| Literature DB >> 26988861 |
Kitiwat Khamwan1,2, Donika Plyku1, Shannon E O'Reilly3, Alison Goodkind4, Xinhua Cao4, Frederic H Fahey4, S Ted Treves5, Wesley E Bolch3, George Sgouros6.
Abstract
BACKGROUND: Absorbed dose estimates for pediatric patients require pharmacokinetics that are, to the extent possible, age-specific. Such age-specific pharmacokinetic data are lacking for many of the diagnostic agents typically used in pediatric imaging. We have developed a pharmacokinetic model of [(18)F]fluorodeoxyglucose (FDG) applicable to premature infants and to 0- (newborns) to 5-year-old patients, which may be used to generate model-derived time-integrated activity coefficients and absorbed dose calculations for these patients.Entities:
Keywords: Compartmental modeling; FDG; Pediatric imaging; Pharmacokinetics
Year: 2016 PMID: 26988861 PMCID: PMC4797375 DOI: 10.1186/s13550-016-0179-6
Source DB: PubMed Journal: EJNMMI Res Impact factor: 3.138
Patients’ characteristic data
| Patient | Sex | Age (months) | Weight (kg) | Activity (MBq) | Acquisition time after injection (min) | Provisional/suspected diagnosis (reason for PET/CT examination) |
|---|---|---|---|---|---|---|
| 1 | F | 11 | 8.3 | 51.8 | 93 | Rhabdomyosarcomaa |
| 2 | F | 16 | 10.4 | 57.3 | 83 | Neurofibromatosis 1 (abdominal/right flank pain) |
| 3 | F | 3 | 4.5 | 27.1 | 94 | Ewing’s sarcomab |
| 4 | F | 4 | 7.3 | 38.4 | 79 | Suspected pelvic carcinoma |
| 5 | F | 10 | 5.9 | 31.0 | 69 | Retroperitoneal sarcoma s/p chemotherapy (assess for tumor activity) |
| 6 | F | 3 | 4.0 | 25.9 | 60 | Infantile adenocarcinomab |
| 7 | F | 0.5 | 3.1 | 19.6 | 60 | Infantile myofibromatosisa |
| 8 | F | 16 | 11.6 | 64.0 | 84 | Rhabdomyosarcomaa |
| 9 | M | 6 | 10.0 | 58.8 | 126 | Suspected left scalp Ewing’s sarcoma |
| 10 | M | 9 | 7.7 | 44.4 | 97 | Suspected pheochromocytomaa |
| 11 | M | 8 | 9.6 | 50.0 | 125 | Suspected malignant liver lesionb |
| 12 | F | 36 | 12.4 | 80.3 | 74 | Rhabdomyosarcoma s/p therapya |
| 13 | F | 36 | 12.0 | 69.5 | 86 | Rhabdomyosarcoma s/p therapyb |
| 14 | F | 36 | 11.6 | 64.0 | 71 | Rhabdomyosarcoma s/p therapyb |
| 15 | F | 12 | 9.1 | 51.0 | 66 | Infantile fibrosarcoma of pelvis s/p therapya |
| 16 | M | 60 | 18.0 | 64.2 | 70 | Diffuse large B cell lymphoma stage IVa |
| 17 | M | 7 | 8.6 | 30.6 | 78 | Hodgkin’s lymphoma s/p chemotherapya |
| 18 | F | 48 | 16.0 | 91.2 | 81 | Localized Ewing’s sarcomaa |
| 19 | M | 48 | 15.1 | 82.9 | 73 | Neurofibromatosis 1 (tumor activity evaluation) |
| 20 | F | 13 | 7.3 | 40.7 | 60 | Suspected malignant pelvic massb |
| 21 | M | 24 | 12.4 | 81.2 | 85 | High-risk neuroblastoma s/p therapya |
| 22 | M | 9 | 10.5 | 94.8 | 113 | Multifocal inflammatory myofibroblastic tumor of the lungs s/p chemotherapya |
| 23 | F | 10 | 9.9 | 58.8 | 109 | B cell lymphomaa |
| 24 | F | 7 | 8.1 | 48.1 | 117 | Anaplastic large-cell lymphoma s/p therapya |
| 25 | F | 11 | 7.0 | 37.4 | 88 | Hepatoblastoma s/p chemotherapya |
| 26 | F | 11 | 10.5 | 57.1 | 106 | Suspected left renal cell carcinomaa |
| 27 | M | 23 | 12.6 | 79.1 | 89 | Suspected rhabdomyosarcoma |
| 28 | M | 24 | 12.7 | 75.6 | 69 | Right calf alveolar rhabdomyosarcomaa |
| 29 | M | 36 | 13.8 | 81.4 | 117 | Stage IV neuroblastoma s/p therapya |
| 30 | M | 36 | 14.3 | 74.0 | 83 | Stage IV neuroblastoma s/p therapya |
| 31 | M | 48 | 21.7 | 121.4 | 82 | Rhabdomyosarcomaa |
| 32 | M | 60 | 22.0 | 125.8 | 119 | Spinal neurofibromaa |
| 33 | F | 60 | 20.1 | 116.6 | 81 | Suspected neck LN in thyroid cancerb |
| 34 | M | 60 | 16.6 | 92.9 | 83 | Metastatic glomus tumora |
| 35 | M | 60 | 16.8 | 96.9 | 75 | Malignant rhabdoid tumor s/p therapya |
aEvaluation for staging and/or response (post therapy)
bEvaluation for metastasis
Fig. 1FDG compartment model used to fit the kinetic data in premature infants and newborns to 5-year-olds
Fig. 2Plot of time-activity curves of the source organs that derived from the premature infant model
Fig. 3a–e Plot of BCH data and model-derived curves obtained from of each source organ. The error bars represent the standard deviation for each time point derived from the variability of %IA in multiple patients in each bin of 5-min intervals. The SD was also considered for the compartmental model fitting. In cases when literature data are available (e.g., brain, lungs, heart wall, and kidneys), these data points have been plotted to compare with the model fit to the BCH data. In the lungs, heart wall, kidneys, and liver, data points that are exclusively derived from patients <1 year old (newborns) are indicated in red. Other points (blue) are a composite of binned newborns and 1- to 5-year-olds
Parameter values fitted to the premature infants and newborns to 5-year-olds FDG model
| Parameter | Premature | 0- to 5-year-olds | Adults |
|---|---|---|---|
| Plasma to erythrocytes (k1) | 5.82E−02 | 5.31E−04 | 4.80E+00 |
| Erythrocytes to plasma (k2) | 1.16E−01 | 6.88E+01 | 8.07E+00 |
| Plasma to fast brain (k3) | 6.12E−02 | 3.70E−03 | 1.02E−01 |
| Fast brain to plasma (k4) | 1.30E−01 | 1.00E−01 | 1.30E−01 |
| Fast brain to slow brain (k5) | 6.62E−02 | 1.00E+00 | 6.20E−02 |
| Slow brain to fast brain (k6) | 9.57E−04 | 9.57E−04 | 6.80E−03 |
| Plasma to lungs (k7) | 7.20E−04 | 5.00E−06 | 1.70E−03 |
| Lungs to plasma (k8) | 6.46E−04 | 6.50E−04 | – |
| Plasma to heart wall (k9) | 1.72E−04 | 8.00E−07 | 5.30E−03 |
| Heart wall to plasma (k10) | 1.16E−07 | 5.50E−01 | – |
| Plasma to kidneys (k11) | 7.57E−04 | 2.75E−03 | – |
| Kidneys to plasma (k12) | 2.26E−02 | 5.50E−02 | – |
| Plasma to fast liver (k13) | 1.72E−02 | 2.00E−02 | 6.80E−02 |
| Fast liver to plasma (k14) | 2.19E−02 | 3.00E+00 | 2.19E−01 |
| Fast liver to slow liver (k15) | 1.20E−06 | 1.50E−03 | 1.80E−02 |
| Plasma to fast “other” (k16) | 1.32E+00 | 4.20E−02 | 3.71E−01 |
| Fast “other” to plasma (k17) | 2.76E+00 | 8.90E−02 | 1.02E−01 |
| Fast “other” to slow “other” (k18) | 3.62E−03 | 9.47E−03 | 1.67E−02 |
| Blood volume fraction in brain | 2.20E−02 | 1.35E−01 | 2.20E−01 |
| Blood volume fraction in lungs | 9.00E−02 | 3.00E−02 | 1.50E−01 |
| Blood volume fraction in heart | 2.50E−02 | 3.10E−02 | 6.90E−02 |
| Blood volume fraction in liver | – | 9.80E−02 | 2.43E−01 |
Time-integrated activity coefficient (TIAC) derived from the newborn FDG model compared with the published data
| Organ | TIAC (h) | |||
|---|---|---|---|---|
| Hays and Segall | Niven and Nahmias | Premature | 0- to 5-year-olds | |
| Brain | 2.20E−01 ± 0.09 | 2.82E−01 ± 0.07 | 2.76E−01 | 1.15E−00 |
| Lungs | 7.00E−02 ± 0.03 | 4.80E−02 ± 0.03 | 7.00E−02 | 1.90E−02 |
| Heart wall | 1.30E−01 ± 0.06 | 1.80E−02 ± 0.01 | 2.70E−02 | 3.20E−02 |
| Kidneys | – | 1.20E−02 ± 0.01 | 1.10E−02 | 4.60E−02 |
| Liver | 1.50E−01 ± 0.05 | – | – | 1.09E−01 |
List of percent blood volume predicted by the FDG newborn model compared with values for the adult in ICRP 106 and the original FDG adult model
| Organ | Fraction blood volume (%) | |||
|---|---|---|---|---|
| Adults (ICRP 106) | Adults (Hays and Segall) | Premature | 0- to 5-year-olds | |
| Brain | 1.2 | –a | 2.2 | 13.5 |
| Lungs | 12.5 | 15 | 9 | 3 |
| Heart wall | 1.0 (same listed has coronary tissue) | 6.9 (includes coronary artery) | 2.5 | 3.1 |
| Liver | 10 | 24.3 | – | 9.8 |
aHays and Segall paper referred to Huang et al. brain model and did not explicitly list a fractional blood volume for brain
Fig. 4a–e The relationship between the patient body weight and percent injected activity in each source organ for newborns (red) and 1- to 5-year-olds (blue). Each data point corresponds to an individual patient
Fig. 5Quadratic model used to estimate %IA/g of the FDG in each organ based on a function of patient weight for 60–81 min after injection. Each data point corresponds to an individual patient
Fig. 6Quadratic model used to estimate %IA/g of the FDG in each organ based on a function of patient weight for 82–126 min after injection. Each data point corresponds to an individual patient
Fitting coefficients used to determine the %IA/g for each organ at different time point for newborn FDG model
| Organ | Coefficient value | |||
|---|---|---|---|---|
|
|
|
|
| |
| Brain(60–81) | 0.1118 | −0.454 | 3.4798 | −10.66 |
| Brain(82–126) | 0.0429 | −0.1151 | 999.8 | −5.4104 |
| Lungs(60–81) | −0.0163 | −0.5690 | 0.0765 | −0.9113 |
| Lungs(82–126) | 0.0023 | −0.2488 | 2.4618 | −2.9462 |
| Heart wall(60–81) | 0.7895 | −1.5323 | 3.1637 | −6.0397 |
| Heart wall(82–126) | 0.0514 | −0.7949 | 56.945 | −3.8659 |
| Kidneys(60–81) | 0.6594 | −1.3418 | 567.51 | −8.5901 |
| Kidneys(82–126) | 0.2427 | −1.0152 | 47.191 | −4.2647 |
| Liver(60–81) | −0.0011 | 0.2788 | 0.1163 | −0.9573 |
| Liver(82–126) | 0.0586 | −0.7806 | 62.2 | −4.9917 |