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H Song

Publications and source records attributed to H Song.

220 records · Page 13Linked to original sources

Synthesis and antiviral activity of amino acid carbamate derivatives of AZT.

Lipophilic amino acid methyl ester and methyl amide carbamates of 3'-azido-3'-deoxythymidine (AZT) were synthesized and their anti-HIV-1 activity in PBMCs was determined. The methyl amides were more potent (EC50s = 1.8-4.0 microM) than the methyl esters (EC50s = 2.0-20 microM). Carbamate hydrolysis by cell lysates and liberation of AZT was not observed for representative methyl ester or methyl amide AZT carbamates. No evidence of direct inhibition of HIV reverse transcriptase or integrase was observed.

Anti-HIV Agents↗

Antiviral nucleoside drug delivery via amino acid phosphoramidates.

Stable and water soluble amino acid phosphomonoester amidates of AZT were synthesized and shown to have potent anti-HIV-1 activity. Intracellular and cell extract metabolism studies revealed that these compounds are likely to be enzymatically converted to the corresponding monophosphates. In addition, we have shown that the half life and tissue distribution of a phosphoramidate of AZT is 5 and 10-fold greater, respectively, than AZT.

Amino Acids↗

A prodrug approach for delivery of t-PA: construction of the cationic t-PA prodrug by a recombinant method and preliminary in vitro evaluation of the construct.

Previously, we reported a novel prodrug approach, that could lead to targeted thrombolysis without the risk of bleeding. The approach consists of a protein conjugate made of two components: a fibrin targeting antibody (Ab) linked to an anionic heparin, and a plasminogen activator (PA) derivatized with cationic species. These two components are linked by means of an electrostatic interaction. Because the cationic species are small, the modified PA would retain its thrombolytic activity. However, this activity would be inhibited after binding to the counterpart due to the blockage of the PA active site by the appended macromolecules. Because protamine is a clinical antagonist to heparin, it can be used in humans to dissociate the modified PA from its counterpart. Thus, the approach would permit the administration of a fibrin targeting but inactive thrombolytic drug (thereby alleviating the bleeding risk by avoiding systemic generation of plasmin), and subsequently a triggered release of the active drug to the fibrin deposit. In our previous work, we demonstrated the feasibility of the approach by producing a positively charged PA by means of chemical conjugation of a cationic CRRRRRRR peptide with urokinase. In this study, we further extended our work and produced a similar cationic t-PA by means of a recombinant DNA approach; i.e., by fusion of a poly(Arg)7 peptide to the kringle-1 domain of t-PA. Results obtained from the restriction enzyme analysis and the Western blot yielded full identification of this recombinant protein. This recombinant poly(Arg)7-modified-t-PA protein conjugate (termed "rmt-PA" hereafter) completely retained the fibrinolytic activity of the original recombinant, unmodified t-PA (termed "rt-PA" hereafter), as measured by the chromogenic assay and fibrin agar lysis assay. The prodrug and triggered release features of the proposed approach were confirmed by partial inhibition of the plasminogen activating activity of this protein by heparin, and the partial reversal of such inhibition by protamine.

Base Sequence↗

Drug metabolism studies using "intrinsic" and "extrinsic" labels. A demonstration using 15N vs. Cl in midazolam.

The chemical reaction interface for mass spectrometry (CRIMS) has been used to evaluate the ability of an "intrinsic" label (chlorine) to replace an "extrinsic" label (15N) in a study of the metabolite profile of a drug, in this case the benzodiazepine anesthetic agent midazolam. We find equally high selectivity and comparable signal/noise characteristics for chlorine as for isotopic nitrogen demonstrating that the chlorine in midazolam is itself an effective label and that special synthesis to incorporate isotopic labels is not necessary. The power of either detection mode of CRIMS is shown by detecting 14 metabolites, whereas only four had been previously determined. The ratios of 15N/Cl for each metabolite peak along with conventional mass spectra provide clues to the structures of these new metabolites.

Animals↗