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Marine biomaterials: Biomimetic and pharmacological potential of cultivated Aplysina aerophoba marine demosponge

机译:海洋生物材料:拟南芥的仿生和海洋生物仿生的药理潜力

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摘要

Marine demosponges of the Verongiida order are considered a gold-mine for bioinspired materials science and marine pharmacology. The aim of this work was to simultaneously isolate selected bromotyrosines and unique chitinous structures from A. aerophoba and to propose these molecules and biomaterials for possible application as antibacterial and antitumor compounds and as ready-to-use scaffolds for cultivation of cardiomyocytes, respectively. Among the extracted bromotyrosines, the attention has been focused on aeroplysinin-1 that showed interesting unexpected growth inhibition properties for some Gram-negative clinical multi-resistant bacterial strains, such as A. baumannii and K. pneumoniae, and on aeroplysinin-1 and on isofistularin-3 for their antitumorigenic activity. For both compounds, the effects are cell line dependent, with significant growth inhibition activity on the neuroblastoma cell line SH-SY5Y by aeroplysinin-1 and on breast cancer cell line MCF-7 by isofistularin-3. In this study, we also compared the cultivation of human induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) on the A. aerophoba chitinous scaffolds, in comparison to chitin structures that were pre-coated with Geltrex (TM), an extracellular matrix mimetic which is used to enhance iPSC-CM adhesion. The iPSC-CMs on uncoated and pure chitin structures started contracting 24 h after seeding, with comparable behaviour observed on Geltrex-coated cell culture plates, confirming the biocompatibility of the sponge biomaterial with this cell type. The advantage of A. aerophoba is that this source organism does not need to be collected in large quantities to supply the necessary amount for further pre-clinical studies before chemical synthesis of the active compounds will be available. A preliminary analysis of marine sponge bioeconomy as a perspective direction for application of biomaterials and secondary bioactive metabolites has been finally performed for the first time.
机译:Verongiida订单的海洋石棉被认为是生物启发性材料科学和海洋药理学的金矿。这项工作的目的是从拟杆菌中同时分离出选定的溴代酪氨酸和独特的几丁质结构,并提出这些分子和生物材料,以分别用作抗菌和抗肿瘤化合物以及可用于心肌细胞培养的即用支架。在提取的溴酪氨酸中,注意力集中在aeroplysinin-1上,aeroplysinin-1对某些革兰氏阴性临床多重耐药菌菌株(如鲍曼不动杆菌和肺炎克雷伯氏菌)表现出有趣的出乎意料的生长抑制特性,以及aeroplysinin-1和isofistularin-3具有抗肿瘤作用。对于这两种化合物,其作用均依赖于细胞系,aeroplysinin-1对成神经细胞瘤细胞SH-SY5Y具有明显的生长抑制活性,而异异黄素3对乳腺癌细胞MCF-7具有明显的生长抑制活性。在这项研究中,我们还比较了预先涂有Geltrex(TM)(一种细胞外基质)的几丁质结构在A. aophophoba几丁质支架上培养人诱导的多能干细胞衍生的心肌细胞(iPSC-CM)的情况。用于增强iPSC-CM附着力的模拟物。未包被的和纯的几丁质结构上的iPSC-CM接种后24小时开始收缩,在Geltrex包被的细胞培养板上观察到类似的行为,证实了海绵生物材料与这种细胞类型的生物相容性。 A. aophophoba的优点是,在可以进行活性化合物的化学合成之前,无需大量收集这种来源生物即可为进一步的临床前研究提供必要的量。最终首次对海洋海绵生物经济进行初步分析,以此作为生物材料和次生生物活性代谢物应用的展望方向。

著录项

  • 来源
    《Materials science & engineering》 |2020年第4期|110566.1-110566.12|共12页
  • 作者

  • 作者单位

    Tech Univ Dresden Inst Pharmacol & Toxicol D-01307 Dresden Germany;

    Natl Pirogov Mem Med Univ Dept Pharm UA-21018 Vinnytsya Ukraine;

    Natl Acad Sci Ukraine VP Kukhar Inst Bioorgan Chem & Petrochem UA-02094 Kiev Ukraine;

    Poznan Univ Tech Fac Chem Technol Inst Chem Technol & Engn PL-60965 Poznan Poland|Tech Univ Bergakad Freiberg Inst Elect & Sensor Mat D-09599 Freiberg Germany;

    Tech Univ Bergakad Freiberg Inst Elect & Sensor Mat D-09599 Freiberg Germany;

    Univ Montenegro Inst Marine Biol Kotor 85330 Montenegro;

    Natl Pirogov Mem Med Univ Dept Microbiol UA-21018 Vinnytsya Ukraine;

    Leibniz Inst Polymer Res Dresden D-01069 Dresden Germany;

    Tech Univ Dresden Univ Hosp Carl Gustav Carus Fac Med Carl Gustav Carus Inst Clin Chem & Lab Med D-01307 Dresden Germany;

    Lomonosov Moscow State Univ Biol Fac Dept Invertebrate Zool Moscow 119992 Russia;

    Russian Acad Sci PP Shirshov Inst Oceanol Moscow 117997 Russia|Int Inst Biomineral GmbH D-09599 Freiberg Germany;

    Univ Genoa Dept Sci Earth Environm & Life I-16132 Genoa Italy;

    Tech Univ Dresden Univ Hosp Carl Gustav Carus Dept Internal Med 3 D-01307 Dresden Germany|Kings Coll London Diabet & Nutr Sci Div London WC2R 2LS England;

    Duke Univ Med Ctr Dept Biochem Durham NC 27710 USA;

    Tech Univ Dresden Univ Hosp Carl Gustav Carus Natl Ctr Tumor Dis D-01307 Dresden Germany|Tech Univ Dresden Fac Med Carl Gustav Carus Inst Immunol D-01307 Dresden Germany;

    Ural Fed Univ Dept Organ & Biomol Chem Chem Engn Inst Ekaterinburg 620002 Russia|Russian Acad Sci Postovsky Inst Organ Synth Ural Branch Ekaterinburg 620219 Russia;

    Ural Fed Univ Dept Organ & Biomol Chem Chem Engn Inst Ekaterinburg 620002 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Marine biomaterials; Chitin; Cell culture; Tissue engineering; Cardiomyocytes; Aeroplysinin-1;

    机译:海洋生物材料;甲壳素;细胞培养;组织工程;心肌细胞;气溶素1;

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