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Difuzijske lastnosti zrelega biofilma Bacillus subtilis
ID Vajngerl, Urška (Author), ID Dogša, Iztok (Mentor) More about this mentor... This link opens in a new window

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Abstract
Biofilmi predstavljajo kompleksne mikrobne skupnosti, kjer so celice obdane z zunajceličnimi polimernimi snovmi (EPS), za katere se predpostavlja, da omejujejo transport protimikrobnih snovi v biofilmih. V magistrskem delu smo preučevali difuzijske lastnosti zrelega biofilma bakterije Bacillus subtilis s poudarkom na vplivu zunajceličnega polisaharida EpsA-O na difuzijo, transport in dostopnost fluorescenčno označenega antibiotika daptomicin. Prav tako smo želeli ovrednotiti vpliv velikosti molekul in strukture biofilma na difuzijo ter pojasniti vlogo EpsA-O na zmanjšano učinkovitost, porazdeljevanje in lokalizacijo daptomicina v biofilmu. Difuzijo smo preučevali z metodo FRAP (ang. fluorescence recovery after photobleaching) s fluorescenčno označenimi dekstrani različnih molekulskih mas v vodnih raztopinah in v biofilmu B. subtilis seva divjega tipa ter mutante Δeps, ki ne proizvaja EpsA-O. Rezultati so pokazali, da difuzija pada z naraščajočo molekulsko maso, in da je v biofilmu znatno upočasnjena v primerjavi z vodnimi raztopinami. S konfokalno mikroskopijo smo opazili, da je akumulacija daptomicina v celicah biofilma Δeps višja kot v biofilmu divjega tipa. Analiza kolokalizacije je pokazala sovpadanje daptomicina s celično membrano pri mutanti Δeps, pri divjem tipu pa zamik glede na membrano, kar nakazuje na interakcije z EPS. Kljub nizki koncentraciji in fluorescenčni označitvi daptomicina, smo opazili večjo odpornost biofilma divjega tipa na daptomicin kot pri mutanti Δeps. Poleg tega smo opazili hitrejše zmanjševanje lokalne koncentracije daptomicina v biofilmu divjega tipa, kar nakazuje na dodatne mehanizme prerazporejanja in redčenja antibiotika. Rezultati kažejo, da polisaharid EpsA-O pomembno vpliva na transport, mobilnost, porazdelitev, lokalizacijo in učinkovitost daptomicina ter prispeva k odpornosti biofilma.

Language:Slovenian
Keywords:biofilmi, zunajcelične polimerne snovi, polisaharidi, difuzija, daptomicin, odpornost biofilmov, Bacillus subtilis, FRAP, mikroskopija
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:BF - Biotechnical Faculty
Publisher:[U. Vajngerl]
Year:2026
PID:20.500.12556/RUL-184680 This link opens in a new window
UDC:579.2:579.852.11
COBISS.SI-ID:284495619 This link opens in a new window
Publication date in RUL:12.07.2026
Views:247
Downloads:0
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Secondary language

Language:English
Title:Diffusion properties of mature Bacillus subtilis biofilm
Abstract:
Biofilms are complex microbial communities in which cells are surrounded by extracellular polymeric substances (EPS), which are thought to limit the transport of antimicrobial agents within biofilms. In this master’s thesis, we investigated the diffusion properties of a mature Bacillus subtilis biofilm, focusing on the effect of the extracellular polysaccharide EpsA-O on the diffusion, transport, and availability of the fluorescently labeled antibiotic daptomycin. We also aimed to evaluate the influence of molecular size and biofilm structure on diffusion and to elucidate the role of EpsA-O in the reduced efficacy, distribution, and localization of daptomycin within the biofilm. Diffusion was studied using the method with fluorescently labeled dextrans of various molecular weights in aqueous solutions and in the biofilm of wild type B. subtilis and Δeps mutants, which do not produce EpsA-O. The results showed that diffusion decreases with increasing molecular weight and is significantly slowed in biofilms compared to aqueous solutions. Using confocal microscopy, we revealed that daptomycin accumulation in Δeps biofilm cells is higher compared to wild type biofilm. Colocalization analysis revealed that daptomycin coincided with the cell membrane in the Δeps mutant, whereas in the wild type strain, it was displaced relative to the membrane, suggesting interactions with EPS. Despite the low concentration and fluorescent labeling of daptomycin, we observed greater resistance of the wild type biofilm to daptomycin than the Δeps mutant. In addition, a faster decrease in the local concentration of daptomycin was observed in the wild type biofilm, suggesting additional mechanisms of antibiotic redistribution and dilution. The results indicate that the EpsA-O polysaccharide significantly influences the transport, mobility, distribution, localization, and efficacy of daptomycin and contributes to biofilm resistance.

Keywords:biofilms, extracellular polymeric substances, polysaccharides, diffusion, daptomycin, biofilm resistance, Bacillus subtilis, FRAP, microscopy

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