Chitin and its derivatives are commercially important biopolymers due to their applications in medicine, agriculture, water treatment, cosmetics and various biotechnological areas. Since chitin and its derivatives exhibit different chemical and physical properties depending on the source and isolation method, there is a growing demand for new chitin sources other than crab and shrimp worldwide. In this study Gammarus, a Crustacea, was investigated as a novel chitin source. Gammarus, which belongs to the family Gammaridae Crustacea, lives in the bottom of aquatic ecosystems. More than 200 species are known worldwide. One of these species, G. argaeus was investigated for chitin isolation. The alpha chitin isolated from G. argaeus was char...
The most important bio-polysaccharide for biochemical industries are chitin and chitosan. These chem...
After cellulose, chitin is the most widespread biopolymer in nature. Chitin and its derivatives have...
Chitin, the second most abundant biopolymer in the world after cellulose is found in a larger number...
Chitin and its derivatives are commercially important biopolymers due to their applications in medic...
Chitin is a biopolymer, which can be found in a plenty amount in marine environments and is the seco...
Chitin is a very abundant polysaccharide that can be obtained from well-known marine sources (crusta...
AbstractChitin is the most important natural polysaccharide after cellulose found in crustaceous she...
WOS: 000369326900011Chitin was isolated from a crustacean by keeping the original body shape for the...
Chitin was isolated from the shells of Chelonibia patula (barnacle, Crustacea), which lives on blue ...
This study describes the isolation of chitin from 5 species of athropods (2 from Malacostraca and 3 ...
AbstractChitin has been extracted from Philippine blue swimming crab. The extracted chitin was subje...
Background: Chitin is an important natural resource. The annual worldwide production is estimated in...
It is known that the main source of chitin and chitosan are shells of shrimp and other sea crustacea...
Chitin, a natural biomass resource, has shown great promise for a wide range of applications because...
Chitin was synthesized from Nigerian brown shrimps by a chemical process involving demineralization ...
The most important bio-polysaccharide for biochemical industries are chitin and chitosan. These chem...
After cellulose, chitin is the most widespread biopolymer in nature. Chitin and its derivatives have...
Chitin, the second most abundant biopolymer in the world after cellulose is found in a larger number...
Chitin and its derivatives are commercially important biopolymers due to their applications in medic...
Chitin is a biopolymer, which can be found in a plenty amount in marine environments and is the seco...
Chitin is a very abundant polysaccharide that can be obtained from well-known marine sources (crusta...
AbstractChitin is the most important natural polysaccharide after cellulose found in crustaceous she...
WOS: 000369326900011Chitin was isolated from a crustacean by keeping the original body shape for the...
Chitin was isolated from the shells of Chelonibia patula (barnacle, Crustacea), which lives on blue ...
This study describes the isolation of chitin from 5 species of athropods (2 from Malacostraca and 3 ...
AbstractChitin has been extracted from Philippine blue swimming crab. The extracted chitin was subje...
Background: Chitin is an important natural resource. The annual worldwide production is estimated in...
It is known that the main source of chitin and chitosan are shells of shrimp and other sea crustacea...
Chitin, a natural biomass resource, has shown great promise for a wide range of applications because...
Chitin was synthesized from Nigerian brown shrimps by a chemical process involving demineralization ...
The most important bio-polysaccharide for biochemical industries are chitin and chitosan. These chem...
After cellulose, chitin is the most widespread biopolymer in nature. Chitin and its derivatives have...
Chitin, the second most abundant biopolymer in the world after cellulose is found in a larger number...