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The Roles of Spinochromes in Four Shallow Water Tropical Sea Urchins and Their Potential as Bioactive Pharmacological Agents.

机译:Spinochromes在四种浅水热带海胆中的作用及其作为生物活性药理剂的潜力。

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摘要

Spinochromes are principally known to be involved in sea urchin pigmentation as well as for their potentially interesting pharmacological properties. To assess their biological role in sea urchin physiology, experiments are undertaken on crude extracts from four species and on four isolated spinochromes in order to test their antibacterial, antioxidant, inflammatory and cytotoxic activities. First, the antibacterial assays show that the use of crude extracts as representatives of antibacterial effects of spinochromes are inaccurate. The assays on purified spinochromes showed a decrease in the growth of four strains with an intensity depending on the spinochromes/bacteria system, revealing the participation of spinochromes in the defense system against microorganisms. Secondly, in the 2,2-diphenyl-1-picrylhydrazyl antioxidant assays, spinochromes show an enhanced activity compared to the positive control. This latter observation suggests their involvement in ultraviolet radiation protection. Third, spinochromes present a pro-inflammatory effect on lipopolysaccharide-stimulated macrophages, highlighting their possible implication in the sea urchin immune system. Finally, cytotoxicity assays based on Trypan blue exclusion, performed in view of their possible future applications as drugs, show a weak cytotoxicity of these compounds against human cells. In conclusion, all results confirm the implication of spinochromes in sea urchin defense mechanisms against their external environment and reveal their potential for pharmacological and agronomical industries.
机译:主要已知多刺色素涉及海胆色素沉着以及其潜在的令人感兴趣的药理性质。为了评估它们在海胆生理中的生物学作用,对四种物种的粗提物和四种分离的刺色素进行了实验,以测试其抗菌,抗氧化,炎症和细胞毒性活性。首先,抗菌测定表明使用粗提物作为多杀菌素的抗菌作用的代表是不准确的。对纯化的旋转色素的测定表明,四种菌株的生长有所降低,强度取决于旋转色素/细菌系统,表明旋转色素参与了针对微生物的防御系统。其次,在2,2-二苯基-1-吡啶并肼基抗氧化剂测定中,与阳性对照相比,多刺色素显示出增强的活性。后一个观察结果表明它们参与了紫外线防护。第三,旋转色素对脂多糖刺激的巨噬细胞具有促炎作用,突显了它们在海胆免疫系统中的潜在作用。最后,考虑到它们将来可能作为药物应用而进行的基于锥虫蓝排除的细胞毒性试验表明,这些化合物对人体细胞的细胞毒性较弱。总之,所有结果都证实了旋转色素在海胆防御机制中对外部环境的影响,并揭示了其在药理学和农学行业中的潜力。

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