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首个关于非偕老同穴类海洋寻常海绵中几丁质的报道:指花海绵属案例。

First Report on Chitin in a Non-Verongiid Marine Demosponge: The Mycale euplectellioides Case.

机构信息

Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, 61131 Poznan, Poland.

Institute of Experimental Physics, TU Bergakademie-Freiberg, Leipziger str. 23, 09559 Freiberg, Germany.

出版信息

Mar Drugs. 2018 Feb 20;16(2):68. doi: 10.3390/md16020068.

Abstract

Sponges (Porifera) are recognized as aquatic multicellular organisms which developed an effective biochemical pathway over millions of years of evolution to produce both biologically active secondary metabolites and biopolymer-based skeletal structures. Among marine demosponges, only representatives of the Verongiida order are known to synthetize biologically active substances as well as skeletons made of structural polysaccharide chitin. The unique three-dimensional (3D) architecture of such chitinous skeletons opens the widow for their recent applications as adsorbents, as well as scaffolds for tissue engineering and biomimetics. This study has the ambitious goal of monitoring other orders beyond Verongiida demosponges and finding alternative sources of naturally prestructured chitinous scaffolds; especially in those demosponge species which can be cultivated at large scales using marine farming conditions. Special attention has been paid to the demosponge (Heteroscleromorpha: Poecilosclerida: Mycalidae) collected in the Red Sea. For the first time, we present here a detailed study of the isolation of chitin from the skeleton of this sponge, as well as its identification using diverse bioanalytical tools. Calcofluor white staining, Fourier-transform Infrared Spcetcroscopy (FTIR), electrospray ionization mass spectrometry (ESI-MS), scanning electron microscopy (SEM), and fluorescence microscopy, as well as a chitinase digestion assay were applied in order to confirm with strong evidence the finding of a-chitin in the skeleton of . We suggest that the discovery of chitin within representatives of the genus is a promising step in their evaluation of these globally distributed sponges as new renewable sources for both biologically active metabolites and chitin, which are of prospective use for pharmacology and biomaterials oriented biomedicine, respectively.

摘要

海绵(多孔动物)被认为是水生多细胞生物,它们在数百万年的进化过程中发展出了一种有效的生化途径,既能产生具有生物活性的次生代谢产物,又能产生基于生物聚合物的骨骼结构。在海洋四射海绵中,只有Verongiida 目代表种被认为能合成具有生物活性的物质以及由结构多糖几丁质构成的骨骼。这种几丁质骨骼的独特的三维(3D)结构为它们最近在作为吸附剂以及组织工程和仿生学的支架方面的应用开辟了新的途径。本研究的雄心勃勃的目标是监测 Verongiida 目以外的其他目,寻找替代的天然预结构化几丁质支架的来源;特别是在那些可以在大规模的海洋养殖条件下养殖的海绵物种中。特别关注了在红海采集的异胶海绵(多胶海绵目:Poecilosclerida:Mycalidae)。我们首次在这里详细研究了从这种海绵骨骼中分离几丁质的方法,并使用多种生物分析工具对其进行了鉴定。Calcofluor 白染色、傅里叶变换红外光谱(FTIR)、电喷雾电离质谱(ESI-MS)、扫描电子显微镜(SEM)和荧光显微镜,以及几丁质酶消化实验,都被应用于强有力地证实了在 属种的骨骼中存在 a-几丁质。我们认为,在这些全球分布的海绵中发现几丁质,代表了对这些海绵作为具有生物活性代谢物和几丁质的新可再生资源进行评估的一个有希望的步骤,这些物质在药理学和生物材料导向的生物医学方面具有潜在的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbc4/5852496/0ea9374f972f/marinedrugs-16-00068-g001.jpg

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