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Pregled bibliografske jedinice broj: 1246033

A novel time-lapse imaging method for studying developing bacterial biofilms


Futo, Momir; Široki, Tin; Koska, Sara; Čorak, Nina; Tušar, Anja; Domazet-Lošo, Mirjana; Tomislav Domazet-Lošo
A novel time-lapse imaging method for studying developing bacterial biofilms // Scientific Reports, 12 (2022), 21120, 13 doi:10.1038/s41598-022-24431-y (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1246033 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
A novel time-lapse imaging method for studying developing bacterial biofilms

Autori
Futo, Momir ; Široki, Tin ; Koska, Sara ; Čorak, Nina ; Tušar, Anja ; Domazet-Lošo, Mirjana ; Tomislav Domazet-Lošo

Izvornik
Scientific Reports (2045-2322) 12 (2022); 21120, 13

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
bacterail biofilms ; time‑lapse visualization ; Arduino ; stereomicroscopy

Sažetak
In nature, bacteria prevailingly reside in the form of biofilms. These elaborately organized surface‑bound assemblages of bacterial cells show numerous features of multicellular organization. We recently showed that biofilm growth is a true developmental process, which resembles developmental processes in multicellular eukaryotes. To study the biofilm growth in a fashion of eukaryotic ontogeny, it is essential to define dynamics and critical transitional phases of this process. The first step in this endeavor is to record the gross morphological changes of biofilm ontogeny under standardized conditions. This visual information is instrumental in guiding the sampling strategy for the later omics analyses of biofilm ontogeny. However, none of the currently available visualizations methods is specifically tailored for recording gross morphology across the whole biofilm development. To address this void, here we present an affordable Arduino‑based approach for time‑lapse visualization of complete biofilm ontogeny using bright field stereomicroscopy with episcopic illumination. The major challenge in recording biofilm development on the air–solid interphase is water condensation, which compromises filming directly through the lid of a Petri dish. To overcome these trade‑offs, we developed an Arduino microcontroller setup which synchronizes a robotic arm, responsible for opening and closing the Petri dish lid, with the activity of a stereomicroscope‑mounted camera and lighting conditions. We placed this setup into a microbiological incubator that maintains temperature and humidity during the biofilm growth. As a proof‑of‑principle, we recorded biofilm development of five Bacillus subtilis strains that show different morphological and developmental dynamics.

Izvorni jezik
Engleski

Znanstvena područja
Biologija, Računarstvo, Biotehnologija u biomedicini (prirodno područje, biomedicina i zdravstvo, biotehničko područje)



POVEZANOST RADA


Projekti:
HRZZ-IP-2016-06-5924 - Filostratigrafija nastanka i gubitka gena (PhyLoss) (Domazet-Lošo, Tomislav, HRZZ - 2016-06) ( CroRIS)

Ustanove:
Fakultet elektrotehnike i računarstva, Zagreb,
Institut "Ruđer Bošković", Zagreb,
Hrvatsko katoličko sveučilište, Zagreb

Poveznice na cjeloviti tekst rada:

doi www.nature.com fulir.irb.hr

Citiraj ovu publikaciju:

Futo, Momir; Široki, Tin; Koska, Sara; Čorak, Nina; Tušar, Anja; Domazet-Lošo, Mirjana; Tomislav Domazet-Lošo
A novel time-lapse imaging method for studying developing bacterial biofilms // Scientific Reports, 12 (2022), 21120, 13 doi:10.1038/s41598-022-24431-y (međunarodna recenzija, članak, znanstveni)
Futo, M., Široki, T., Koska, S., Čorak, N., Tušar, A., Domazet-Lošo, M. & Tomislav Domazet-Lošo (2022) A novel time-lapse imaging method for studying developing bacterial biofilms. Scientific Reports, 12, 21120, 13 doi:10.1038/s41598-022-24431-y.
@article{article, author = {Futo, Momir and \v{S}iroki, Tin and Koska, Sara and \v{C}orak, Nina and Tu\v{s}ar, Anja and Domazet-Lo\v{s}o, Mirjana}, year = {2022}, pages = {13}, DOI = {10.1038/s41598-022-24431-y}, chapter = {21120}, keywords = {bacterail biofilms, time‑lapse visualization, Arduino, stereomicroscopy}, journal = {Scientific Reports}, doi = {10.1038/s41598-022-24431-y}, volume = {12}, issn = {2045-2322}, title = {A novel time-lapse imaging method for studying developing bacterial biofilms}, keyword = {bacterail biofilms, time‑lapse visualization, Arduino, stereomicroscopy}, chapternumber = {21120} }
@article{article, author = {Futo, Momir and \v{S}iroki, Tin and Koska, Sara and \v{C}orak, Nina and Tu\v{s}ar, Anja and Domazet-Lo\v{s}o, Mirjana}, year = {2022}, pages = {13}, DOI = {10.1038/s41598-022-24431-y}, chapter = {21120}, keywords = {bacterail biofilms, time‑lapse visualization, Arduino, stereomicroscopy}, journal = {Scientific Reports}, doi = {10.1038/s41598-022-24431-y}, volume = {12}, issn = {2045-2322}, title = {A novel time-lapse imaging method for studying developing bacterial biofilms}, keyword = {bacterail biofilms, time‑lapse visualization, Arduino, stereomicroscopy}, chapternumber = {21120} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • Social Science Citation Index (SSCI)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus
  • MEDLINE


Citati:





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