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Naslov:Razvoj magnetnih kovinsko-organskih ogrodij za sočasno imobilizacijo in delovanje več encimov : magistrsko delo
Avtorji:ID Senekovič, Tajda (Avtor)
ID Vasić, Katja (Mentor) Več o mentorju... Novo okno
ID Primožič, Mateja (Komentor)
Datoteke:.pdf MAG_Senekovic_Tajda_2025.pdf (2,89 MB)
MD5: DAE355E74263F555DAF66010D3521FED
 
Jezik:Slovenski jezik
Vrsta gradiva:Magistrsko delo/naloga
Tipologija:2.09 - Magistrsko delo
Organizacija:FKKT - Fakulteta za kemijo in kemijsko tehnologijo
Opis:Onesnaženje vodnih virov z ostanki farmacevtskih spojin, zlasti antibiotikov, predstavlja resen okoljski problem, saj že nizke koncentracije negativno vplivajo na vodno okolje in spodbujajo razvoj antimikrobne odpornosti. Ker konvencionalni postopki čiščenja teh spojin pogosto ne odstranijo v celoti, postajajo biokatalitski pristopi vse bolj zanimivi. Encimi, kot sta β-laktamaza in lakaza, omogočajo selektivno razgradnjo onesnaževal, njihovo učinkovitost pa je mogoče bistveno povečati z imobilizacijo na magnetna kovinsko-organska ogrodja (mMOFs), ki izboljšajo stabilnost, ponovno uporabnost in omogočajo enostavno ločevanje katalizatorjev iz reakcijskega medija. V magistrskem delu smo razvili mMOFs na osnovi ZIF-8 za sočasno imobilizacijo β-laktamaze in lakaze ter ovrednotili njihovo učinkovitost pri razgradnji penicilina G (PEN). Sintetizirali smo magnetne nanodelce, prevlečene z arabinogalaktanom (AG-MNPs), pripravili ZIF-8 in izdelali magnetne kompozite mZIF-8. Kot optimalne pogoje imobilizacije smo uporabili 7,5 % (v/v) glutaraldehida (GA) in HEPES pufer s pH 7,3. Preostala aktivnost imobiliziranih encimov je znašala 53,85 % za β-laktamazo in 94,21 % za lakazo, pri sočasni imobilizaciji pa 39,73 % za β-laktamazo oziroma 53,79 % za lakazo. Visoka učinkovitost imobilizacije (85–96 %) potrjuje ustreznost izbranega nosilca. Razgradnjo PEN smo preučevali pri koncentracijah 0,1, 1 in 10 mg/mL. Pri 0,1 mg/mL PEN so imobilizirani sistemi odstranili PEN hitreje od prostih encimov: β-laktamaza@mZIF-8 v 30 minutah, lakaza@mZIF-8 v 40 minutah, β-laktamaza/lakaza@mZIF-8 pa že v 10 minutah. Pri 1 mg/mL PEN je prosta β-laktamaza v 90 min razgradila le 8 % PEN, medtem ko je sistem β-laktamaza/lakaza@mZIF-8 v enakem času razgradil celotni PEN. Največje razlike med sistemi so se pokazale pri 10 mg/mL PEN. Pri mZIF-8 je bil dosežen adsorpcijski plato pri približno 30–32 %, kar potrjuje nasičenje adsorpcijskih mest. Prosta β-laktamaza je za skoraj popolno razgradnjo potrebovala 192 ur, medtem ko je pri β-laktamazi@mZIF-8 ostalo le okoli 5 % PEN. Najbolj učinkovit je bil soimobiliziran sistem, ki je delež PEN znižal na približno 3 %. Povišanje koncentracije obeh encimov pri sočasni imobilizaciji je dodatno pospešilo razgradnjo PEN. Pri najnižjih koncentracijah encimov (0,1 mg/mL β-laktamaze in 1 mg/mL lakaze) se je po 90 min razgradilo 20 % PEN, pri srednjih koncentracijah (0,2 mg/mL β-laktamaze in 2 mg/mL lakaze) 38 %, pri najvišjih koncentracijah (0,4 mg/mL β-laktamaze in 4 mg/mL lakaze) pa 45 %. Rezultati jasno potrjujejo neposredno povezavo med koncentracijo imobiliziranih encimov in katalitsko učinkovitostjo sistema.
Ključne besede:imobilizacija encimov, magnetna kovinsko-organska ogrodja (mMOFs), lakaza, β-laktamaza, HPLC, čiščenje odpadnih vod
Kraj izida:Maribor
Kraj izvedbe:Maribor
Založnik:[T. Senekovič]
Leto izida:2025
Št. strani:1 spletni vir (1 datoteka PDF (XI, 57 str.))
PID:20.500.12556/DKUM-96312 Novo okno
UDK:628.35:577.15(043.2)
COBISS.SI-ID:270124035 Novo okno
Datum objave v DKUM:02.03.2026
Število ogledov:175
Število prenosov:24
Metapodatki:XML DC-XML DC-RDF
Področja:KTFMB - FKKT
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Licence

Licenca:CC BY-NC-ND 4.0, Creative Commons Priznanje avtorstva-Nekomercialno-Brez predelav 4.0 Mednarodna
Povezava:http://creativecommons.org/licenses/by-nc-nd/4.0/deed.sl
Opis:Najbolj omejujoča licenca Creative Commons. Uporabniki lahko prenesejo in delijo delo v nekomercialne namene in ga ne smejo uporabiti za nobene druge namene.
Začetek licenciranja:17.12.2025

Sekundarni jezik

Jezik:Angleški jezik
Naslov:Development of magnetic metal-organic frameworks for simultaneous immobilization and function of multiple enzymes
Opis:Pollution of water resources with residues of pharmaceutical compounds, particularly antibiotics, represents a serious environmental problem, as even low concentrations can adversely affect aquatic ecosystems and promote the development of antimicrobial resistance. Since conventional wastewater treatment processes often fail to completely remove these compounds, biocatalytic approaches are becoming increasingly attractive. Enzymes such as β-lactamase and laccase enable the selective degradation of pollutants, and their efficiency can be significantly enhanced through immobilization on magnetic metal–organic frameworks (mMOFs), which improve stability and reusability and allow for easy separation of the catalysts from the reaction medium. In this master’s thesis, we developed ZIF-8-based mMOFs for the simultaneous immobilization of β-lactamase and laccase and evaluated their efficiency in the degradation of penicillin G (PEN). Magnetic nanoparticles coated with arabinogalactan (AG-MNPs) were synthesized, ZIF-8 was prepared, and magnetic composites (mZIF-8) were fabricated. The optimal immobilization conditions were 7.5% (v/v) glutaraldehyde (GA) and HEPES buffer at pH 7.3. The residual activity of the immobilized enzymes was 53.85% for β-lactamase (β-lactamase@mZIF-8) and 94.21% for laccase (laccase@mZIF-8), while in the case of co-immobilization (β-lactamase/laccase@mZIF-8) the residual activity was 39.73% for β-lactamase and 53.79% for laccase. The high immobilization efficiency (85–96%) confirms the suitability of the selected support. The degradation of PEN was investigated at antibiotic concentrations of 0.1, 1, and 10 mg/mL. At 0.1 mg/mL PEN, the immobilized systems removed/degraded PEN more rapidly than the free enzymes: β-lactamase@mZIF-8 within 30 minutes, laccase@mZIF-8 within 40 minutes, and the β-lactamase/laccase@mZIF-8 system within only 10 minutes. At 1 mg/mL PEN, free β-lactamase degraded only 8% of PEN within 90 minutes, whereas the β-lactamase/laccase@mZIF-8 system completely removed/degraded PEN within the same time period. The greatest differences among the systems were observed at a PEN concentration of 10 mg/mL. For mZIF-8, an adsorption plateau of approximately 30–32% was reached. Free β-lactamase required 192 hours for near-complete degradation, whereas only about 5% of PEN remained unremoved/undegraded when using β-lactamase@mZIF-8. The co-immobilized system was the most efficient, achieving almost complete removal/degradation of PEN (97%). Increasing the concentrations of both enzymes in the co-immobilized system further accelerated PEN degradation. At the lowest concentrations of immobilized enzymes (0.1 mg/mL β-lactamase and 1 mg/mL laccase), 20% of PEN was degraded after 90 minutes; at intermediate concentrations (0.2 mg/mL β-lactamase and 2 mg/mL laccase), 38% was degraded; and at the highest tested concentrations (0.4 mg/mL β-lactamase and 4 mg/mL laccase), 45% degradation was achieved. These results clearly confirm a direct relationship between the concentration of immobilized enzymes and the catalytic efficiency of the system.
Ključne besede:enzyme immobilization, magnetic metal-organic frameworks (mMOFs), laccase, β-lactamase, HPLC, wastewater treatment


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