特别关注可以通过海洋水产养殖方法大规模养殖的软珊瑚物种。在这项研究中,首次检查了在埃及红海沿海水域收集的软珊瑚,以寻找其作为几丁质的潜在来源。成功使用了各种生物分析工具,包括扫描电子显微镜(SEM)、荧光显微镜、FTIR 分析、Calcofluor 白染色、电喷雾电离质谱(ESI-MS)以及几丁质酶消化测定法,以确认 在其骨架中发现 α-几丁质。这一发现将为这种 verongiid 海绵作为一种新型可再生的生物活性代谢物和几丁质的来源在应用领域做出重要贡献,这对于开发蓝色生物技术,特别是海洋导向的生物医学特别重要。