Effect of Chitosan and Chitin on the Separation of Membranes from Proteins Solubilized by pH Shifts Using Cod (Gadus morhua)

Studies with isolated membranes and isolated membranes suspended in muscle proteins solubilized at pH 3 showed that mixing chitosan and membranes at this low pH followed by a pH adjustment to 10.5 could sediment membranes effectively at 4000g. In the solubilized muscle homogenate, the effectiveness...

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Published inJournal of agricultural and food chemistry Vol. 55; no. 16; pp. 6778 - 6786
Main Authors Liang, Yong, Hultin, Herbert O, Kim, Se-Kwon
Format Journal Article
LanguageEnglish
Published Washington, DC American Chemical Society 08.08.2007
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Abstract Studies with isolated membranes and isolated membranes suspended in muscle proteins solubilized at pH 3 showed that mixing chitosan and membranes at this low pH followed by a pH adjustment to 10.5 could sediment membranes effectively at 4000g. In the solubilized muscle homogenate, the effectiveness of membrane removal by chitosan at 4000g for 15 min was molecular weight dependent. About 80% of the phospholipids and 28% of proteins were sedimented from solubilized muscle homogenate by mixing muscle homogenate (10 g of muscle tissue homogenized with 90 mL of distilled water) with 10 mL of MW 310−375k chitosan (10 mg/mL in 0.1 N HCl) before solubilizing it at pH 10.5, whereas 55% of the phospholipids and 12% of proteins were sedimented by mixing muscle homogenate with the MW 310−375k chitosan before solubilizing the homogenate at pH 3. Low molecular weight chitosans (at MW 1k or 33k) showed little effect on membrane sedimentation under the same conditions. Chitin was not useful for removing membranes at either pH 3 or 10.5, whether added before or after pH adjustment. Keywords: Chitosan; membranes; phospholipids; solubilized muscle proteins
AbstractList Studies with isolated membranes and isolated membranes suspended in muscle proteins solubilized at pH 3 showed that mixing chitosan and membranes at this low pH followed by a pH adjustment to 10.5 could sediment membranes effectively at 4000 g. In the solubilized muscle homogenate, the effectiveness of membrane removal by chitosan at 4000 g for 15 min was molecular weight dependent. About 80% of the phospholipids and 28% of proteins were sedimented from solubilized muscle homogenate by mixing muscle homogenate (10 g of muscle tissue homogenized with 90 mL of distilled water) with 10 mL of MW 310-375 k chitosan (10 mg/mL in 0.1 N HCl) before solubilizing it at pH 10.5, whereas 55% of the phospholipids and 12% of proteins were sedimented by mixing muscle homogenate with the MW 310-375 k chitosan before solubilizing the homogenate at pH 3. Low molecular weight chitosans (at MW 1k or 33k) showed little effect on membrane sedimentation under the same conditions. Chitin was not useful for removing membranes at either pH 3 or 10.5, whether added before or after pH adjustment.
Studies with isolated membranes and isolated membranes suspended in muscle proteins solubilized at pH 3 showed that mixing chitosan and membranes at this low pH followed by a pH adjustment to 10.5 could sediment membranes effectively at 4000g. In the solubilized muscle homogenate, the effectiveness of membrane removal by chitosan at 4000g for 15 min was molecular weight dependent. About 80% of the phospholipids and 28% of proteins were sedimented from solubilized muscle homogenate by mixing muscle homogenate (10 g of muscle tissue homogenized with 90 mL of distilled water) with 10 mL of MW 310-375k chitosan (10 mg/mL in 0.1 N HCl) before solubilizing it at pH 10.5, whereas 55% of the phospholipids and 12% of proteins were sedimented by mixing muscle homogenate with the MW 310-375k chitosan before solubilizing the homogenate at pH 3. Low molecular weight chitosans (at MW 1k or 33k) showed little effect on membrane sedimentation under the same conditions. Chitin was not useful for removing membranes at either pH 3 or 10.5, whether added before or after pH adjustment.
Studies with isolated membranes and isolated membranes suspended in muscle proteins solubilized at pH 3 showed that mixing chitosan and membranes at this low pH followed by a pH adjustment to 10.5 could sediment membranes effectively at 4000g. In the solubilized muscle homogenate, the effectiveness of membrane removal by chitosan at 4000g for 15 min was molecular weight dependent. About 80% of the phospholipids and 28% of proteins were sedimented from solubilized muscle homogenate by mixing muscle homogenate (10 g of muscle tissue homogenized with 90 mL of distilled water) with 10 mL of MW 310−375k chitosan (10 mg/mL in 0.1 N HCl) before solubilizing it at pH 10.5, whereas 55% of the phospholipids and 12% of proteins were sedimented by mixing muscle homogenate with the MW 310−375k chitosan before solubilizing the homogenate at pH 3. Low molecular weight chitosans (at MW 1k or 33k) showed little effect on membrane sedimentation under the same conditions. Chitin was not useful for removing membranes at either pH 3 or 10.5, whether added before or after pH adjustment. Keywords: Chitosan; membranes; phospholipids; solubilized muscle proteins
Author Kim, Se-Kwon
Liang, Yong
Hultin, Herbert O
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Cites_doi 10.1016/0009-8981(82)90216-9
10.1016/0011-2240(82)90136-5
10.1111/j.1365-2621.2005.tb07078.x
10.1021/bm015548s
10.3382/ps.0541912
10.3382/ps.0541000
10.1016/0166-6622(88)80198-7
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Issue 16
Keywords Edible fish
Phospholipid
Lipids
Chitin
phospholipids
Protein
Membrane separation
membranes
Vertebrata
Pisces
pH
Cod
Membrane
Muscle
Chitosan
solubilized muscle proteins
Gadus morhua
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Snippet Studies with isolated membranes and isolated membranes suspended in muscle proteins solubilized at pH 3 showed that mixing chitosan and membranes at this low...
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SubjectTerms acid treatment
alkali treatment
Animals
Biological and medical sciences
Cell Membrane - chemistry
cell membranes
Centrifugation
chitin
Chitin - pharmacology
chitosan
Chitosan - pharmacology
cod (fish)
Fish and seafood industries
Food industries
Fundamental and applied biological sciences. Psychology
Gadus morhua
Hydrogen-Ion Concentration
Marine
Membrane Lipids - isolation & purification
muscle protein
Muscle Proteins - isolation & purification
Muscles - ultrastructure
phospholipids
skeletal muscle
Solubility
solubilization
solubilized muscle proteins
Title Effect of Chitosan and Chitin on the Separation of Membranes from Proteins Solubilized by pH Shifts Using Cod (Gadus morhua)
URI http://dx.doi.org/10.1021/jf0708084
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