Alves MM, Bouchami O, Tavares A, Cordoba L, Santos CF, Miragaia M, Montemor MF (2017)

New insights into antibiolm effect of a nanosized ZnO coating against the pathogenic methi-

cillin resistant Staphylococcus aureus. ACS Appl Mater Interfaces 9:2815728167

Ananpattarachai J, Boonto Y, Kajitvichyanukul P (2016) Visible light photocatalytic antibacterial

activity of Ni-doped and N-doped TiO2 on Staphylococcus aureus and Escherichia coli bacteria.

Environ Sci Pollut Res 23(5):41114119

Applerot G, Lellouche J, Lipovsky A, Nitzan Y, Lubart R, Gedanken A, Banin E (2012) Under-

standing the antibacterial mechanism of CuO nanoparticles: revealing the route of induced

oxidative stress. Small 8(21):33263337

Arguaete DM, Kim B, Hochella F, Ma JY, Chen Y, Hoegh A, Pruden A (2013) Antimicrobial

nanotechnology: its potential for the effective management of microbial drug resistance and

implications for research needs in microbial nanotoxicology. Environ Sci Process Impacts 15:

93102

Arokiyaraj S, Saravanan M, Prakash NU, Arasu MV, Vijayakumar B, Vincent S (2013) Enhanced

antibacterial activity of iron oxide magnetic nanoparticles treated with Argemone mexicana

L. leaf extract: an in vitro study. Mater Res Bull 48(9):33233327

Azam Z, Ayaz A, Younas M, Qureshi Z, Arshad B, Zaman W, Ullah F, Nasar MQ, Bahadur S, Irfan

MM, Hussain S, Saqib S (2020) Microbial synthesized cadmium oxide nanoparticles induce

oxidative stress protein leakage in bacterial cells. Microb Pathog 144:104188

Basnet P, Larsen GK, Jadeja RP, Hung YC, Zhao Y (2013) α-Fe2O3 nanocolumns and nanorods

fabricated by electron beam evaporation for visible light photocatalytic and antimicrobial

applications. ACS Appl Mater Interfaces 5(6):20852095

Biao L, Tan S, Wang Y, Guo X, Fu Y, Xu F, Zu Y, Liu Z (2017) Synthesis, characterization and

antibacterial study on the chitosan-functionalized Ag nanoparticles. Mater Sci Eng C 76:7380

Blair JM, Webber MA, Baylay AJ, Ogbolu DO, Piddock LJ (2015) Molecular mechanisms of

antibiotic resistance. Nat Rev Microbiol 13(1):4251

Blinova I, Ivask A, Heinlaan M, Mortimer M, Kahru A (2010) Ecotoxicity of nanoparticles of CuO

and ZnO in natural water. Environ Pollut 158(1):4147

Borkow G, Gabbay J (2009) Copper, an ancient remedy returning toght microbial, fungal and

viral infections. Curr Chem Biol 3(3):272278

Cai R, Yang D, Lin KT, Cao TS, Lyy Y, Chen K, Yang Y, Ge J, Xia L, Christou G, Zho Y, Chen Z,

Tan W (2019) 3D halos assembled from Fe3O4/Au NPs with enhanced catalytic and optical

properties. Nanoscale 11:2096820976

Chauhan M, Sharma B, Kumar R, Chaudhary GR, Hassan AA, Kumar S (2019) Green synthesis of

CuO nanomaterials and their procient use for organic waste removal and antimicrobial

application. Environ Res 168:8595

Chen J, Mao S, Xu Z, Ding W (2019) Various antibacterial mechanisms of biosynthesized copper

oxide nanoparticles against soilborne Ralstonia solanacearum. RSC Adv 9:37883799

Cope GF, Cope A (2013) Antibiotic resistance and how to act on it. Dent Nurs 9:706709

Cruz DM, Tien-Street W, Zhang B, Huang X, Crua AV, Nieto-Argüello A, Cholula-Díaz JL,

Martínez L, Huttel Y, González MU, García-Martín JM (2019) Citric juice-mediated synthesis

of tellurium nanoparticles with antimicrobial and anticancer properties. Green Chem 21(8):

19821998

Cui Y, Zhao Y, Tian Y, Zhang W, Lü X, Jiang X (2012) The molecular mechanism of action of

bactericidal gold nanoparticles on Escherichia coli. Biomaterials 33(7):23272333

Delcour AH (2009) Outer membrane permeability and antibiotic resistance. Biochim Biophys Acta

1794(5):808816

Fang G, Li W, Shen X, Perez-Aguilar JM, Chong Y, Gao X, Chai Z, Chen C, Ge C, Zhou R (2018)

Differential Pd-nanocrystal facets demonstrate distinct antibacterial activity against gram-

positive and gram-negative bacteria. Nat Commun 9(1):19

Gedda G, Pandey S, Lin YC, Wu HF (2015) Antibacterial effect of calcium oxide nano-plates

fabricated from shrimp shells. Green Chem 17(6):32763280

516

M. Chauhan et al.