| Literature DB >> 32968852 |
Joanna Kruszewska1, Jacek Sikorski1, Jan Samsonowicz-Górski1, Magdalena Matczuk2.
Abstract
Over the past few years, superparamagnetic <span class="Chemical">iron oxide nanoparticles (<span class="Chemical">SPIONs) have attracted much attention due to their medicinally attractive properties and their possible application in cancer diagnosis and therapy. However, there is still a lack of appropriate methods to enable quantitative monitoring of the particle changes in a physiological environment, which could be beneficial for evaluating their in vitro and in vivo behavior. For this reason, the main goal of this study was the development of a novel capillary electrophoresis-inductively coupled plasma mass spectrometry (CE-ICP-MS/MS) method for the determination of SPIONs suitable for the future examination of their changes upon incubation with proteins under simulated physiological conditions. The type and flow rate of the collision/reaction gas were chosen with the aim of simultaneous monitoring of Fe and S. The type and concentration of the background electrolyte, applied voltage, and sample loading were optimized to obtain SPION signals of the highest intensity and minimum half-width of the peak. Analytical parameters were at a satisfactory level: reproducibility (intra- and inter-day) of migration times and peak areas (presented as RSD) in the range of 0.23-4.98%, recovery: 96.7% and 93.3%, the limit of detection (for monitoring 56Fe16O+ by mass-shift approach) 54 ng mL-1 Fe (0.97 μM) and 101 ng mL-1 Fe (1.82 μM) for SPIONs with carboxyl and amino terminal groups, respectively. To the best of our knowledge, this is the first reported use of CE-ICP-MS/MS for the quantification of SPIONs and monitoring of interactions with proteins.Entities:
Keywords: Capillary electrophoresis; Human serum albumin; Inductively coupled plasma tandem mass spectrometry; Superparamagnetic iron oxide nanoparticles
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Year: 2020 PMID: 32968852 PMCID: PMC7584539 DOI: 10.1007/s00216-020-02948-3
Source DB: PubMed Journal: Anal Bioanal Chem ISSN: 1618-2642 Impact factor: 4.142
Fig. 1Influence of the buffer type and pH on the average sum of peak areas (a, b), recovery (c, d), and migration time difference (e, f) of SPIONs with carboxyl and amino terminal groups (50 μg mL−1 each); applied voltage: 18 kV, injection volume: 150 mbar × s, pH of BGE 7.4 (a, c, e), 8.0 (b, d, f), MS/MS signal 56Fe16O+, n = 6
Fig. 2Effect of applied voltage on the average sum of peak areas and average resolution of Fe for the mixture of carboxyl and amino SPIONs (50 μg mL−1 each), BGE: 20 mM ammonium bicarbonate, pH 7.4, injection volume: 250 mbar × s, MS/MS signal 56Fe16O+, n = 6
Optimal CE-ICP-MS/MS parameters
| CE system | |
|---|---|
| BGE | Ammonium bicarbonate, 20 mM, pH 7.4 |
| Voltage | +18 kV |
| Temperature | 37 °C |
| Current | 26–27 μA |
| ICP-MS/MS system | |
| RF power | 1550 W |
| Sample depth | 8.0 mm |
| Nebulizer gas flow | 1.00 L min−1 |
| Cell gas (O2) flow | 0.48 mL min−1 |
| Monitored isotopes | 56Fe+ → 56Fe+, 56Fe+ → 56Fe16O+, 51V+ → 51V16O+, 32S+ → 32S16O+ |
Figures of merit of the optimized CE-ICP-MS/MS method
| Functional group | RSD (%) | Capillary recovery (%) ( | Detection limit for MS/MS | Average effective electrophoretic mobility (×109, m2 V−1 s−1, | ||||
|---|---|---|---|---|---|---|---|---|
| Migration time | Peak area | |||||||
| Intraday ( | Inter-day ( | Intraday ( | Inter-day ( | 56Fe+ (ng mL−1 Fe) | 56Fe16O+ (ng mL−1 Fe) | |||
| Carboxyl | 0.23 | 1.92 | 4.27 | 4.98 | 96.7 | 2.9 | 54 | −5.69 ± 0.03 |
| Amino | 0.52 | 3.25 | 2.81 | 4.95 | 93.3 | 5.0 | 101 | 11.41 ± 0.02 |
Fig. 3CE-ICP-MS electropherograms (MS/MS signal 56Fe16O+) of carboxyl (signal no. 2) and amino (signal no. 1) SPIONs with 30 μg mL−1 Fe suspended in 10 mM phosphate buffer, pH 7.4, and 100 mM NaCl after 3 h (red dotted line) and 24 h (green line) of incubation at 37 °C; migration time for FeCl2 marked as a black dotted line; separation under optimal conditions (see Table 1)
Fig. 4CE-ICP-MS electropherogram MS/MS signal 32S16O+ (a) and MS/MS signal 56Fe16O+ (b) of the mixture of carboxyl SPIONs (30 μg mL−1 Fe) and albumin (1 mg mL−1) diluted in 10 mM phosphate buffer, pH 7.4, and 100 mM NaCl, and incubated at 37 °C for 30 min (molar ratio of albumin and SPIONs was 4000:1). Signal assignments: blank sulfur signal (1), albumin (2), carboxyl SPIONs (3), carboxyl SPION–albumin conjugates (4); separation under optimal conditions (see Table 1)