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Escaping the ESKAPE pathogens: A review on antibiofilm potential of nanoparticles.
Sarkar, Sampriti; Roy, Ankita; Mitra, Rangan; Kundu, Sweta; Banerjee, Prajna; Acharya Chowdhury, Avik; Ghosh, Suparna.
Affiliation
  • Sarkar S; Department of Biosciences, JIS University, Kolkata, India.
  • Roy A; Department of Biosciences, JIS University, Kolkata, India.
  • Mitra R; Department of Biosciences, JIS University, Kolkata, India.
  • Kundu S; Department of Biosciences, JIS University, Kolkata, India.
  • Banerjee P; Department of Biosciences, JIS University, Kolkata, India.
  • Acharya Chowdhury A; Department of Biosciences, JIS University, Kolkata, India.
  • Ghosh S; Department of Biosciences, JIS University, Kolkata, India. Electronic address: suparna.ghosh@jisuniversity.ac.in.
Microb Pathog ; 194: 106842, 2024 Sep.
Article in En | MEDLINE | ID: mdl-39117012
ABSTRACT
ESKAPE pathogens, a notorious consortium comprising Enterococcusfaecium, Staphylococcusaureus, Klebsiellapneumoniae, Acinetobacterbaumannii, Pseudomonasaeruginosa, and Enterobacter species, pose formidable challenges in healthcare settings due to their multidrug-resistant nature. The increasing global cases of antimicrobial-resistant ESKAPE pathogens are closely related to their remarkable ability to form biofilms. Thus, understanding the unique mechanisms of antimicrobial resistance of ESKAPE pathogens and the innate resilience of biofilms against traditional antimicrobial agents is important for developing innovative strategies to establish effective control methods against them. This review offers a thorough analysis of biofilm dynamics, with a focus on the general mechanisms of biofilm formation, the significant contribution of persister cells in the resistance mechanisms, and the recurrence of biofilms in comparison to planktonic cells. Additionally, this review highlights the potential strategies of nanoparticles for managing biofilms in the ESKAPE group of pathogens. Nanoparticles, with their unique physicochemical properties, provide promising opportunities for disrupting biofilm structures and improving antimicrobial effectiveness. The review has explored interactions between nanoparticles and biofilms, covering a range of nanoparticle types such as metal, metal-oxide, surface-modified, and functionalized nanoparticles, along with organic nanoparticles and nanomaterials. The additional focus of this review also encompasses green synthesis techniques of nanoparticles that involve plant extract and supernatants from bacterial and fungal cultures as reducing agents. Furthermore, the use of nanocomposites and nano emulsions in biofilm management of ESKAPE is also discussed. To conclude, the review addresses the current obstacles and future outlooks in nanoparticle-based biofilm management, stressing the necessity for further research and development to fully exploit the potential of nanoparticles in addressing biofilm-related challenges.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Biofilms / Nanoparticles / Anti-Bacterial Agents Limits: Humans Language: En Journal: Microb Pathog Journal subject: DOENCAS TRANSMISSIVEIS / MICROBIOLOGIA Year: 2024 Document type: Article Affiliation country: India Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Biofilms / Nanoparticles / Anti-Bacterial Agents Limits: Humans Language: En Journal: Microb Pathog Journal subject: DOENCAS TRANSMISSIVEIS / MICROBIOLOGIA Year: 2024 Document type: Article Affiliation country: India Country of publication: United kingdom