2018
DOI: 10.1016/j.procbio.2018.05.012
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Synthesis of magnetic gold mesoporous silica nanoparticles core shell for cellulase enzyme immobilization: Improvement of enzymatic activity and thermal stability

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Cited by 118 publications
(34 citation statements)
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“…These solid materials are developed by replacing the solvent trapped in the gel structure with a gas (e.g., air), leading to an open-ended mesoporous structure typically composed of 95–99% empty space [ 103 ]. Polysaccharide-based aerogels obtained with polymers with natural resources (alginate, agar, starch, cellulose, chitosan, chitin or pectin) are sustainable materials that can substitute silica aerogels in biomedical and pharmaceutical applications [ 104 , 105 , 106 ]. Different medical applications, such as tissue engineering, drug delivery or biosensing have been developed due to the advancement in bioaerologels research.…”
Section: Applications Of Alginate In the Medical Fieldmentioning
confidence: 99%
“…These solid materials are developed by replacing the solvent trapped in the gel structure with a gas (e.g., air), leading to an open-ended mesoporous structure typically composed of 95–99% empty space [ 103 ]. Polysaccharide-based aerogels obtained with polymers with natural resources (alginate, agar, starch, cellulose, chitosan, chitin or pectin) are sustainable materials that can substitute silica aerogels in biomedical and pharmaceutical applications [ 104 , 105 , 106 ]. Different medical applications, such as tissue engineering, drug delivery or biosensing have been developed due to the advancement in bioaerologels research.…”
Section: Applications Of Alginate In the Medical Fieldmentioning
confidence: 99%
“…Thermal and chemical stabilities were considerably augmented in a wide range of pH values and temperatures. Vibrating-sample magnetometer (VSM) study results showed that the magnetic behavior of MNPs was not altered following the coating process [72]. Core-shell magnetic gold mesoporous silica was exploited as a support for cellulase immobilization (Scheme 7).…”
Section: Cellulase Immobilization On Composite-functionalized Mnpsmentioning
confidence: 99%
“…Providing unique physical and electronic properties and also providing a large surface area for biomolecules to anchor [69][70][71][72] Amino-based surface functionalization Novel strategies to enhance the enzyme's thermal and chemical stability [63][64][65][66][67] Chitosan-based surface functionalization…”
Section: Silica-based Surface Functionalizationmentioning
confidence: 99%
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“…In the last decade, the use of nanoparticles in enzyme stabilization has attracted increased attention based on their very small size of particles and large surface area . Magnetic nanoparticles show a high binding capacity to conjugated enzymes and can be used for enzyme immobilization . The potential of magnetic nanoparticles as carriers for immobilized enzymes can be increased by the use of nanoparticles containing silica with an ordered structure, such as KCC‐1, on the surface of magnetic supports.…”
Section: Introductionmentioning
confidence: 99%