| Literature DB >> 25165485 |
David L Bolduc1, Vilmar Villa1, David J Sandgren1, G David Ledney1, William F Blakely1, Rolf Bünger1.
Abstract
Multivariate radiation injury estimation algorithms were formulated for estimating severe hematopoietic acute radiation syndrome (H-ARS) injury (i.e., response category three or RC3) in a rhesus monkey total-body irradiation (TBI) model. Classical CBC and serum chemistry blood parameters were examined prior to irradiation (d 0) and on d 7, 10, 14, 21, and 25 after irradiation involving 24 nonhuman primates (NHP) (Macaca mulatta) given 6.5-Gy (60)Co Υ-rays (0.4 Gy min(-1)) TBI. A correlation matrix was formulated with the RC3 severity level designated as the "dependent variable" and independent variables down selected based on their radioresponsiveness and relatively low multicollinearity using stepwise-linear regression analyses. Final candidate independent variables included CBC counts (absolute number of neutrophils, lymphocytes, and platelets) in formulating the "CBC" RC3 estimation algorithm. Additionally, the formulation of a diagnostic CBC and serum chemistry "CBC-SCHEM" RC3 algorithm expanded upon the CBC algorithm model with the addition of hematocrit and the serum enzyme levels of aspartate aminotransferase, creatine kinase, and lactate dehydrogenase. Both algorithms estimated RC3 with over 90% predictive power. Only the CBC-SCHEM RC3 algorithm, however, met the critical three assumptions of linear least squares demonstrating slightly greater precision for radiation injury estimation, but with significantly decreased prediction error indicating increased statistical robustness.Entities:
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Year: 2014 PMID: 25165485 PMCID: PMC4140144 DOI: 10.1155/2014/685286
Source DB: PubMed Journal: Comput Math Methods Med ISSN: 1748-670X Impact factor: 2.238
Figure 1Schematic for formulating a response category 3 (RC3) estimation algorithm. Formulations of the two multivariate models/algorithms were performed in a four-step process: compilation of initial blood variables, identification of candidate blood variables, analysis of candidate blood variables, and the formulation of two “RC3” models/algorithms.
The 106 CBC, blood chemistry parameters, and related ratios based from the 7 time points (0, 7, 10, 14, 17, 21, and 25 d after irradiation). Variables marked with an asterisk indicate the 32 selected for entry in the correlation matrix.
| CBC panel parameters | Blood chemistry panel parameters | Ratios of CBC and blood chemistry parameters | |
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| ∗Hematocrit (relative volume of erythrocytes) (HCT) | ∗Alanine transaminase level (ALT) | TRIGL/TP | CK/ALB |
| ∗Hemoglobin concentration (HGB) | Albumin level (ALB) | #BASO/WBC | CK/ALB |
| ∗Mean corpuscular (erythrocyte) volume (MCV) | ∗Alkaline phosphatase level (ALKP) | #EOS/WBC | CK/TP |
| ∗Mean corpuscular hemoglobin (MCH) | Amylase level (AMYL) | #LUC/WBC | CK/TP |
| ∗Mean corpuscular hemoglobin concentration (MCHC) | ∗Aspartate aminotransferase level (AST) | ALC/WBC | CO2/PO4 |
| ∗Mean platelet (thrombocyte) volume (MPV) | Bilirubin level (BILI) | #MONO/WBC | GGT/ALB |
| ∗Number of basophils (# BASO) | ∗Blood urea nitrogen level (BUN) | #RETIC/WBC, | GGT/TP |
| ∗Number of eosinophils (# EOS) | Calcium level (Ca) | %EOS/WBC | GLU/ALB |
| ∗Number of leucocytes (# LUC) | ∗Carbon dioxide concentration (CO2) | %LYMPH/WBC | HCT/ALB |
| ∗Number of lymphocytes (# ALC) | Chloride level (Cl) | %NEUT/WBC | HGB/RBC |
| ∗Number of mononuclear cells (# MONO) | Cholesterol Level (CHOL) | %RETIC/WBC | K/Na |
| ∗Number of neutrophils (# ANC) | ∗Creatine kinase level (CK) | ALB/TP | LDH/ALB |
| ∗Number of reticulocytes (# RETIC) | ∗Creatinine level (CR) | ALKP/ALB | LDH/TP |
| ∗Percentage of basophils (% BASO) | Gamma-glutamyl transferase level (GGT) | ALKP/TP | LPS/ALB |
| ∗Percentage of eosinophils (% EOS) | Glucose level (GLU) | ALT/ALB | MCH/RBC |
| ∗Percentage of leukocytes (% LUC) | ∗Lactate dehydrogenase level (LDH) | ALT/TP | MCHC/RBC |
| ∗Percentage of lymphocytes (ALC) | Lipase level (LPS) | AMYL/ALB | MCV/WBC |
| Percentage of mononuclear cells (% MONO) | Phosphate level (PO4) | AST/ALB | MPV/WBC |
| ∗Percentage of neutrophils (% NEUT) | ∗Potassium level (K) | AST/TP | Na/K |
| ∗Percentage of reticulocytes (% RETIC) | Sodium level (Na) | BASO/%LUC | ANC//WBC |
| ∗Platelet count (# APC) | Total protein level (TP) | BILI/ALB | APC/WBC |
| ∗Red blood cell count (# RBC) | Triglyceride level (TRIGL) | BILI/TP | PO4/CO2 |
| ∗White blood cell count (# WBC) | ∗Uric acid level (URIC) | BUN/ALB | RBC/WBC |
| Ca/ALB | TP/ALB | ||
| Ca/PO4 | TRIG/ALB | ||
| Ca/TP | TRIGL/CHOL | ||
| CHOL/ALB | URIC/ALB | ||
| CHOL/TP | URIC/BUN | ||
| CHOL/TRIG | URIC/TP | ||
| Cl/Na | WBC/RBC | ||
Multivariate correlation values for the “CBC” (bold) and the “CBC-SCHEM” (italic) RC3 models.
| Correlation coefficients | ||||||||
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| Parameters | Rad dose | Time | ANC | ALC | APC | AST | CK | HCT |
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| ANC |
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| APC |
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| AST |
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| CK |
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| HCT |
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| LDH |
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Figure 2Candidate NHP blood parameters considered in the formulation of the CBC and CBC-SCHEM RC3 models (a) ANC, (b) ALC, (c) APC in (×103 cells μL−1), (d) abundance HCT in %, (e) CK, (f) AST, and (g) LDH in UL−1. The seven blood parameters were graphed with their standard errors for detecting the radiosensitivity of NHPs to a 6.5 Gy 60Co γ-radiation dose on d 0 (nonirradiated, n = 8) and 7, 10, 14, 17, 21, and 25 d after irradiation (n = 8) (shaded areas indicate range between upper and lower 95% confidence levels).
Quantitative measures to assess radioresponses for selected seven blood variables including: a) initial time of change and relative fold change, b) nadir time window and relative nadir fold changes, and c) time until return to baseline levels.
| Blood parameters | Baseline range | Initial time of change (day) | Fold change | Nadir time (day) | Nadir values fold change | Return to baseline time (day) | ||||||||
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| RSD ∗(+/−) |
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| ANC | 2.82–4.30 × 103
| 7 | 3.7 | 1.6 | −3.25 | 0.01 | 8 | 10–17 | 23.89 | 8.83 | −4.3 | 0.004 | 8 | 21 |
| ALC | 1.41–1.78 × 103
| 7 | 3 | 0.09 | −8.35 | 0.01 | 7–17 | 7.98 | 1.53 | −8.5 | 0.0001 | 8 | 25 | |
| APC | 321.82–370.74 × 103
| 7 | 2.19 | 0.37 | −5.32 | 0.0001 | 8 | 10–17 | 11.32 | 3.26 | −13 | 0.0001 | 8 | — |
| HCT | 37.93–39.99 (%) | 10 | 1 | 4.54 | −1.65 | 0.01 | 17–25 | 1.33 | 0.08 | −5.9 | 0.0006 | 8 | — | |
| AST | 36.86–44.78 U/L−1 | 7 | 1.82 | 0.23 | 3.81 | 0.006 | 8 | — | — | — | — | — | 8 | 10 |
| CK | 304.57–681.71 U/L−1 | 7 | 3.12 | 1.4 | 1.65 | 0.04 | 8 | — | — | — | — | — | 8 | 10 |
| LDH | 846.41–1185.83 U/L−1 | 7 | 1.68 | 0.37 | 2.34 | 0.05 | 8 | — | — | — | — | — | 8 | 10 |
*Relative Standard Deviation (RSD).
Figure 3The “CBC” W = 0.96 and P(W) = 0.02 (a) and “CBC-SCHEM” W = 0.98 and P(W) = 0.81 (b): multivariate RC3 models were checked for normal probability and residual patterns. In comparing the residuals of the variables used in the independent variables between the two models, a closer fit to the regression was observed at the tail ends of the CBC-SCHEM RC3 model indicating higher prediction accuracy.
Receiving operator curve analysis of single and combination of blood variables at the six time points 7, 10, 14, 17, 21, and 25 d after irradiation equations.
| ROC AUC values at 95% CL, comparison of RC0 and RC3 | ||||||||
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| Time after irradiation, d | ||||||||
| Blood variable combination | 7 d | 10 d | 14 d | 17 d | 21 d | 25 d | Pooled | |
| ALC |
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| 95% CL | 0.04–1.00 | 0.93–1.00 | 0.94–1.00 | |||||
| ANC |
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| 95% CL | 0.90–1.00 | 0.00–0.90 | 0.20–0.83 | 0.77–0.98 | ||||
| APC |
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| 95% CL | 0.97–1.00 | 0.00–1.00 | 0.00–1.00 | 0.85–1.00 | ||||
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| 95% CL | 0.05–1.00 | 0.02–0.98 | 0.08–0.99 | 0.98–1.00 | 0.98–1.00 | 0.94–1.00 | 0.84–0.99 | |
| LDH |
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| 95% CL | 0.04–0.97 | 0.25–0.78 | 0.24–0.84 | 0.17–0.85 | 0.16–0.86 | 0.20–0.77 | 0.29–0.66 | |
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| 95% CL | 0.02–0.98 | 0.34–0.65 | 0.17–0.85 | 0.12–0.86 | 0.30–0.71 | 0.24–0.76 | 0.36–0.65 | |
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| 95% CL | 0.92–1.00 | 0.30–0.75 | 0.20–0.82 | 0.09–0.91 | 0.19–0.81 | 0.33–0.75 | 0.20–0.65 | |
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| “CBC” RC3 model | ||||||||
| ALC, ANC, APC | AUC | 1 | 1 | 1 | 1 | 0.87 | 0.92 | 0.97 |
| 95% CL | 0.51–1.00 | 0.61–1.00 | 0.91–1.00 | |||||
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| “CBC-SCHEM” RC3 model | ||||||||
| ALC, ANC, APC, HCT, LDH, CK, AST |
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| 95% CL | 0.99-1.00 | 0.95–1.00 | 0.95–1.00 | 0.98–1.00 | 0.76–1.00 | 0.82–1.00 | 0.97–1.00 | |
RC3 estimations.
| CBC∗ | CBC-SCHEM† | ||||||
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| Day | Estimated Response Category | 95% Prediction Limit Width | 95% Confidence Interval Limit Width | Day | Estimated Response Category | 95%Prediction Limit Width | 95%Confidence Interval Limit Width |
| 7 |
| 1.90 | 0.39 | 7 |
| 1.76 | 0.63 |
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| 1.89 | 0.32 |
| 1.70 | 0.39 | ||
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| 1.90 | 0.30 |
| 1.88 | 0.33 | ||
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| 1.90 | 0.60 |
| 1.67 | 0.54 | ||
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| 1.89 | 0.63 |
| 1.68 | 0.57 | ||
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| 1.88 | 0.33 |
| 1.99 | 0.44 | ||
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| 1.89 | 0.33 |
| 1.68 | 0.39 | ||
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| 1.93 | 0.37 |
| 1.84 | 0.42 | ||
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| 10 |
| 1.89 | 0.35 | 10 |
| 1.68 | 0.41 |
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| 1.89 | 0.39 |
| 1.68 | 0.36 | ||
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| 1.90 | 0.53 |
| 1.68 | 0.54 | ||
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| 1.90 | 0.35 |
| 1.68 | 0.93 | ||
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| 1.90 | 0.39 |
| 1.68 | 0.37 | ||
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| 1.89 | 0.37 |
| 1.68 | 0.35 | ||
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| 1.90 | 0.36 |
| 1.68 | 0.37 | ||
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| 1.90 | 0.38 |
| 1.72 | 0.37 | ||
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| 14 |
| 1.89 | 0.49 | 14 |
| 1.67 | 0.46 |
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| 1.90 | 0.37 |
| 1.69 | 0.33 | ||
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| 1.90 | 0.37 |
| 1.68 | 0.36 | ||
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| 1.90 | 0.36 |
| 1.68 | 0.36 | ||
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| 1.89 | 0.37 |
| 1.67 | 0.41 | ||
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| 1.89 | 0.38 |
| 1.74 | 0.36 | ||
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| 1.89 | 0.46 |
| 1.68 | 0.46 | ||
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| 17 |
| 1.89 | 0.33 | 17 |
| 1.69 | 0.37 |
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| 1.90 | 0.35 |
| 1.68 | 0.35 | ||
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| 1.90 | 0.34 |
| 1.69 | 0.34 | ||
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| 1.89 | 0.33 |
| 1.67 | 0.32 | ||
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| 1.89 | 0.52 |
| 1.68 | 0.47 | ||
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| 1.89 | 0.49 |
| 1.67 | 0.45 | ||
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| 1.89 | 0.28 |
| 1.72 | 1.13 | ||
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| 21 |
| 1.96 | 0.32 | 21 |
| 1.73 | 0.39 |
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| 1.90 | 0.34 |
| 1.68 | 0.58 | ||
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| 1.90 | 0.32 |
| 1.68 | 0.37 | ||
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| 1.90 | 0.46 |
| 1.68 | 0.74 | ||
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| 1.94 | 0.87 |
| 1.70 | 0.86 | ||
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| 1.92 | 0.33 |
| 1.80 | 0.37 | ||
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| 2.01 | 0.38 |
| 1.77 | 0.39 | ||
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| 1.94 | 0.33 |
| 1.73 | 0.37 | ||
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| 25 |
| 1.94 | 0.34 | 25 |
| 1.74 | 0.34 |
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| 1.94 | 0.75 |
| 1.72 | 0.68 | ||
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| 1.93 | 0.55 |
| 1.70 | 0.52 | ||
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| 1.92 | 0.48 |
| 1.70 | 0.84 | ||
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| 1.93 | 0.36 |
| 1.70 | 0.54 | ||
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| 20.6 | 0.33 |
| 1.85 | 0.53 | ||
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| 1.94 | 0.55 |
| 1.72 | 0.55 | ||
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| 1.99 | 0.69 |
| 1.76 | 0.63 | ||
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| Mean |
| 1.91 | 0.42 | Mean |
| 1.71 | 0.48 |
| SD |
| 0.03 | 0.13 | SD |
| 0.06 | 0.18 |
| SEM |
| 0.01 | 0.02 | SEM |
| 0.01 | 0.03 |
*The “CBC” RC3 model failed to meet the critical three assumptions of Linear-Least-Squares and was therefore NOT ACCEPTED as statistically sound for estimating H-ARS RC3.
†The “CBC-SCHEM” RC3 model met the critical three assumptions of Linear-Least-Squares and was therefore ACCEPTED as statistically sound for estimating H-ARS RC3.
Figure 4RC3 assignment accuracies derived from the CBC and CBC-SCHEM algorithms were compared with the NHP cohorts (7, 10, 14, 17, 21, and 25 d) after irradiation. Percentages were based on the total number of NHPs that were within the range >2.5–<3.5 for the six postirradiation days (bars represent SD).
(a) “CBC” RC3 model
| RC3 = 1.93 + (0.09) (TIME) + (−0.06) (ANC) + (−0.36) (ALC) + (−2.685 × 10−3) (APC) | |||
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| Predictor | Value |
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| 1.93 | 12.61 | 0.00 |
| TIME | 0.09 | 13.06 | 0.00 |
| ANC | −0.06 | −1.87 | 0.06 |
| ALC | −0.36 | −4.53 | 0.00 |
| APC | −2.685 × 10−3 | −4.81 | 0.00 |
(b) “CBC-SCHEM” RC3 model
| ∗RC3 = 0.42 + (0.11) (TIME) + (−0.06) (ANC) + (−0.26) (ALC) + (−2.787 × 10−3) (APC) + (0.01) (AST) + (1.968 × 10−5) (CK) + (0.02) (HCT) + (−8.682 × 10−5) (LDH) | |||
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| Predictor | Value |
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| 0.42 | 0.85 | 0.39 |
| TIME | 0.11 | 12.82 | 0.00 |
| ANC | −0.06 | −2.06 | 0.04 |
| ALC | −0.26 | −3.50 | 0.00 |
| APC | −2.787 × 10−3 | −5.52 | 0.00 |
| AST | 0.01 | 2.71 | 0.00 |
| CK | 1.968 × 10−5 | 1.81 | 0.07 |
| HCT | 0.02 | 1.79 | 0.07 |
| LDH | −8.682 × 10−5 | −0.61 | 0.54 |
Note. The t value represents the ratio of the β-coefficient over its SE. The P value represents the significance of the t value.
*(Adding of CK and LDH enables the model to pass the requirements of linear-least-squares analysis.)
See text 2.7 for units values of the variables shown in both algorithms.