Antibacterial activity of mixed metal oxide derived from Zn-Al layered double hydroxide precursors, effect of calcination temperature

被引:3
作者
Ghribi, Fethi [1 ,2 ,3 ]
Bouarroudj, Tayeb [1 ]
Messai, Youcef [4 ]
Belkhattab, Ilyas [5 ]
Chetoui, Abdelmounaim [5 ]
Bourouba, Amira [6 ]
Bourouba, Amina [6 ]
Benbouzid, Houneida [6 ]
Louafi, Okba [7 ,8 ]
Djahoudi, Abdelghani [9 ]
Benmaamar, Zoubir [2 ]
Bachari, Khaldoune [1 ]
机构
[1] Sci & Tech Res Ctr Physico Chem Anal CRAPC, BP 384,RP42004, Bou Ismail, Tipaza, Algeria
[2] Blida1 Univ, Energy Proc & Nanotechnol Lab, Blida, Algeria
[3] Blida1 Univ, Lab Funct Anal Chem Proc, Blida, Algeria
[4] Badji Mokhtar Univ, Lab Study Surfaces & Interfaces Solid Matter LESIM, Annaba 23000, Algeria
[5] Res Ctr Semicond Technol Energet CRTSE, 02 Bd Frantz Fanon,07 Merveilles BP 140, Algiers 16038, Algeria
[6] Univ Badji Mokhtar, Fac Sci, Dept Biol, Lab Cellular Toxicol, Annaba 23000, Algeria
[7] Fac Exact Sci Univ Tebessa, Dept Mat Sci, Constantine Rd, Tebessa 12002, Algeria
[8] Univ Tebessa, Nat & Life Sci Echahid Cheikh Larbi Tebessi, Constantine Rd, Tebessa 12002, Algeria
[9] Univ Badji Mokhtar, Fac Med, Dept Pharm, Lab Microbiol, Annaba 23000, Algeria
关键词
Layered Double Hydroxide (LDHs); Mixed metal oxide (MMO); ZnO-ZnAl2O4; Antimicrobial Activity; Minimum Inhibitory Concentration (MIC); Minimum Bactericidal Concentration (MBC); ZINC-OXIDE; ANTIMICROBIAL ACTIVITY; SILVER NANOPARTICLES; SNO2; NANOPARTICLES; SURFACE; MECHANISM; DEGRADATION; ANTIBIOTICS; TOXICITY; NANORODS;
D O I
10.1007/s11756-023-01589-y
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
For several decades, the use of antibiotics has led to the emergence of highly resistant human and animal pathogens, posing a significant threat to global health, food security, and economic progress. In the quest for alternatives to combat multidrug-resistant bacteria and yeasts, the utilization of nanoparticles materials has emerged as a promising avenue. In this research, we investigated the antimicrobial properties of Zn-Al-layered double hydroxide, synthesized through co-precipitation and subsequently calcined at temperatures of 400, 600, and 800 degrees C. A total of 21 bacterial strains, including 15 clinical strains and 6 Gram-reference strains, along with one fungal strain, were subjected to testing. The synthesized materials underwent characterization using various techniques such as X-ray diffraction (XRD) spectroscopy, scanning electron microscopy (SEM), ultraviolet-visible spectroscopy, and fourier-transform infrared (FTIR) spectroscopy. The key findings indicate that the uncalcined Zn-Al-layered double hydroxide and the heterojunction ZnO-ZnAl2O4 calcined at 400 degrees C and 600 degrees C exhibited a minimum inhibitory concentration (MIC) of 0.125 mu g/mL against the tested strains. The spinell ZnAl2O4 calcined at 800 degrees C showed MICs ranging between 0.125 and 2 mu g/mL, with a greater bactericidal effect on gram-negative bacteria (GNBs) such as Enterobacteriaceae and non-Enterobacteriaceae compared to Gram-positive bacteria. Consequently, the heterojunction ZnO-ZnAl2O4 demonstrated higher efficacy against Gram-positive bacteria. These findings highlight the potential of heterojunction ZnO-ZnAl2O4 and spinell ZnAl2O4 as mixed metal oxides derived from ZnAl-layered double hydroxide, offering promising alternatives to traditional antibiotics and suggesting their potential use as impregnating agents in matrices with a broad spectrum of specific antimicrobial activity.
引用
收藏
页码:937 / 952
页数:16
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