Monte Carlo N-Particle (MCNP) Modeling of the Cellular Dosimetry of 64Cu: Comparison with MIRDcell S Values and Implications for Studies of Its Cytotoxic Effects.
basic_science · Level V
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- Also identified by DOI 10.2967/jnumed.116.175695.
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Abstract
<sup>64</sup>Cu emits positrons as well as β<sup>-</sup> particles and Auger and internal conversion electrons useful for radiotherapy. Our objective was to model the cellular dosimetry of <sup>64</sup>Cu under different geometries commonly used to study the cytotoxic effects of <sup>64</sup>Cu. Monte Carlo N-Particle (MCNP) was used to simulate the transport of all particles emitted by <sup>64</sup>Cu from the cell surface (CS), cytoplasm (Cy), or nucleus (N) of a single cell; monolayer in a well (radius = 0.32-1.74 cm); or a sphere (radius = 50-6,000 μm) of cells to calculate S values. The radius of the cell and N ranged from 5 to 12 μm and 2 to 11 μm, respectively. S values were obtained by MIRDcell for comparison. MCF7/HER2-18 cells were exposed in vitro to <sup>64</sup>Cu-labeled trastuzumab. The subcellular distribution of <sup>64</sup>Cu was measured by cell fractionation. The surviving fraction was determined in a clonogenic assay. The relative differences of MCNP versus MIRDcell self-dose S values (S<sub>self</sub>) for <sup>64</sup>Cu ranged from -0.2% to 3.6% for N to N (S<sub>N←N</sub>), 2.3% to 8.6% for Cy to N (S<sub>N←Cy</sub>), and -12.0% to 7.3% for CS to N (S<sub>N←CS</sub>). The relative differences of MCNP versus MIRDcell cross-dose S values were 25.8%-30.6% for a monolayer and 30%-34% for a sphere, respectively. The ratios of S<sub>N←N</sub> versus S<sub>N←Cy</sub> and S<sub>N←Cy</sub> versus S<sub>N←CS</sub> decreased with increasing ratio of the N of the cell versus radius of the cell and the size of the monolayer or sphere. The surviving fraction of MCF7 /: HER2-18 cells treated with <sup>64</sup>Cu-labeled trastuzumab (0.016-0.368 MBq/μg, 67 nM) for 18 h versus the absorbed dose followed a linear survival curve with α = 0.51 ± 0.05 Gy<sup>-1</sup> and R<sup>2</sup> = 0.8838. This is significantly different from the linear quadratic survival curve of MCF7 /: HER2-18 cells exposed to γ-rays. MCNP- and MIRDcell-calculated S values agreed well. <sup>64</sup>Cu in the N increases the dose to the N in isolated single cells but has less effect in a cell monolayer or small cluster of cells simulating a micrometastasis, and little effect in a sphere analogous to a tumor xenograft compared with <sup>64</sup>Cu in the Cy or on the CS. The dose deposited by <sup>64</sup>Cu is less effective for cell killing than γ-rays.
Medical subject headings
- Cell Physiological Phenomena
- Cell Survival
- Copper Radioisotopes
- Monte Carlo Method
- Radiometry