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Microbial Interactions at Nanobiotechnology Interfaces
Читать книгу Microbial Interactions at Nanobiotechnology Interfaces - Группа авторов - Страница 1
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Table of Contents
List of Tables
List of Illustrations
Guide
Pages
Страница 7
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1 Shape‐ and Size‐Dependent Antibacterial Activity of Nanomaterials
Objectives
1.1 Introduction
1.2 Synthesis of Nanomaterials
1.3 Classification of NMs
1.3.1 Classification Based on Dimensions
1.3.1.1 Zero‐Dimensional NMs
1.3.1.2 One‐Dimensional NMs
1.3.1.3 Two‐Dimensional NMs
1.3.1.4 Three‐Dimensional NMs
1.3.2 Classification Based on Chemical Compositions
1.3.2.1 Carbon‐Based NMs
1.3.2.2 Organic‐Based NMs
1.3.2.3 Inorganic‐Based NMs
1.3.2.3.1 Metal‐Based NMs
1.3.2.3.2 Metal Oxide‐Based NMs
1.3.2.3.3 Composite‐Based NMs
1.3.3 Classification Based on Origin
1.4 Application of NMs
1.4.1 Advanced Application of NMs as Antimicrobial Agents
1.5 Bacterial Resistance to Antibiotics
1.5.1 Mechanism of Antibiotic Resistance
1.5.1.1 Antibiotics Modification
1.5.1.2 Antibiotic Efflux
1.5.1.3 Target Modification or Bypass or Protection
1.6 Microbial Resistance: Role of NMs
1.6.1 Overcoming the Existing Antibiotic Resistance Mechanisms
1.6.1.1 Combating Microbes Using Multiple Mechanisms Simultaneously
1.6.1.2 Acting as Good Carriers of Antibiotics
1.7 Antibacterial Application of NMs
1.7.1 Nanometals
1.7.2 Metal Oxides
1.7.3 Carbonaceous NMs
1.7.4 Cationic Polymer NMs
1.8 Interaction of NMs with Bacteria
1.9 Antibacterial Mechanism of NMs
1.10 Factors Affecting the Antibacterial Activity of NMs
1.10.1 Size
1.10.2 Shape
1.10.3 Zeta Potential
1.10.4 Roughness
1.10.5 Synthesis Methods and Stabilizing Agents
1.10.6 Environmental Conditions
1.11 Influence of Size on the Antibacterial Activity and Mechanism of Action of Nanomaterials
1.12 Influence of Shape on the Antibacterial Activity and Mechanism of Action of Nanomaterials
1.13 Effects of Functionalization on the Antimicrobial Property of Nanomaterials
1.14 Conclusion and Future Perspectives
Questions and Answers
References
Keywords
Glossary
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