166
Hameed ASH, Karthikeyan C, Ahamed AP, Thajuddin N, Alharbi NS, Alharbi SA, Ravi G (2016)
In vitro antibacterial activity of ZnO and Nd doped ZnO nanoparticles against ESBL producing
Escherichia coli and Klebsiella pneumoniae. Sci Rep 6:24312
Hayat S, Muzammil S, Rasool MH, Nisar Z, Hussain SZ, Sabri AN, Jamil S (2018) In vitro antibiofilm and anti-adhesion effects of magnesium oxide nanoparticles against antibiotic resistant
bacteria. Microbiol Immunol 62:211–220. https://doi.org/10.1111/1348- 0421.12580
He W, Kim HK, Wamer WG, Melka D, Callahan JH, Yin JJ (2013) Photogenerated charge carriers
and reactive oxygen species in ZnO/Gold hybrid nanostructures with enhanced photocatalytic
and antibacterial activity. J Am Chem Soc 136:750–757
Hemeg HA (2017) Nanomaterials for alternative antibacterial therapy. Int J Nanomedicine
12:8211–8225
Huang WC, Tsai PJ, Chen YC (2009) Multifunctional Fe3O4@ Gold nanoeggs as photothermal
agents for selective killing of nosocomial and antibiotic-resistant bacteria. Small 5:51–56
Huang L et al (2014) Antimicrobial photodynamic therapy with decacationic monoadducts and
bisadducts of [70] fullerene: in vitro and in vivo studies. Nanomedicine 9:253–266
Hussain N et al (2014) Reduced graphene oxide nanosheets decorated with gold nanoparticles as
an effective bactericide: investigation of biocompatibility and leakage of sugars and proteins.
ChemPlusChem 79:1774–1784
Huy TQ, Thanh NTH, Thuy NT, Van Chung P, Hung PN, Le A-T, Hanh NTH (2017) Cytotoxicity
and antiviral activity of electrochemical–synthesized silver nanoparticles against poliovirus. J
Virol Methods 241:52–57
Ismail RA, Sulaiman GM, Abdulrahman SA, Marzoog TR (2015) Antibacterial activity of magnetic
iron oxide nanoparticles synthesized by laser ablation in liquid. Mater Sci Eng C 53:286–297
Jahnke JP, Cornejo JA, Sumner JJ, Schuler AJ, Atanassov P, Ista LK (2016) Conjugated gold
nanoparticles as a tool for probing the bacterial cell envelope: the case of Shewanella oneidensis MR-1. Biointerphases 11:1–7
Jeyaraj Pandian C, Palanivel R, Dhanasekaran S (2016) Screening antimicrobial activity of nickel
nanoparticles synthesized using Ocimum sanctum leaf extract. J Nanopart 2016:1–16
Kakkar R, Madgula K, Nehru YS, Kakkar J (2015) Polyvinyl alcohol-melamine Formaldehyde
films and coatings with silver nano particles as wound dressings in diabetic foot disease. Eur
Chem Bull 4:98–105
Kalita S, Kandimalla R, Bhowal AC, Kotoky J, Kundu S (2018) Functionalization of β-lactam
antibiotic on lysozyme capped gold nanoclusters retrogress MRSA and its persisters following
awakening. Sci Rep 8:1–13
Kanmani P, Lim ST (2013) Synthesis and structural characterization of silver nanoparticles using
bacterial exopolysaccharide and its antimicrobial activity against food and multidrug resistant
pathogens. Process Biochem 48:1099–1106
Kaweeteerawat C, Na Ubol P, Sangmuang S, Aueviriyavit S, Maniratanachote R (2017)
Mechanisms of antibiotic resistance in bacteria mediated by silver nanoparticles. J Toxic
Environ Health A 80:1276–1289
Khalandi B, Asadi N, Milani M, Davaran S, Abadi AJN, Abasi E, Akbarzadeh A (2017) A review
on potential role of silver nanoparticles and possible mechanisms of their actions on bacteria.
Drug Res 67:70–76
Khameneh B, Diab R, Ghazvini K, Bazzaz BSF (2016) Breakthroughs in bacterial resistance
mechanisms and the potential ways to combat them. Microb Pathog 95:32–42
Khataminejad MR, Mirnejad R, Sharif M, Hashemi M, Sajadi N, Piranfar V (2015) Antimicrobial
effect of imipenem-functionalized Fe2O3 nanoparticles on Pseudomonas aeruginosa producing Metallo β-lactamases Iranian. J Biotechnol 13:43–47
Kumar MS, Karthikeyan S, Ramprasad C, Aruna PR, Mathivanan N, Velmurugan D, Ganesan S
(2015) Investigation of phloroglucinol succinic acid dendrimer as antimicrobial agent against
Staphylococcus Aureus, Escherichia Coli and Candida Albicans. Nano Biomed Eng 7:62–74
Kunkalekar R, Naik M, Dubey S, Salker A (2013) Antibacterial activity of silver-doped manganese
dioxide nanoparticles on multidrug-resistant bacteria. J Chem Technol Biotechnol 88:873–877
R. Sinha et al.
Hameed ASH, Karthikeyan C, Ahamed AP, Thajuddin N, Alharbi NS, Alharbi SA, Ravi G (2016)
In vitro antibacterial activity of ZnO and Nd doped ZnO nanoparticles against ESBL producing
Escherichia coli and Klebsiella pneumoniae. Sci Rep 6:24312
Hayat S, Muzammil S, Rasool MH, Nisar Z, Hussain SZ, Sabri AN, Jamil S (2018) In vitro antibiofilm and anti-adhesion effects of magnesium oxide nanoparticles against antibiotic resistant
bacteria. Microbiol Immunol 62:211–220. https://doi.org/10.1111/1348- 0421.12580
He W, Kim HK, Wamer WG, Melka D, Callahan JH, Yin JJ (2013) Photogenerated charge carriers
and reactive oxygen species in ZnO/Gold hybrid nanostructures with enhanced photocatalytic
and antibacterial activity. J Am Chem Soc 136:750–757
Hemeg HA (2017) Nanomaterials for alternative antibacterial therapy. Int J Nanomedicine
12:8211–8225
Huang WC, Tsai PJ, Chen YC (2009) Multifunctional Fe3O4@ Gold nanoeggs as photothermal
agents for selective killing of nosocomial and antibiotic-resistant bacteria. Small 5:51–56
Huang L et al (2014) Antimicrobial photodynamic therapy with decacationic monoadducts and
bisadducts of [70] fullerene: in vitro and in vivo studies. Nanomedicine 9:253–266
Hussain N et al (2014) Reduced graphene oxide nanosheets decorated with gold nanoparticles as
an effective bactericide: investigation of biocompatibility and leakage of sugars and proteins.
ChemPlusChem 79:1774–1784
Huy TQ, Thanh NTH, Thuy NT, Van Chung P, Hung PN, Le A-T, Hanh NTH (2017) Cytotoxicity
and antiviral activity of electrochemical–synthesized silver nanoparticles against poliovirus. J
Virol Methods 241:52–57
Ismail RA, Sulaiman GM, Abdulrahman SA, Marzoog TR (2015) Antibacterial activity of magnetic
iron oxide nanoparticles synthesized by laser ablation in liquid. Mater Sci Eng C 53:286–297
Jahnke JP, Cornejo JA, Sumner JJ, Schuler AJ, Atanassov P, Ista LK (2016) Conjugated gold
nanoparticles as a tool for probing the bacterial cell envelope: the case of Shewanella oneidensis MR-1. Biointerphases 11:1–7
Jeyaraj Pandian C, Palanivel R, Dhanasekaran S (2016) Screening antimicrobial activity of nickel
nanoparticles synthesized using Ocimum sanctum leaf extract. J Nanopart 2016:1–16
Kakkar R, Madgula K, Nehru YS, Kakkar J (2015) Polyvinyl alcohol-melamine Formaldehyde
films and coatings with silver nano particles as wound dressings in diabetic foot disease. Eur
Chem Bull 4:98–105
Kalita S, Kandimalla R, Bhowal AC, Kotoky J, Kundu S (2018) Functionalization of β-lactam
antibiotic on lysozyme capped gold nanoclusters retrogress MRSA and its persisters following
awakening. Sci Rep 8:1–13
Kanmani P, Lim ST (2013) Synthesis and structural characterization of silver nanoparticles using
bacterial exopolysaccharide and its antimicrobial activity against food and multidrug resistant
pathogens. Process Biochem 48:1099–1106
Kaweeteerawat C, Na Ubol P, Sangmuang S, Aueviriyavit S, Maniratanachote R (2017)
Mechanisms of antibiotic resistance in bacteria mediated by silver nanoparticles. J Toxic
Environ Health A 80:1276–1289
Khalandi B, Asadi N, Milani M, Davaran S, Abadi AJN, Abasi E, Akbarzadeh A (2017) A review
on potential role of silver nanoparticles and possible mechanisms of their actions on bacteria.
Drug Res 67:70–76
Khameneh B, Diab R, Ghazvini K, Bazzaz BSF (2016) Breakthroughs in bacterial resistance
mechanisms and the potential ways to combat them. Microb Pathog 95:32–42
Khataminejad MR, Mirnejad R, Sharif M, Hashemi M, Sajadi N, Piranfar V (2015) Antimicrobial
effect of imipenem-functionalized Fe2O3 nanoparticles on Pseudomonas aeruginosa producing Metallo β-lactamases Iranian. J Biotechnol 13:43–47
Kumar MS, Karthikeyan S, Ramprasad C, Aruna PR, Mathivanan N, Velmurugan D, Ganesan S
(2015) Investigation of phloroglucinol succinic acid dendrimer as antimicrobial agent against
Staphylococcus Aureus, Escherichia Coli and Candida Albicans. Nano Biomed Eng 7:62–74
Kunkalekar R, Naik M, Dubey S, Salker A (2013) Antibacterial activity of silver-doped manganese
dioxide nanoparticles on multidrug-resistant bacteria. J Chem Technol Biotechnol 88:873–877
R. Sinha et al.
