Drug Delivery: Bactericidal Effect of Manganese Oxide-Loaded Carbon Nanotubes Enhances Drug Efficiency

M. Rahman, Al‐Nakib Chowdhury, Mahabubur Rahman, Md. Manwarul Islam
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引用次数: 1

Abstract

Effect Manganese Oxide-Loaded Carbon Abstract Nanoparticles increase their activity due to their large surface-to-volume ratio. It has promoted research to check the antibacterial activity of the synthesized manganese oxide nanoparticles of actual size. Carbon Nanotube (CNT) shows excellent potential as a biomedical substrate based on its high chemical stability, elasticity, mechanical strength, electrical conductivity, and nano-level attachment of CNT with microbiologically susceptible manganese oxide materials that opens new possibilities to enhance the antibacterial delivery system. Functionalized CNTs with nanoactive materials realize nanoscaled containers in which the active content is encapsulated by a protecting carbon shell. CNT itself doesn't have any antibacterial activity and can frequently release the carrying drugs to the target places in specific chemical environments. The ability to functionalize the sidewalls of CNT also leads to biomedical applications such as neuron growth and regeneration. This research focuses on the amplified application of CNT as a nano-carrier based delivery vehicle and their appropriate design for desired drug delivery results in different areas of infectious diseases.
药物传递:氧化锰负载碳纳米管的杀菌作用提高了药物效率
氧化锰负载碳纳米颗粒由于其较大的表面体积比而增加了它们的活性。它促进了对合成的实际尺寸的氧化锰纳米颗粒抗菌活性的研究。碳纳米管(CNT)由于其高化学稳定性、弹性、机械强度、导电性以及纳米级碳纳米管与微生物敏感的氧化锰材料的附着,为增强抗菌递送系统开辟了新的可能性,显示出作为生物医学基底的优异潜力。功能化碳纳米管与纳米活性材料实现纳米容器,其中的活性内容物被一个保护碳壳封装。碳纳米管本身不具有任何抗菌活性,在特定的化学环境中可以频繁地将携带药物释放到靶部位。碳纳米管侧壁功能化的能力也导致生物医学应用,如神经元生长和再生。本研究的重点是碳纳米管作为纳米载体载体的放大应用,以及它们在不同传染病领域的适当设计,以获得所需的药物递送结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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