| Literature DB >> 20490266 |
Rainer Tietze1, Eveline Schreiber, Stefan Lyer, Christoph Alexiou.
Abstract
In medicine, superparamagnetic nanoparticles bound to chemotherapeutics are currently investigated for their feasibility in local tumor therapy. After intraarterial application, these particles can be accumulated in the targeted area by an external magnetic field to increase the drug concentration in the region of interest (Magnetic-Drug-Targeting). We here present an analytical method (HPLC-UV), to detect pure or ferrofluid-bound mitoxantrone in a complex matrix even in trace amounts in order to perform biodistribution studies. Mitoxantrone could be extracted in high yields from different tissues. Recovery of mitoxantrone in liver tissue (5000 ng/g) was 76 +/- 2%. The limit of quantification of mitoxantrone standard was 10 ng/mL +/-12%. Validation criteria such as linearity, precision, and stability were evaluated in ranges achieving the FDA requirements. As shown for pilot samples, biodistribution studies can easily be performed after application of pure or ferrofluid-bound mitoxantrone.Entities:
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Year: 2010 PMID: 20490266 PMCID: PMC2871188 DOI: 10.1155/2010/597304
Source DB: PubMed Journal: J Biomed Biotechnol ISSN: 1110-7243
Figure 1Structure of mitoxantrone (MTO).
Extraction of porcine muscle and liver tissues containing pure mitoxantrone (MTO) or MTO bound to ferrofluid (FF). The Table shows the high recovery rate of pure MTO and a lower recovery rate of FF-bound MTO in different tissues.
| Sample | Extraction modality (1) | Recovery [%] (2) |
|---|---|---|
| 2 g liver/100 | 2× MeOH: 1 N HCl = 50 : 50 | 96 ± 10 |
| 1 g muscle tissue/100 | 2 × 0,5 HCl | 74(3) |
| 1 g muscle tissue/100 | 2× MeCN: 0,5 N HCl 10 : 90 | 85 ± 9 |
| 1 g muscle tissue/100 | 2× MeOH: 1 N HCl = 50 : 50 | 87 ± 9 |
| 2 g muscle tissue/100 | 2× MeOH: 1 N HCl = 50 : 50 | 64 ± 7 |
| 1 g muscle tissue/100 | 2× MeCN: 0,5 N HCl 10 : 90 | 79 ± 8 |
| 2.5 g liver/100 | 2× MeOH: 1 N HCl = 50 : 50 | 56 ± 27 |
| 2.5 g liver/100 | 2× MeCN: 1 N HCl = 10 : 90 | 58 ± 15 |
(1)Typical extraction procedure: double incubation in ultrasonic bath, each for 10 minutes. Collecting the supernatant after centrifugation and HPLC-measurement afterwards.
(2)number of independent experiments n = 3
(3)single experiment.
Comparison of different extraction techniques.
| Matrix (1) | Extraction mode (2) | Recovery [%](3) |
|---|---|---|
| MTO + 0.5 g porcine liver | 1 fold vortexing 3 minutes | 22 ± 4 |
| FF-MTO + 0.5 g porcine liver | 1 fold vortexing 3 minutes | 26 ± 4 |
| FF-MTO + 0.5 g porcine liver | 1 fold vortexing 3 minutes + 5 minutes Ultrasound | 34 ± 3 |
| FF-MTO + 0.5 g porcine liver | 4 hours shaking (Thermomixer Eppendorf Comfort 600 rpm) | 27 ± 2 |
| FF-MTO + 0.5 g porcine liver | 24 hours shaking (Thermomixer Eppendorf Comfort 600 rpm) | 18 (4) |
| FF-MTO + 0.5 g porcine liver | 1 × 1 hour Ultrasound | 38 ± 3 |
| FF-MTO + 0.5 g porcine liver | 1 × 4 hours Ultrasound | 31 ± 5 |
| FF-MTO + 0.5 g porcine liver | 4 × 1 hour Ultrasound | 76 ± 6 |
| FF-MTO + 5 g porcine liver | ASE (5) 40°C, 1 cycle | 36 ± 6 |
| FF-MTO + 5 g porcine liver | ASE (5) 80°C, 1 cycle | 81 ± 6 |
(1)MTO-amount added to the tissue homogenate samples: 25 μg MTO, ferrofluid amount (FF): 1 mL
(2)Extraction solution: 500 μL water, 50 μL ascorbic acid (20%) in citrate buffer (pH 3.0), 200 μL MeOH, 200 μL formic acid, 100 μL 20% trichloroacetic acid, 400 μL chloroform.
(3)number of independent experiments n = 3 performed on 3 different days
(4)single experiment
(5)ASE= Accelerated solvent extraction: solvent composition: 20% (v/v) MeOH, 20% (v/v) formic acid, 10% (v/v) trichloroacetic acid (20%), 50% (v/v) chloroform.
Mitoxantrone (MTO) recovery of pure MTO or MTO bound to ferrofluid (FF) in 2.5 g tissue using a RP-18-Cartridge. 1st section shows extractants based on hydrochloric acid, 2nd section shows phosphoric acid-based extractants, and 3rd section shows phosphate-buffer extractants. In general: FF-bound MTO in liver tissue exhibited insufficient recovery rates.
| Cartridge | Matrix | Extraction mode (3) | Condition/Elution-mode | Recovery [%](1) | |
|---|---|---|---|---|---|
| No cartridge | FF-MTO | 1 N HCl | No cartridge | 93(2) | |
| Sep-Pak-Plus C18 | MTO | 1 N HCl | 1 N HCl/MeOH | 77 ± 6 | |
| 1st | Sep-Pak-Plus C18 | MTO + porcine muscle tissue | 1 N HCl | H2O/MeOH | 67 ± 2 |
| Sep-Pak-Plus C18 | MTO + porcine liver | 1 N HCl | 1 N HCl/MeOH | 41 ± 11 | |
| Sep-Pak-Plus C18 | FF-MTO | 1 N HCl | 1 N HCl/MeOH | 4 ± 1 | |
| Sep-Pak-Plus C18 | FF-MTO + porcine liver | 1 N HCl | 1 N HCl/MeOH | 9 ± 8 | |
| No Cartridge | FF-MTO | 0.1 M H3PO4 | No Cartridge | 94(2) | |
| 2nd | Sep-Pak-Plus C18 | FF-MTO | 0.1 M H3PO4 | 1 N HCl/MeOH | 74 ± 10 |
| Sep-Pak-Plus C18 | MTO + porcine liver | 0.1 M H3PO4 | 0,1 M H3PO4/MeOH | 76 ± 10 | |
| Sep-Pak-Plus C18 | FF-MTO + porcine liver | 0.1 M H3PO4 | MeOH/0, 1 M H3PO4 | 12 ± 8 | |
| 3rd | Sep-Pak-Plus C18 | FF-MTO + porcine liver | 0.1 M KH2PO4/H3PO4 (pH = 6.0) | 1 N HCl/MeOH | n.d.(4) |
| Sep-Pak-Plus C18 | FF-MTO + porcine liver | 0.1 M KH2PO4/HCl | 1 N HCl/MeOH | 17 ± 16 | |
(1)number of independent experiments = 3
(2)single experiment
(3)Typical extraction procedure: double incubation in ultrasonic bath each for 10 minutes. Collecting the supernatant after centrifugation and HPLC-measurement afterwards
(4)Not detectable.
Figure 2Extraction efficiency: extraction with: 500 μL water, 200 μL MeOH, 50 μL ascorbic acid (20%) in citrate buffer (pH 3.0), 200 μL formic acid, 100 μL 20% trichloroacetic acid, and 400 μL chloroform in an ultrasonic bath. Recovery rate in dependence to multiple extractions. 4 fold extraction is nearly quantitative. Each reading point was measured in triplicate.
Recovery of MTO after extraction of different matrices using different cartridges. Results vary extraordinarily, FF-bound MTO in liver tissue requires special solid phase.
| Matrix | Cartridge | Cartridge treatment after extraction(1) | Recovery [%] |
|---|---|---|---|
| FF-MTO | Chromabond HR-X (Machery&Nagel) | Water, MeOH | 21,2% |
| FF-MTO | Chromabond HR-X (Machery&Nagel) | 1N HCl, MeOH | 22% |
| FF-MTO | Oasis MCX (Waters) | HCOOH (2%), MeOH, Elution with 5% NH3 | 0,9% |
| FF-MTO | LiChrolut En (Merck) | Water, MeOH | 89 ± 5 |
| FF-MTO | 1: Bond Elut PPL (Varian) | MeOH, HCOOH (2%). | 1:75% |
| Rinse with HCOOH (2%). | |||
| 2: Bond Elut Plexa (Varian) | Elution with (2%) HCOOH in | 2:81% | |
| MeOH. | |||
| FF-MTO + 0.5 g porcine Liver | Sep-Pak-Plus C18 (Waters) | MeOH, 1N HCl | 7 ± 2 |
| FF-MTO + 0.5 g porcine Liver | LiChrolut En (Merck) | Water, MeOH | n.d.(2) |
| FF-MTO + 0.5 g porcine Liver | 1: Bond Elut PPL (Varian) | MeOH, HCOOH (2%).. | 1:31% |
| Rinse with HCOOH (2%). | |||
| 2: Bond Elut Plexa (Varian) | Elution with (2%) HCOOH in | 2:86% | |
| MeOH |
(1)Three times extracting with: 500 μL water, 200 μL MeOH, 50 μL ascorbic acid (20%) in citrate buffer (pH 3.0), 200 μL formic acid, 100 μL 20% trichloroacetic acid, 400 μL chloroform in an ultrasonic bath.
(2)n.d.: not detectable. MTO could not be fixated on the cartridge.
Figure 3Flow chart of the whole method how to determine MTO in tissue: flow chart of the whole method how to determine MTO in tissue.
Figure 4(a) HPLC-chromatogram of pure mitoxantrone (MTO 200 ng/mL), (b) HPLC-chromatogram of processed blank liver tissue. No interfering peak at the retention time is determined for MTO. Chromatographic Conditions: 3.0 × 100 mm X-Bridge Phenyl column (Waters, Germany), flow: 1 mL/min, mobile phase: buffer (80 nM sodium formate and formic acid, pH 3.0) and methanol (80 : 20 v/v). Column temperature 55°C, injection volume 50 μL, UV-detection: 254 nm. (c) HPLC-chromatogram of processed liver tissue containing MTO bound to ferrofluids. MTO is at retention time 9,77.
Figure 5Mitoxantrone standard curve.
Amount of MTO in different tissues after intravenous application of ferrofluid-bound MTO. New Zealand White rabbits (n = 5) were treated with 10% of the systemic necessary dose (10 mg/m2 body surface).
| Tissue | Detected MTO [ng] per g tissue(1) |
|---|---|
| Lung | 30 ± 17 |
| Liver | 89 ± 22 |
| Kidneys | 537 ± 94 |
| Muscle tissue | 1.4 ± 0.7(2) |
(1)deviation calculated as sem (standard error of the mean)
(2)concentration below the quantitation limit.