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R Klipper

Publications and source records attributed to R Klipper.

20 records · Page 2Linked to original sources

A simple method for producing a technetium-99m-labeled liposome which is stable in vivo.

A new method for labelling preformed liposomes with technetium-99m (99mTc) has been developed which is simple to perform and stable in vivo. Previous 99mTc-liposome labels have had variable labeling efficiencies and stability. This method consistently achieves high labeling efficiencies (greater than 90%) with excellent stability. A commercially available radiopharmaceutical kit--hexamethylpropyleneamine oxime (HM-PAO)--is reconstituted with 99mTcO4- and then incubated with preformed liposomes that encapsulate glutathione. The incubation takes only 30 min at room temperature. Liposomes that co-encapsulate other proteins such as hemoglobin or albumin, in addition to glutathione, also label with high efficiency. Both in vitro and in vivo studies indicate good stability of this label. Rabbit images show significant spleen and liver uptake at 2 and 20 h after liposome infusion without visualization of thyroid, stomach or bladder activity. This labeling method can be used to study the biodistribution of a wide variety of liposome preparations that are being tested as novel drug delivery systems. This method of labeling liposomes with 99mTc may also have applications in diagnostic imaging.

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Biodistribution studies of liposome encapsulated hemoglobin (LEH) studied with a newly developed 99m-technetium liposome label.

A new method has been developed to label preformed liposomes with 99m-Technetium (99mTc) using hexamethylpropylenamine oxime (HMPAO). 99mTc is an ideal isotope for performing non-invasive dynamic biodistribution studies. This labeling method results in a high labeling efficiency (greater than 95%) and is stable as determined by both in vitro and in vivo studies. In vitro studies indicated that glutathione encapsulated in the LEH is important in the labeling process with 99mTc-HMPAO. In vivo studies with LEH were performed on 7 rabbits with dynamic scintigraphic 1 minute images performed from 1-120 minutes. Delayed images were performed at 20 hours followed by sacrifice and organ counting. Dynamic images reveal a gradual deposition of the LEH in the liver and spleen. Twenty hour biodistributions revealed 50% of the LEH remaining in the blood, 15% in the liver, 14% in the spleen, 3% in lungs, 3% in muscle with trace amounts in the brain, kidneys, and heart. Doses per gram were highest in the spleen with 12.5% of the injected dose per gram of spleen vs. 0.2% per gram of liver. This labeling technique is an effective method for non-invasively monitoring dynamic changes in liposome biodistribution and can be used to study the effects of various liposome modifications on biodistribution.

Animals↗