2020
DOI: 10.1016/j.jtemb.2019.126448
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Effect of silver doping on antidiabetic and antioxidant potential of ZnO nanorods

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Cited by 50 publications
(30 citation statements)
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“…79 Here, ZnO nano-needles and nano-rods combined with Au and Ag enhanced the efficacy of BNPs in inhibiting carbohydrates hydrolyzing enzymes as compared to core-shell Au-Ag BNPs. Similarly, Robkhob et al 80 also demonstrated undoped ZnO nanorods inhibited 84.88 AE 0.37% a-glucosidase activity while Ag-doped ZnO nanorods resulted in 91.19 AE 0.37% inhibition. a-Amylase breaks down the complex starch into simple glucose while a-glucosidase catalyzes the 1,4-a-glucopyranosidic bond to produce a-glucose.…”
Section: Biological Activities Of Bimetallic Npsmentioning
confidence: 81%
“…79 Here, ZnO nano-needles and nano-rods combined with Au and Ag enhanced the efficacy of BNPs in inhibiting carbohydrates hydrolyzing enzymes as compared to core-shell Au-Ag BNPs. Similarly, Robkhob et al 80 also demonstrated undoped ZnO nanorods inhibited 84.88 AE 0.37% a-glucosidase activity while Ag-doped ZnO nanorods resulted in 91.19 AE 0.37% inhibition. a-Amylase breaks down the complex starch into simple glucose while a-glucosidase catalyzes the 1,4-a-glucopyranosidic bond to produce a-glucose.…”
Section: Biological Activities Of Bimetallic Npsmentioning
confidence: 81%
“…It is important to note that the absorption spectra of ZnOAgPs didn’t show superposition with the individual single-component particles which might be attributed to the strong electronic coupling between the Ag and ZnO ( Satter et al, 2014 ). Ag mixed in the ZnO increased separation of charge, while the high ZnO content in the vicinity resulted in the increase in the refractive index of the surrounding medium which resulted in the shifting of the SPR band ( Karmakar et al, 2020 ; Robkhob et al, 2020 ). Further, PL spectra provided strong scientific evidence of the distinct quenching of the emission in ZnOAgPs which was attributed to the efficient charge transfer from ZnO to Ag interface ( Misra et al, 2014 ).…”
Section: Discussionmentioning
confidence: 99%
“…In addition to NPs, various of nano structures have been reported to remove ROS, such as nanosheet [ [108] , [109] , [110] ], nanorod [ 111 , 112 ], nanotube [ 113 , 114 ], nanofiber [ 115 , 116 ], and nanomesoporous [ 117 ], have been reported to remove ROS. These nanostructures have many active sites, large specific surface areas, or a specific structural effect, thus improving their ROS-scavenging effect.…”
Section: Ros-scavenging Nanomaterials That Promote Oxidative Damage Repair and Mechanisms Governing This Repairmentioning
confidence: 99%