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Molecular Level Characterisation of the Surface of Carbohydrate-Functionalised Mesoporous silica Nanoparticles (MSN) as a Potential Targeted Drug Delivery System via High Resolution Magic Angle Spinning (HR-MAS) NMR Spectroscopy

  • Karolina Krajewska
  • , Anna M. Gołkowska
  • , Maciej Nowak
  • , Marta Kozakiewicz-Latała
  • , Wojciech Pudło
  • , Andrzej Żak
  • , Bożena Karolewicz
  • , Yaroslav Z. Khimyak
  • , Karol P. Nartowski
  • Wrocław Medical University
  • Wrocław University of Science and Technology
  • University of East Anglia

Research output: Contribution to journalArticlepeer-review

6 Citations (Scopus)

Abstract

Atomistic level characterisation of external surface species of mesoporous silica nanoparti-cles (MSN) poses a significant analytical challenge due to the inherently low content of grafted ligands. This study proposes the use of HR-MAS NMR spectroscopy for a molecular level characterisation of the external surface of carbohydrate-functionalised nanoparticles. MSN differing in size (32 nm, 106 nm, 220 nm) were synthesised using the sol-gel method. The synthesised materials displayed narrow particle size distribution (based on DLS and TEM results) and a hexagonal arrangement of the pores with a diameter of ca. 3 nm as investigated with PXRD and N2 physisorption. The surface of the obtained nanoparticles was functionalised with galactose and lactose using reductive amination as confirmed by FTIR and NMR techniques. The functionalisation of the particles surface did not alter the pore architecture, structure or morphology of the materials as confirmed with TEM imaging. HR-MAS NMR spectroscopy was used for the first time to investigate the structure of the functionalised MSN suspended in D2 O. Furthermore, lactose was successfully attached to the silica without breaking the glycosidic bond. The results demonstrate that HR-MAS NMR can provide detailed structural information on the organic functionalities attached at the external surface of MSN within short experimental times.

Original languageEnglish
Article number5906
JournalInternational Journal of Molecular Sciences
Volume23
Issue number11
DOIs
Publication statusPublished - 1 Jun 2022

Keywords

  • HR-MAS NMR
  • MSN
  • NMR
  • functionalisation
  • mesoporous silica nanoparticles
  • porous materials
  • surface

ASJC Scopus subject areas

  • Catalysis
  • Molecular Biology
  • Computer Science Applications
  • Spectroscopy
  • Physical and Theoretical Chemistry
  • Organic Chemistry
  • Inorganic Chemistry

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