Nanobiotics against antimicrobial resistance: harnessing the power of nanoscale materials and technologies
Нанобиотики против антимикробной резистентности: использование потенциала наноразмерных материалов и технологий
2022-08-12
SCID: 54.1/sprenqzn
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antimicrobial resistance (AMR)biofilm penetrationnanobioticsnanoscale materialssurface chemistry
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Abstract (AI)
Given the spasmodic increment in antimicrobial resistance (AMR), world is on the verge of "post-antibiotic era". It is anticipated that current SARS-CoV2 pandemic would worsen the situation in future, mainly due to the lack of new/next generation of antimicrobials. In this context, nanoscale materials with antimicrobial potential have a great promise to treat deadly pathogens. These functional materials are uniquely positioned to effectively interfere with the bacterial systems and augment biofilm penetration. Most importantly, the core substance, surface chemistry, shape, and size of nanomaterials define their efficacy while avoiding the development of AMR. Here, we review the mechanisms of AMR and emerging applications of nanoscale functional materials as an excellent substitute for conventional antibiotics. We discuss the potential, promises, challenges and prospects of nanobiotics to combat AMR.
Key Findings
1
Core substance, surface chemistry, shape, and size of nanomaterials critically define their antimicrobial efficacy and ability to avoid development of AMR.
2
Nanomaterials can effectively interfere with bacterial systems and enhance biofilm penetration.
3
Nanoscale materials possess antimicrobial potential and are promising alternatives to conventional antibiotics against deadly pathogens.
4
The ongoing SARS-CoV2 pandemic is expected to worsen AMR, increasing urgency for nanobiotics as next-generation antimicrobials.
5
The review outlines mechanisms of AMR and evaluates emerging applications, potentials, challenges, and prospects of nanobiotics to combat AMR.
Research Object
Nanoscale functional materials (nanobiotics) used as antimicrobial agents
Research Subject
Their antimicrobial mechanisms, efficacy determinants (core composition, surface chemistry, shape, size), biofilm penetration, and potential to combat antimicrobial resistance (AMR) as substitutes for conventional antibiotics
Publication Details
Publication Date
2022-08-12
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