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    • Nyhet

    Nanodynamic Therapies

    Principles and Applications

    AvPanchanathan Manivasagan,Jayachandran Venkatesan

    Häftad, Engelska, 2026

    Del i serien Micro and Nano Technologies

    2 648 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Nanodynamic Therapies: Principles and Applications explores the innovative use of nanosensitizers to generate reactive oxygen species for the targeted treatment of cancer and bacterial infections. Covering a broad spectrum of ROS-based therapeutic strategies, including photodynamic, chemodynamic, sonodynamic, electrodynamic, radiodynamic, thermodynamic, piezoelectric dynamic, and pyroelectric dynamic therapies, this book provides comprehensive insights into their fundamental principles, biomedical applications, and emerging clinical perspectives. The book highlights the role of diverse nanomaterials, such as metal-based, polymer-based, carbon-based, lipid-based, and two-dimensional nanomaterials, in enhancing anticancer and antibacterial therapies. With a strong focus on translation research and therapeutic innovation, it presents the recent advances and future direction in nanodynamic approaches for combating cancer and microbial infections.

    This volume serves as a valuable resource for researchers; postgraduate students in nanotechnology, materials science, biomaterials, and pharmaceutical sciences; and clinicians and cancer researchers seeking a comprehensive understanding of nanodynamic therapies and their impact on modern therapeutic strategies.

    • Provides a systematic and in-depth overview of the current advances in nanodynamic therapies for cancer and bacterial infections
    • Covers a wide range of ROS-based nanodynamic modalities, including photodynamic, chemodynamic, sonodynamic, electrodynamic, radiodynamic, thermodynamic, piezoelectric dynamic, and pyroelectric dynamic therapies
    • Reviews the design and biomedical applications of diverse nanomaterials for enhanced anticancer and antibacterial treatments

    Produktinformation

    • Utgivningsdatum:2026-07-27
    • Mått:191 x 235 x undefined mm
    • Vikt:450 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Micro and Nano Technologies
    • Antal sidor:842
    • Förlag:Elsevier Science
    • ISBN:9780443366925

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Panchanathan Manivasagan is a Research Professor in the Department of Chemistry & Bio-Science at Kumoh National Institute of Technology (KIT) in Gumi, South Korea. A primary focus of his current research is the development of multifunctional nanomaterials for multimodal imaging (in vivo fluorescence imaging, photoacoustic imaging, CT imaging, and MR imaging) and therapy (chemotherapy, phototherapy, chemodynamic therapy, electrodynamic therapy, sonodynamic therapy, immunotherapy, starvation therapy, and electrolytic ablation therapy) for cancer and microbial infections.Dr. Jayachandran Venkatesan M.Sc., M.Phil., Ph.D. is Professor aT Malla Reddy Vishwavidyapeeth, Hyderabad, Inida. He worked as a postdoctoral researcher in the Division of Bioengineering, Incheon National University, and Hanyang University, South Korea. Previously, he worked as a Research Professor at the Department of Chemistry and Marine Bioprocess Research Center (MBPRC) at Pukyong National University, South Korea. He received his Master of Science in chemistry from Thiruvalluvar University in 2005. He received his Ph.D. from Pukyong National University in 2011. His primary research interests are the investigation and development of naturally derived polymers, ceramics, and protein-based materials for biomedical applications. Furthermore, he works on natural biomaterials for tissue engineering and drug delivery applications. Prof. Eue-Soon Jang is a Professor at the Department of Chemistry & Bio-Science at Kumoh National Institute of Technology (KIT) in Gumi, South Korea. He has held positions as a Post-Doctoral Fellow at Stanford University School of Medicine in Stanford, USA, and at the Department of Materials Science and Engineering at POSTECH in South Korea. Additionally, he worked as a Senior Researcher in the Department of Future Technology Research at Korea Telecom in South Korea. Prof. Jang obtained his B.Sc. degree from the Department of Chemistry at Chungnam National University in South Korea and his Master's and Ph.D. degrees from the Department of Chemistry at Seoul National University in Seoul, South Korea. His research program primarily revolves around the synthesis of various metal nanoparticles and the crystal engineering of solid nanoparticles.

    Innehållsförteckning

    • Part I: Introduction to Nanodynamic therapies1. Nanodynamic therapies: Introduction and applications2. The fundamental principles and biological aspects of ROS-based nanodynamic therapies for cancer and bacterial infections3. Clinical and commercial trials of nanodynamic therapies for cancer and bacterial infectionsPart II: Nano-based photodynamic cancer therapy4. Metal-based nanomaterials in cancer photodynamic therapy5. Polymer-based nanoparticles for photodynamic therapy6. Emerging lipid-based nanomaterials for cancer photodynamic therapy7. Application of two-dimensional nanomaterials for cancer photodynamic therapy8. Rare earth-doped upconversion nanoparticles for photodynamic cancer therapy9. Design of photosensitizers for photodynamic therapy of cancer and cancer stem cellsPart III: Nanomaterial-based chemodynamic cancer therapy10. Smart nanocarrier-based hybrid catalysts for enhanced chemodynamic cancer therapy11. Multifunctional nanozymes for cancer chemodynamic therapyPart IV: Nanomaterial-based sonodynamic cancer therapy12. Multifunctional sonosensitizer for sonodynamic cancer therapy13. Nanozyme-augmented sonodynamic cancer therapyPart V: Nanomaterial-based other dynamic cancer therapy14. Nanoparticles to enable electrodynamic therapy for effective cancer treatment15. Nanomaterials to enhance radiodynamic therapy of cancer16. Targeting hypoxic tumor with hybrid nanomaterials for thermodynamic therapy and piezoelectric dynamic therapyPart VI: Combination of nanodynamic therapy with other therapies17. Nanoarchitectures for sonodynamic therapy-involved multimodal treatments18. Nanosystems for chemo-/chemodynamic/sonodynamic cancer therapyPart VII: Antibacterial nanophotodynamic therapy19. Nanophotosensitizers for photodynamic antibacterial therapy20. Emerging trends in polymer nanomaterials for antibacterial photodynamic therapyPart VIII: Nanomaterial-based chemodynamic antibacterial therapy21. Nanogel for chemodynamic antibacterial therapy22. Nanomaterial-mediated antibacterial chemodynamic therapyPart VIII: Nanomaterial-based antibacterial sonodynamic therapy23. Multifunctional nanoparticles for antibacterial sonodynamic therapy24. Nanomicelles for sonodynamic antibacterial therapyPart IX: Nanomaterial-based other dynamic antibacterial therapy25. Biomimetic electrodynamic nanoparticles for antibacterial therapy26. Organic nanomaterials for thermodynamic, radiodynamic, piezoelectric antibacterial therapyPart X: Combination of nanodynamic therapy with other therapies27. Pyroelectric Janus nanomaterials for synergistic electrodynamic-photothermal antibacterial therapy28. Nanozymes for synergistic chemodynamic/sonodynamic antibacterial therapy