2022
DOI: 10.3390/ijms23115975
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Structural Rearrangements of Carbonic Anhydrase Entrapped in Sol-Gel Magnetite Determined by ATR–FTIR Spectroscopy

Abstract: Enzymatically active nanocomposites are a perspective class of bioactive materials that finds their application in numerous fields of science and technology ranging from biosensors and therapeutic agents to industrial catalysts. Key properties of such systems are their stability and activity under various conditions, the problems that are addressed in any research devoted to this class of materials. Understanding the principles that govern these properties is critical to the development of the field, especiall… Show more

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Cited by 10 publications
(4 citation statements)
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“…All MNPs are characterized by strong bands near 550 cm −1 with a shoulder at 630 cm −1 that correspond to Fe-O vibration and a broad band at 3000-3300 cm −1 due to -OH groups from adsorbed water molecules and Fe-OH groups. [46]. For spectra of hybrid materials, the broad band at 3500-3300 cm −1 is much more pronounced due to characteristic stretching vibrations of -OH and -N-H groups.…”
Section: Biomimetic Coating Of the Nanoparticlesmentioning
confidence: 98%
“…All MNPs are characterized by strong bands near 550 cm −1 with a shoulder at 630 cm −1 that correspond to Fe-O vibration and a broad band at 3000-3300 cm −1 due to -OH groups from adsorbed water molecules and Fe-OH groups. [46]. For spectra of hybrid materials, the broad band at 3500-3300 cm −1 is much more pronounced due to characteristic stretching vibrations of -OH and -N-H groups.…”
Section: Biomimetic Coating Of the Nanoparticlesmentioning
confidence: 98%
“…The torque value was consistently higher than 10%. The viscosity of gels was determined by taking an average of three readings in a minute [17,18].…”
Section: Measurement Of Viscosity Of Mhg-flczmentioning
confidence: 99%
“…The proteins have free movement at a local level, but the motion is highly restricted to the confined hollows, and most of the molecules are isolated and interact only with the matrix. Drozdov’s group immobilized CA into the pores of different sol–gel magnetite with singular magnetic properties using this method [ 147 ]. They studied the physical properties of the new material as well as the overall structure of the enzyme, mainly using infrared spectroscopy, concluding that the protein maintains its 3D arrangement in the generated nanoparticles.…”
Section: Improving Ca Performance: Enzyme Immobilizationmentioning
confidence: 99%