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ORIGINAL RESEARCH

Characteristics of Biofilm-Forming Ability and Antibiotic Resistance of Cutibacterium acnes and Staphylococcus epidermidis from Acne Vulgaris Patients

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Pages 2457-2465 | Received 26 Jun 2023, Accepted 25 Aug 2023, Published online: 11 Sep 2023

References

  • Coenye T, Peeters E, Nelis HJ. Biofilm formation by Propionibacterium acnes is associated with increased resistance to antimicrobial agents and increased production of putative virulence factors. Res Microbiol. 2007;158(4):386–392. doi:10.1016/j.resmic.2007.02.001
  • Zaenglein AL, Thiboutot DM. Acne Vulgaris. In: Bolognia JL, Schaffer JV, Cerroni L, editors. Dermatology. Elsevier; 2017:588–603.
  • Goh C, Cheng C, Agak G, et al. Acne Vulgaris. In: Kang S, Amagai M, Bruckner AL, et al. editors. Fitzpatrick’s Dermatology. 9. Mc Graw Hill; 2019: 1391–1418.
  • Brandwein M, Steinberg D, Meshner S. Microbial biofilms and the human skin microbiome. NPJ Biofilms and Microbiomes. 2016;2(1):1–6. doi:10.1038/s41522-016-0004-z
  • Burkhart CG, Burkhart CN. Expanding the microcomedone theory and acne therapeutics: Propionibacterium acnes biofilm produces biological glue that holds corneocytes together to form plug. Elsevier. 2007;722–724.
  • Vasudevan R. Biofilms: microbial cities of scientific significance. J Microbiol Exp. 2014;1(3):1–16.
  • Moon SH, Roh HS, Kim YH, Kim JE, Ko JY, Ro YS. Antibiotic resistance of microbial strains isolated from Korean acne patients. The Journal of Dermatology. 2012;39(10):833–837. doi:10.1111/j.1346-8138.2012.01626.x
  • O’Neill AM, Gallo RL. Host-microbiome interactions and recent progress into understanding the biology of acne vulgaris. Microbiome. 2018;6(1):1–16. doi:10.1186/s40168-018-0558-5
  • Ruchiatan K, Rahardja JI, Rezano A, Hindritiani R, Sutedja E, Gunawan H. A five-year clinical acne patients profiles and its management based on Indonesian acne expert guideline in Bandung, Indonesia. Journal of Pakistan Association of Dermatology. 2020;30(2):229–234.
  • Dréno B, Bettoli V, Ochsendorf F, Layton A, Mobacken H, Degreef H. European recommendations on the use of oral antibiotics for acne. Eur J Dermatol. 2004;14(6):391–399.
  • Hindritiani R, Soedarwoto A, Ruchiatan K, et al. Resistensi antibiotik Propionibacterium acnes dari berbagai lesi kulit akne vulgaris di rumah sakit dr. Hasan Sadikin Bandung. Media Dermato-Venereologica Indonesiana. 2017;38:15–19.
  • Jahns AC, Lundskog B, Ganceviciene R, et al. An increased incidence of Propionibacterium acnes biofilms in acne vulgaris: a case–control study. British Journal of Dermatology. 2012;167(1):50–58. doi:10.1111/j.1365-2133.2012.10897.x
  • Loss M, Thompson KG, Agostinho‐Hunt A, et al. Noninflammatory comedones have greater diversity in microbiome and are more prone to biofilm formation than inflammatory lesions of acne vulgaris. Int J Dermatol. 2021;60(5):589–596. doi:10.1111/ijd.15308
  • Farran CE, Sekar A, Balakrishnan A, Shanmugam S, Arumugam P, Gopalswamy LJ. Prevalence of biofilm-producing Staphylococcus epidermidis in the healthy skin of individuals in Tamil Nadu, India. Indian J Med Microbiol. 2013;31(1):19–23. doi:10.4103/0255-0857.108712
  • Donadu MG, Ferrari M, Mazzarello V, et al. No correlation between biofilm-forming capacity and antibiotic resistance in environmental Staphylococcus spp.: in vitro results. Pathogens. 2022;11(4):471. doi:10.3390/pathogens11040471
  • Gajdács M, Baráth Z, Kárpáti K, et al. No correlation between biofilm formation, virulence factors, and antibiotic resistance in Pseudomonas aeruginosa: results from a laboratory-based in vitro study. Antibiotics. 2021;10(9):1134. doi:10.3390/antibiotics10091134
  • Kuehnast T, Cakar F, Weinhäupl T, et al. Comparative analyses of biofilm formation among different Cutibacterium acnes isolates. Int J Med Microbiol. 2018;308(8):1027–1035. doi:10.1016/j.ijmm.2018.09.005
  • Kumar B, Pathak R, Mary PB, Jha D, Sardana K, Gautam HK. New insights into acne pathogenesis: exploring the role of acne-associated microbial populations. Dermatologica sinica. 2016;34(2):67–73. doi:10.1016/j.dsi.2015.12.004
  • Toyofuku M, Inaba T, Kiyokawa T, Obana N, Yawata Y, Nomura N. Environmental factors that shape biofilm formation. Bioscience, Biotechnology, and Biochemistry. 2016;80(1):7–12. doi:10.1080/09168451.2015.1058701
  • Platsidaki E, Dessinioti C. Recent advances in understanding Propionibacterium acnes (Cutibacterium acnes) in acne. F1000Research. 2018;7:1953. doi:10.12688/f1000research.15659.1
  • Rachmawati D, Alimsardjono L. The correlation between icaA and icaD genes with biofilm formation Staphylococcus epidermidis in vitro. Folia Medica Indonesiana. 2019;55(4):251–259. doi:10.20473/fmi.v55i4.24388
  • Nakase K, Nakaminami H, Takenaka Y, Hayashi N, Kawashima M, Noguchi N. Relationship between the severity of acne vulgaris and antimicrobial resistance of bacteria isolated from acne lesions in a hospital in Japan. J Med Microbiol. 2014;63(5):721–728. doi:10.1099/jmm.0.067611-0
  • Yadav AK, Bhooshan S, Johnson A, Asati DP, Nema S, Biswas D. Association of Antimicrobial Susceptibility and Treatment Outcome in Acne Vulgaris Patients: a Pilot Study. Journal of Laboratory Physicians. 2020;12(04):233–238. doi:10.1055/s-0040-1720943