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Biomedical subjects

F M Veronese

Publications and source records attributed to F M Veronese.

At least 55 records · Page 3Linked to original sources

In vitro and in vivo behaviour of narciclasine released from matrices based on poly (2-hydroxyethyl methacrylate).

Narciclasine (1,2,3,7-tetrahydroxy-8,9-methylendioxy-1,2,3,4-tetrahydrophena ntridone) is a natural substance with strong antimitotic effects on cells and potential antitumor activity. Its release form a hydrogel matrix was studied with the purpose of avoiding the concentration spikes of the parenteral administration. The matrix prepared by gamma ray polymerization of a mixture of 2-hydroxyethyl methacrylate (85%) and trimethylolpropane trimethacrylate (15%) was found to release narciclasine for several days, according to a diffusion controlled mechanism. In agreement with its antimitotic effect, narciclasine inhibited the growth rate of healthy mice, when the drug-loaded matrix was introduced subcutaneously. Antitumor effect was observed in an experimental model of Erlich ascitic tumor when low amounts of tumor cells were inoculated. No effect was observed at high concentrations of inoculum or towards solid tumors (Sarcoma 180). This behaviour was related to the rapid clearance of narciclasine from the body which prevented the reaching of sufficient therapeutical concentrations. A pharmacokinetic investigation carried out by an original method of assay demonstrated that narciclasine was accumulated in significant amounts in the kidney only and eliminated in urine with a half time of less than 20 min.

Alkaloids↗

Effects of monomethoxypoly(ethylene glycol) modification of ribonuclease on antibody recognition, substrate accessibility and conformational stability.

The effects of modification of bovine pancreatic ribonuclease A by monomethoxypoly(ethylene glycol) (MPEG) were examined for changes in recognition by antiRNase antibodies, enzymatic activity against low and high molecular weight substrates and conformational stability to temperature elevation. Modified forms of RNase were prepared containing an average of 4, 9, and 11 mol of MPEG/mol protein, by amino group modification. These were analysed by binding to RNase antibodies crosslinked to solid phase-immobilized protein A. The affinity column was incorporated into a high performance liquid chromatograph and the RNase species were studied by both zonal and frontal analytical affinity chromatography. An antibody dissociation constant of 7.6 x 10(-8) M was found for unmodified RNase, as compared to values of 1.3 x 10(-7) and 1.2 x 10(-6) M for RNase with 4 and 9 covalently bound MPEG chains, respectively. Modification also led to progressive loss of enzymatic activity against RNA, down to 3% for the most highly modified enzyme. In contrast, enzymatic activity against cytidine-2',3'-cyclic monophosphate was suppressed to a maximum of only 33% at the highest modification level, and the stability to temperature, as followed by circular dichroism, was reduced only partially, from 67 degrees C for native protein to 57 degrees C for RNase with 11 mol equivalents MPEG incorporated. The above differential effects on enzymatic activity, antibody binding and temperature effects are consistent with the view that MPEG modification has relatively small effects on conformational stability and small molecule accessibility, but more dramatic effects on large molecule (substrate as well as antibody) accessibility.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Characterization of an HIV-1 point mutant blocked in envelope glycoprotein cleavage.

The envelope proteins of retroviruses are derived from a polypeptide precursor protein by cleavage adjacent to a cluster of basic amino acids. Site-specific mutagenesis was used to construct a mutant of the human immunodeficiency virus type 1 (HIV-1) in which the arginine residue at the carboxy-terminus of the gp120 was changed to a threonine residue. This single substitution was sufficient to abolish all detectable cleavage of the gp160 envelope precursor polypeptide as well as virus infectivity. The gp160 was produced in normal quantities from a biologically active clone of the mutant virus after transfection into cos-1 cells. The mutant gp160 contained N-linked oligosaccharide chains with mannose-rich cores similar to those of the gp160 produced by the wild-type clone. Immunofluorescence assays showed that gp160 was transported to the surface of transfected CD4+ HeLa cells. No envelope proteins of known size could be detected in the media of cells transfected with the mutant virus, suggesting that functional virions were not formed. Binding of the mutant gp160 to the CD4 receptor molecule was unimpaired. Despite this and the presence of gp160 on the cell surface, neither growth of mutant-transfected CD4+ HeLa cells nor cocultivation of transfected cos-1 cells with H9 cells resulted in significant syncytium formation. The data indicate that the carboxy-terminal arginine residue of HIV-1 gp120 is necessary for envelope protein cleavage and suggest cleavage is important in the virus life cycle in both functional virus release and membrane fusion.

Arginine↗

Spectroscopic characterization of polyethyleneglycol modified superoxide dismutase: 1H NMR studies on its Cu2Co2 derivative.

Spectroscopic methods have been employed in order to understand the molecular basis of the decrease in enzymatic activity of the antiinflammatory enzyme copper-zinc superoxide dismutase (SOD) following the covalent binding of polyethyleneglycol (PEG) chains to the protein amino-groups. The PEG modification is a general method recently proposed to improve the therapeutic index of enzymes. 1H NMR spectra on the cobalt substituted PEG-modified SOD, Cu2Co2-PEG-SOD, have been recorded. The signals are quite broad with respect to the unmodified enzyme. This has been interpreted on the basis of the effect of molecular weight on the linewidth. The analysis has shown that the histidine hydrogens involved in metal binding at the enzyme active site are the same in both native and PEG-modified SOD. Similarly, circular dichroism and absorption spectra indicate that the overall conformation of the metal clusters is not perturbed upon modification. On the other hand, azide titration shows that the affinity constant of N-3 for SOD is largely reduced upon PEG modification (K = 154 M-1 and 75 M-1 for the native and modified SOD, respectively). These results indicate that the decrease in enzymatic activity upon surface modification with PEG is not caused by a perturbation of the active site geometry, but to a decrease in the channeling of the O2- ion towards the enzyme active site.

Circular Dichroism↗

E. coli penicillin acylase: purification by affinity chromatography and covalent binding to nylon.

Penicillin acylase (EC 3.5.1.11) from E. coli, both in solution and immobilized on solid supports, has been commercially exploited for the large scale production of 6-aminopenicillanic acid (6-APA), which is an important intermediate for the manufacturing of semisynthetic penicillins. In this paper a very simple procedure of penicillin acylase purification is reported, which employs only one affinity chromatographic step (Sepharose-phenylacetic column). The enzyme was obtained at a high degree of purity and could be used for immobilization on partially hydrolyzed and activated nylon. Since the support is chemically inert and mechanically stable the catalyst can be used several times without any significant loss of activity, making the process of great commercial importance.

Chromatography, Affinity↗

A direct assay for evaluation of polyethylene glycol in enzyme adducts used as drugs or biocatalysts.

A specific and direct method for the evaluation of monomethoxypolyethylene glycol (MPEG) in enzyme adducts has been developed. The method is based on extensive modification by trinitrobenzensulfonic acid (TNBS) of the MPEG-enzyme, to form an acid-stable TNBS adduct with the available amino groups of lysine and alpha-amino acid. The MPEG-modified trinitrophenylated enzyme was hydrolyzed in 6N HCl and amino acid composition evaluated by a standard AA analyzer in comparison with the analysis of a MPEG enzyme sample. The number of bound MPEG polymers was calculated from the difference in amino acid composition of the two samples.

Amino Acids↗

Evaluation of proteolytic enzymes in effervescent tablets.

A procedure for the evaluation of proteolytic enzymes in effervescent tablets is reported. A proper chromatographic step followed by enzymatic activity assay allows to overcome the interferences due to the high salt content of such formulations as well as to chromophores eventually present in the tablet components.

Chromatography, High Pressure Liquid↗

Radiation-induced polymerization for the immobilization of penicillin acylase.

The immobilization of Escherichia coli penicillin acylase (EC 3.5.1.11) was investigated by radiation-induced polymerization of 2-hydroxyethyl methacrylate at low temperature. A leak-proof composite that does not swell in water was obtained by adding the cross-linking agent trimethylolpropane trimethacrylate to the monomer-aqueous enzyme mixture. Penicillin acylase, which was immobilized with greater than 70% yield, possessed a higher Km value toward the substrate 6-nitro-3-phenylacetamidobenzoic acid than the free enzyme form (Km = 1.7 X 10(-5) and 1 X 10(-5) M, respectively). The structural stability of immobilized penicillin acylase, as assessed by heat, guanidinium chloride, and pH denaturation profiles, was very similar to that of the free-enzyme form, thus suggesting that penicillin acylase was entrapped in its native state into aqueous free spaces of the polymer matrix.

Amidohydrolases↗

PEG superoxide dismutase derivatives: anti-inflammatory activity in carrageenan pelurisy in rats.

Two derivatives of superoxide dismutase (SOD) with monomethoxypolyethyleneglycol, having different molecular weights (46,000 and 121,000 D) and different plasma half-lives are tested in carrageenan pleurisy in rats after single i.v. injection. The compounds were prepared following an original method where the polymer is activated by trichlorophenylchloroformate to give a phenylcarbonate which is reactive towards the protein amino groups. The anti-inflammatory activity of derivatives results correlated to their kinetics, lasting longer for the derivative with the longest half-life (SOD-PEG 18). SOD activity, in plasma of rats treated with SOD-PEG 18, is still present 24 hour after carrageenan, in agreement with the prolonged anti-inflammatory activity. Moreover SOD-PEG 18 diffuses well in pleural exudate, as it is evidentiated from the increase with time of exudate/plasma concentration ratio.

Animals↗

Purification, modification, physico-chemical and pharmacokinetic characterization of arginase, an enzyme of potential use in therapy.

Beef liver arginase, an enzyme potentially useful in the therapy of arginine dependent tumors or of familial hyperargininemia, was purified to homogeneity by a procedure involving a key step of hydrophobic affinity chromatography. The enzyme was extensively modified by the covalent linking of monomethoxypolyethyleneglycol molecules according to a procedure recently proposed by the Authors (Veronese et al., Appl. Biochem. Biotecnol. 11, 869, 1985) without any significant loss of activity. The derivative enzyme presents more convenient properties for a therapeutic use, as compared to the native enzyme, such an increased structural stability, a decreased digestion by proteolytic enzymes and an expanded clearance time in rats.

Animals↗

A high molecular weight form of human urinary urokinase.

A very high molecular weight form of urokinase, of about 100,000 D (VHMr-UK), was isolated from human urine in trace amounts as compared to the well characterized two forms of urokinase, HMr-UK (Mr of about 50,000) and LMr-UK (Mr of about 30,000). This form was demonstrated to be a dimer of HMr-UK, in which no covalent bond is involved, on the basis of the following evidence: by SDS electrophoresis it is dissociated, to the 50,000 D form; by electrophoresis in SDS under reducing conditions it is dissociated, as HMr-UK, to two polypeptide chains of about 30,000 and 20,000 D; by short heating at pH 5 it is quantitatively converted to the 50,000 D form; the kinetic constants towards the alpha-carbobenzoxy-L-lysine-p-nitro-phenylester substrate are the same for HMr-UK and VHMr-UK.

Chromatography, Gel↗

Surface modification of proteins. Activation of monomethoxy-polyethylene glycols by phenylchloroformates and modification of ribonuclease and superoxide dismutase.

A single-step method of activation of monomethoxypolyethylene glycols suitable for its binding to polypeptides and proteins is proposed. Based on the reaction with 2,4,5-trichlorophenylchloroformate or p-nitrophenylchloroformate, it gives reactive PEG-phenylcarbonate derivatives. The PEG intermediate is stable on storage, the activating group is easily quantified,and the reaction with amino acid and proteins proceeds rapidly at pH near neutrality. The PEG derivatization of enzymes with this procedure is less inactivating than those previously reported. Ribonuclease and superoxide dismutase were modified and the effect of (a) bound polymer on clearance time in rats, (b) antibody recognition, and (c) on the enzymatic activity toward low and high molecular weight substrates were studied.

Amino Acids↗