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Titlebook: Carbon Nanomaterials for Biomedical Applications; Mei Zhang,Rajesh R. Naik,Liming Dai Book 2016 Springer International Publishing Switzerl

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Janus Nanostructures for Biomedical Applications: Dual-Surfaces of Single Particle for Multifunctionesearch is being focused on developing an integrated nano-carrier system to achieve drug delivery, imaging, cell targeting, and hyperthermia simultaneously, which leads to the terminology of “multifunctionality.”
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2195-0644 nd functionalization to biomedical applications.Includes in-.This book covers a wide range of topics relating to carbon nanomaterials, from synthesis and functionalization to applications in advanced biomedical devices and systems. As they possess unique and attractive chemical, physical, optical, a
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Santosh K. Misra,Santanu Bhattacharyaal interest to toxicology and drug development. Methods of measuring and predicting this permeability have been the topics of research for decades. Today, sophisticated biomimetic cell membranes, coupled with advanced analytical tools and computer modeling, allow new insight into this important biological property.
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Measuring Lipid Bilayer Permeability with Biomimetic Membranesal interest to toxicology and drug development. Methods of measuring and predicting this permeability have been the topics of research for decades. Today, sophisticated biomimetic cell membranes, coupled with advanced analytical tools and computer modeling, allow new insight into this important biological property.
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Sandra Gonçalves,Anabela Romanoge-scale production and commercial availability. However, it is the purity, fluorescence, variety of surface modifications, and high biocompatibility that have contributed to their popularity among other carbon nanoparticles for medicinal applications. Indeed, nanodiamonds can maintain most, if not
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Salman Khan,Mohsin Ikram,Mohammad Faisalr drug delivery, due to the enhanced permeability and retention (EPR) effect and their large surface area. This book chapter reviewed recent development of functionalized carbon-based nanomaterials (including of GO, CNTs, CNHs, and NDs) as intelligent drug carriers for the delivery of anticancer dru
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Mirjam A. F. Ros-Tonen,Koen Kustersations. Their high surface area, low toxicity and unique optical property make them ideal candidates for drug delivery and photo-thermal therapeutics. Carbon nanomaterials can be engineered into multifunctional drug delivery platforms through sophisticated chemistry approaches. The advanced design o
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