2011
DOI: 10.1016/j.enzmictec.2011.06.004
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Evaluation of whole lysosomal enzymes directly immobilized on titanium (IV) oxide used in the development of antimicrobial agents

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Cited by 24 publications
(11 citation statements)
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“…Lysozyme immobilized in polyvinyl alcohol films [66], cellulose [67] and chitosan [68] were effective in inhibiting food spoiling microorganisms. Coating surgical steel blades with a mixture of lysozyme and silver nanoparticles reduced the viability of Klebsiella pneumoniae , B. anthracis, Bacillus subtilis, S. aureus and Acinetobacter baylyi [69]. Lysozyme immobilized on titanium (IV) oxide (TiO 2 ) [70] and on wool fabrics inhibited microorganisms even after washing several times [71].…”
Section: Antimicrobial Enzymes and Microbial Anti‐biofilm Enzymesmentioning
confidence: 99%
“…Lysozyme immobilized in polyvinyl alcohol films [66], cellulose [67] and chitosan [68] were effective in inhibiting food spoiling microorganisms. Coating surgical steel blades with a mixture of lysozyme and silver nanoparticles reduced the viability of Klebsiella pneumoniae , B. anthracis, Bacillus subtilis, S. aureus and Acinetobacter baylyi [69]. Lysozyme immobilized on titanium (IV) oxide (TiO 2 ) [70] and on wool fabrics inhibited microorganisms even after washing several times [71].…”
Section: Antimicrobial Enzymes and Microbial Anti‐biofilm Enzymesmentioning
confidence: 99%
“…It was observed that change in the sterilization time increased the Penicillin-G production by 30 % upto 30 minute and only 6% upto 45 minute and then it started to drop. HPLC method was used to carry out quantitative analysis of the product Penicillin G and the precursor Phenyl acetic acid [44,45]. The results further concluded that though the rise in the sterilization temperature increased the Penicillin G production rate, it was cost effective as more energy required to rise the sterilization temperature which in turn increased the cost of production of Penicillin G.…”
Section: Application Of Bioprocess Engineering In Pharmaceuticalmentioning
confidence: 99%
“…Recently, NPs have become versatile scaffolds to generate excellent supports for enzyme stabilization due to their small size and large surface area. Fe 3 O 4 [8], Fe 2 O 3 [9], ZnO [10], NiO [11], Al 2 O 3 [12], TiO 2 [13], silica [14], gold [15], silver [16] and platinum [17] NPs are often used to immobilize enzymes. NPs strongly influence the mechanical properties of material such as stiffness and elasticity, and provide biocompatible environments for enzyme immobilization.…”
Section: Introductionmentioning
confidence: 99%