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1.
Electron. j. biotechnol ; 47: 36-42, sept. 2020. tab, ilus, graf
Article in Spanish | LILACS | ID: biblio-1253018

ABSTRACT

BACKGROUND: For more than a decade, water-soluble, eco-friendly, biocompatible, and low-toxicity fluorescent nanomaterials have received considerable attention for their numerous in vivo and in vitro applications in biomedical imaging, disease diagnostics, and environmental monitoring. Owing to their tunable photoluminescence properties, carbon-based luminescent nanomaterials have shown great potential in bioimaging, photocatalysis, and biosensing among other applications. RESULTS: Marine environments provide excellent resources for the fabrication of these nanomaterials, because many marine organisms contain interesting trigger organic compounds that can be used as precursors. Herein, we synthesize multi-color emissive carbon dots (CDs) with an intrinsic photoluminescence quantum yield of 20.46%. These nanostructures were achieved through the one-step hydrothermal treatment of marine polysaccharide chondroitin sulfate, obtained from shark cartilage, in aqueous solution. CONCLUSIONS: We successfully demonstrate the low toxicity of our marine resource-derived CDs in zebrafish, and provide an initial assessment of their possible use as a bioimaging agent. Notably, the newly synthesized CDs localize in the intestines of zebrafish larvae, thereby indicating their biocompatibility and potential use as in vivo dyes.


Subject(s)
Animals , Polysaccharides/chemistry , Sharks , Carbon/chemistry , Quantum Dots/chemistry , Zebrafish , Carbon/toxicity , Cartilage , Quantum Dots/toxicity , Luminescence , Nanostructures , Coloring Agents/toxicity , Coloring Agents/chemistry
2.
Parenteral & Enteral Nutrition ; (6): 109-112,117, 2010.
Article in Chinese | WPRIM | ID: wpr-597813

ABSTRACT

With the rapid development of molecular nutrition, the urgent demand of rationalizing and individual clinical enternal nutrition support was realized. The enteral nutrition was added with special nutrition substrate. The application of carbohydrate in enteral nutrition and the status of comprehensive use of polysaccharides were summarized in this article. Based on the study of traditional fiber in enteral nutrition(EN) , the application of marine polysaccharides on the diseases oriented EN was analyzed and discussed. So, new nutrition substrate from marine polysaccharides is proposed for exploitation of various diseases oriented EN. Therefore, the individual nutrition support becomes possible.

3.
Chinese Journal of Marine Drugs ; (6)1994.
Article in Chinese | WPRIM | ID: wpr-582077

ABSTRACT

The content of carboxylate ions in marine sulfate polysaccharide 911 was determined by conductometric titration. In the mean while, the sample was transformed with cation exchange resin,the molar ratio of sufate ions to carboxylate ions was determined. The results showed that conductometric titration is a simple,rapid and accurate method.

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