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R Titmas

Publications and source records attributed to R Titmas.

4 recordsLinked to original sources

Sterically stabilized polyplex: ligand-mediated activity.

Synthetic vectors have been considered as a safer and more versatile alternative to viral-based gene delivery systems. A variety of very simple synthetic vector systems, e.g., cationic lipid- and polymer-complexed plasmid DNA have activity in vivo but it appears to be mediated by non-specific electrostatic interactions limiting targeting. In order to avoid these problems, we designed a sterically stabilized layered colloidal system. The steric polymer coating reduces non-specific interactions. We have synthesized a PEG conjugate of PEI that complexes DNA to form small, stable colloids with a steric polymer coat on their surface. The polymer enhances colloidal stability and reduces non-specific binding and toxicity. It also renders the complex inactive presumably due to reduced binding. Ligands are then appended to the distal end of the steric polymer to restore cell binding and expression at target cells. We prepared conjugates with RGD peptide ligands appended to the distal end of the steric polymer. The resulting conjugates also form complexes but with ligands exposed on their surface restoring binding and activity. Labeled oligonucleotides and DNA were used to measure intracellular distribution. Oligonucleotides are found localized in the nucleus, whereas the labeled plasmid DNA remained in the cytoplasm. Import of plasmid DNA into the nucleus appears to be very inefficient yet sufficient for expression.

Chemical Phenomena↗

Conjugates of COL-1 monoclonal antibody and beta-D-galactosidase can specifically kill tumor cells by generation of 5-fluorouridine from the prodrug beta-D-galactosyl-5-fluorouridine.

5'-O-beta-D-galactosyl-5-fluorouridine is a prodrug that can be converted by the enzyme beta-D-galactosidase to the potent antineoplastic drug 5-fluorouridine. The prodrug is more than 100x less toxic than the drug to bone marrow cells in Balb/c mice. The ratio of the IC50 of the prodrug to that of the drug determined on a variety of tumor cell lines in vitro ranged from 500:1-1000:1. An antibody-enzyme conjugate (AEC) was synthesized and purified. Maleimide-substituted COL-1 anti-CEA monoclonal antibody was linked to free thiol groups of beta-D-galactosidase. The conjugate was purified by size exclusion and ion exchange chromatography. It retained full immunoreactivity and enzyme activity. After binding to antigen-positive tumor cells, the conjugate was able to activate the prodrug and specifically kill the cells. We are continuing to investigate this model for its potential use in antibody-directed enzyme prodrug therapy (ADEPT).

Adenocarcinoma↗

Antibodies to synthetic polypeptides corresponding to hydrophilic regions of human interferon gamma.

Synthetic polypeptides corresponding to hydrophilic regions of human interferon gamma (HuIFN gamma) based on the amino acid sequence of HuIFN gamma inferred from its cDNA sequence were used to produce antibodies in rabbits which reacted with the polypeptides and which might also be expected to recognise native HuIFN gamma. Groups of 3 or 4 rabbits were immunised with synthetic polypeptides corresponding to HuIFN gamma amino acid sequences 1-20, 1-59, 24-59, 36-59 and 87-96 which included major hydrophilic domains of the IFN gamma molecule. All the rabbits produced antibodies which recognised the polypeptide immunogen, but to date only 1 of 4 rabbits immunised with polypeptide 24-59 and 1 of 3 rabbits immunised with polypeptide 1-59 have produced antibodies which also recognise native HuIFN gamma. The positively reacting antiserum from the rabbit immunised with polypeptide 24-59 could only be shown to weakly bind to HuIFN gamma, whereas the positively reacting antiserum from the rabbit immunised with polypeptide 1-59 was shown to both weakly bind to HuIFN gamma and weakly neutralise its in vitro antiviral effect. The results so far obtained suggest that the amino acid sequences close to the N-terminus are important for biological activity.

Amino Acid Sequence↗