Nanomaterials for Photo-Based Diagnostic and Therapeutic Applications

Наноматериалы для диагностических и терапевтических применений на основе фотоиндуцированных методов
Jyothi U. Menon, Kytai T. Nguyen, Parth Jadeja, Pranjali Tambe, Khanh B. Vu, Baohong Yuan
2013-01-01

multimodal theranosticsnanoparticle drug deliveryoptical imagingphoto-based nanomedicinephotothermal therapy
Photo-based diagnosis and treatment methods are gaining prominence due to increased spatial imaging resolution, minimally invasive modalities involved as well as localized treatment. Recently, nanoparticles (NPs) have been developed and used in photo-based therapeutic applications. While some nanomaterials have inherent photo-based imaging capabilities, others including polymeric NPs act as nanocarriers to deliver various fluorescent dyes or photosensitizers for photoimaging and therapeutic applications. These applications can vary from Magnetic Resonance Imaging (MRI) and optical imaging to photothermal therapy (PTT) and chemotherapy. Materials commonly used for development of photo-based NPs ranges from metal-based (gold, silver and silica) to polymer-based (chitosan, dextran, poly ethylene glycol (PEG) and poly lactic-co-glycolic acid (PLGA)). Recent research has paved the way for multi-modal 'theranostic' (a combination of therapy and diagnosis) nano-carriers capable of active targeting using cell-specific ligands and carrying multiple therapeutic and imaging agents for accurate diagnosis and controlled drug delivery. This review summarizes the different materials used today to synthesize photo-based NPs, their diagnostic and therapeutic applications as well as the current challenges faced in bringing these novel nano-carriers into clinical practices.
1
Metal-based materials such as gold, silver, and silica, alongside polymers including chitosan, dextran, PEG, and PLGA, are commonly used to construct these nanoparticles.
2
Multimodal theranostic nanocarriers can combine active cell-specific targeting with multiple imaging and therapeutic agents to support accurate diagnosis and controlled drug delivery, but clinical translation remains challenging.
3
Nanoparticles are increasingly used for photo-based diagnosis and therapy because they enable high-resolution imaging, minimally invasive procedures, and localized treatment.
4
Photo-based nanoparticle applications span MRI and optical imaging, photothermal therapy, and chemotherapy.
5
Some nanomaterials provide intrinsic photoimaging capabilities, whereas polymeric nanoparticles function as carriers for fluorescent dyes and photosensitizers.

Photo-based nanoparticles and nanocarriers made from metal- and polymer-based nanomaterials

Their diagnostic imaging, photothermal and chemotherapeutic applications, including multimodal theranostic targeting and controlled delivery

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2013-01-01
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Jyothi U. Menon
Kytai T. Nguyen
Parth Jadeja
Pranjali Tambe
Khanh B. Vu
Baohong Yuan
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