Issue 3, 2024

Design of manganese-based nanomaterials for pharmaceutical and biomedical applications

Abstract

In the past few years, manganese-based nanostructures have been extensively investigated in the biomedical field particularly to design highly biocompatible theranostics, which can not only act as efficient diagnostic imaging contrast agents but also deliver the drugs to the target sites. The nanoscale size, large surface area-to-volume ratio, availability of cheap precursors, flexibility to synthesize nanostructures with reproducible properties and high yield, and easy scale up are the major reasons for the attraction towards manganese nanostructures. Along with these properties, the nontoxic nature, pH-sensitive degradation, and easy surface functionalization are additional benefits for the use of manganese nanostructures in biomedical and pharmaceutical sciences. Therefore, in this review, we discuss the recent progress made in the synthesis of manganese nanostructures, describe the attempts made to modify their surfaces to impart biocompatibility and stability in biological fluids, and critically discuss their use in magnetic resonance imaging, drug and gene delivery, hyperthermia, photothermal/photodynamic, immunotherapy, biosensing and tumor diagnosis.

Graphical abstract: Design of manganese-based nanomaterials for pharmaceutical and biomedical applications

Article information

Article type
Review Article
Submitted
09 Apr 2023
Accepted
08 Oct 2023
First published
20 Oct 2023

J. Mater. Chem. B, 2024,12, 577-608

Design of manganese-based nanomaterials for pharmaceutical and biomedical applications

P. Jain, A. K. Jangid, D. Pooja and H. Kulhari, J. Mater. Chem. B, 2024, 12, 577 DOI: 10.1039/D3TB00779K

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