Isfahan University of Medical Sciences

Science Communicator Platform

Stay connected! Follow us on X network (Twitter):
Share By
Metal Nanoparticles and Carbohydrate Polymers Team up to Improve Biomedical Outcomes Publisher Pubmed



Falsafi SR1 ; Topuz F2 ; Bajer D3 ; Mohebi Z4 ; Shafieiuon M4 ; Heydari H5 ; Rawal S6, 7 ; Sathiyaseelan A8 ; Wang MH8 ; Khursheed R9 ; Enayati MH4 ; Rostamabadi H5
Authors

Source: Biomedicine and Pharmacotherapy Published:2023


Abstract

The convergence of carbohydrate polymers and metal nanoparticles (MNPs) holds great promise for biomedical applications. Researchers aim to exploit the capability of carbohydrate matrices to modulate the physicochemical properties of MNPs, promote their therapeutic efficiency, improve targeted drug delivery, and enhance their biocompatibility. Therefore, understanding various attributes of both carbohydrates and MNPs is the key to harnessing them for biomedical applications. The many distinct types of carbohydrate-MNP systems confer unique capabilities for drug delivery, wound healing, tissue engineering, cancer treatment, and even food packaging. Here, we introduce distinct physicochemical/biological properties of carbohydrates and MNPs, and discuss their potentials and shortcomings (alone and in combination) for biomedical applications. We then offer an overview on carbohydrate-MNP systems and how they can be utilized to improve biomedical outcomes. Last but not least, future perspectives toward the application of such systems are highlighted. © 2023 The Authors
Other Related Docs
6. Plant Protein-Based Nanoparticles and Their Biomedical Applications, Nanomaterials and Plant Potential (2019)
9. Nanotechnology in the Formulation and Delivery of Natural Products for Cancer, Handbook of Oncobiology: From Basic to Clinical Sciences (2024)
12. Peptide-Functionalized Polymeric Nanoparticles for Delivery of Curcumin to Cancer Cells, Journal of Drug Delivery Science and Technology (2024)
15. Functionalized Magnetic Nanoparticles for Cancer Therapy, Functionalized Nanomaterials for Cancer Research: Applications in Treatments, Tools and Devices (2024)