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- W2914583552 endingPage "21" @default.
- W2914583552 startingPage "21" @default.
- W2914583552 abstract "Multiple drug resistance (MDR) for the treatment of bacterial infection has been a significant challenge since the beginning of the 21st century. Many of the small molecule-based antibiotic treatments have failed on numerous occasions due to a surge in MDR, which has claimed millions of lives worldwide. Small particles (SPs) consisting of metal, polymer or carbon nanoparticles (NPs) of different sizes, shapes and forms have shown considerable antibacterial effect over the past two decades. Unlike the classical small-molecule antibiotics, the small particles are less exposed so far to the bacteria to trigger a resistance mechanism, and hence have higher chances of fighting the challenge of the MDR process. Until recently, there has been limited progress of clinical treatments using NPs, despite ample reports of in vitro antibacterial efficacy. In this review, we discuss some recent and unconventional strategies that have explored the antibacterial efficacy of these small particles, alone and in combination with classical small molecules in vivo, and demonstrate possibilities that are favorable for clinical translations in near future." @default.
- W2914583552 created "2019-02-21" @default.
- W2914583552 creator A5027852280 @default.
- W2914583552 creator A5040996634 @default.
- W2914583552 date "2019-01-31" @default.
- W2914583552 modified "2023-10-12" @default.
- W2914583552 title "Promising Recent Strategies with Potential Clinical Translational Value to Combat Antibacterial Resistant Surge" @default.
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