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Titlebook: Biotechnology and Bioactive Polymers; Charles G. Gebelein,Charles E. Carraher Book 1994 Springer Science+Business Media New York 1994 DNA.

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Recovery of Proteins from Whey Using Chitosan as a Coagulanthat can be used in the food industry. A study of the effectiveness of chitosan as a coagulant for removing proteins from whey elucidated the conditions at which chitosan operates most efficiently. Such factors as optimum dosage, pH of reaction, time of mixing and sedimentation rates were studied. Th
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Cell Adhesive Properties of Bioelastic Materials Containing Cell Attachment Sequencesradiation crosslinked matrix and the poly(VPGVG)-derived hydrophobicity scale are noted. Also noted are the capacities of varying the bioactive role of bioelastic materials; that is, the bioelastic materials can be designed (1) to exhibit a range of elastic moduli, (2) to exhibit different rates of
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Expression of a Synthetic Mussel Adhesive Protein in ,oadhesive precursor (BP) with a MW of 25,000 was expressed from one 600-bp gene comprised of a 30-bp unit repeat that accounts for . codon bias. In strains employing T7 RNA polymerase for induction, BP was produced at levels approaching 60% of total cell protein. BP forms intracellular inclusions an
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Special Functional Group Triglyceride Oil Based Interpenetrating Polymer Networkso make soft elastomers with glass transitions as low as -50°C. These can be combined with either amorphous polymers, such as polystyrene, to make IPNs, or with poly (ethylene terephthalate) PET, a crystallizable polymer, to make semi-IPNs. The latter compositions were investigated, finding that the
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