59
Views
0
CrossRef citations to date
0
Altmetric
Research Articles

16s rDNA Gene Analysis and Screening Antibacterial Activity of Chitosan Nanoparticles against Bacteria Isolated from Biodeteriorated Archaeological Wall Paintings

ORCID Icon, , , , &
Pages 193-199 | Received 16 Jun 2022, Accepted 09 Jan 2024, Published online: 24 Jan 2024

References

  • Abdallah IM, et al. 2013. Effects of the groundwater on deterioration of the catacombs of Kom El-Shoqafa, Alexandria, Egypt. e_conservation. 1(25):168–181.
  • Abdel-Haliem MEF, Sakr AA, Ali MF, Ghaly MF, Sohlenkamp C. 2013. Characterization of Streptomyces isolates causing colour changes of mural paintings in ancient Egyptian tombs. Microbiol Res. 168(7):428–437.
  • Akpomie KG, Ghosh S, Gryzenhout M, Conradie J. 2021. Ananas comosus peel–mediated green synthesized magnetite nanoparticles and their antifungal activity against four filamentous fungal strains. Biomass Conv Bioref. 13(7):5649–5660.
  • Akpomie KG, Ghosh S, Gryzenhout M, Conradie J. 2021. One-pot synthesis of zinc oxide nanoparticles via chemical precipitation for bromophenol blue adsorption and the antifungal activity against filamentous fungi. Sci Rep. 11(1):8305.
  • Alqahtani F, Aleanizy F, El Tahir E, Alhabib H, Alsaif R, Shazly G, AlQahtani H, Alsarra I, Mahdavi J. 2020. Antibacterial activity of chitosan nanoparticles against pathogenic N. gonorrhoea. Int J Nanomedicine. 15:7877–7887.
  • Balouiri M, Sadiki M, Ibnsouda SK. 2016. Methods for in vitro evaluating antimicrobial activity: A review. J Pharm Anal. 6(2):71–79.
  • Bock E, Sand W. 1993. The microbiology of masonry biodeterioration. J Appl Bacteriol. 74(5):503–514.
  • Ciferri O. 1999. Microbial degradation of paintings. Appl Environ Microbiol. 65(3):879–885.
  • Divya K, Vijayan S, George TK, Jisha MS. 2017. Antimicrobial properties of chitosan nanoparticles: Mode of action and factors affecting activity. Fibers Polym. 18(2):221–230.
  • Elhagrassy AF. 2018. Isolation and characterization of actinomycetes from Mural paintings of Snu-Sert-Ankh tomb, their antimicrobial activity, and their biodeterioration. Microbiol Res. 216:47–55.
  • Empereur J-Y, et al. 1995. A short guide to the catacombs of Kom el Shoqafa Alexandria, Sarapis.
  • García-Rincón J, Vega-Pérez J, Guerra-Sánchez MG, Hernández-Lauzardo AN, Peña-Díaz A, Velázquez-Del Valle MG. 2010. Effect of chitosan on growth and plasma membrane properties of Rhizopus stolonifer (Ehrenb.: Fr.) Vuill. Pestic Biochem Physiol. 97(3):275–278.
  • Gurtner C, Heyrman J, Piñar G, Lubitz W, Swings J, Rölleke S. 2000. Comparative analyses of the bacterial diversity on two different biodeteriorated wall paintings by DGGE and 16S rDNA sequence analysis. International Biodeterioration & Biodegradation. 46(3):229–239.
  • Hemeda S. 2012. Seismic response analysis and protection of underground monumental structures–The Catacombs of Kom EL-Shoqafa, Alexandria, Egypt. Advances in Geotechnical Earthquake Engineering-Soil Liquefaction and Seismic Safety of Dams and Monuments. Rijeka, Croatia: IntechOpen.
  • Kader RRA, et al. 2017. Marine Environment’s Effect on the Deterioration of Archaeological Buildings in the Mediterranean Sea Coast (Alexandria–Egypt as an Example). Int J Archaeol. 5(2):14–18.
  • Kong M, Chen XG, Xing K, Park HJ. 2010. Antimicrobial properties of chitosan and mode of action: a state of the art review. Int J Food Microbiol. 144(1):51–63.
  • Krumbein, W. E. 1988. Microbial interactions with mineral materials. In Biodeterioration 7 (pp. 78-100). Dordrecht: Springer Netherlands.
  • Kumar P, Inwati GK, Mathpal MC, Ghosh S, Roos WD, Swart HC. 2021. Defects induced enhancement of antifungal activities of Zn doped CuO nanostructures. Appl Surf Sci. 560:150026.
  • Kumar P, Mathpal MC, Ghosh S, Inwati GK, Maze JR, Duvenhage M-M, Roos WD, Swart HC. 2022. Plasmonic Au nanoparticles embedded in glass: Study of TOF-SIMS, XPS and its enhanced antimicrobial activities. J Alloys Compd. 909:164789.
  • Kumar P, Mathpal MC, Inwati GK, Ghosh S, Kumar V, Roos WD, Swart HC. 2020. Optical and surface properties of Zn doped CdO nanorods and antimicrobial applications. Colloids Surf, A. 605:125369.
  • Kurowski G, et al. 2017. Paint-degrading microorganisms. Czasopismo Techniczne. 12:81–92.
  • Lasaponara R, Murgante B, Elfadaly A, Qelichi M, Shahraki S, Wafa O, Attia W. 2017. Spatial open data for monitoring risks and preserving archaeological areas and landscape: Case studies at Kom el Shoqafa, Egypt and Shush, Iran. Sustainability. 9(4):572.
  • Li Q, Dunn ET, Grandmaison EW, Goosen MFA. 1992. Applications and properties of chitosan. J Bioactive Compat Polym. 7(4):370–397.
  • Lupan I, Popescu O. 2012. Metagenomics and future perspectives for biodeterioration and biodegradation studies. Ann RSCB. 17(2):37.
  • Mateyise NGS, Ghosh S, Gryzenhout M, Chiyindiko E, Conradie MM, Langner EHG, Conradie J. 2021. Synthesis, characterization, DFT and biological activity of oligothiophene β-diketone and Cu-complexes. Polyhedron. 205:115290.
  • Matica MA, Aachmann FL, Tøndervik A, Sletta H, Ostafe V. 2019. Chitosan as a wound dressing starting material: Antimicrobial properties and mode of action. Int J Mol Sci. 20(23):5889.
  • McKenzie J, Moorey PRS. 2007. The Architecture of Alexandria and Egypt, c. 300 BC to AD 700. USA: Yale University Press New Haven.
  • Nugari MP, Pietrini AM, Caneva G, Imperi F, Visca P. 2009. Biodeterioration of mural paintings in a rocky habitat: The Crypt of the Original Sin (Matera, Italy). Int Biodeterior Biodegrad. 63(6):705–711.
  • Olayide O, Bilkis I. 2020. Utilization of xanthan gum and hplc determination of oxalic acid production by microorganisms isolated from biodeteriorating painted walls.
  • Parlasca K. 2005. MS Venit, Monumental Tombs of Ancient Alexandria, The Theater of the Dead, 2002. Topoi. Orient-Occident. 12(2):763–771.
  • Pepe O, Sannino L, Palomba S, Anastasio M, Blaiotta G, Villani F, Moschetti G. 2010. Heterotrophic microorganisms in deteriorated medieval wall paintings in southern Italian churches. Microbiol Res. 165(1):21–32.
  • Qi L, Xu Z, Jiang X, Hu C, Zou X. 2004. Preparation and antibacterial activity of chitosan nanoparticles. Carbohydr Res. 339(16):2693–2700.
  • Rölleke S, Muyzer G, Wawer C, Wanner G, Lubitz W. 1996. Identification of bacteria in a biodegraded wall painting by denaturing gradient gel electrophoresis of PCR-amplified gene fragments coding for 16S rRNA. Appl Environ Microbiol. 62(6):2059–2065.
  • Sakr AA, et al. 2012. Discoloration of ancient egyptian mural paintings by streptomyces strains and methods of its removal. Int J Conserv Sci. 3(4):249–258.
  • Santos VP, Marques NSS, Maia PCSV, Lima MABd, Franco LdO, Campos-Takaki GMd 2020. Seafood waste as attractive source of chitin and chitosan production and their applications. Int J Mol Sci. 21(12):4290.
  • Sterflinger K, Piñar G. 2013. Microbial deterioration of cultural heritage and works of art—tilting at windmills? Appl Microbiol Biotechnol. 97(22):9637–9646.
  • Supraja N, Prasad T. 2018. Synthesis and characterization of chitosan nanoparticles and evaluation of antimicrobial activity antioxidant activity. Adv Bioequiv Bioavailab. 2:88–93.
  • Tamura K, Stecher G, Peterson D, Filipski A, Kumar S. 2013. MEGA6: molecular evolutionary genetics analysis version 6.0. Mol Biol Evol. 30(12):2725–2729.
  • Thompson JD, Higgins DG, Gibson TJ. 1994. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Res. 22(22):4673–4680.
  • Vázquez-Martínez JUAN, Gutierrez-Villagomez JM, Fonseca-García C, Ramírez-Chávez E, Mondragón-Sánchez MAL, Partida-Martínez L, Johansen JR, Molina-Torres J. 2018. Nodosilinea chupicuarensis sp. nov.(Leptolyngbyaceae, Synechococcales) a subaerial cyanobacterium isolated from a stone monument in central Mexico. Phytotaxa. 334(2):167–182.
  • Yien L, et al. 2012. Antifungal activity of chitosan nanoparticles and correlation with their physical properties. Int J Biomater. 2012(4):14–22.

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.