Review on Zinc Oxide Nanoparticles: Antibacterial Activity and Toxicity Mechanism

被引:2807
|
作者
Sirelkhatim, Amna [1 ]
Mahmud, Shahrom [1 ]
Seeni, Azman [2 ]
Kaus, Noor Haida Mohamad [3 ]
Ann, Ling Chuo [1 ]
Bakhori, Siti Khadijah Mohd [1 ]
Hasan, Habsah [4 ]
Mohamad, Dasmawati [5 ]
机构
[1] Univ Sains Malaysia, Sch Phys, Nanooptoelect Res & Technol Lab NOR Lab, Minden 11800, Pulau Pinang, Malaysia
[2] Univ Sains Malaysia, Cluster Integrat Med, Adv Med & Dent Inst, Bertam 13200, Malaysia
[3] Univ Sains Malaysia, Sch Chem Sci, Minden 11800, Pulau Pinang, Malaysia
[4] Univ Sains Malaysia, Sch Med Sci, Dept Med Microbiol Parasitol & Immunol, Kubang Kerian 16150, Kelantan, Malaysia
[5] Univ Sains Malaysia, Sch Dent Sci, Kubang Kerian 16150, Kelantan, Malaysia
关键词
Antibacterial activity; ZnO-NPs; Toxicity mechanism; Reactive oxygen species; Zinc ions release; Food antimicrobial; GRAM-POSITIVE BACTERIA; ZNO NANOPARTICLES; OXIDATIVE STRESS; REACTIVE OXYGEN; VISIBLE-LIGHT; ANTIMICROBIAL ACTIVITY; SILVER NANOPARTICLES; HYDROGEN-PEROXIDE; PARTICLE-SIZE; CANCER-CELLS;
D O I
10.1007/s40820-015-0040-x
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Antibacterial activity of zinc oxide nanoparticles (ZnO-NPs) has received significant interest worldwide particularly by the implementation of nanotechnology to synthesize particles in the nanometer region. Many microorganisms exist in the range from hundreds of nanometers to tens of micrometers. ZnO-NPs exhibit attractive antibacterial properties due to increased specific surface area as the reduced particle size leading to enhanced particle surface reactivity. ZnO is a bio-safe material that possesses photo-oxidizing and photocatalysis impacts on chemical and biological species. This review covered ZnO-NPs antibacterial activity including testing methods, impact of UV illumination, ZnO particle properties (size, concentration, morphology, and defects), particle surface modification, and minimum inhibitory concentration. Particular emphasize was given to bactericidal and bacteriostatic mechanisms with focus on generation of reactive oxygen species (ROS) including hydrogen peroxide (H2O2), OH- (hydroxyl radicals), and O-2(-2) (peroxide). ROS has been a major factor for several mechanisms including cell wall damage due to ZnO-localized interaction, enhanced membrane permeability, internalization of NPs due to loss of proton motive force and uptake of toxic dissolved zinc ions. These have led to mitochondria weakness, intracellular outflow, and release in gene expression of oxidative stress which caused eventual cell growth inhibition and cell death. In some cases, enhanced antibacterial activity can be attributed to surface defects on ZnO abrasive surface texture. One functional application of the ZnO antibacterial bioactivity was discussed in food packaging industry where ZnO-NPs are used as an antibacterial agent toward foodborne diseases. Proper incorporation of ZnO-NPs into packaging materials can cause interaction with foodborne pathogens, thereby releasing NPs onto food surface where they come in contact with bad bacteria and cause the bacterial death and/or inhibition.
引用
收藏
页码:219 / 242
页数:24
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