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Titlebook: Cancer Nanotechnology; Ângela Maria Almeida de Sousa,Christiane Pienna So Book 2023 The Editor(s) (if applicable) and The Author(s), under

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Chronobiology and Nanotechnology for Personalized Cancer Therapy therapy, called chronotherapy, has been proven to improve the tolerability and antitumor efficacy of anticancer drugs. Likewise, research on nanotechnology also proved to be a valuable tool to provide innovative approaches for enhanced treatment outcomes, as it offers the means to selectively targe
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Nanoparticles for Therapy and Diagnostic Imaging Techniques in Cancertualizing the theranostic nanoagents. Following the most recent trends in these topics, the purpose of this chapter is to highlight the major impacts of nanotechnology research in therapeutic and diagnostic techniques for cancer, focusing on photothermal therapies with gold nanoparticles, bone regen
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Polymeric Microneedle-Based Drug Delivery Platforms for Application in Cancer Therapyractical approaches explored to the microneedle formulation. Moreover, the microneedles’ potential to act as anticancer vaccines or in the administration of cytotoxic anticancer agents will also be highlighted, discussing their current limitations and future directions toward a more successful clini
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Clinical Trials Involving Chemotherapy-Based Nanocarriers in Cancer Therapy: State of the Art and Fuhas emerged as a promising therapeutic approach with a wide potential to increase treatment outcomes and patient survival. In this chapter, we provide a comprehensive analysis and discuss the development of advanced nanocarriers involving chemotherapeutic agents in clinical trials against multiple t
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Book 2023nnovative nanotechnologies for cancer diagnosis and treatment. The volume will be useful fora broad audience, including cross-disciplinary researchers, trainees, health professionals, and experts in industry. .
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G. Sarosy,L. Rubinstein,B. Leyland-Jonesactive targeting to the tumors. The modification of nanosystems with these ligands can be performed before or after nanosystems’ production through non-covalent or covalent functionalization, which can result in different biological activities. In this context, the present chapter aims to present so
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https://doi.org/10.1007/978-3-642-83405-9ing technology applied to the most aggressive and complex cancer is proposed as a tool to fabricate viable constructs by depositing living cells with tunable biomaterials. The focus is on the platforms that are used to dissect the cell’s interactions in cancer and how these platforms are useful for
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