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Changes in the interface of nanoparticles of gold / silver and lipases: their effects on enzyme activity

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Author(s):
Camila de Menezes Kisukuri
Total Authors: 1
Document type: Master's Dissertation
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Conjunto das Químicas (IQ e FCF) (CQ/DBDCQ)
Defense date:
Examining board members:
Cassius Vinicius Stevani; Pedro Henrique Cury Camargo; Maria Helena Sarragiotto
Advisor: Leandro Helgueira de Andrade
Abstract

This dissertation presents the results achieved on the preparation of functionalized gold/silver nanoshells (hollow nanoparticles, 50 nm) and immobilization of different lipases (Burkholderia cepacia (BCL) and porcine pancreatic (PPL)). Initially Gold/Silver nanoshells (NSs Ag Au) were synthesized and characterized through SEM and TEM pictures. By these images some characteristics of NSs AgAu were elucidated, as its size and hollow feature. The functionalization NSs AgAu with different mercapto-alkanoic molecules and mercapto-amine molecule was next step performed. After the functionalized NSs-functionalized were activated with glutaraldehyde or EDC, after that they remained suitable for the immobilization of lipases via covalent bond. BCL was possible immobilized 0.155-0.282 mg protein/3 mg of support. And the PPL a smaller amount of enzyme was immobilized (from 0.035-0.048 mg / 3 mg of support). The activity of the immobilized enzyme was assayed by the reaction enantioselective acetylation of (R,S)-1-phenylethanol with vinyl acetate (KR, kinetic resolution). Excellent conversion results (50%) and selectivity (E > 200) were achieved with the immobilized BCL. The free PLP did not catalyzed acetylation of the substrate and when this enzyme was immobilized on NSs-functionalized the results for enantioselective acetylation of (R,S)-1-phenylethanol with vinyl acetate were interesting. In this case we achieve conversions of 4% of the substrate (R) to acetylated form with excellent enantioselectivity (> 99% e.e. of the product). As alternative to demonstrate the enzymatic activity of BCL immobilized on traditional hydrolysis reaction, the hydrolysis of p-nitrophenyl palmitate by free and immobilized BCL was performed. This test revealed BCL immobilized on NSs-functionalized catalyzed hydrolysis of p-nitrophenyl palmitate faster than free enzyme, confirming the good results obtained in KR, showing that systems which had immobilized BCL were more efficient than the enzyme free. The NSs AgAu, NSs-functionalized and Nanoshells containing the immobilized lipases were characterized by SEM and TEM images , FT-IR analysis , the Bradford method. Other studies with systems containing immobilized BCL were elucidated. Different spacers with different sizes were used for functionalized the nanoshells, and the influence of each of the enzymatic activity was studied. For example, when the NSs were functionalized with smaller molecules mercapto-alkanoic and cysteamine best results for the KR (R,S)-1-(phenyl)ethanol were obtained. The different forms of activation of NSs-functionalized using glutaraldehyde or EDC, for subsequent immobilization of BCL did not result in changes in enzyme activity in the KR . Experiments to test the stability of systems containing immobilized BCL were also made . We found it possible to store the BCL immobilized on different systems at - 4 ° C for 30 days. The study of the recycling of these systems was made and by 3 cycles systems maintain 90% of the enzyme activity. (AU)

FAPESP's process: 12/11201-4 - Changes in the interface of nanoparticles of gold / silver and lipases: their effects on enzyme activity
Grantee:Camila de Menezes Kisukuri
Support Opportunities: Scholarships in Brazil - Master