Publication Cover
Biofouling
The Journal of Bioadhesion and Biofilm Research
Volume 35, 2019 - Issue 3
274
Views
5
CrossRef citations to date
0
Altmetric
Original Articles

Multistep approach to control microbial fouling of historic building materials by aerial phototrophs

ORCID Icon, , , , , , & show all
Pages 284-298 | Received 08 Oct 2018, Accepted 14 Mar 2019, Published online: 23 Apr 2019

References

  • Abram A. 2007. Ocena skuteczności działania środków do zwalczania glonów na tynkach [Evaluation of the anti-algal biocides effectiveness on plaster surfaces]. Prace Instytutu Techniki Budowlanej. 3:3–13. Polish.
  • Andersen RA. 2005. Algal culturing techniques. Oxford (UK): Elsevier.
  • Ash M, Ash I. 2004. Handbook of preservatives. New York (NY): Synapse Information Resources Inc; p. 434.
  • Barberousse H, Ruot B, Yéprémian C, Boulon G. 2007. An assessment of facade coatings against colonization by aerial algae and cyanobacteria. Building Environ. 42:2555–2561. doi:10.1016/j.buildenv.2006.07.031
  • Bridier A, Briandet R, Thomas V, Dubois-Brissonnet F. 2011. Comparative biocidal activity of peracetic acid, benzalkonium chloride and ortho-phthalaldehyde on 77 bacterial strains. J Hosp Infect. 78:208–213. doi:10.1016/j.jhin.2011.03.014
  • Bruins MR, Kapil S, Oehme FW. 1999. Microbial resistance to metals in the environment. Ecotoxicol Environ Saf. 45:1421–1432.
  • Brycki B, Kowalczyk I, Koziróg A. 2011. Synthesis, molecular structure, spectral properties and antifungal activity of polymethylene-α,ω-bis(N,N- dimethyl-N-dodecyloammonium bromides). Molecules. 16:319–335. doi:10.3390/molecules16010319
  • Capitelli F, Villa F, Sorlini C. 2011. New environmental friendly approaches against biodeterioration of outdoor cultural heritage. In: Charola AE, McNamara C, Koestler RJ, editors. Biocolonization of stone: control and preventive methods. Proceedings from MCI Workshop 2011; Washington (DC): Smithsonian Institution Scholarly Press. p. 51–58.
  • Cutler NA, Viles HA, Ahmad S, McCabe S, Smith BJ. 2013. Algal 'greening' and the conservation of stone heritage structures. Sci Total Environ. 442:152–164. doi:10.1016/j.scitotenv.2012.10.050
  • De Beer D, Srinivasan R, Stewart P. 1994. Direct measurement of chlorine penetration into biofilms during disinfection. Appl Environ Microbiol. 60:4339–4344.
  • DIN EN 15458:2007-10. 2007. Paints and varnishes: laboratory method for testing the efficacy of biofilm preservatives in a coating against algae. Berlin.
  • Di Nica V, Gallet J, Villa S, Mezzanotte V. 2017. Toxicity of quaternary ammonium compounds (QACs) as single compounds and mixtures to aquatic non-targeted microorganisms: experimental data and predictive models. Ecotoxicol Environ Saf. 142:567–577. doi:10.1016/j.ecoenv.2017.04.028
  • Ebenezer V, Lim WA, Ki J-S. 2014. Effects of the algicides CuSO4 and NaOCl on various physiological parameters in the harmful dinoflagellate Cochlodinium polykrikoides. J Appl Phycol. 26:2357–2365. doi:10.1007/s10811-014-0267-9
  • Gabara B, Kalwinek J, Koziróg A, Żakowska Z, Brycki B. 2006. Influence of N,N-Bis(3-aminopropylo)dodecyloamine on the ultrastructure of nuclei in Aspergillus niger mycelium and on cell proliferation and mitotic disturbances in Allium cepa L root meristem. Acta Biol Crac Ser Bot. 48:45–52.
  • Gaylarde CC, Morton L. 1999. Deteriogenic biofilms on buildings and their control: a review. Biofouling. 14:59–74. doi:10.1080/08927019909378397
  • Genitsaris S, Kormas KA, Moustaka-Gouni M. 2011. Airborne algae and cyanobacteria: occurrence and related health effects. Front Biosci. 1:772–787.
  • Gladis F, Eggert A, Karsten U, Schumann R. 2010. Prevention of biofilm growth on man-made surfaces: evaluation of antialgal activity of two biocides and photocatalytic nanoparticles. Biofouling. 26:89–101. doi:10.1080/08927010903278184
  • Graham LE, Wilcox LW, Graham JM. 2009. Algae, 2nd ed. San Francisco (CA): Benjamin Cummings.
  • Grbić ML, Vukojević J, Simić GS, Krizmanić J, Stupar M. 2010. Biofilm forming cyanobacteria, algae and fungi on two historic monuments in Belgrade. Serbia. Arch Biol Sci (Beogr). 62:625–631. doi:10.2298/ABS1003625L
  • Gullota D, Villa F, Capitelli F, Toniolo L. 2018. Biofilm colonization of metamorphic lithotypes of a renaissance cathedral exposed to urban atmosphere. Sci Total Environ. 639:1480–1490. doi:10.1016/j.scitotenv.2018.05.277
  • Gutarowska B, Celikkol-Aydin S, Bonifay V, Otlewska A, Aydin E, Oldham AL, Brauer JI, Duncan KE, Adamiak J, Sunner JA. 2015a. Metabolomic and high-throughput sequencing analysis: modern approach for the assessment of biodeterioration of materials from historic buildings. Front Microbiol. 6:1–13.
  • Gutarowska B, Libudzisz Z, Żakowska Z, Brycki B, Koziróg A, Otlewska A, Piotrowska M, Rajkowska K, Nowicka-Krawczyk P, Kościelniak M. 2015b. Raport końcowy z projektu badawczego „Badania nad korozją biologiczną obiektów na terenie Muzeum Auschwitz- Birkenau w zakresie rozpoznania i zwalczania czynników biologicznych [Research on the biological corrosion of objects in the Auschwitz-Birkenau State Museum in terms of identification and control of biological agents]. Available from: http://auschwitz.org/gfx/auschwitz/userfiles/auschwitz/gpk/04_badania_wstep/korozja_biologiczna/04.03._wyniki_badan.pdf. [Polish].
  • Güsevell S, Gessner MO. 2009. N:P ratios influence litter decomposition and colonization by fungi and bacteria in microcosms. Funct Ecol. 23:211–219. doi:10.1111/j.1365-2435.2008.01478.x
  • Jerman M, Vejmelková E, Keppert M, Černý R. 2013. Properties of plasters suitable for reconstruction of historical buildings in structural studies repairs and maintenance of heritage. Architecture. 13:367–378.
  • Jolivet-Gougeon A, Bonnaure-Mallet M. 2014. Biofilms as a mechanism of bacterial resistance. Drug Discov Today Technol. 11:49–56. doi:10.1016/j.ddtec.2014.02.003
  • Junier P, Joseph E. 2017. Microbial biotechnology approaches to mitigating the deterioration of construction and heritage materials. Microb Biotechnol. 10:1145–1148. doi:10.1111/1751-7915.12795
  • Kim J-G, Kim B, Lee C-G. 2007. Alga-lytic activity of Pseudomonas fluorescens against red tide causing marine alga Heterosigma akashiwo (Raphidophyceae). Biol Control. 41:296–303. doi:10.1016/j.biocontrol.2007.02.010
  • Knauf GA, Cunningham AL, Kazi MI, Riddington IM, Crofts AA, Cattoir V, Trent MS, Davies BW. 2018. Exploring the antimicrobial action of quaternary amines against Acinetobacter baumannii. mBio. 9:1–13.
  • Koziróg A, Otlewska A, Piotrowska M, Rajkowska K, Nowicka-Krawczyk P, Hachułka M, Wolski GJ, Gutarowska B, Kunicka-Styczyńska A, Libudzisz Z, et al. 2014. Colonising organisms as a biodegradation factor affecting historical wood materials at the former concentration camp of Aushwitz II – Birkenau. Int Biodeter Biodegr. 86:171–178. doi:10.1016/j.ibiod.2013.08.004
  • Koziróg A, Rajkowska K, Otlewska A, Piotrowska M, Kunicka-Styczyńska A, Brycki B, Nowicka-Krawczyk P, Kościelniak M, Gutarowska B. 2016. Protection of historical wood against microbial degradation – selection and application of microbiocides. IJMS. 17:1–15.
  • Kuźniak E, Wyrwicka A, Gabara B, Koziróg A, Sklodowska M. 2006. Effects of N,N-Bis(3-aminopropylo)dodecyloamine on antioxidant enzyme activities, mitochondrial morphology and metabolism in Aspergillus niger. Folia Microbiol. 51:38–44. doi:10.1007/BF02931448
  • Lim CS, Lee SSC, Leong W, Ng YX, Teo SLM. 2014. A short review of laboratory and field testing of environmentally benign antifouling coatings. Indian J Geomarine Sci. 43:2067–2074.
  • Lushchak VI. 2011. Environmentally induced oxidative stress in aquatic animals. Aquat Toxicol. 101:13–30. doi:10.1016/j.aquatox.2010.10.006
  • May E, Zamarreňo D, Hotchkiss S, Mitchell J, Inkpen R. 2011. Bioremediation of algal contamination on stone. In: Charola AE, McNamara C, Koestler RJ, editors. Biocolonization of stone: control and preventive methods. Proceedings from MCI Workshop 2011; Washington (DC): Smithsonian Institution Scholarly Press. p. 59–70.
  • Millach L, Solé A, Esteve I. 2015. Role of Geitlerinema sp. DE2011 and Scenedesmus sp. DE2009 as bioindicators and immobilizers of chromium in a contaminated natural environment. Biomed Res Int. 2015:519711–519769.
  • Molin S, Givskov M. 1999. Application of molecular tools for in situ monitoring of bacterial growth activity. Environ Microbiol. 1:383–391. doi:10.1046/j.1462-2920.1999.00056.x
  • Nakagawa Y, Hayashi H, Tawaratani T, Kourai H, Horie T, Shibasaki I. 1984. Disinfection of water with quaternary ammonium salts insolubilized on a porous glass surface. Appl Environ Microbiol. 47:513–518.
  • Nowicka-Krawczyk P, Żelazna-Wieczorek J, Otlewska A, Koziróg A, Rajkowska K, Piotrowska M, Gutarowska B, Żydzik-Białek A. 2014. Diversity of an aerial phototrophic coating of historic buildings in the former Auschwitz II-Birkenau concentration camp. Sci Total Environ. 493:116–123. doi:10.1016/j.scitotenv.2014.05.113
  • Nowicka-Krawczyk P, Żelazna-Wieczorek J, Koźlecki T. 2017. Silver nanoparticles as a control agent against facades coated by aerial algae: a model study of Apatococcus lobatus (green algae). PLoS One. 12:e0183276:1–e0183214.
  • Obłak E, Adamski R, Lachowicz TM. 2003. pH-dependent influence of a quaternary ammonium salt and an aminoester on the yeast Saccharomyces cerevisiae ultrastructure. Cell Mol Biol Lett. 8:105–110.
  • Ortega-Calvo JJ, Arino X, Hernandez-Marine M, Saiz-Jimenez C. 1995. Factors affecting the weathering and colonization of monuments by phototrophic microorganisms. Sci Total Environ. 167:329–341. doi:10.1016/0048-9697(95)04593-P
  • Oukarroum A, Perreault F, Popović R. 2012. Interactive effects of temperature and copper on photosystem II photochemistry in Chlorella vulgaris. J Photochem Photobiol B, Biol. 110:9–14. doi:10.1016/j.jphotobiol.2012.02.003
  • Pang C, Fan X, Zhou J, Wu S. 2013. Optimal dosing time of acid algaecide for restraining algal growth. Water Science and Engineering. 6:402–408.
  • Piotrowska M, Otlewska A, Rajkowska K, Koziróg A, Hachułka M, Nowicka-Krawczyk P, Wolski GJ, Gutarowska B, Kunicka-Styczyńska A, Żydzik-Białek A. 2014. Abiotic determinants of the historical buildings biodeterioration in the former Auschwitz II – Birkenau concentration and extermination camp. PLoS One. 9:e109402:1–e109412.
  • Popović M, Điporović-Momčilović M, Gavrilović-Grmuša I, Popović J. 2016. Acidity of selected industrial wood species in Serbia. Glasnik [Umarskog Fakulteta]. 113:69–76.
  • Rajkowska K, Otlewska A, Koziróg A, Piotrowska M, Nowicka-Krawczyk P, Hachułka M, Wolski GJ, Kunicka-Styczyńska A, Gutarowska B, Żydzik-Białek A. 2014. Assessment of biological colonization of historic buildings in the former Auschwitz II-Birkenau concentration camp. Ann Microbiol. 64:799–808. doi:10.1007/s13213-013-0716-8
  • Rajkowska K, Koziróg A, Otlewska A, Piotrowska M, Nowicka-Krawczyk P, Brycki B, Kunicka-Styczyńska A, Gutarowska B. 2016. Quaternary ammonium biocides as antimicrobial agents protecting historical wood and brick. Acta Biochim Pol. 63:153–159.
  • Register of Biocidal Products. 2016. Part I: List of biocidal products which have been granted a marketing authorization of The Office of Registration of Medicinal Products, Medical Devices and Biocidal Products. Available from: http://bip.urpl.gov.pl/pl/biuletyny-i-wykazy/produkty-biob%C3%B3jcze [last accessed 9 May 2018].
  • Roldán M, Thomas F, Castel S, Quesada A, Hernández-Mariné M. 2004. Non-invasive pigment identification in single cells from living phototrophic biofilms by confocal imaging spectrofluorometry. Appl Environ Microbiol. 70:3745–3750. doi:10.1128/AEM.70.6.3745-3750.2004
  • Sadoh T, Nakato K. 1987. Surface properties of wood in physical and sensory aspects Kyoto, Japan. Wood Scitechnol. 21:111–120.
  • Salvadori O, Charola AE. 2011. Methods to prevent biocolonization and recolonization: an overview of current research for architectural and archaeological heritage. In: Charola AE, McNamara C, Koestler RJ, editors. Biocolonization of stone: control and preventive methods. Proceedings from MCI Workshop 2011; Washington (DC): Smithsonian Institution Scholarly Press. p. 37–50.
  • Samad LK, Adhikary SP. 2008. Diversity of micro-algae and cyanobacteria on building facades and monuments in India. Algae. 23:91–114. doi:10.4490/ALGAE.2008.23.2.091
  • Seder-Colomina M, Burgos A, Maldonado J, Solé A, Esteve I. 2013. The effect of copper on different phototrophic microorganisms determined in vivo and at cellular level by confocal laser microscopy. Ecotoxicology. 22:199–205. doi:10.1007/s10646-012-1014-0
  • Skinner K. 2006. The durability & solubility of plaster. Series of e-mail articles form the research group on Balace: 1–7. Available from: http://www.anotherperfectpoolnews.com/wp-content/uploads/Tech_Talk/onbalance_ks_thedurabilityofpaster.pdf [last accessed 20 May 2018].
  • Sosim S, Zsembery S, Ferguson JA. 1985. A study of pore size distributions in fired clay bricks in relation to salt attack resistance. Proceedings of the 17th International Brick Masonry Conference; Melbourne: Brick and Pipe Industries Ltd. p. 1–10.
  • Sterflinger K, Piňar G. 2013. Microbial deterioration of cultural heritage and works of art-tilting at windmills? Appl Microbiol Biotechnol. 97:9637–9646. doi:10.1007/s00253-013-5283-1
  • Tiano P. 2016. Biodeterioration of stone monuments a worldwide issue. Open Conf Proceed J. 7:29–38. doi:10.2174/2210289201607020029
  • Tretiach M, Crisafulli P, Imai N, Kashiwadani H, Moon KH, Wada H, Salvadori O. 2007. Efficacy of biocide tested on selected lichens and its effects on their substrata. Int Biodeter Biodegr. 59:44–54. doi:10.1016/j.ibiod.2006.06.027
  • Walters PA, Abbott EA, Isquith AJ. 1973. Algicidal activity of a surface-bonded organosilicon quaternary ammonium chloride. Appl Microbiol. 25:253–256.
  • Wessels S, Ingmer H. 2013. Modes of action of three disinfectant active substances: a review. Regul Toxicol Pharmacol. 67:456–467. doi:10.1016/j.yrtph.2013.09.006
  • Young ME, Alakomi H-L, Fortune I, Gorbushina AA, Krumbein WE, Maxwell I, McCullagh C, Robertson P, Saarela M, Valero J, Vendrell M. 2008. Development of a biocidal treatment regime to inhibit biological growths on cultural heritage: BIODAM. Environ Geol. 56:631–641. doi:10.1007/s00254-008-1455-1

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.