2017
DOI: 10.1016/j.jconrel.2017.05.033
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Multifunctional nanodiamonds in regenerative medicine: Recent advances and future directions

Abstract: With recent advances in the field of nanomedicine, many new strategies have emerged for diagnosing and treating diseases. At the forefront of this multidisciplinary research, carbon nanomaterials have demonstrated unprecedented potential for a variety of regenerative medicine applications including novel drug delivery platforms that facilitate the localized and sustained release of therapeutics. Nanodiamonds (NDs) are a unique class of carbon nanoparticles that are gaining increasing attention for their biocom… Show more

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Cited by 93 publications
(71 citation statements)
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References 185 publications
(229 reference statements)
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Keywords: gene/drug delivery • nanodiamonds • therapeutics Nanodiamonds (NDs) are an emerging class of biologically compatible carbon-based nanomaterials that possess a set of unique properties essential for the design of innovative therapies in the fields of drug delivery, tissue engineering and bioimaging [1]. For instance, the high surface area along with the tunable surface chemistry enables the physical adsorption or covalent conjugation of a variety of therapeutic molecules, such as drugs, peptides and growth factors [2][3][4][5].
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mentioning
confidence: 99%
“…
Keywords: gene/drug delivery • nanodiamonds • therapeutics Nanodiamonds (NDs) are an emerging class of biologically compatible carbon-based nanomaterials that possess a set of unique properties essential for the design of innovative therapies in the fields of drug delivery, tissue engineering and bioimaging [1]. For instance, the high surface area along with the tunable surface chemistry enables the physical adsorption or covalent conjugation of a variety of therapeutic molecules, such as drugs, peptides and growth factors [2][3][4][5].
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mentioning
confidence: 99%
“…[12] Siloxane functionalization can be used to enhance the surface area of the nanoparticles and thereby the drug-loading capacity of the materials.T his approach has been successfully used to covalently anchor dyes and receptors onto silica-grafted NDs via click chemistry,with interesting in-vitro results. [3] Thed escribed functionalization reactions are aimed for the application of NDs in the biomedical field. However, there are also many other possibilities that allow to modify the NDs with different functional groups.F or example, hydroxylated NDs can react with alkyl chlorides (Williamson reaction), while hydrogenated NDs can be easily functionalized with alkenes after UV activation or with diazonium salts (Tour reaction).…”
Section: Methodsmentioning
confidence: 99%
“…Additionally,t he ND surface can exhibit an unexpected reactivity compared to usual molecules.F or instance,f luorinated NDs (prepared via fluorine plasma) can easily react with amines and Grignard reagents. [3,23] Furthermore,c arboxylic groups present on the ND surface can be easily converted into azido groups,obtaining amaterial readily feasible for click chemistry. [28] Fort hese reasons,w e believe that there is still room for improving functionalization strategies for final applications.…”
Section: Methodsmentioning
confidence: 99%
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