Team:ITESM-Guadalajara/Product
From 2014.igem.org
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<h2>OUR PRODUCT</h2> | <h2>OUR PRODUCT</h2> | ||
<h4>Overview</h4> | <h4>Overview</h4> | ||
- | <p> | + | <p align="justify"> |
Biophrame Technologies is committed to be one of the most innovative high biotech companies in Mexico, providing quality and affordable raw materials that can help the development of the health industry in Mexico.</p> | Biophrame Technologies is committed to be one of the most innovative high biotech companies in Mexico, providing quality and affordable raw materials that can help the development of the health industry in Mexico.</p> | ||
- | <p>Initially we are going to focus on producing Chitosan with pharmaceutical grade to be used as raw material in health industry; however, thanks to the enormous uses Chitosan has in many industries, our production process provides significant opportunities to expand our market beyond, through the development of new products where Chitosan provides added value.</p> | + | <p align="justify">Initially we are going to focus on producing Chitosan with pharmaceutical grade to be used as raw material in health industry; however, thanks to the enormous uses Chitosan has in many industries, our production process provides significant opportunities to expand our market beyond, through the development of new products where Chitosan provides added value.</p> |
<hr> | <hr> | ||
<h4>Chitosan definition, applications and properties</h4> | <h4>Chitosan definition, applications and properties</h4> | ||
- | <p>Chitosan is a biopolymer derived from chitin (a naturally occurring polysaccharide widely distributed in nature, especially exoskeletons of some animals such as shrimps and insects) with a unique chemical structure as a linear polycation with a high charge density, hydrogen bonding, reactive hydroxyl and amino groups that help Chitosan display excellent biocompatibility, biodegradability, non-toxicity, physical stability, hemostatic activity and processability properties, which has attracted the attention of scientists and industries for its utilization in many applications of technical interest (Raafat & Sahl, 2009).</p> | + | <p align="justify">Chitosan is a biopolymer derived from chitin (a naturally occurring polysaccharide widely distributed in nature, especially exoskeletons of some animals such as shrimps and insects) with a unique chemical structure as a linear polycation with a high charge density, hydrogen bonding, reactive hydroxyl and amino groups that help Chitosan display excellent biocompatibility, biodegradability, non-toxicity, physical stability, hemostatic activity and processability properties, which has attracted the attention of scientists and industries for its utilization in many applications of technical interest (Raafat & Sahl, 2009).</p> |
- | <p>Chemically, Chitosan is a copolymer composed by β-(1→4)-2-acetamido-D-glucose and β-(1→4)-2-amino-D-glucose units (see figure below), where the relative amount of GlcNAc and D‐glucosamine (GlcN) monosacharides may vary giving different degrees of deacetylation (75–95%), molecular weights (MWs) (50–2000 kDa), viscosities, pKa values, etc (Raafat & Sahl, 2009).</p> | + | <p align="justify">Chemically, Chitosan is a copolymer composed by β-(1→4)-2-acetamido-D-glucose and β-(1→4)-2-amino-D-glucose units (see figure below), where the relative amount of GlcNAc and D‐glucosamine (GlcN) monosacharides may vary giving different degrees of deacetylation (75–95%), molecular weights (MWs) (50–2000 kDa), viscosities, pKa values, etc (Raafat & Sahl, 2009).</p> |
<img src="https://static.igem.org/mediawiki/2014/8/84/BIOPHRAMEGDLformula.jpg"> | <img src="https://static.igem.org/mediawiki/2014/8/84/BIOPHRAMEGDLformula.jpg"> |
Revision as of 23:22, 16 October 2014