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Thermoresponsive polymeric assemblies and their biological applications -- Self-assembled nano-materials for bacterial infection diagnosis and therapy -- Supramolecular self-assembled nanomaterials for fluorescence bioimaging -- Enzyme-instructed self-assembly of small peptides in vivo for biomedical application -- Acid- and redox-responsive smart polymeric nanomaterials for controlled drug delivery -- Self-assembled nanomaterials for autophagy detection and enhanced cancer therapy though modulating autophagy -- In vivo self-assembled near infrared nanomaterials for cancer bioimaging.
This book reviews and discusses the development of self-assembled nanomaterials applied in biomedical fields. Based on self-assembled nanomaterial constructions, it highlights the mechanisms of the stimuli-response-induced assembly/disassembly and transformation. Moreover, it examines healthcare-related diseases, the applications of nanomaterials and therapy/detection strategies, providing readers with both a deeper understanding of the subject and inspirations for future research. The book is primarily intended for researchers and graduate students in the fields of material sciences and chemistry who wish to learn about the principles, methods, mechanisms and biomedical applications of self-assembled nanomaterials.
Thermoresponsive polymeric assemblies and their biological applications -- Self-assembled nano-materials for bacterial infection diagnosis and therapy -- Supramolecular self-assembled nanomaterials for fluorescence bioimaging -- Enzyme-instructed self-assembly of small peptides in vivo for biomedical application -- Acid- and redox-responsive smart polymeric nanomaterials for controlled drug delivery -- Self-assembled nanomaterials for autophagy detection and enhanced cancer therapy though modulating autophagy -- In vivo self-assembled near infrared nanomaterials for cancer bioimaging.
This book reviews and discusses the development of self-assembled nanomaterials applied in biomedical fields. Based on self-assembled nanomaterial constructions, it highlights the mechanisms of the stimuli-response-induced assembly/disassembly and transformation. Moreover, it examines healthcare-related diseases, the applications of nanomaterials and therapy/detection strategies, providing readers with both a deeper understanding of the subject and inspirations for future research. The book is primarily intended for researchers and graduate students in the fields of material sciences and chemistry who wish to learn about the principles, methods, mechanisms and biomedical applications of self-assembled nanomaterials.
In Vivo Self-Assembly Nanotechnology for Biomedical Applications
2018
Online-Ressource (X, 201 p. 79 illus, online resource)
Book
Electronic Resource
English
DDC:
620.115
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