Nanocarrier: Advancements in Targeted Drug Delivery and Therapeutic Systems

· Nanomedicine Sách 4 · One Billion Knowledgeable
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In the field of nanomedicine, the development of innovative drug delivery systems has revolutionized the way we approach treatment for various diseases. "Nanocarrier" provides a comprehensive overview of these advanced technologies and their applications in medical science. This book is essential for professionals, students, and anyone interested in the future of medicine. It offers crucial insights into the mechanisms, design, and practical applications of nanocarriers for targeted drug delivery.

Chapters Brief Overview:


1: Nanocarrier: An introduction to nanocarriers, their properties, and their role in drug delivery.


2: Magnetic nanoparticles in drug delivery: Exploring the use of magnetic nanoparticles for precise drug targeting.


3: Protein nanoparticles: Discussing protein nanoparticles' stability and their therapeutic potential in drug delivery.


4: Liposome: Examining liposomes as versatile drug delivery vehicles for various medical applications.


5: Nanoparticles for drug delivery to the brain: Focusing on the challenges and advancements in delivering drugs to the brain using nanoparticles.


6: RNAi nanoparticles to target cancer: Investigating the use of RNA interference in nanoparticles for targeted cancer therapies.


7: Dendrimer: An overview of dendrimers as highly efficient carriers for drug delivery and gene therapy.


8: Ligandtargeted liposome: Understanding how ligandtargeted liposomes enhance the selectivity and efficiency of drug delivery.


9: Peptide amphiphile: A look at peptide amphiphiles and their potential for selfassembling nanocarriers.


10: Stimuliresponsive drug delivery systems: Examining how external stimuli can trigger drug release in targeted treatments.


11: Poloxamer: Exploring the role of Poloxamer in drug delivery systems for enhanced solubility and stability.


12: Cytokine delivery systems: Discussing cytokine delivery systems' therapeutic applications in immune responses.


13: Targeted drug delivery: An indepth analysis of how targeted drug delivery can optimize therapeutic outcomes.


14: Dextran drug delivery systems: Highlighting the use of dextranbased systems in improving drug solubility and release control.


15: PHresponsive tumortargeted drug delivery: Focusing on pHresponsive nanoparticles for effective tumor targeting and treatment.


16: Nanogel: Exploring nanogels' potential in drug delivery due to their flexibility and responsiveness.


17: Nanoparticle drug delivery: A detailed examination of nanoparticlebased drug delivery systems and their diverse applications.


18: Reductionsensitive nanoparticles: Discussing how reductionsensitive nanoparticles improve the control of drug release in diseased tissues.


19: Polymerprotein hybrid: Investigating polymerprotein hybrids as a means of optimizing drug delivery efficiency.


20: Protein corona: Understanding the protein corona's role in nanoparticle interactions and its implications for drug delivery.


21: Pullulan bioconjugate: A final chapter on pullulan bioconjugates and their potential for effective drug delivery.


The book presents a cuttingedge exploration of nanocarrier systems, showing how these technologies can significantly impact medical treatments. Whether you are a professional, student, or enthusiast, this book will enhance your understanding of nanomedicine and the promise it holds for future medical innovations. With indepth, carefully crafted chapters, "Nanocarrier" bridges the gap between theory and practical application, making it an indispensable resource in the field.

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