169
Shaikh S, Rizvi SM, Shakil S, Hussain T, Alshammari TM, Ahmad W, Tabrez S, Al‐Qahtani
MH, Abuzenadah AM (2017) Synthesis and characterization of cefotaxime conjugated gold
nanoparticles and their use to target drug-resistant CTX-M-producing bacterial pathogens. J
Cell Biochem 118:2802–2808
Shionoiri N, Sato T, Fujimori Y, Nakayama T, Nemoto M, Matsunaga T, Tanaka T (2012)
Investigation of the antiviral properties of copper iodide nanoparticles against feline calicivirus.
J Biosci Bioeng 113:580–586. https://doi.org/10.1016/j.jbiosc.2011.12.006
Silvero C MJ, Rocca DM, de la Villarmois EA, Fournier K, Lanterna AE, Perez MF, Becerra MC,
Scaiano JC (2018) Selective photoinduced antibacterial activity of amoxicillin-coated gold
nanoparticles: from one-step synthesis to in vivo cytocompatibility. ACS Omega 3:1220–1230
Singh K, Panghal M, Kadyan S, Chaudhary U, Yadav JP (2014) Green silver nanoparticles of
Phyllanthus amarus: as an antibacterial agent against multi drug resistant clinical isolates of
Pseudomonas aeruginosa. J Nanobiotechnol 12:1–9
Sinha R, Khare SK (2014) Differential interactions of halophilic and non-halophilic proteases with
nanoparticles. Sust Chem Processes 2:1–8
Sinha R, Karan R, Sinha A, Khare S (2011) Interaction and nanotoxic effect of Zinc oxide and Silver
nanoparticles on mesophilic and halophilic bacterial cells. Bioresour Technol 102:1516–1520
Sirelkhatim A et al (2015) Review on zinc oxide nanoparticles: antibacterial activity and toxicity
mechanism. Nano-Micro Letters 7:219–242
Soren S, Kumar S, Mishra S, Jena PK, Verma SK, Parhi P (2018) Evaluation of antibacterial
and antioxidant potential of the zinc oxide nanoparticles synthesized by aqueous and polyol
method. Microb Pathog 119:145–151
Steffy K, Shanthi G, Maroky AS, Selvakumar S (2017) Enhanced antibacterial effects of green
synthesized Zinc oxide NPs using Aristolochia indica against multidrug resistant bacterial
pathogens from Diabetic Foot Ulcer. J Infect Public Health 11:463–471
Steffy K, Shanthi G, Maroky AS, Selvakumar S (2018) Synthesis and characterization of Zinc
oxide phytonanocomposite using Strychnos nux-vomica L.(Loganiaceae) and antimicrobial
activity against multidrug-resistant bacterial strains from diabetic foot ulcer. J Adv Res 9:69–77
Surwade P, Ghildyal C, Weikel C, Luxton T, Peloquin D, Fan X, Shah V (2019) Augmented antibacterial activity of ampicillin with silver nanoparticles against methicillin-resistant Staphylococcus
aureus (MRSA). J Antibiot 72:50–53. https://doi.org/10.1038/s41429- 018- 0111- 6
Tacconelli E et al (2018) Discovery, research, and development of new antibiotics: the World
Health Organization priority list of antibiotic-resistant bacteria and tuberculosis. Lancet Infect
Dis 18:318–327
Tam KH et al (2008) Antibacterial activity of Zinc oxide nanorods prepared by a hydrothermal
method. Thin Solid Films 516:6167–6174. https://doi.org/10.1016/j.tsf.2007.11.081
Tanwar J, Das S, Fatima Z, Hameed S (2014) Multidrug resistance: an emerging crisis
Interdisciplinary. Perspect Infect Dis 2014:1–7
Tiwari PM, Vig K, Dennis VA, Singh SR (2011) Functionalized gold nanoparticles and their biomedical applications. Nano 1:31–63
Tiwari V, Tiwari M, Solanki V (2017) Polyvinylpyrrolidone-capped silver nanoparticle inhibits
infection of carbapenem-resistant strain of Acinetobacter baumannii in the human pulmonary
epithelial cell. Front Immunol 8:1–9
Tiwari V, Mishra N, Gadani K, Solanki PS, Shah NA, Tiwari M (2018) Mechanism of anti- bacterial
activity of Zinc Oxide nanoparticle against carbapenem-resistant Acinetobacter baumannii.
Front Microbiol 9:1–10. https://doi.org/10.3389/fmicb.2018.01218
Wan G, Ruan L, Yin Y, Yang T, Ge M, Cheng X (2016) Effects of silver nanoparticles in combination with antibiotics on the resistant bacteria Acinetobacter baumannii. Int J Nanomedicine
11:3789–3800
Wang F, Guo C, Yang LR, Liu CZ (2010) Magnetic mesoporous silica nanoparticles: fabrication
and their laccase immobilization performance. Bioresour Technol 101:8931–8935. https://doi.
org/10.1016/j.biortech.2010.06.115
6 Exploring Microbial Nanotoxicity Against Drug Resistance in Bacteria
Shaikh S, Rizvi SM, Shakil S, Hussain T, Alshammari TM, Ahmad W, Tabrez S, Al‐Qahtani
MH, Abuzenadah AM (2017) Synthesis and characterization of cefotaxime conjugated gold
nanoparticles and their use to target drug-resistant CTX-M-producing bacterial pathogens. J
Cell Biochem 118:2802–2808
Shionoiri N, Sato T, Fujimori Y, Nakayama T, Nemoto M, Matsunaga T, Tanaka T (2012)
Investigation of the antiviral properties of copper iodide nanoparticles against feline calicivirus.
J Biosci Bioeng 113:580–586. https://doi.org/10.1016/j.jbiosc.2011.12.006
Silvero C MJ, Rocca DM, de la Villarmois EA, Fournier K, Lanterna AE, Perez MF, Becerra MC,
Scaiano JC (2018) Selective photoinduced antibacterial activity of amoxicillin-coated gold
nanoparticles: from one-step synthesis to in vivo cytocompatibility. ACS Omega 3:1220–1230
Singh K, Panghal M, Kadyan S, Chaudhary U, Yadav JP (2014) Green silver nanoparticles of
Phyllanthus amarus: as an antibacterial agent against multi drug resistant clinical isolates of
Pseudomonas aeruginosa. J Nanobiotechnol 12:1–9
Sinha R, Khare SK (2014) Differential interactions of halophilic and non-halophilic proteases with
nanoparticles. Sust Chem Processes 2:1–8
Sinha R, Karan R, Sinha A, Khare S (2011) Interaction and nanotoxic effect of Zinc oxide and Silver
nanoparticles on mesophilic and halophilic bacterial cells. Bioresour Technol 102:1516–1520
Sirelkhatim A et al (2015) Review on zinc oxide nanoparticles: antibacterial activity and toxicity
mechanism. Nano-Micro Letters 7:219–242
Soren S, Kumar S, Mishra S, Jena PK, Verma SK, Parhi P (2018) Evaluation of antibacterial
and antioxidant potential of the zinc oxide nanoparticles synthesized by aqueous and polyol
method. Microb Pathog 119:145–151
Steffy K, Shanthi G, Maroky AS, Selvakumar S (2017) Enhanced antibacterial effects of green
synthesized Zinc oxide NPs using Aristolochia indica against multidrug resistant bacterial
pathogens from Diabetic Foot Ulcer. J Infect Public Health 11:463–471
Steffy K, Shanthi G, Maroky AS, Selvakumar S (2018) Synthesis and characterization of Zinc
oxide phytonanocomposite using Strychnos nux-vomica L.(Loganiaceae) and antimicrobial
activity against multidrug-resistant bacterial strains from diabetic foot ulcer. J Adv Res 9:69–77
Surwade P, Ghildyal C, Weikel C, Luxton T, Peloquin D, Fan X, Shah V (2019) Augmented antibacterial activity of ampicillin with silver nanoparticles against methicillin-resistant Staphylococcus
aureus (MRSA). J Antibiot 72:50–53. https://doi.org/10.1038/s41429- 018- 0111- 6
Tacconelli E et al (2018) Discovery, research, and development of new antibiotics: the World
Health Organization priority list of antibiotic-resistant bacteria and tuberculosis. Lancet Infect
Dis 18:318–327
Tam KH et al (2008) Antibacterial activity of Zinc oxide nanorods prepared by a hydrothermal
method. Thin Solid Films 516:6167–6174. https://doi.org/10.1016/j.tsf.2007.11.081
Tanwar J, Das S, Fatima Z, Hameed S (2014) Multidrug resistance: an emerging crisis
Interdisciplinary. Perspect Infect Dis 2014:1–7
Tiwari PM, Vig K, Dennis VA, Singh SR (2011) Functionalized gold nanoparticles and their biomedical applications. Nano 1:31–63
Tiwari V, Tiwari M, Solanki V (2017) Polyvinylpyrrolidone-capped silver nanoparticle inhibits
infection of carbapenem-resistant strain of Acinetobacter baumannii in the human pulmonary
epithelial cell. Front Immunol 8:1–9
Tiwari V, Mishra N, Gadani K, Solanki PS, Shah NA, Tiwari M (2018) Mechanism of anti- bacterial
activity of Zinc Oxide nanoparticle against carbapenem-resistant Acinetobacter baumannii.
Front Microbiol 9:1–10. https://doi.org/10.3389/fmicb.2018.01218
Wan G, Ruan L, Yin Y, Yang T, Ge M, Cheng X (2016) Effects of silver nanoparticles in combination with antibiotics on the resistant bacteria Acinetobacter baumannii. Int J Nanomedicine
11:3789–3800
Wang F, Guo C, Yang LR, Liu CZ (2010) Magnetic mesoporous silica nanoparticles: fabrication
and their laccase immobilization performance. Bioresour Technol 101:8931–8935. https://doi.
org/10.1016/j.biortech.2010.06.115
6 Exploring Microbial Nanotoxicity Against Drug Resistance in Bacteria
