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Exploring bio-nanomaterials as antibiotic allies to combat antimicrobial resistance.
Barsola, Bindiya; Saklani, Shivani; Pathania, Diksha; Kumari, Priyanka; Sonu, Sonu; Rustagi, Sarvesh; Singh, Pardeep; Raizada, Pankaj; Moon, Tae Seok; Kaushik, Ajeet; Chaudhary, Vishal.
Affiliation
  • Barsola B; School of Biological and Environmental Sciences, Shoolini University of Biotechnology and Management Sciences, Solan 173229, India.
  • Saklani S; School of Biological and Environmental Sciences, Shoolini University of Biotechnology and Management Sciences, Solan 173229, India.
  • Pathania D; Department of Biosciences and technology (MMEC), Maharishi Markandeshwar University, Mullana (Ambala), Haryana 133203, India.
  • Kumari P; School of Biological and Environmental Sciences, Shoolini University of Biotechnology and Management Sciences, Solan 173229, India.
  • Sonu S; School of Advanced Chemical Sciences, Shoolini University of Biotechnology and Management Sciences, Solan 173229, India.
  • Rustagi S; School of Applied and Life Sciences, Uttranchal University, Dehradun, Uttrakhand, India.
  • Singh P; School of Advanced Chemical Sciences, Shoolini University of Biotechnology and Management Sciences, Solan 173229, India.
  • Raizada P; School of Advanced Chemical Sciences, Shoolini University of Biotechnology and Management Sciences, Solan 173229, India.
  • Moon TS; Department of Energy, Environmental and Chemical Engineering, Washington University in St. Louis, St. Louis, MO 63130, United States of America.
  • Kaushik A; NanoBioTech Laboratory, Department of Environmental Engineering, Florida Polytechnic University, Lakeland, FL, United States of America.
  • Chaudhary V; Physics Department, Bhagini Nivedita College, University of Delhi, Delhi 110043, India.
Biofabrication ; 16(4)2024 Aug 29.
Article in En | MEDLINE | ID: mdl-39102846
ABSTRACT
Antimicrobial resistance (AMR) poses an emergent threat to global health due to antibiotic abuse, overuse and misuse, necessitating urgent innovative and sustainable solutions. The utilization of bio-nanomaterials as antibiotic allies is a green, economic, sustainable and renewable strategy to combat this pressing issue. These biomaterials involve green precursors (e.g. biowaste, plant extracts, essential oil, microbes, and agricultural residue) and techniques for their fabrication, which reduce their cyto/environmental toxicity and exhibit economic manufacturing, enabling a waste-to-wealth circular economy module. Their nanoscale dimensions with augmented biocompatibility characterize bio-nanomaterials and offer distinctive advantages in addressing AMR. Their ability to target pathogens, such as bacteria and viruses, at the molecular level, coupled with their diverse functionalities and bio-functionality doping from natural precursors, allows for a multifaceted approach to combat resistance. Furthermore, bio-nanomaterials can be tailored to enhance the efficacy of existing antimicrobial agents or deliver novel therapies, presenting a versatile platform for innovation. Their use in combination with traditional antibiotics can mitigate resistance mechanisms, prolong the effectiveness of existing treatments, and reduce side effects. This review aims to shed light on the potential of bio-nanomaterials in countering AMR, related mechanisms, and their applications in various domains. These roles encompass co-therapy, nanoencapsulation, and antimicrobial stewardship, each offering a distinct avenue for overcoming AMR. Besides, it addresses the challenges associated with bio-nanomaterials, emphasizing the importance of regulatory considerations. These green biomaterials are the near future of One Health Care, which will have economic, non-polluting, non-toxic, anti-resistant, biocompatible, degradable, and repurposable avenues, contributing to sustainable development goals.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Nanostructures / Anti-Bacterial Agents Limits: Animals / Humans Language: En Journal: Biofabrication Journal subject: BIOTECNOLOGIA Year: 2024 Document type: Article Affiliation country: Country of publication:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Nanostructures / Anti-Bacterial Agents Limits: Animals / Humans Language: En Journal: Biofabrication Journal subject: BIOTECNOLOGIA Year: 2024 Document type: Article Affiliation country: Country of publication: