| Literature DB >> 32405797 |
Daniel L Yokell1,2, Peter A Rice3, Ramesh Neelamegam3,4, Georges El Fakhri3,4.
Abstract
BACKGROUND: [13N]Ammonia is a cyclotron produced myocardial perfusion imaging agent. With the development of high-yielding [13N]ammonia cyclotron targets using a solution of 5 mM ethanol in water, there was a need to develop and validate an automated purification and formulation system for [13N]ammonia to be in a physiological compatible formulation of 0.9% sodium chloride since there is no widely available commercial system at this time. Due to its short half-life of 10 min, FDA and USP regulations allow [13N]ammonia to be tested in quality control (QC) sub-batches with limited quality control testing performed on the sub-batches for patient use. The current EP and the original USP method for the determination of the radiochemical purity and identity of [13N]ammonia depended on an HPLC method using a conductivity detector and a solvent free of other salts. This HPLC method created issues in a modern cGMP high volume PET manufacturing facility where the HPLC is used with salt containing mobile phase buffers for quality control analysis of other PET radiopharmaceuticals. Flushing of the HPLC system of residual salt buffers which may interfere with the [13N]ammonia assay can take several hours of instrument time. Since there are no mass limits on [13N]ammonia, a simplified TLC assay to determine radiochemical identity and purity could be developed to simplify and streamline QC.Entities:
Keywords: Automated radiochemistry; Cardiac PET; PET radiopharmaceutical quality control; Regulatory; [13N]Ammonia; [13N]NH3; cGMP PET drug manufacturing
Year: 2020 PMID: 32405797 PMCID: PMC7221112 DOI: 10.1186/s41181-020-00097-7
Source DB: PubMed Journal: EJNMMI Radiopharm Chem ISSN: 2365-421X
Fig. 1[13N]Ammonia Purification and Formulation Module Graphic User Interface
Summary Table of [13N]Ammonia Injection Stability Test Average Results from Five Batches compared to the FDA/USP Test Specifications
| Quality control specification | Acceptance criteria | Average result |
|---|---|---|
| Activity at End of Synthesis | 1.11–76.96 GBq @ EOS 30 to 2080 mCi @EOS | 10.18 ± 0.22 GBq 572 ± 60 mCi |
| Product Volume | 8 mL ± 20% | 7.61 ± 0.2 mL |
| pH Determination | 4.5–7.5 | 5 |
| Visual Inspection | Clear, colorless solution. Absent of foreign matter. Product vial is intact. | Pass |
| Radionuclidic Identity | Principal photopeaks are found at 0.511 MeV, 1.02 MeV and Compton scatter | Pass |
| Half-life Determination (minutes) | The measured half-life is between 9.5–10.5 min | 9.99 ± 0.1 min |
| Radiochemical Identity | Rf of resazurin = 0.43–0.63 | 0.5 ± 0.05 |
| Radiochemical Purity | NLT 95.0% Ammonia N 13 via TLC | 98.61 ± 0.4% |
| Residual Solvent Assay | Ethanol NMT 3.1 mg/mL | <LLOD to 0.5 mg/mL |
| Sterile Filter Integrity | ≥ manufacturer specification of 46 psi | > 46 psi |
| Bacterial Endotoxin Testing (EU/mL) | NMT 10.9 EU/mL | < 5 EU/mL |
| Sterility | Sterile | Sterile |
| Long Lived Radionuclidic Purity | < 0.5% at time of expiry | < 0.001% (less than lower limit of detection) |
Abbreviations: EOS end of synthesis, EU endotoxin units, LLOD lower limit of detection, NLT not less than, NMT not more than
[13N]Ammonia TLC method validation results
| [ | % [13N]Ammonia integrated | Peak Start (mm) | Peak End (mm) | Peak centroid (mm) | Rf Value | Resazurin Standard Range (mm)* |
|---|---|---|---|---|---|---|
| [13N]Ammonia – TLC Strip #1 | 99 | 20.3 | 81.8 | 50.8 | 0.846 | 0–40 |
| [13N]Ammonia – TLC Strip #2 | 98.96 | 17.7 | 79.2 | 51.7 | 0.862 | 0–40 |
| [13N]Ammonia – TLC Strip #3 | 99.06 | 17.7 | 80.1 | 51.2 | 0.853 | 0–45 |
| %[18F]Fluoride integrated | Peak Start (mm) | Peak End (mm) | Peak centroid (mm) | Rf Value | Resazurin Standard Range (mm)* | |
| [18F]Fluoride – TLC Strip #1 | 99.5 | − 17.3 | 30.5 | 7.1 | 0.119 | 0–41 |
| [18F]Fluoride – TLC Strip #2 | 99.78 | −16.5 | 25.4 | 4.3 | 0.072 | 0–44 |
| [18F]Fluoride – TLC Strip #3 | 99.77 | −15.6 | 30.5 | 5.7 | 0.095 | 0–44 |
| % [13N]NOx integrated | Peak Start (mm) | Peak End (mm) | Peak centroid (mm) | Rf Value | Resazurin Range (mm)* | |
| [13N]NOx – TLC Strip #1 | 98.34 | −12.4 | 14.4 | 0.1 | 0.00 | 0–40 |
| [13N]NOx – TLC Strip #2 | 97.94 | −13.2 | 13.5 | −0.8 | −0.01 | 0–41 |
| [13N]NOx – TLC Strip #3 | 98.21 | −14.1 | 14.4 | − 0.6 | −0.01 | 0–40 |
| % integrated | Peak Start (mm) | Peak End (mm) | Peak centroid (mm) | Rf Value | Resazurin Range (mm)* | |
| [18F]Fluoride (4% impurity) | 3.6% | −12.1 | 24.75 | 18 | 0.3 | 0–44 |
| [13N]Ammonia (96% purity) | 96.4% | 31.5 | 80.1 | 49.5 | 0.82 | |
*A valid system suitability result requires the front of the resazurin spot to be 34–50 mm
Fig. 3Representative [13N]Ammonia TLC strips showing development with ammonium chloride standard (a) and with resazurin (b)
Fig. 2[13N]Ammonia Radio-TLC Chromatograms of [13N]ammonia (a), [13N]NOx (b), and [18F]fluoride (c)