| Literature DB >> 23762549 |
Manish Dixit1, Jianfeng Shi, Ling Wei, George Afari, Sibaprasad Bhattacharyya.
Abstract
16 α -[(18)F]-fluoroestradiol ([(18)F]FES), a steroid-based positron emission tomography (PET) tracer, has emerged as a dependable tracer for the evaluation and management of estrogen receptor-positive (ER+) breast cancer patients. We have developed a fully automatic, one-pot procedure for the synthesis of [(18)F]FES using the Eckert & Ziegler (E & Z) radiomodular system. After [(18)F]fluorination, the intermediate was hydrolyzed with 2.0 M HCl twice and neutralized with sodium bicarbonate. After high-performance liquid chromatography (HPLC) purification, the decay-corrected radiochemical yield and purity of [(18)F]FES were 40 ± 5.0% (n = 12) and >97%, respectively. The product was stable up to 10 h. Total synthesis time including HPLC purification was 80 min. This new, fully automated rapid synthetic procedure provided high and reproducible yields of [(18)F]FES. Quality control (QC) tests showed that the [(18)F]FES produced by this method met all specifications for human injection.Entities:
Year: 2013 PMID: 23762549 PMCID: PMC3665243 DOI: 10.1155/2013/278607
Source DB: PubMed Journal: Int J Mol Imaging ISSN: 2090-1720
Figure 1Schematic diagram of the automated synthesis of [18F]FES for medical use.
Figure 2Schematic flow chart of the process for radiosynthesis of [18F]FES.
Figure 3Schematic representation of [18F]-fluoroestradiol synthesis.
Figure 4Chromatogram of preparative HPLC separation of [18F]FES reaction mixture. Red-colored trace is radioactivity and blue-colored trace is UV absorbance at 254 nm. The two vertical solid lines in the trace show the start (leftmost, ~14 min) and end (right, ~15 min) of the product collection. Earlier broad radiation peak is due to the close vicinity of radiation detector to the HPLC column. Detector is sensing radiation while the compound is moving inside the column.
QC results of three batches (FES-MBR-01, FES-MBR-02, and FES-MBR-03).
| Quality control test | Description | Acceptance criteria | FES-MBR-01 | FES-MBR-02 | FES-MBR-03 |
|---|---|---|---|---|---|
| Particulates and color | Visual inspection for color and particulates | Clear and colorless | Clear | Clear | Clear |
| Filter integrity | Bubble point test | >50 PSI | 55 | 60 | 55 |
| pH | pH as per USP 〈791〉 pH | pH must be between 6 and 8 | 7 | 7 | 7 |
| Residual Kryptofix [2.2.2]a | Color spot test | <50 | <50 | <50 | <50 |
| Radiochemical purity | Radiochemical purity > 95% | 97.8 | 99.7 | 99.9 | |
| FES ( | HPLCb, consistent with guidelines of USP 〈621〉 | ≤5 | 0.72 | 1.68 | 1.58 |
| Other UV impurities | ≤5 | 0.30 (3.6) | <0.06 (<1.7) | <0.06 (<1.7) | |
| Radiochemical purity | TLC |
| 0.8 and 98.6 | 0.8 and 96.6 | 0.7 and 96.9 |
| Residual solvent levelsc | Gas chromatography | Acetone < 5,000 ppm | <3125 | <3125 | <3125 |
| Radionuclidic purity | Half-life determination | 105–120 minutes | 110 | 111 | 110 |
| Bacterial endotoxin levels | Limulus amoebocyte lysate (LAL) by gel clot or PTS | <175 EU per dose | <2 | <2 | <2 |
| *Sterility test (14 days) | USP sterility test (USP 〈71〉) | No growth | No growth | No growth | No growth |
aKryptofix (K2.2.2) content was determined with the TLC spot test as per USP guidelines (TLC solvent: 9 : 1 solution of methanol and 30% ammonium hydroxide (v : v); TLC material: silica 60, R = 0.1; Kryptofix standard solution for visual testing: 50 μg/mL; TLC development: iodine chamber).
bPhenomenex Gemini C18 reversed-phase HPLC column with a mobile phase of 50% ethanol : 50% water (v : v). The column flow rate is 0.5 mL/min.
cAcetone < 5,000 ppm and acetonitrile < 400 ppm as per USP 〈467〉 Organic Volatile Impurities.
*Not a release criterion.
Figure 5HPLC chromatograms for a 10 μL injection of a 0.06 μg/mL FES standard in acetonitrile. (a) is UV absorbance at 280 nm showing FES sensitivity and mobile phase impurities at this wavelength. (b) is an expanded scale of the UV absorbance at 280 nm (near the lambda max for FES). The retention time of the FES is 9.10 minutes for UV.
Figure 6Typical HPLC chromatogram of [18F]FES product. (a) showed radiation peak of the [18F]FES product without coinjection of authentic standard. (b) showed UV absorbance at 280 nm of [18F]FES product along with coinjected authentic standard FES. (c) showed radiation peak of the co-injection. There is tubing between the UV and radiation detectors so that the FES is eluted at ~9.3 min for UV and ~9.5 min for radiation. UV peaks before 4 min are the UV absorption of formulation buffer of the product and acetonitrile solvent for authentic standard.
Figure 7Standard calibration curve using FES authentic standard compound (conc. versus absorbance). x-axis represents the concentration of the authentic standard in μg/mL (0.06 to 1.0 μg/mL) and y-axis represents the absorbance (peak area).