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V Torchilin

Publications and source records attributed to V Torchilin.

6 recordsLinked to original sources

Long-circulating gadolinium-loaded liposomes: potential use for magnetic resonance imaging of the blood pool.

In our previous paper, we reported a method of liposome loading with Gadolinium (Gd) via so called polychelating amphiphilic polymer (PAP). A novel Gd-containing polymeric probe, suitable for the incorporation into the liposomal membrane, was prepared from a low-molecular-weight DTPA-polylysine by linking its N-terminus to a lipid anchor, NGPE-PE. When compared with known membranotropic MR probes, such as Gd-DTPA-SA and Gd-DTPA-PE, liposomes containing new membrane-bound polychelator possess enhanced relaxivity for water protons resulting in an increase of tissue signal intensity on MR images. In this study, we developed the optimized protocol to prepare a liposomal MR contrast agent with high relaxivity and narrow size distribution. Gd-containing liposomes were additionally modified with PEG to provide longevity in vivo. We also demonstrated that upon intravenous administration in rabbit and dog, the new preparation causes a prolonged decrease in the blood T(1) value (reflecting the proton relaxation rate in the blood) and may be considered as a potential contrast agent for MRI of the blood pool.

Journal Article↗

Lectin-bearing polymerized liposomes as potential oral vaccine carriers.

PURPOSE: The potential of using lectin-modified polymerized liposomes as Peyer's patch targeted oral delivery vehicles was examined. METHODS: Two types of lectins, Ulex Europaeus Agglutinin I (UEA I) and Wheat Germ Agglutinin (WGA), were modified with a hydrophobic anchor N-glutaryl-phosphotidylethanolamine (NGPE). The modified lectins were incorporated into liposome bilayers and the liposomes were subsequently stabilized through polymerization. The presence of the lectins on the liposome surfaces was first confirmed with X-ray photoelectron spectroscopy. Surface-immobilized lectins were then shown to retain their carbohydrate binding activities as well as specificities based on an in vitro aggregation assay. Finally, delivery efficiencies of lectin-bearing liposomes were determined in mice. RESULTS: About 10.5% UEA I liposomes and 5.8% WGA liposomes were taken up from the gastrointestinal tract. These numbers are significantly higher than the 3.2% observed in the case of lectin-free liposomes. At the same time, UEA I liposomes exhibited the most effective Peyer's patch targeting among the three, which directly correlated with the highest delivery efficiency observed. CONCLUSIONS: This establishes that lectin modification of liposomes can promote binding to Peyer's patches, which will give improved efficiency for Peyer's patch targeted delivery. All these point to the potential for these lectin-modified liposomes as novel vehicles for oral vaccination.

Drug Carriers↗

Biodegradable long-circulating polymeric nanospheres.

Injectable nanoparticulate carriers have important potential applications such as site-specific drug delivery or medical imaging. Conventional carriers, however, cannot generally be used because they are eliminated by the reticulo-endothelial system within seconds or minutes after intravenous injection. To address these limitations, monodisperse biodegradable nanospheres were developed from amphiphilic copolymers composed of two biocompatible blocks. The nanospheres exhibited dramatically increased blood circulation times and reduced liver accumulation in mice. Furthermore, they entrapped up to 45 percent by weight of the drug in the dense core in a one-step procedure and could be freeze-dried and easily redispersed without additives in aqueous solutions.

Animals↗

Purification of radiolabeled monoclonal antibodies to angiotensin-converting enzyme significantly improves specificity and efficacy of its targeting into the lung.

The aim of this study was to improve the labeling/purification procedures for monoclonal antibody (MoAb) to angiotensin-converting enzyme (ACE). MoAb 9B9 was very stable upon iodination at a wide range of iodogen concentrations and incubation times, and was also very stable upon storage, indicating the high technological potential of this MoAb. Radiolabeled MoAb 9B9 was purified by (i) adsorption chromatography on cellulose, (ii) HPLC (gel filtration) and (iii) affinity chromatography on ACE-Sepharose. The best result was obtained with cellulose: specificity of MoAb 9B9 accumulation in the lung increased 2-fold. We conclude that the phenomenon of specific lung accumulation of MoAb 9B9 may serve as an ideal (convenient, cheap and technological) assay system for evaluation of monoclonal antibody modification and labeling.

Animals↗