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Synthesis of poly(2-methyl-3-hydroxyoctanoate) via anionic polymerization of alpha-methyl-beta-pentyl-beta-propiolactone.

Synthesis of an alpha,beta-alkyl branched polyester, i.e., poly(2-methyl-3-hydroxyoctanoate), has been accomplished via anionic polymerization of alpha-methyl-beta-pentyl-beta-propiolactone mediated by supramolecular complexes of potassium methoxide or potassium hydroxide, respectively. The structure of resulting polymers has been established by electrospray ionization multistage mass spectrometry (ESI-MSn), FT-IR, NMR, and GPC analyses. Previously proposed addition-elimination mechanism of the polymerization of beta-lactones containing alpha-hydrogen by alkoxide anion has been confirmed to operate also in the case of beta-lactone having alkyl substituents in both alpha and beta positions.

Methods↗

A new personal monitoring device for the detection of beta-propiolactone and other alkylating agents.

A personal monitoring badge has been developed for the detection of the direct-acting, alkylating carcinogen beta-propiolactone at atmospheric concentrations as low as 6 ppb for 24-hour and 0.6 ppm for 0.25-hour exposure. The method employs the trapping reagent p-nitrobenzyl pyridine (p-NBP) absorbed on a cellulose thin-layer chromatography (TLC) strip. Deoxyguanosine can be used in place of p-NBP, but its lower limit of detection is 60 ppb for 24-hour exposure. The authors also obtained positive results with the carcinogens bis (chloromethyl) ether, chloromethyl methyl ether, diepoxybutane, dimethylcarbamoyl chloride, ethyleneimine, and glycidaldehyde. In practice, the TLC strip is positioned in a filmbadge holder. The TLC strip monitoring badges are easy to prepare; they should encounter no resistance of personnel to their use since they are not cumbersome. Monitoring at the end of an exposure is simple and requires no expensive equipment or specialized personnel.

Air Pollutants↗

beta-propiolactone/ultraviolet irradiation: a review of its effectiveness for inactivation of viruses in blood derivatives.

The efficacy of combined beta-propiolactone/ultraviolet irradiation (betaPL/UV) for inactivation of hepatitis B virus in labile blood derivatives has been reviewed. The initial evaluations of these procedures were hampered by inadequate process control that resulted in excessive protein denaturation; furthermore, adequate evaluation of process efficacy for virus inactivation was prevented by the absence of titered hepatitis virus stocks, the lack of an animal model, and the failure to carry out controlled trials. Finally, it was not appreciated that the power of these procedures lay especially in their use in combination. These deficits have now been remedied. To permit quantitation of process efficacy, a regression analysis of the relation between virus dose and incubation period in chimpanzees has been carried out. This has provided a means of estimating virus titer and determining the accuracy of such estimates. The most recent data suggest that betaPL/UV can reduce the titer of hepatitis B virus about 10 million fold (10(-7)). The process efficacy for betaPL/UV followed by the special adsorption procedures used in preparation of a stabilized human serum containing most human serum proteins except for factor VIII, the factor IX complex, fibrinogen, and the lipoproteins was estimated as a 10(8)-fold reduction in virus titer. This degree of virus inactivation should be more than sufficient to sterilize the amounts of hepatitis B virus that could be expected in pooled human plasma that has been screened for hepatitis B surface antigen. Preliminary data also suggest that the betaPL/UV procedure effectively inactivates non-A, non-B hepatitis virus(es).

Animals↗

Preparation of complement fixation antigen of Chlamydia psittaci grown in tissue culture by treatment with beta-propiolactone.

A new method of preparing a chlamydial complement fixation (CF) antigen by treatment with beta-propiolactone (BPL) is presented. Chlamydia psittaci strains Pigeon-1041 and Budgerigar-No. 1, and Chlamydia trachomatis strain L2/434/BU, propagated in L-929 cell monolayers, were inactivated with BPL. This BPL-treated antigen was useful for detecting CF antibodies in both human and pigeon sera, and it did not cause false-positive reactions, as are sometimes observed between some human sera and phenol-treated antigen derived from eggs. When this CF antigen was treated with potassium periodate and tested for reactivity with mouse immune ascitic fluid, it was found that the antigen contained type- or strain specificity as well as genus specificity. Immunization with the BPL-treated antigen elicited type- or strain-specific neutralizing antibody.

Animals↗

Effect of combined treatment of serum containing hepatitis B virus with beta-propiolactone and ultraviolet irradiation.

The effect of cold sterilization by beta-propiolactone (beta-PL) and ultraviolet (UV) irradiation of serum contaminated with infectious hepatitis B virus (HBV) was investigated in chimpanzee. Chimpanzees given 0.1 ml/kg of the undiluted HBV serum estimated to contain 10(7)-10(8) CID50/ml developed acute hepatitis B infection 4 weeks after inoculation. Chimpanzees injected with the same undiluted hepatitis serum treated with beta-PL/UV developed hepatitis B infection 14 weeks later. Based on the published linear relationship between log dose of HBV and incubation period in chimpanzees this indicates a 10(6)-fold reduction in infectivity titer. Animals inoculated with the serum diluted 1:1,000 showed manifest hepatitis B infection 11 weeks later. Animals inoculated with serum diluted 1:1,000 and then cold sterilized with beta-PL/UV showed no signs of hepatitis B infection. Sensitive proteins are not denatured by beta-PL/UV cold sterilization.

Animals↗

Effect of beta-propiolactone on blood group antibody detection.

A panel of 50 blood group antibodies covering a range of blood group antigens has been tested in the presence of 0.25% beta-propiolactone as a possible means of reducing infectivity of high-risk HTLV III/HBsAg samples. 11/50 (22%) antibodies could not be detected by the indirect antiglobulin test, and 6/40 (15%) were undetectable by the two-stage papain technique.

Blood Group Antigens↗

Effect of beta-propiolactone on infectivity and haemagglutinin of the BK virus.

The effect of beta-propiolactone (BPL) on the infectivity and haemagglutinating properties of BK virus was studied. No virus multiplication was observed when Vero cell cultures were inoculated with virus treated with 0.1 per cent or higher concentration of BPL. On the other hand, treatment of BK virus with 0.1 per cent or lower concentration of BPL had no apparent effect on viral haemagglutinin. BPL at a concentration of 0.1 per cent could therefore be used to prepare BK virus haemagglutinin which contains little or no infectious virus. Inactivated haemagglutinin seems to be somewhat labile against freezing and thawing, but storage at 4 degrees C had no effect on it. Identical haemagglutination inhibiting antibody titres were obtained when human sera were tested with standard haemagglutinin or with haemagglutinin inactivated with BPL.

Agglutinins↗

Sterilization of regenerated collagen sutures with beta-propiolactone.

Data are presented to show that beta-propiolactone when properly applied is a very effective agent for sterilization of regenerated collagen sutures. The chemical sterilization is accomplished with little or none of the loss in strength encountered with heat sterilization. The finished sterile suture is obtained without any harmful residue that might be detrimental to the patient.

Collagen↗

Comparative effects of beta-propiolactone on mice, mouse-derived cell cultures, and Venezuelan equine encephalomyelitis virus.

Studies were made comparing the toxicity of beta-propiolactone (BPL) for mammalian (mouse) cells in vitro and for mice and for Venezuelan equine encephalomyelitis (VEE) virus which is highly cytopathogenic for each. The mammalian cells grown in tissue culture were found to be adversely affected by BPL in concentrations ranging from 0.001 to 0.1 mg/ml of supernatant fluid. The difference in response was influenced by the menstruum in which the BPL was suspended and the difference in cell types tested. Tenfold less BPL appeared to be required to destroy the cells when it was suspended in a balanced salt solution than when it was suspended in protein-containing solutions such as beef heart infusion broth or medium 199 plus 20% horse serum. Secondary embryonic mouse lung cells seemed slightly more adversely affected by BPL than the established embryonic lung or L cells. BPL given to mice by intranasal instillation and by intracerebral injection was lethal to half of the animals within 2 days at doses of 0.31 and 0.39 mg, respectively. Higher concentrations of BPL were required to rapidly inactivate the virus in vitro than were required to kill mice or to cause a toxic effect on cells in culture. It required 10 mg/ml of BPL to completely inactivate a high-titered VEE virus preparation in 5 min and 1 mg/ml to inactivate most, but not all, of the virus in 15 min. A concentration of 0.1 mg/ml of BPL had only a slight effect on the virus after a period as long as 60 min. Evidence is presented indicating that simultaneous inactivation of all of the properties of the VEE virus particles by BPL aerosols did not occur at the same time but that, after treatment, the virus possessed a limited ability to immunize mice despite a loss in infectivity.

Animals↗

An evaluation of beta-propiolactone for the sterilization of fermentation media.

Twenty-five bacterial species were cultured in basal broth plus 1 of 19 different carbohydrates which were sterilized by Seitz filtration, autoclaving (112 C, 10 min), or exposure to 0.2% beta-propiolactone (BPL). No significant differences were found either in the visual observations for acid and gas, pH, or titrable acidity determinations after 3 days of incubation with any of the three preparations tested. An effort was made to further determine the effect of BPL and heat on carbohydrates by assaying for glucose before and after treatment. Results indicated that glucose was not degraded by 0.2% BPL, however, it was shown that autoclave temperatures caused extensive degradation. Statistical treatment of the results from Warburg studies indicated that BPL-treated glucose showed no appreciable toxic effects, although the actual oxygen uptake was not as great as with Seitz- or autoclave-treated glucose. The application of the BPL sterilization process was discussed.

Culture Media↗

Alterations in Bacillus subtilis transforming DNA induced by beta-propiolactone and 1,3-propane sultone, two mutagenic and carcinogenic alkylating agents.

Transforming DNA was exposed to either beta-propiolactone or 1,3-propane sultone and then used for transformation of competent bacteria to nutritional independence from tyrosine and tryptophan (linked markers) and leucine (an unlinked marker). The ability to transform was progressively lost by the DNA during incubation with either of these two chemicals. For all three markers the inactivation curve was biphasic, with a short period of rapid inactivation followed by one characterized by a much slower rate. The overall rate of inactivation was different for all three markers and presumably was related to the size of the marker. The decrease in the transforming activity was in part due to the slower rate of penetration of alkylated DNA through the cellular membrane and its inability to enter the recipient bacteria. This decrease in the rate of cellular uptake, even for DNA eventually destined to enter the cell, began almost immediately after its exposure to the chemical and ended up with an almost complete lack of recognition of the heavily alkylated DNA by the specific surface receptors of competent cells. Such DNA attached to sites on the surface of competent bacteria which were different from receptors specific for the untreated nucleic acid. This attachment was not followed by uptake of the altered DNA. Presence of albumin during the incubation with a carcinogen further increased the degree of inactivation, indicating that the artificial nucleoproteins produced under such conditions were less efficient in the transformation assay than was the naked DNA. Cotransfomration of close markers progressively decreased, beginning immediately after the start of incubation of DNA with the chemicals. Extensively alkylated DNA fractionated by sedimentation through sucrose density gradients showed a peculiar distribution of cotransforming activity for such markers; namely, molecules larger than the bulk of DNA ("megamolecules") showed less ability to transform the second marker than did some of the apparently smaller molecules which sedimented more slowly through the gradient. An increase in cotransformation of distant markers was evident in DNA molecules after a short exposure to an alkylating agent, but cotransformation of such markers was absent in DNA treated for longer periods. The observed changes in the transforming and cotransforming activities of the alkylated DNA can be explained by what is known about the physicochemistry of such DNA and in particular about the propensity of the alkylated and broken molecules to form complexes with themselves and with other macromolecules.

Alkylating Agents↗

Effect of beta propiolactone on specific antibody measurements by ELISA.

Serum samples from 30 HIV seronegative patients were treated with beta propiolactone (BPL) to determine whether BPL interfaces with ELISA for specific antibodies against protein and carbohydrate antigens. BPL had no discernible effect on specific antibody measurements by ELISA. With the measuring need for specific antibody measurements in the management of HIV seropositive patients, it is reassuring that this laboratory safety measure does not impair the reliability of results.

Antibodies, Bacterial↗

Sensitization induced in guinea pigs with beta-propiolactone-treated serum albumin: experimental evidence for the cause of allergic reactions in humans receiving human diploid cell rabies vaccines.

beta-Propiolactone-treated (BPL-T) homologous serum albumin caused anaphylaxis in guinea pigs with a frequency and severity equal to that of guinea pigs inoculated with human albumin. Untreated guinea pig serum albumin did not cause any reactions in these animals. Some recipients of current rabies vaccine produced in human diploid cells available in the USA develop systemic allergic reactions, usually following booster immunization. The BPL-T human albumin component of the vaccines was believed to be the cause of the complications. Our studies support this conclusion.

Anaphylaxis↗

Inactivation of hepatitis viruses and HIV in plasma and plasma derivatives by treatment with beta-propiolactone/UV irradiation.

A combined treatment of plasma or plasma derivatives by beta-propiolactone (beta-PL)/UV irradiation is in use at Biotest for the preparation of the virus-safe, stabilized serum (Biseko) and coagulation factor concentrates. The efficacy of this sterilization procedure has been demonstrated for HAV (greater than 8.2 log10), HBV (6.9 log10), NANBHV (greater than 4.5 log10) and HIV (greater than 6.0 log10). The methods used in these studies (titration in chimpanzees or cell cultures) are not applicable in routine monitoring of sterilization processes. We therefore developed a test system using four types of bacteriophages: phi X174, phi e, Kappa and f2. Using these bacteriophages in 88 single tests, sterilization efficacy was regularly monitored during the period from 1981 to 1986. The four types of bacteriophages showed, on average, an inactivation rate of 6.7 log10, independent of size or genome structure. This inactivation is in the range of the inactivation of the relevant pathogenic virus, HBV, by beta-PL/UV. It was shown that under the production conditions of Intraglobin and the other Biotest immunoglobulin preparations, beta-PL (without UV) is as virucidal as the combination of beta-PL/UV in plasma or cryo-poor plasma.

Animals↗

A vanadium/aspirin complex controlled release using a poly(beta-propiolactone) film. Effects on osteosarcoma cells.

A delivery system for vanadium was developed using poly(beta-propiolactone) (PbetaPL) films. The release kinetics of a complex of vanadium (IV) with aspirin (VOAspi) was evaluated with films prepared from polymers of different molecular weights, as well as with variable drug load. A sustained release of vanadium over 7 days was achieved. The drug release kinetics depends on contributions from two factors: (a) diffusion of the drug; and (b) erosion of the PbetaPL film. The experimental data at an early stage of release were fitted with a diffusion model, which allowed determination of the diffusion coefficient of the drug. VOAspi does not show strong interaction with the polymer, as demonstrated by the low apparent partition coefficient (approximately 10(-2)). UMR106 osteosarcoma cells were used as a model to evaluate the anticarcinogenic effects of the VOAspi released from the PbetaPPL film. VOAspi-PbetaPL film inhibited cell proliferation in a dose-response manner and induced formation of approximately half of the thiobarbituric acid reactive substances (TBARS), an index of lipid peroxidation. compared to that with free VOAspi in solution. The unloaded PbetaPL film did not generate cytotoxicity, as evaluated by cell growth and TBARS. Thus, the polymer-embedded VOAspi retained the antiproliferative effects showing lower cytotoxicity than the free drug. Results with VOAspi-PbetaPL films suggest that this delivery system may have promising biomedical and therapeutic applications.

Animals↗

Kinetics of induction of DNA damage and lacZ gene mutations in stomach mucosa of mice treated with beta-propiolactone and N-methyl-N'-nitro-N-nitrosoguanidine, using single-cell gel electrophoresis and MutaMouse models.

beta-Propiolactone (BPL) and N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) are two direct alkylating agents that induce multiple genetic lesions and tumors in the rodent stomach. We measured the kinetics of the induction of DNA damage by using the single-cell gel electrophoresis assay (SCGE) and the induction of gene mutations by using the MutaMouse model in the glandular stomach mucosa of mice exposed to a single oral administration of BPL or MNNG. The aims were to determine the optimal sampling time and to investigate the cause-effect relationship between DNA damage and gene mutations. The induction of comets, evaluated in individual cells with the tail moment, was analyzed 1, 2, 4, 24, and 72 hr after a single oral administration of 25 mg/kg BPL or 20 mg/kg MNNG. The effects of both compounds were most intense at the earlier sampling times (1-2 hr), tailing off 4 hr after treatment and becoming undetectable at 72 hr. The lacZ mutant frequency (MF) was measured 3, 7, 14, 28, and 50 days after a single oral administration of 150 mg/kg BPL or 100 mg/kg MNNG, and 3 and 14 days after a single administration of 25 mg/kg BPL or 20 mg/kg MNNG. The MF was strongly enhanced at the highest doses and all sampling times, the most marked effects being observed 14 days (11.1-fold) and 28 days (19.0-fold) after BPL and MNNG administration, respectively. At the lowest doses, only a small increase in MF ( approximately 2.5- to 3.5-fold) was found at both sampling times. Primary DNA damage detected with SCGE shortly after treatment (1-2 hr) was rapidly (3 days) transformed into stable gene mutations that remained detectable for 50 days. These results illustrate the ability and complementarity of the SCGE and MutaMouse models to assess the genotoxicity of direct alkylating agents in the mouse gastric mucosa in vivo.

Animals↗

The effect of ethyl alcohol and beta-propiolactone inactivated vaccinia virus on the development of skin immunity and the production of hemagglutination inhibiting antibodies in guinea pigs, rabbits and monkeys.

The efficacy of hemagglutinin containing preparations of vaccinia virus in eliciting skin immunity and hemagglutination inhibiting antibodies has been studied in guinea pigs, rabbits and monkeys. The preparations, grown on chorioallantoic membranes from chick embryos, have been tested both in the form of live vaccine and after inactivation with ethyl alcohol and beta-propiolactone. Statistical analysis of the results, comprising data from 200 guinea pigs, 80 rabbits and 100 monkeys, shows that there is a strong correlation between hemagglutination inhibiting antibodies and skin resistance, both when the anti-hemagglutinin is produced in response to live as well as inactivated vaccinia virus.

Animals↗