| Literature DB >> 26252394 |
Murat Alp1, Vipan K Parihar2, Charles L Limoli2, Francis A Cucinotta1.
Abstract
In this work, a stochastic computational model of microscopic energy deposition events is used to study for the first time damage to irradiated neuronal cells of the mouse hippocampus. An extensive library of radiation tracks for different particle types is created to score energy deposition in small voxels and volume segments describing a neuron's morphology that later are sampled for given particle fluence or dose. Methods included the construction of in silico mouse hippocampal granule cells from neuromorpho.org with spine and filopodia segments stochastically distributed along the dendritic branches. The model is tested with high-energy (56)Fe, (12)C, and (1)H particles and electrons. Results indicate that the tree-like structure of the neuronal morphology and the microscopic dose deposition of distinct particles may lead to different outcomes when cellular injury is assessed, leading to differences in structural damage for the same absorbed dose. The significance of the microscopic dose in neuron components is to introduce specific local and global modes of cellular injury that likely contribute to spine, filopodia, and dendrite pruning, impacting cognition and possibly the collapse of the neuron. Results show that the heterogeneity of heavy particle tracks at low doses, compared to the more uniform dose distribution of electrons, juxtaposed with neuron morphology make it necessary to model the spatial dose painting for specific neuronal components. Going forward, this work can directly support the development of biophysical models of the modifications of spine and dendritic morphology observed after low dose charged particle irradiation by providing accurate descriptions of the underlying physical insults to complex neuron structures at the nano-meter scale.Entities:
Mesh:
Year: 2015 PMID: 26252394 PMCID: PMC4529238 DOI: 10.1371/journal.pcbi.1004428
Source DB: PubMed Journal: PLoS Comput Biol ISSN: 1553-734X Impact factor: 4.475
Fig 1The test neuron; a dentate granule cell including spines and filopodia that are randomly distributed on the dendrites.
Filopodia and three types of spines are randomly distributed along the dendrites. In color code (A), dendritic segment is green, with spines (Ss) tall (magenta), mushroom (red), stubby (blue), and filopodia (white), which are located on the surface of the dendritic segment. (B) A statistical realization of segments of dendritic branches with spines and filopodia. (C) a snap shot of the test neuron including the soma (two large green cylinders), the dendrites, spines and filopodia are shown with the scale bar.
Fig 6A sample profile of dose deposition at 100 mGy.
A statistical realization of voxel dose distribution for 100 mGy neuronal dose plotted in panels (A) through (D) for iron, carbon, proton and electron beams at (600 MeV/u, 300 MeV/u, 250 MeV, 500–450 keV) respectively. Segment dose distribution in (E-H) is highlighted with the colors for dendrites (green), filopodia (white), long (magenta), mushroom (red) and stubby (blue) spines. These segment numbers on the test neuron are {(3–194), (195–1348), (1349–1848), (1849–2184), (2185–2610)} for dendrites, filopodia, and long, mushroom, stubby spines. First and second segments make up the soma. Panels (I) to (L) show predictions of the frequency of deposited dose for iron, carbon, proton and electron beams corresponding to Panels (A) to D), respectively.
Coincidence statistics of selected fluence doses in the test neuron compartments.
| Fluence dose (mGy) | Neuron dose (mGy) | Compartmental dose of particle hits: mean±SD (mGy) | % Volumes hit: mean±SD | |||||
|---|---|---|---|---|---|---|---|---|
| Soma | Dendrites | Spines | Filopodia | Dendrites | Spines | Filopodia | ||
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| 10 | 11.3±18.1 | 9.4±38.2 | 110.5±150.6 | 2105.3±6549.1 | 1660.6±4755.1 | 10.95±3.28 | 0.59±0.35 | 0.61±0.37 |
| 50 | 53.6±44.0 | 45.3±89.4 | 145.7±94.3 | 1940.2±2534.5 | 1586.5±2089.4 | 42.29±4.82 | 2.97±0.78 | 3.07±0.80 |
| 100 | 99.5±56.1 | 81.2±120.2 | 186.6±87.6 | 2006.5±1646.2 | 1805.5±1661.3 | 64.13±4.12 | 5.71±1.03 | 5.82±1.10 |
| 150 | 151.2±64.6 | 110.9±127.4 | 251.6±90.0 | 2006.6±1349.7 | 1781.5±1365.9 | 77.05±3.12 | 8.40±1.11 | 8.70±1.28 |
| 200 | 207.8±77.1 | 172.0±154.0 | 298.5±97.0 | 2193.3±1270.9 | 1879.5±1169.2 | 84.04±2.82 | 11.31±1.36 | 11.49±1.45 |
| 400 | 412.7±105.6 | 331.8±197.4 | 517.3±116.1 | 2158.4±822.9 | 1904.1±753.1 | 96.42±1.37 | 21.26±1.67 | 21.33±1.69 |
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| 10 | 10.5±5.1 | 9.0±10.3 | 73.1±26.2 | 1178.8±1038.4 | 1347.3±1136.9 | 15.63±2.85 | 0.79±0.36 | 0.97±0.42 |
| 50 | 51.7±11.7 | 44.2±22.0 | 104.0±17.6 | 1265.4±422.6 | 1303.5±415.0 | 53.45±3.62 | 3.91±0.75 | 4.65±0.89 |
| 100 | 104.2±18.3 | 88.2±35.8 | 151.3±18.7 | 1354.4±315.7 | 1340.9±320.5 | 75.16±3.17 | 7.69±1.03 | 9.10±1.41 |
| 150 | 157.1±21.3 | 137.0±40.7 | 196.0±20.7 | 1366.7±281.2 | 1376.1±251.8 | 85.57±2.54 | 11.26±1.35 | 13.10±1.40 |
| 200 | 209.5±23.2 | 181.6±46.5 | 247.2±22.3 | 1390.2±235.1 | 1389.0±221.9 | 91.21±1.88 | 14.75±1.45 | 17.43±1.57 |
| 400 | 415.5±30.5 | 356.7±60.4 | 458.1±28.6 | 1519.7±170.3 | 1547.1±175.0 | 97.99±0.93 | 26.98±1.72 | 31.52±1.98 |
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| 10 | 10.4±1.4 | 9.1±2.7 | 16.3±2.3 | 180.0±62.8 | 189.2±78.8 | 68.73±3.33 | 5.84±1.00 | 6.37±1.03 |
| 50 | 52.3±3.7 | 45.5±6.6 | 58.4±4.1 | 201.0±31.5 | 212.8±34.0 | 98.24±0.90 | 25.67±1.74 | 27.97±1.84 |
| 100 | 104.0±4.3 | 89.6±8.3 | 114.7±5.2 | 231.6±24.3 | 254.2±32.0 | 99.80±0.32 | 44.72±1.97 | 48.11±2.06 |
| 150 | 156.1±5.4 | 135.0±9.4 | 171.5±6.0 | 267.2±21.8 | 293.8±28.3 | 99.98±0.12 | 58.56±2.07 | 62.29±1.75 |
| 200 | 207.9±6.1 | 179.6±10.8 | 228.8±7.1 | 300.0±21.8 | 333.5±28.4 | 100.0±0.0 | 69.16±1.60 | 72.61±1.85 |
| 400 | 416.2±8.5 | 359.6±15.7 | 458.3±9.2 | 459.6±20.6 | 527.1±28.0 | 100.0±0.0 | 89.76±1.00 | 91.86±1.09 |
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| 10 | 10.2±1.0 | 8.7±1.7 | 12.9±1.4 | 115.6±40.2 | 111.9±36.2 | 88.30±2.14 | 9.98±1.16 | 10.30±1.32 |
| 50 | 51.7±2.1 | 44.1±3.8 | 57.5±3.0 | 142.3±20.7 | 139.3±18.9 | 99.82±0.30 | 40.16±1.95 | 41.71±2.12 |
| 100 | 103.4±2.9 | 87.8±5.5 | 115.3±3.9 | 181.6±19.3 | 176.6±16.9 | 99.99±0.08 | 63.69±1.79 | 65.21±1.95 |
| 150 | 154.8±3.2 | 131.9±6.1 | 172.7±5.1 | 221.0±17.4 | 218.3±18.2 | 99.99±0.03 | 77.29±1.63 | 78.99±1.55 |
| 200 | 206.6±3.4 | 176.1±6.5 | 230.2±4.7 | 266.7±17.5 | 263.4±18.5 | 100.0±0.0 | 85.75±1.42 | 87.09±1.46 |
| 400 | 413.2±4.5 | 352.0±7.4 | 459.0±6.0 | 471.5±17.2 | 473.7±17.4 | 100.0±0.0 | 97.35±0.62 | 97.83±0.47 |
Spines and filopodia cylindrical axes heights and diameter values.
| Spines & Filopodia | Ratio | Base-Head Height±SD (μm) | Base-Neck Height±SD (μm) | Top-Head Diameter±SD (μm) | Top-Neck Diameter±SD (μm) | Numbers used in this paper |
|---|---|---|---|---|---|---|
| Long | 0.38 | 0.4±0.07 | 1±0.12 | 0.35±0.06 | 0.3±0.06 | 250 |
| Mushroom | 0.33 | 0.42±0.08 | 0.35±0.06 | 0.6±0.1 | 0.24±0.06 | 213 |
| Stubby | 0.29 | 0.25±0.04 | 0.25±0.04 | 0.46±0.04 | 0.54±0.04 | 168 |
| Filopodia | 1 | 1.1±0.1 | 0.3±0.06 | 0.3±0.05 | 0.38±0.05 | 577 |
A summary of simulation results to create the coincidence libraries.
| Charged Particle | Number of trials | Fluence dose (Gy) | Neuron dose (Gy) | LET of the histories | Dose per beam (Gy) |
|---|---|---|---|---|---|
| 56Fe (600 MeV/u) | 20,000 | 2.27 | 1.79 | 172.4 keV/μm | 1.14×10−4 |
| 12C (300 MeV/u) | 405,000 | 2.64 | 2.31 | 12.9 keV/μm | 6.51×10−6 |
| 1H (250 MeV) | 2.1×106 | 1.35 | 1.16 | 398.2 eV/μm | 6.40×10−7 |
| e- (500 to 490 keV) | 12×106 | 1.30 | 0.92 | 215.3 eV/μm | 1.08×10−7 |
Dose per beam = 0.16×LET(keV/μm)/A (μm2) where A with R = (278, 318, 178, 318) μm for (56Fe, 12C, 1H, e-) particles.