Literature DB >> 31625518

Antibacterial magnetic nanoparticles for therapeutics: a review.

Alireza Allafchian1, Seyed Sajjad Hosseini2.   

Abstract

Along with the extensive range of exotic nanoparticle (NPs) applications, investigation of magnetic NPs (MNPs) in vitro has ushered modern antibacterial studies into an increasingly attractive research area. A great number of microorganisms exist in the size scales from nanometre to micrometre regions. The enormous potential of engineered MNPs in therapeutic procedures against various drug-resistant bacteria has declined the menace of fatal bacterial infections. Many biocompatible MNPs have been introduced that possess remarkable impacts on various bacterial strains. Conventional synthesis methods such as co-precipitation or hydrothermal techniques have been widely adopted in the production of MNPs. The MNPs for antibacterial applications are mainly required to be superparamagnetic, recyclable and biocompatible. To implement novel strategies in developing new generation antimicrobial magnetic nanomaterials, it is essential to obtain a comprehensive preview of recent achievements in synthesis, proposed antibacterial mechanisms and characterisation techniques of these nanomaterials. This review highlights notable aspects of antibacterial activity in engineered MNPs and nanocomposites including their particle properties (size, shape and saturation magnetisation), antibacterial mechanisms, synthesis methods, testing methods, surface modifications and minimum inhibitory concentrations.

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Year:  2019        PMID: 31625518      PMCID: PMC8676097          DOI: 10.1049/iet-nbt.2019.0146

Source DB:  PubMed          Journal:  IET Nanobiotechnol        ISSN: 1751-8741            Impact factor:   1.847


  103 in total

Review 1.  A review of near infrared spectroscopy and chemometrics in pharmaceutical technologies.

Authors:  Yves Roggo; Pascal Chalus; Lene Maurer; Carmen Lema-Martinez; Aurélie Edmond; Nadine Jent
Journal:  J Pharm Biomed Anal       Date:  2007-03-30       Impact factor: 3.935

2.  Shape effects of filaments versus spherical particles in flow and drug delivery.

Authors:  Yan Geng; Paul Dalhaimer; Shenshen Cai; Richard Tsai; Manorama Tewari; Tamara Minko; Dennis E Discher
Journal:  Nat Nanotechnol       Date:  2007-03-25       Impact factor: 39.213

3.  Shape induced inhibition of phagocytosis of polymer particles.

Authors:  Julie A Champion; Samir Mitragotri
Journal:  Pharm Res       Date:  2008-06-12       Impact factor: 4.200

4.  Facile synthesis of magnetic disinfectant immobilized with silver ions for water pathogenic microorganism's deactivation.

Authors:  Khalid Z Elwakeel; Mohamed Azab El-Liethy; Mohammad S Ahmed; Saeid M Ezzat; Mohamed M Kamel
Journal:  Environ Sci Pollut Res Int       Date:  2018-05-31       Impact factor: 4.223

5.  Silver-coated engineered magnetic nanoparticles are promising for the success in the fight against antibacterial resistance threat.

Authors:  Morteza Mahmoudi; Vahid Serpooshan
Journal:  ACS Nano       Date:  2012-03-07       Impact factor: 15.881

Review 6.  Antimicrobial magnetic nanoparticles based-therapies for controlling infectious diseases.

Authors:  Gisele Regina Rodrigues; Carlos López-Abarrategui; Inés de la Serna Gómez; Simoni Campos Dias; Anselmo J Otero-González; Octavio Luiz Franco
Journal:  Int J Pharm       Date:  2018-11-16       Impact factor: 5.875

7.  Synthesis of Ag ion-implanted TiO2 thin films for antibacterial application and photocatalytic performance.

Authors:  Xinggang Hou; Huiyan Ma; Feng Liu; Jianhua Deng; Yukai Ai; Xinlei Zhao; Dong Mao; Dejun Li; Bin Liao
Journal:  J Hazard Mater       Date:  2015-05-14       Impact factor: 10.588

8.  Agar and broth dilution methods to determine the minimal inhibitory concentration (MIC) of antimicrobial substances.

Authors:  Irith Wiegand; Kai Hilpert; Robert E W Hancock
Journal:  Nat Protoc       Date:  2008       Impact factor: 13.491

9.  Antioxidative Nanoparticles Significantly Enhance Therapeutic Efficacy of an Antibacterial Therapy against Listeria monocytogenes Infection.

Authors:  Yutaka Ikeda; Kazuhiro Shoji; Chitho P Feliciano; Shinji Saito; Yukio Nagasaki
Journal:  Mol Pharm       Date:  2018-02-20       Impact factor: 4.939

10.  Uptake, distribution, clearance, and toxicity of iron oxide nanoparticles with different sizes and coatings.

Authors:  Qiyi Feng; Yanping Liu; Jian Huang; Ke Chen; Jinxing Huang; Kai Xiao
Journal:  Sci Rep       Date:  2018-02-01       Impact factor: 4.379

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  1 in total

1.  Bactericidal Activity of Multilayered Hybrid Structures Comprising Titania Nanoparticles and CdSe Quantum Dots under Visible Light.

Authors:  Ekaterina Kolesova; Anastasia Bulgakova; Vladimir Maslov; Andrei Veniaminov; Aliaksei Dubavik; Yurii Gun'ko; Olga Efremenkova; Vladimir Oleinikov; Anna Orlova
Journal:  Nanomaterials (Basel)       Date:  2021-12-08       Impact factor: 5.076

  1 in total

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