Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of Antibiotics
In addition to the benefits, increasing the constant need for antibiotics has resulted in the development of antibiotic bacterial resistance over time. Antibiotic tolerance mainly evolves in these bacteria through efflux pumps and biofilms. Leading to its modern and profitable uses, emerging nanotec...
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doaj-f7250494f19d43c49847fd6816bcb82c2021-09-09T13:48:46ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672021-09-01229596959610.3390/ijms22179596Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of AntibioticsHarshada Kotrange0Agnieszka Najda1Aarti Bains2Robert Gruszecki3Prince Chawla4Mansuri M. Tosif5Department of Food Technology and Nutrition, Lovely Professional University, Jalandhar 144411, Punjab, IndiaDepartment of Vegetable Crops and Medicinal Plants, University of Life Sciences in Lublin, Doświadczalna Street, 20-280 Lublin, PolandDepartment of Biotechnology, CT Institute of Pharmaceutical Sciences, South Campus, Jalandhar 144020, Punjab, IndiaDepartment of Vegetable Crops and Medicinal Plants, University of Life Sciences in Lublin, Doświadczalna Street, 20-280 Lublin, PolandDepartment of Food Technology and Nutrition, Lovely Professional University, Jalandhar 144411, Punjab, IndiaDepartment of Food Technology and Nutrition, Lovely Professional University, Jalandhar 144411, Punjab, IndiaIn addition to the benefits, increasing the constant need for antibiotics has resulted in the development of antibiotic bacterial resistance over time. Antibiotic tolerance mainly evolves in these bacteria through efflux pumps and biofilms. Leading to its modern and profitable uses, emerging nanotechnology is a significant field of research that is considered as the most important scientific breakthrough in recent years. Metal nanoparticles as nanocarriers are currently attracting a lot of interest from scientists, because of their wide range of applications and higher compatibility with bioactive components. As a consequence of their ability to inhibit the growth of bacteria, nanoparticles have been shown to have significant antibacterial, antifungal, antiviral, and antiparasitic efficacy in the battle against antibiotic resistance in microorganisms. As a result, this study covers bacterial tolerance to antibiotics, the antibacterial properties of various metal nanoparticles, their mechanisms, and the use of various metal and metal oxide nanoparticles as novel antibiotic carriers for direct antibiotic delivery.https://www.mdpi.com/1422-0067/22/17/9596nanotechnologymetal nanoparticleantimicrobial activityresistancebacteria |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Harshada Kotrange Agnieszka Najda Aarti Bains Robert Gruszecki Prince Chawla Mansuri M. Tosif |
spellingShingle |
Harshada Kotrange Agnieszka Najda Aarti Bains Robert Gruszecki Prince Chawla Mansuri M. Tosif Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of Antibiotics International Journal of Molecular Sciences nanotechnology metal nanoparticle antimicrobial activity resistance bacteria |
author_facet |
Harshada Kotrange Agnieszka Najda Aarti Bains Robert Gruszecki Prince Chawla Mansuri M. Tosif |
author_sort |
Harshada Kotrange |
title |
Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of Antibiotics |
title_short |
Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of Antibiotics |
title_full |
Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of Antibiotics |
title_fullStr |
Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of Antibiotics |
title_full_unstemmed |
Metal and Metal Oxide Nanoparticle as a Novel Antibiotic Carrier for the Direct Delivery of Antibiotics |
title_sort |
metal and metal oxide nanoparticle as a novel antibiotic carrier for the direct delivery of antibiotics |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1661-6596 1422-0067 |
publishDate |
2021-09-01 |
description |
In addition to the benefits, increasing the constant need for antibiotics has resulted in the development of antibiotic bacterial resistance over time. Antibiotic tolerance mainly evolves in these bacteria through efflux pumps and biofilms. Leading to its modern and profitable uses, emerging nanotechnology is a significant field of research that is considered as the most important scientific breakthrough in recent years. Metal nanoparticles as nanocarriers are currently attracting a lot of interest from scientists, because of their wide range of applications and higher compatibility with bioactive components. As a consequence of their ability to inhibit the growth of bacteria, nanoparticles have been shown to have significant antibacterial, antifungal, antiviral, and antiparasitic efficacy in the battle against antibiotic resistance in microorganisms. As a result, this study covers bacterial tolerance to antibiotics, the antibacterial properties of various metal nanoparticles, their mechanisms, and the use of various metal and metal oxide nanoparticles as novel antibiotic carriers for direct antibiotic delivery. |
topic |
nanotechnology metal nanoparticle antimicrobial activity resistance bacteria |
url |
https://www.mdpi.com/1422-0067/22/17/9596 |
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