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Such a sequence is called the primary structure of the biopolymer.
PA 11 is a biopolymer derived from natural oil.
Cellulose is the most common organic compound and biopolymer on Earth.
The outer wall is constructed with a resistant biopolymer called sporopollenin.
Actually, the biopolymer could be extracted from any "animal" more advanced than those lizards.
The biopolymer is also used in packaging manufacturing.
Chitin is the second-most abundant biopolymer in nature.
Apparatus and method for the generation, separation, detection, and recognition of biopolymer fragments.
The second largest biopolymer producer is Metabolix of Cambridge, Mass.
Proteins outcompete ribozymes in catalytic ability, and therefore become the dominant biopolymer.
The carbon and other elements in these sugars are then used to make a biopolymer through a process of fermentation and separation.
Arabinogalactan is a biopolymer consisting of arabinose and galactose monosaccharides.
Biologically produced sulfur particles are naturally hydrophilic due to a biopolymer coating.
A biological target is a biopolymer such as a protein or nucleic acid whose activity can be modified by an external stimulus.
As a biopolymer, lignin is unusual because of its heterogeneity and lack of a defined primary structure.
Like cellulose, chitin is an abundant biopolymer that is relatively resistant to degradation.
We employ Nature's second most abundant biopolymer, chitosan, to serve as a "smart" stimuli-responsive interface.
One description of the charge transfer process in the matrix is, "highly vectoral electron transport along biopolymer pathways".
Despite the clear distinction between dinosporin and other resistant biopolymer groups, very little is known about the actual structure of dinosporin.
The "Biosteel biopolymer" had been transformed into nanofibers and nanomeshes using the electrospinning technique.
The walls of organic-walled dinocysts are composed of the resistant biopolymer called dinosporin.
Secondary structure can be formally defined by the hydrogen bonds of the biopolymer, as observed in an atomic-resolution structure.
Polyhydroxyalkanoate (PHA) is a biopolymer that is made by bacteria.
Thus far, only the motile stage of Gymnodinium catenatum has been shown to produce the highly aliphatic biopolymer algaenan.
Scientists have even figured out how to use a paper mill pulp byproduct called lignin to create a biopolymer called liquid wood.