Search PubMed⌕ Search

Biomedical subjects

B Palcic

Publications and source records attributed to B Palcic.

At least 109 records · Page 6Linked to original sources

Modification of the action of misonidazole. II. Effect of TAN on radiosensitization.

Radiosensitization by misonidazole of hypoxic mammalian cells in dilute suspension is modified by the presence of the stable free radical, TAN. The dose modifying factor (DMF) of 15mM misonidazole is 2x4 for cell inactivation, and 3x5 for the production of single-strand breaks in DNA. The presence of TAN decreases these values to 1x5 and 1x75 respectively. Possible explanations for these observations are discussed. The DMF of misonidazole for cells in pellet is not affected by TAN.

Animals↗

Pre-clinical studies of the negative pi-meson beam at TRIUMF.

The pi- flux from the biomedical channel at TRIUMF increases with increasing channel momentum, while the contaminating electron flux decreases. Since the electrons appear to result from conversion of the high energy gamma-rays produced by pi0 decay in the production target, the electron contamination can be reduced further by target configurations which minimize gamma conversion. The attenuation of pi- beams by in-flight interactions was found to decrease from an initial value of 1.67 +/- 0.02% per g/cm2 at zero depth to 1.48 +/- 0.02% per g/cm2 near the stopping peak. The inactivation of cultured CHO cells by an extended-peak pi- dose distribution has been measured using the gel technique. The survival data have been fitted by a model which characterizes the physical quality of the dose profile by means of measured star densities. This model provides a convenient method of analysis for large sets of survival data and may be useful for prediction of the biological effect of new pi- dose distributions. The RBE value for 50% survival measured at the centre of a 7 cm extended peak was found to be approximately 1.4, in reasonable agreement with recent values obtained at LAMPF and SIN.

Animals↗

Uniform depth dose distribution for biological irradiation using negative pions.

A simple, flexible technique has been developed to generate uniform depth dose profiles for the biomedical pion beam at TRIUMF using dynamic momentum control and linear programming. Either the entrance dose or the irradiation time required for a certain dose over the uniform region can be minimised. The dynamic momentum control can operate automatically under computer control even with a highly unstable beam. Cell survival profiles have been obtained for this uniform dose distribution using the gelatin technique. The RBE increases with increasing depth through the uniform dose region.

Animals↗

Cytotoxicity of misonidazole and DNA damage in hypoxic mammalian cells.

The loss of colony-forming ability and the yield of DNA single strand breaks were studied following exposure of various mammalian cell types to misonidazole. A correlation was observed between cell inactivation and DNA damage. If, after exposure, the cells were washed free of the drug and then incubated at 37 degree C in growth medium, it was observed that surviving cells repaired their DNA to the point that sedimentation profiles were identical to those of unexposed cells. In nonsurviving cells, however, the DNA was found to be further degraded with post-exposure incubation.

Cell Survival↗

The effect of nitroimidazole and nitroxyl radiosensitizers on the post-irradiation synthesis of DNA.

The modification of DNA damage by three radiosensitizing drugs, present during gamma-irradiation of hypoxic Chinese hamster cells, was investigated. Both 2-methyl-5-nitroimidazole-1-ethanol (metronidazole) and 1-(2-nitro-1-imidazole)-3-methoxy-2-propranol (Ro-07-0582) were found to cause large increases in the yield of DNA single-strand breaks (SSB); triacetoneamine-N-oxyl (TAN) was found to have only a small effect on SSB production. The three drugs tested did not inhibit the rejoining of SSB. A pulse label and chase procedure was used to examine post-irradiation DNA synthesis. TAN present during irradiation under hypoxia was found to cause interruptions in subsequent DNA synthesis. Metronidazole and Ro-07-0582 had no effect on post-irradiation DNA synthesis. In addition, the effects of pre- and post-irradiation exposure to TAN were investigated, since these treatments have shown increased cell-killing in survival studies. TAN pre- and post-treatments were found to have no significant effect on subsequent DNA synthesis.

Cells, Cultured↗

Absence of ultrafast processes of repair of single-strand breaks in mammalian DNA.

Town, Smith and Kaplan (1972) reported that the yield of DNA single-strand breaks (SSB) in E. coli is largely independent of the presence of molecular oxygen during irradiation. They suggested that the oxygen enhancement ratio (o.e.r.) normally observed is due to the presence of an ultrafast repair mechanism acting (in bacterial cells) mainly on anoxically-produced breaks. To determine whether similar mechanisms exist in mammalian cells, we carried out comparable experiments on two cell-lines, one from Chinese hamster, the other from mouse. Both heat inactivation and chemical inhibition were treatment inactivated all the enzymatic processes assayed, it did not alter the o.e.r. for SSB production, which remained about 3-0. The presence of sodium cyanide, hydroxyurea, iodoacetic acid, EDTA and quinacrine all failed to alter significantly the o.e.r. Isolated nuclei also demonstrated the full o.e.r. For these cell-lines at least, ultrafast reprir does not seem to exist. Isolated Adenovirus 2, which presumably lacks enzymic activity, demonstrated an o.e.r. of 3-6 for SSB production. From these results and others it seems unlikely that the so-called ultrafast enzymic repair is a general phenomenon accounting for the o.e.r. in a wide range of biological systems. Rather, the o.e.r. for SSB seems to result from differences in the direct physico-chemical effects of radiation under aerobic and anoxic conditions in most organisms.

Adenoviridae↗

Misonidazole and potentially lethal damage.

The existence of potentially lethal damage (PLD) is demonstrated in exponentially growing CHO cells exposed to misonidazole in hypoxia. The method of hypertonic post-treatment of cells was used in these studies. Misonidazole-induced PLD differs in many characteristics from radiation-induced PLD. The repair kinetics of misonidazole-induced PLD are much slower than for the repair of radiation-induced PLD (hours vs. minutes). No significant repair of misonidazole-induced PLD took place at 25 degrees C. Other differences are discussed. Hypertonic post-treatment of irradiated cells which had been pre-incubated with misonidazole to non-toxic levels, gave survival data consistent with the interpretation that no radiation PLD can be induced in such cells.

Aerobiosis↗

Energy and misonidazole toxicity: the effects of 5-thio-D-glucose.

Cell inactivation and DNA damage (single-strand breaks) were used to study the effects of inhibitors of anaerobic glucose oxidation on the toxicity of misonidazole to hypoxic Chinese hamster cells. Citrate and 2-deoxyglucose produced no effects on the toxicity. 5-thio-D-glucose (5-TG) protected cells of the CH2B2 line to some extent (SSB decreased by about 30%). In the CHO lines used (wild, and ethylmethanesulfonate-sensitive mutants), 5-TG had varied effects. Non-protein sulfhydryl (NPSH) levels were measured in all lines. Cells with lower NPSH levels are more sensitive to misonidazole; these are the cells which are protected by 5-TG. Cell line variations must be considered when studying interactions between a drug and other forms of treatment as possible treatments of cancer.

Animals↗

Summary statement on quantitative cytochemistry (DNA and molecular biology): Task Force 8.

OBJECTIVE: To reach consensus on the application of quantitative cytochemical analysis of chromosomal and DNA aneuploidy in cervical cytopathology. CONCLUSION: The current Pap test has limited specificity to predict cancer and its truly progressive pre-malignant lesions. Infection with human papillomavirus may trigger genetic instability, hyperproliferation and immortalization of the cervical mucosa and cause cervical cancer. Several related molecular markers have been shown to be informative about this neoplastic process. Quantitative analysis of chromosomal and DNA aneuploidy has been shown to be an important tool for identifying (progression to) high grade squamous intraepithelial lesions. A high degree of standardization (material handling, calibration and quality control, measurement and interpretation of results) is required for accurate and reproducible measurements. Areas for further study are presented.

Aneuploidy↗

Radiation dose dependence of the sensitization by oxygen and oxygen mimic sensitizers.

New and old evidence is discussed which suggests that the oxygen enhancement ratio (OER) is decreased at lower radiation doses as compared with that of higher radiation doses. In addition, there is evidence that cells irradiated in severe hypoxia have an impaired ability to recover from sublethal damage. However, there is also contrary evidence to these observations. Thus the suggestions that oxygen is not strictly a dose modifying agent have been controversial from the very beginning. It is hoped that new experimental undertakings currently performed in many different laboratories will resolve these issues as well as explain the controversy which has lasted more than 25 years in this field of radiobiologic research.

Animals↗