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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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Cytotoxicity, Drug Delivery, and Photothermal Therapy of Functionalized Carbon Nanomaterials been conducted in the last decades. These studies not only elucidated paradigms and mechanisms of carbon nanomaterials-associated nanotoxicity, but also provided benchmarks to produce non-toxic carbon nanomaterials. In this chapter, we reviewed recent research progress of the toxicological and phar
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Photodynamic Therapy with Water-Soluble Cationic Fullerene Derivativesbiological damage. Despite the demonstrated ability of these fullerenes to scavenge ROS as a concurrent competitive event with their production, illuminated fullerenes were found to be highly efficient in mediating PDT. Many reports have shown light-dependent in vitro killing of various cell types a
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Bionic Graphene Nanosensorsandings of disease development and the role of environmental triggers are limited. Here, we provide an overview of our specific contributions in: (1) biotransfering graphene sensors onto biological systems to enable a unique bionic nanosensor platform, (2) the detection of bacteria using such platfo
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Functionalized Carbon Nanodots for Biomedical Applicationsts for simultaneous diagnosis and therapy (theranostics). Despite these notable advantages, the implementation of QDs to a broader clinical setting is still limited because of their intrinsic toxicity and the potential environmental concerns associated with the heavy metals present in the QDs.
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Bio-Inspired Engineering of 3D Carbon Nanostructurestio, highly conductive networks, mesoporous structures, electro-chemical activities, strong mechanical integrity, and efficient ion pathways are crucial for the energy-related applications such as supercapacitors, batteries, hydrogen storage, fuel cell, solar cell, bioinspired electro-chemical actua
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Salman Khan,Mohsin Ikram,Mohammad Faisalgs and non anticancer drugs in vitro and in vivo. The biocompatibility, drug-loading capacity, loading efficiency and drug release amounts of these functionalized carbon-based nanomaterials in aqueous solution have also been systematically studied in this chapter.
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