| Literature DB >> 30662379 |
Mahdieh Moghiseh1, Chiara Lowe1, John G Lewis2, Dhiraj Kumar3, Anthony Butler1, Nigel Anderson1, Aamir Raja1.
Abstract
The purpose of the present study was to demonstrate an in vitro proof of principle that spectral photon-counting CT can measure gold-labelled specific antibodies targeted to specific cancer cells. A crossover study was performed with Raji lymphoma cancer cells and HER2-positive SKBR3 breast cancer cells using a MARS spectral CT scanner. Raji cells were incubated with monoclonal antibody-labelled gold, rituximab (specific antibody to Raji cells), and trastuzumab (as a control); HER2-positive SKBR3 breast cancer cells were incubated with monoclonal antibody-labelled gold, trastuzumab (specific antibody to HER2-positive cancer cells), and rituximab (as a control). The calibration vials with multiple concentrations of nonfunctionalised gold nanoparticles were used to calibrate spectral CT. Spectral imaging results showed that the Raji cells-rituximab-gold and HER2-positive cells-trastuzumab-gold had a quantifiable amount of gold, 5.97 mg and 0.78 mg, respectively. In contrast, both cell lines incubated with control antibody-labelled gold nanoparticles had less gold attached (1.22 mg and 0.15 mg, respectively). These results demonstrate the proof of principle that spectral molecular CT imaging can identify and quantify specific monoclonal antibody-labelled gold nanoparticles taken up by Raji cells and HER2-positive SKBR3 breast cancer cells. The present study reports the future potential of spectral molecular imaging in detecting tumour heterogeneity so that treatment can be tuned accordingly, leading to more effective personalised medicine.Entities:
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Year: 2018 PMID: 30662379 PMCID: PMC6312585 DOI: 10.1155/2018/2136840
Source DB: PubMed Journal: Contrast Media Mol Imaging ISSN: 1555-4309 Impact factor: 3.161
Summary of MARS spectral CT scanner experimental setup.
| Parameter | Value |
|---|---|
| Scan type | Continuous |
| Tube voltage | 118 kVp |
| Tube current | 12 |
| Exposure time | 300 ms |
| Sample diameter | 38 mm |
| Energy (CSM) | 18, 30, 45, and 75 keV |
| Circular projections | 720 over 360° |
| Flat fields | 720 |
| Voxel size | 1 × 1 × 1 mm3 |
| SDD, SOD | 250 mm, 200 mm |
| Filtration | 2 mm Al + 1.8 mm Al intrinsic |
SDD: source-to-detector distance; SOD: source-to-object distance.
Summary of phantom setup.
| Raji phantom | SKBR3 phantom |
|---|---|
| AuNPs 2, 4, and 8 mg/mL | AuNPs 2, 4, and 8 mg/mL |
| AuNPs size by DLS: 50 nm (expected 40 nm) | |
| AuNPs absorbance: 530 nm | |
| Water, lipid | Water, lipid |
| Raji cells with Her-AuNP (control) | SKBR3 with Her-AuNP |
| Raji cells with Rit-AuNP | SKBR3 with Rit-AuNP (control) |
Her, trastuzumab or Herceptin; Rit, rituximab.
Figure 1The quantitative data collected using the ELISA kit in the form of absorbance against drug dilution. The absorbance was read at 450 nm for (a) rituximab dilution in the case of Raji cells and (b) Herceptin dilution in the case of SKBR3.
Figure 2(a) Linearity of attenuation of calibration vials containing AuNP for each energy bin. R 2 = 0.99 for all linearity trends. (b) Spectral response of the detector for calibration vials. Enhancement of attenuation due to K-edge observed in energy bin 4 (75–118 keV). Insets show material decomposed images corresponding to each concentration. (c) and (d) Spectral response of Raji and SKBR3 cells, respectively. Standard errors are shown for spectral response data.
Figure 3(a) SKBR3 cell line phantom. SKBR3 cells with Herceptin-AuNPs show more volume, indicating more gold is present. Material decomposition basis images show Au (yellow/orange, the hue represents the concentration), lipids (pink), and water-like material (grey). (b) Raji cell line phantom; Raji cells with rituximab-AuNPs show more volume and brighter hue, indicating a high concentration of gold present.
Figure 4(a) Measured amount of targeted and nontargeted AuNPs (mg) within SKBR3 quantified from MD images displayed. (b) Measured amount of targeted and nontargeted AuNPs (mg) within Raji cells calculated from MD images. Insets show Raji cells plus Rit-AuNPs and Raji cells plus Her-AuNPs.