Chapter 23. Stimuli-responsive Nanocomposite Hydrogels Incorporating Soft Nanoparticles for Biomedical Applications

Author(s):  
P. Lavrador ◽  
J. Borges ◽  
V. M. Gaspar ◽  
J. F. Mano
2020 ◽  
pp. 2005941
Author(s):  
Pedro Lavrador ◽  
Marco R. Esteves ◽  
Vítor M. Gaspar ◽  
João F. Mano

Author(s):  
Ranhua Xiong ◽  
Ronald X. Xu ◽  
Chaobo Huang ◽  
Stefaan De Smedt ◽  
Kevin Braeckmans

This review presents an overview of the recent advances in the development of stimuli-responsive nanobubbles and their novel biomedical applications including bio-imaging, drug delivery and ablation of tumor tissues.


RSC Advances ◽  
2015 ◽  
Vol 5 (19) ◽  
pp. 14351-14358 ◽  
Author(s):  
Gownolla Malegowd Raghavendra ◽  
Tippabattini Jayaramudu ◽  
Kokkarachedu Varaprasad ◽  
Goddeti Siva Mohan Reddy ◽  
Konduru Mohana Raju

Antibacterial Au-core Ag-shell Carbopol® 980 NF/Noveon® AA-1 polycarbophil nanocomposite hydrogels were fabricated by nucleation of Au3+ and Ag+ ions from the extracts of mint leaves by facile eco-friendly approach.


2021 ◽  
Vol 9 ◽  
Author(s):  
Udisha Singh ◽  
Vinod Morya ◽  
Bhaskar Datta ◽  
Chinmay Ghoroi ◽  
Dhiraj Bhatia

Of the multiple areas of applications of DNA nanotechnology, stimuli-responsive nanodevices have emerged as an elite branch of research owing to the advantages of molecular programmability of DNA structures and stimuli-responsiveness of motifs and DNA itself. These classes of devices present multiples areas to explore for basic and applied science using dynamic DNA nanotechnology. Herein, we take the stake in the recent progress of this fast-growing sub-area of DNA nanotechnology. We discuss different stimuli, motifs, scaffolds, and mechanisms of stimuli-responsive behaviours of DNA nanodevices with appropriate examples. Similarly, we present a multitude of biological applications that have been explored using DNA nanodevices, such as biosensing, in vivo pH-mapping, drug delivery, and therapy. We conclude by discussing the challenges and opportunities as well as future prospects of this emerging research area within DNA nanotechnology.


Author(s):  
A. Spanoudaki ◽  
D. Fragiadakis ◽  
K. Vartzeli-Nikaki ◽  
P. Pissis ◽  
J. C. R. Hernandez ◽  
...  

Nanoscale ◽  
2021 ◽  
Author(s):  
Parinaz Fathi ◽  
Parikshit Moitra ◽  
Madeleine M. McDonald ◽  
Mandy Brigitte Esch ◽  
Dipanjan Pan

Carbon dots are biocompatible nanoparticles suitable for a variety of biomedical applications. Careful selection of carbon dot precursors and surface modification techniques has allowed for the development of carbon dots...


2019 ◽  
Vol 2019 ◽  
pp. 1-18 ◽  
Author(s):  
Dinesh K. Patel ◽  
Yu-Ri Seo ◽  
Ki-Taek Lim

Stimuli-responsive materials, also known as smart materials, can change their structure and, consequently, original behavior in response to external or internal stimuli. This is due to the change in the interactions between the various functional groups. Graphene, which is a single layer of carbon atoms with a hexagonal morphology and has excellent physiochemical properties with a high surface area, is frequently used in materials science for various applications. Numerous surface functionalizations are possible for the graphene structure with different functional groups, which can be used to alter the properties of native materials. Graphene-based hybrids exhibit significant improvements in their native properties. Since functionalized graphene contains several reactive groups, the behavior of such hybrid materials can be easily tuned by changing the external conditions, which is very useful in biomedical applications. Enhanced cell proliferation and differentiation of stem cells was reported on the surfaces of graphene-based hybrids with negligible cytotoxicity. In addition, pH or light-induced drug delivery with a controlled release rate was observed for such nanohybrids. Besides, notable improvements in antimicrobial activity were observed for nanohybrids, which demonstrated their potential for biomedical applications. This review describes the physiochemical properties of graphene and graphene-based hybrid materials for stimuli-responsive drug delivery, tissue engineering, and antimicrobial applications.


2015 ◽  
Vol 11 (1) ◽  
pp. 1-39 ◽  
Author(s):  
Johnson V. John ◽  
Renjith P. Johnson ◽  
Min Seon Heo ◽  
Byeong Kyu Moon ◽  
Seong Jin Byeon ◽  
...  

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