Upscale Synthesis of Magnetic Mesoporous Silica Nanoparticles and Application to Metal Ion Separation: Nanosafety Evaluation

Author:

Ménard Mathilde1,Ali Lamiaa M. A.23ORCID,Vardanyan Ani4ORCID,Charnay Clarence1ORCID,Raehm Laurence1,Cunin Frédérique1,Bessière Aurélie1ORCID,Oliviero Erwan1ORCID,Theodossiou Theodossis A.5,Seisenbaeva Gulaim A.4ORCID,Gary-Bobo Magali2ORCID,Durand Jean-Olivier1ORCID

Affiliation:

1. ICGM, Univ Montpellier, CNRS, ENSCM, 34193 Montpellier, France

2. IBMM, Univ Montpellier, CNRS, ENSCM, 34193 Montpellier, France

3. Department of Biochemistry, Medical Research Institute, University of Alexandria, Alexandria 21561, Egypt

4. Department of Molecular Sciences, Swedish University of Agricultural Sciences, 750 07 Uppsala, Sweden

5. Department of Radiation Biology, Institute for Cancer Research, Radium Hospital, Oslo University Hospital, Montebello, 0379 Oslo, Norway

Abstract

The synthesis of core–shell magnetic mesoporous nanoparticles (MMSNs) through a phase transfer process is usually performed at the 100–250 mg scale. At the gram scale, nanoparticles without cores or with multicore systems are observed. Iron oxide core nanoparticles (IO) were synthesized through a thermal decomposition procedure of α-FeO(OH) in oleic acid. A phase transfer from chloroform to water was then performed in order to wrap the IO nanoparticles with a mesoporous silica shell through the sol–gel procedure. MMSNs were then functionalized with DTPA (diethylenetriaminepentacetic acid) and used for the separation of metal ions. Their toxicity was evaluated. The phase transfer procedure was crucial to obtaining MMSNs on a large scale. Three synthesis parameters were rigorously controlled: temperature, time and glassware. The homogeneous dispersion of MMSNs on the gram scale was successfully obtained. After functionalization with DTPA, the MMSN-DTPAs were shown to have a strong affinity for Ni ions. Furthermore, toxicity was evaluated in cells, zebrafish and seahorse cell metabolic assays, and the nanoparticles were found to be nontoxic. We developed a method of preparing MMSNs at the gram scale. After functionalization with DTPA, the nanoparticles were efficient in metal ion removal and separation; furthermore, no toxicity was noticed up to 125 µg mL−1 in zebrafish.

Funder

Vinnova

Adème

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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