| Literature DB >> 27896627 |
S V Hartimath1, M A Khayum1, A van Waarde1, R A J O Dierckx1, E F J de Vries2.
Abstract
PURPOSE: Chemokine receptor 4 (CXCR4) is overexpressed in many cancers and a potential drug target. We have recently developed the tracer N-[11C]methyl-AMD3465 for imaging of CXCR4 expression by positron emission tomography (PET). We investigated the pharmacokinetics of N-[11C]methyl-AMD3465 in rats bearing a C6 tumor and assessed whether the CXCR4 occupancy by the drug Plerixafor® can be measured with this PET tracer. PROCEDURE: A subcutaneous C6 tumor was grown in Wistar rats. Dynamic N-[11C]methyl-AMD3465 PET scans with arterial blood sampling was performed in control rats and rats pretreated with Plerixafor® (30 mg/kg, s.c). The distribution volume (V T) of the tracer was estimated by compartment modeling with a two-tissue reversible compartment model (2TRCM) and by Logan graphical analysis. The non-displaceable binding potential (BPND) was estimated with the 2TRCM. Next, CXCR4 receptor occupancy of different doses of the drug Plerixafor® (0.5-60 mg/kg) was investigated.Entities:
Keywords: CXCR4 receptors imaging; Compartment modeling; Logan graphical analysis; Pet; Receptor occupancy
Mesh:
Substances:
Year: 2017 PMID: 27896627 PMCID: PMC5498639 DOI: 10.1007/s11307-016-1028-8
Source DB: PubMed Journal: Mol Imaging Biol ISSN: 1536-1632 Impact factor: 3.488
Body weight and injected dose of the tracer. Animals were treated with saline or different doses of Plerixafor 30 min before tracer injection. Data are reported as mean ± standard deviation
| Group | Plerixafor® dose | Body weight | Injected dose | |
|---|---|---|---|---|
| Kinetic modeling study | g | MBq | nmol | |
| Control ( | Saline | 351 ± 31 | 30 ± 5 | 0.65 ± 0.12 |
| Pretreated ( | 30 mg/kg s.c | 320 ± 25 | 36 ± 8 | 0.76 ± 0.20 |
| Receptor occupancy study | ||||
| Dose-1 ( | 0.5 mg/kg. s.c | 301 ± 16 | 32 ± 4 | 0.68 ± 0.06 |
| Dose-2 ( | 3.0 mg/kg. s.c | 326 ± 20 | 35 ± 5 | 0.74 ± 0.10 |
| Dose-3 ( | 10 mg/kg. s.c | 317 ± 19 | 38 ± 8 | 0.80 ± 0.19 |
| Dose-4 ( | 30 mg/kg. s.c | 315 ± 15 | 31 ± 2 | 0.69 ± 0.05 |
| Dose-5 ( | 60 mg/kg. s.c | 335 ± 13 | 34 ± 4 | 0.72 ± 0.08 |
Fig. 1.Coronal PET images (0–60 min) of C6 tumor-bearing Wistar rats.a Control animal (baseline) with the tumor and heart in the field of view. b Animal pre-treated with AMD3100 8HCl (Plerixafor® 30 mg/kg), 30 min before the tracer injection. The arrow indicates the position of the tumor; Sg Salivary gland, Ln Lymph node and Ht Heart.
Fig. 2a Time-activity curves of the C6 tumor in Wistar rats (n = 6). Animals were either untreated (control) or injected with 30 mg/kg Plerixafor® 30 min before the tracer injection (pretreated). The uptake of the tracer is expressed as SUV and corrected for injected dose, body weight and decay. b Kinetics of N-[11C]methyl-AMD3465 in plasma. Plasma data were corrected for the metabolites. Pre-treatment with Plerixafor® did not significantly affect the kinetics of the tracer in plasma. Error bars represent standard deviations. Statistically significant differences are indicated by * (p < 0.05).
Fig. 3.In vivo metabolite analysis (n = 6). a Chromatogram representing the plasma metabolite analysis by HPLC. b Graph showing the percentage of intact tracer in plasma as a function of time. Error bars represent standard deviations.
Results of kinetic modeling of N-[11C]methyl-AMD3465 tumor kinetics in C6 glioma-bearing Wistar rats. Animals were either untreated (control) or treated with 30 mg/kg Plerixafor® 30 min prior to tracer injection. Data are presented as a mean ± standard deviation
| Parameter | Control | Plerixafor® ( | Statistical significance | Method |
|---|---|---|---|---|
| ( | ||||
| Compartment modeling | ||||
|
| 0.87 ± 0.10 | 0.23 ± 0.12 |
| 2TRCM |
| BP | 1.85 ± 0.14 | 0.87 ± 0.12 |
| |
|
| 0.07 ± 0.04 | 0.06 ± 0.03 | NS | |
| Graphical analysis | Logan | |||
| VT | 0.79 ± 0.16 | 0.18 ± 0.10 |
| |
NS not significant
Fig. 4.Representative graphical analyses of tracer uptake in the C6 tumor. a Logan graphical analysis using a 10-min delay time. b Patlak graphical analysis with a delay time of 20 min.
Fig. 5.Receptor occupancy graphs. a The receptor occupancy was estimated by non-linear regression analysis. The tumor distribution volume (V T) derived from 2TRCM and Logan was used to calculate the nonspecific volume of distribution (V ND) by extrapolating to an infinite drug dose. b Estimation of the ED50 from the receptor occupancy.
Percentage of receptor occupancy calculated from the volume of distribution (V T) and non-displaceable binding potential (BPND) obtained from 2TRCM and Logan graphical analysis. The C6 tumor-bearing Wistar rats were treated with different concentrations of Plerixafor 30 min before tracer injection. All data are expressed as the mean ± standard deviation
| Drug concentration ( | Occupancy (%) ( | Occupancy (%) (BPND-2TRCM) | Occupancy (%) (VT-Logan) |
|---|---|---|---|
| 0.5 | 5 ± 4 | 6 ± 3 | 2 ± 1 |
| 3 | 31 ± 3 | 10 ± 1 | 26 ± 4 |
| 10 | 50 ± 2 | 27 ± 5 | 46 ± 5 |
| 30 | 93 ± 7 | 59 ± 2 | 90 ± 2 |
| 60 | 98 ± 1 | 79 ± 1 | 99 ± 1 |
| ED50 (mg/kg) | 12.7 ± 4.0 | 23.8 ± 4.2 | 14.2 ± 2.3 |
|
| 0.088 ± 0.041 | N.A. | 0.094 ± 0.034 |
N.A. not applicable