| Literature DB >> 29577070 |
Marietta Straub1, Michel Leresche1, Claude Pilloud1, Fabien Devynck2, Nicolas Stritt2, Rolf Hesselmann2.
Abstract
BACKGROUND: 99mTc-mercaptoacetyl-triglycine (99mTc-MAG3) has been used for dynamic renal imaging since about 30 years. Free pertechnetate (99mTcO4), colloidal 99mTc ((99mTcO2)n), 99mTc-tartrate (precursor), precomplexes (99mTc-(MAG3)x) and lipophilic 99mTc-MAG2 are the main radiochemical impurities that may occur in the preparation. The total amount of these impurities has to be identified before release of the product for patient administration to guarantee patient safety and good image quality. The European Pharmacopoeia suggests a method based on high-pressure liquid chromatography analysis in combination with a paper chromatography. This analytical method is time consuming, expensive and requires specially trained technicians. As a consequence, it is not widely applied in nuclear medicine radiopharmacies.Entities:
Keywords: 99mTc-MAG3; Radiochemical Purity; Radiopharmaceutical Quality Control; Thin Layer Chromatography
Year: 2018 PMID: 29577070 PMCID: PMC5852202 DOI: 10.1186/s41181-018-0040-5
Source DB: PubMed Journal: EJNMMI Radiopharm Chem ISSN: 2365-421X
Fig. 1Example chromatogram of Ph.Eur. HPLC analysis of 99mTc-MAG3. Hydrophilic compounds occur < 4.0 minutes, 99mTc-MAG3 is identified at about 4.5 minutes, lipophilic compounds are attributed to the region > 6.0 minute. 99mTc-MAG2 and 99mTcO4 are the main impurities. 99mTc-tartrate elutes as the first peak followed by small peaks of precomplexes
RPC testing methods for Mallinckrodt Technescan MAG3 preparations available in Switzerland, European countries, the US (Package insert for Technescan MAG3. Mallinckrodt Suisse SA, 2003; Package insert for Technescan MAG3. Mallinckrodt Suisse SA, 2015; European Pharmacopoeia Edition 7.0, 2008; Package insert for Technescan MAG3, 2015; Package insert for Technescan MAG3, 2015) in comparison to the method of the Ph.Eur. (European Pharmacopoeia Edition 7.0, 2008). Each SPC method requires detection of the sum of liphophilic and hydrophilic impurities
| Ph.Eur. | Mallinckrodt Technescan MAG3™ Kit for the Preparation of Technetium Tc 99m Mertiatide, DRN 4334 | |||||||
|---|---|---|---|---|---|---|---|---|
| Version | 01/2008:1372(European Pharmacopoeia Edition 7.0, | CH 10.2003 (Package insert for Technescan MAG3. Mallinckrodt Suisse SA, | CH 12.2015 (Package insert for Technescan MAG3. Mallinckrodt Suisse SA, | US A096I0 R10/2015 (Package insert for Technescan MAG3, | The Netherlands 10.2015 (Package insert for Technescan MAG3, | |||
| Method | HPLC + PC | HPLC | Sep-Pak C18 | HPLC | Sep-Pak C18 | Sep-Pak C18 only | HPLC | Sep-Pak C18 |
| [%] | [%] | [%] | [%] | [%] | [%] | [%] | [%] | |
| Tc-Mag3 Dt:0 | ≥ 94 | ≥ 96 | ≥ 90 | ≥ 95 | ≥ 94 | ≥ 90 | ≥ 95 | ≥ 90 |
| hydrophilic impurities | ≤3 | % not def. | ≤ 5 | ≤ 3 | % not def. | ≤ 3 | ≤ 5 | |
| Lipophilic impurities | ≤4 | % not def. | ≤ 5 | ≤ 4 * | Not measured | ≤ 4 | ≤ 5 | |
| Colloïd.Tc-99m (non-elutable imp.) | ≤2 (PC) | Not measured | Not measured | Not measured | Not measured | % not def. | Not measured | Not measured |
*Lipophilic impurities are attributed to SEP-PAK cartride activity. Normally, at the end the cartridge contains only non-elutable impurities.
RPC testing methods for ROTOP MAG3 kit preparations available in Switzerland, European countries, the US (Package insert for ROTOP-MAG-3 Kit. Heider AG, 2006; Package insert for ROTOP-MAG-3 Kit, n.d.-a; Package insert for ROTOP-MAG-3 Kit, n.d.-b) in comparison to the method of the Ph.Eur. (European Pharmacopoeia Edition 7.0, 2008). Each method requires detection of the sum of liphophilic and hydrophilic impurities, except for the Rotop method from 2016 (only available for EU countries) where detection of colloidal 99mTc ((99mTcO2)n) as an individual impurity is specified and acceptance criteria are set separately
| Ph.Eur. | MAG3 Kit Rotop | ||||||
|---|---|---|---|---|---|---|---|
| Version | 01/2008:1372 Corrected 7.0 [13] | CH 06.2006 (Package insert for ROTOP-MAG-3 Kit. Heider AG, | rotop-pharmaka.de SmPC-MAG3-HK-eng-01 [16] | Eu countries 2016 (Package insert for ROTOP-MAG-3 Kit, | |||
| Method | HPLC + PC | HPLC | Sep-Pak C18 | HPLC + PC | Sep-Pak C18 | HPLC | TLC |
| [%] | [%] | [%] | [%] | [%] | [%] | [%] | |
| Tc-Mag3 Dt:0 | ≥ 94 | ≥ 94 | ≥ 94 | ≥ 94 | ≥ 94 | ||
| hydrophilic impurities | ≤3 | According to Ph.Eur. | % not def. | ≤ 3 | % not def. | According to Ph.Eur. | ≤ 5 ** |
| Lipophilic impurities | ≤4 | Not measured | ≤ 4 | % not def.* | Not measured | ||
| Colloïd.Tc-99m (non-elutable imp.) | ≤2 (PC) | % not def. | Not measured | Not measured | ≤ 2 | ||
*Lipophilic impurities are attributed to the SEP-PAK cartridge activity.
**Refers to 99mTc-perchtechnetate in the SPC
Fig. 2Illustration of Mallinckrodt Pharmaceuticals QC procedure for MAG3 kit (version 2003)
Table showing the RCP of 99mTc-MAG3 with the SPE-method, resulting from different elution rates applied. The cartridge was also measured (not requested in SPC 2003) for quantification of (99mTcO2)n which is retained on the cartridge
| Elution rate | Hydrophilic compounds | 99mTc- MAG3 | Lipophilic compounds | (99mTcO2)n(cartridge) |
|---|---|---|---|---|
| [ml/min] | [%] | [%] | [%] | [%] |
| 1.7 | 2.0 | 95.8 | 1.7 | 0.5 |
| 10 | 4.1 | 93.8 | 1.8 | 0.4 |
| 10 | 3.9 | 93.3 | 2.4 | 0.4 |
| 20 | 8.6 | 86.6 | 4.3 | 0.5 |
| 30 | 8.4 | 79.8 | 11.3 | 0.6 |
Results of corresponding HPLC measurements at 3 different time points in comparison with SPE- method results from table 3. The SPC in force today does not mentioned which impurities are attributed to the individually eluted fractions on the SEP-PAK columns and the (99mTcO2)n is not taken into account (not measured).
| Hydrophilic compounds | 99mTc- MAG3 | Lipophilic compounds | |
|---|---|---|---|
| [%] | [%] | [%] | |
| HPLC 1 | 1.5 | 97.2 | 1.3 |
| HPLC 2 | 0.6 | 98.0 | 1.4 |
| HPLC 3 | 1.1 | 96.9 | 2.0 |
Fig. 3Illustration of the new two-strip TLC method. On strip one, the 99mTcO4 and 99mTc-MAG2 migrate to the front, all other components stay at the origin. On strip two, 99mTc-MAG3, 99mTcO4 and 99mTc-MAG2 migrate to the front; the other components stay at the origin (positioned at 40 mm on the TLC scanner)
Comparison of RCP values determined by the new TLC method by scanner or dose calibrator against the RCP obtained by the Ph.Eur. method (HPLC and PC) taken as reference (standard deviation k=2)
| Ph.Eur. | 2-strip method | Accuracy | ||||||
|---|---|---|---|---|---|---|---|---|
| Date | Validation | (HPLC&PC) | TLC Scanner | Dose calibrator | Difference to Ph.Eur. method | |||
| [%] | [%] | [%] | TLC Scanner | Dose calibrator | ||||
| [%] | [%] | |||||||
| 27.04.2016 | No 1 | 97 | 96.7 | ± 0.8 | 97.1 | ± 0.8 | -0.3 | 0.1 |
| 28.04.2016 | No 2 | 96.9 | 96.7 | ± 0.5 | 97.1 | ± 0.8 | -0.2 | 0.2 |
| 29.04.2016 | No 3 | 95.8 | 96.1 | ± 0.4 | Not measured | 0.3 | N.A. | |
| 29.04.2016 | No 4 | 95.6 | ± 0.5 | 96.1 | ± 0.5 | -0.2 | 0.3 | |
Results of impurities found applying deviations in solvent mixtures for strip 1
| Sample | Strip 1: Ratio EtAc/MEK | ||
|---|---|---|---|
| 55:45 | 60:40 | 65:35 | |
| Impurities (%) | Impurities (%) | Impurities (%) | |
| Sample 1 | 6.5 | 6.1 | 6.0 |
| Sample 2 | 6.6 | 6.5 | 6.0 |
| Sample 3 | 6.7 | 6.4 | 6.6 |
| Average | 6.6 | 6.3 | 6.2 |
| STD | 0.2 | 0.4 | 0.6 |
Results of impurities found applying deviations in solvent mixtures for strip 2
| Sample | Strip 2: Ratio EtOH/H2O | ||
|---|---|---|---|
| 87:13 | 90:10 | 93:7 | |
| Impurities (%) | Impurities (%) | Impurities (%) | |
| Sample 1 | 5.0 | 5.3 | 5.5 |
| Sample 2 | 4.9 | 5.1 | 5.3 |
| Sample 3 | 4.6 | 5.5 | 5.0 |
| Average | 4.8 | 5.3 | 5.3 |
| STD | 0.4 | 0.4 | 0.6 |
Fig. 4TLC chromatograms with QC samples applied of 15, 15 and 20 microliters