The ocean, with more than three-quarters of the earth's surface, is home to most of its planet's biodiversity and has an abundance of natural products in it. There are many creatures in the marine world that have adapted to cope with extreme climatic conditions. These organisms exhibit the capacity to cope with harsh conditions, such as:
In order to be able to research valuable chemicals with biological potential, scientists have become more and more attracted to aquatic organisms. Besides, the marine environment serves as a reservoir of numerous bioactive compounds, owing to its remarkable biodiversity. There is growing interest in exploring the therapeutic potential of these organisms, given the vastness and complexity of the marine ecosystem.
Fig.1 Main sources of marine bioactive compounds. (Rigogliuso, et al., 2023)
To help clients with research, CD BioGlyco provides a variety of products derived from marine organisms. In order to exploit the natural benefits of marine organisms, our products are meticulously created. With a focus on sustainability and efficacy, CD BioGlyco utilizes cutting-edge technology to extract and synthesize diverse compounds derived from marine.
Through photosynthesis, marine living organisms produce marine carbohydrates that are critical organic compounds. These marine carbohydrates, in particular polysaccharides, play an important role in pharmaceutical development, and cosmeceutical research.
Our marine carbohydrate derivatives are a series of compounds derived from marine carbohydrates through diverse advanced methods. These products retain the benefits of marine carbohydrates and offer new functionalities that can be used in specific applications.
Our extract products are derived from well-chosen marine organisms, including marine plants, marine animals, and marine microorganisms by sophisticated extraction techniques. These extracts are full of bioactive substances, including polysaccharides, proteins, antioxidants, and minerals that offer a wide range of benefits in multiple areas of research.
Due to their ability to survive extreme conditions, marine enzymes are rapidly becoming a sought-after source for research and industries. They're extracted from microorganisms, plants, and animals through fermentation. These enzymes have the potential to offer new research paths in pharmaceuticals, food, textiles, agriculture, chemicals, or biotechnology.
Journal: Marine drugs
IF: 5.4
Published: 2015
Results: In this article, the authors discuss the wide range of uses and benefits of chitosan and its derivatives in the biomedical and pharmaceutical areas. Chitosan is widely used in tissue engineering due to biodegradability, noninflammatory nature, and its ability to promote the growth of tissues with no toxic effects. It also acts as a carrier for anticancer drugs, reducing side effects and enhancing efficacy. Besides, chitosan-based wound-care products have the potential to heal wounds faster and reduce the workload for healthcare workers. In addition, nano-chitosan, as an adsorbent, shows promise for commercialization because it is cost-effective and has a high capacity for adsorbing pollutants. Quaternized chitosan possesses enhanced antimicrobial properties and has potential applications in various medical settings. In conclusion, their importance in tissue engineering, wound healing, drug delivery, water treatment, antitumor, and antimicrobial effects are highlighted in this study.
CD BioGlyco is an eminent provider of innovative solutions in the field of marine glycobiology. If you’re interested in our products, please
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