AI Article Synopsis

  • The study compared the dilution and plating methods to assess the antibacterial effects of metal-organic framework nanocubes (MOF-5-NCs) and broccoli extract on Pseudomonas aeruginosa.
  • Sonochemical synthesis was used for MOF-5-NCs, which were characterized using various techniques, while different extraction methods for broccoli were evaluated for their antioxidant properties.
  • The results indicated that the dilution method inaccurately estimated viability and that the plate count method provided a more accurate minimum bactericidal concentration (MBC), with MIC values of 7.81 mg/mL for broccoli extract and 3.13 mg/mL for MOF-5-NCs.

Article Abstract

The aim of this work was comparison study of dilution and plating method for evaluation of the synergism effect of metal-organic framework nanocubes (MOF-5-NCs) and broccoli extract (Brassica oleracea) on antibacterial activity of standard and clinical Pseudomonas aeruginosa strains. For this purpose, sonochemical synthesis of MOF-5-NCs was performed and it was characterized using XRD, FT-IR, FESEM and EDS techniques. Maceration extraction (ME) and ultrasound assisted extraction (UAE) methods in three different solvents were prepared and applicability of their extracts were compared in some cases such as radical scavenging and antioxidant activity. The HPLC/UV analysis was applied for separation, identification and evaluation of phenolic acids in prepared broccoli extracts. Then, antimicrobial activity of MOF-5NCs and broccoli extract against gram-negative bacteria, Pseudomonas aeruginosa was evaluated by detection of minimal inhibition concentration (MIC), minimal bactericidal concentration (MBC) and zone of inhibition (ZOI). The results of in vitro assays showed that dilution method due to flase estimation of 4% viability percentage which is not logic by consideration of MBC well could not be able to estimate MBC. Therefore, plate count method was performed for precise calculation of MBC. MIC of broccoli extract and MOF-5-NCs on Pseudomonas aeruginosa strains were 7.81mgmL and 3.13mgmL, respectively.

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http://dx.doi.org/10.1016/j.ultsonch.2017.09.001DOI Listing

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