PubMed HealthSearch

Biomedical subjects

L Böhm

Publications and source records attributed to L Böhm.

At least 19 recordsLinked to original sources

Na+, K+-ATPase inhibitor, ouabain accentuates irradiation damage in human tumour cell lines.

Two normal, two tumour, one transformed fibroblast cell line established from Ataxia telangiectasia (AT) patients and one corrected AT hybrid were characterised with regard to alpha, beta, SF2, and D values. Survival of 60Co gamma-irradiated tumour and transformed cells was markedly reduced when the Na+, K+-ATPase inhibitor ouabain was present 1 hr before and 3 hr post irradiation. Under these conditions, the radiosensitivity in normal cells remained virtually unchanged. Suppression of repair was found to play a role in the ouabain-induced inhibition of the cell survival. In A549 lung carcinoma cells, addition of 10(-8) M ouabain decreases the sublethal damage recovery ratio from 56.5 to 13.3. The same drug concentration decreases the recovery ratio in L132 epithelial cells only from 5.1 to 4.9. The fast repair component, as measured over the first 1.5 hr after irradiation, decreases from 1.83 to 0.36 hr(-1) in A549 cells and from 0.35 to 0.16 hr(-1) in HeLa cells. For 2 Gy fractions, the presence of 10(-8) M ouabain 1 hr before irradiation and 3 hr after irradiation induces dose enhancement ratios of 1.15-1.5. A more pronounced effect on cell inactivation may be expected from multiple fractions. The concentrations required to downregulate sublethal damage repair fall within the range where cardiac glycosides are used clinically. Application of these drugs in radiotherapy thus seems feasible.

Cell Line, Transformed

Cyclin B1 expression in response to abrogation of the radiation-induced G2/M block in HeLa cells.

The G2 block is a major response of cells to DNA damage and seem to be induced independently of p53 status. It is thought that the G2 block has a protective function and allows cells to repair their DNA. The molecular events involved in the formation of the G2 block therefore are of great interest. We have used pentoxifylline, a potent G2 delay abrogator, to study the expression of an essential component of the mitosis promoting complex (MPF), cyclin B1. Cyclin B1/G2 ratios are used to show that irradiation induces a decrease in cyclin B1 expression and that pentoxifylline restores cyclin B1 expression to control level. This confirms that suppression of cyclin B1 plays a role in the formation of the G2 cell cycle delay, and that elevating cyclin B1 expression is part of the mechanism of action of pentoxifylline on G2 blocked cells.

Cell Cycle

Influence of histone acetylation on the modification of cytoplasmic and nuclear proteins by ADP-ribosylation in response to free radicals.

Inhibition of histone deacetylase by addition of 5 mM n-sodium butyrate to the growth medium increases the utilization of [32P]NAD+ and ADP-ribosylation (ADPR) of total cellular proteins of V79, HeLa, mouse B16, mouse Fib/T and human T1 kidney cells by a factor of 1.2-2.3. When the ADP-ribosylase is challenged by exposing cells to damage by .OH radicals (25 microM CuSO4 2.8 mM H2O2) ADPR increases by factors of 5.7-6.0 and 3.2-4.0 in normal and butyrated cells, respectively. Operation of the free radical generator is supported by the response to EDTA and radical scavengers. Densitometric analysis of autoradiographs from SDS-gels show that butyrate exposure increases basal ADPR-modification of histones from T1 cells by factors of 1.1-1.9. Addition of .OH radicals increases the ADPR modifications of histones 4.4-8.7-fold in normal cells and 3.2-6.7-fold in butyrate exposed cells. Butyrate exposure elevates base level ADPR-modification and reduces subsequent ADPR-modification initiated by DNA damage. The results are consistent with the view that ADPR-modification and histone acetylation have overlapping functions and probably induce similar structural changes in chromatin.

Acetylation

The merits of cell kinetic parameters for the assessment of intrinsic cellular radiosensitivity to photon and high linear energy transfer neutron irradiation.

PURPOSE: Differences in tumor response and intrinsic cellular radiosensitivity make the selection of patients for specific radiation modalities very difficult. The reasons for these differences are still unclear, but are thought to be due to genomic and cellular characteristics. Because radiosensitivities vary between cell cycle stages and because S phase cells are very radioresistant, cell cycle kinetic parameters could be a candidate for predicting intrinsic radiosensitivity. METHODS AND MATERIALS: A panel of 15 tumor cell lines was analyzed for S phase content and potential doubling times (Tpot), and the influence of these parameters on the intrinsic radiosensitivity to 60Co gamma- and p(66)/Be neutron irradiation was assessed. RESULTS: S phase content and Tpot show a statistically significant correlation with the mean inactivation dose for photons. The correlation between cell kinetic parameters and the mean inactivation dose for neutrons showed the same trend as photon sensitivity but this was not found to be statistically significant. CONCLUSIONS: S phase content and Tpot were identified as suitable criteria for predicting photon sensitivity. It is suggested that cell kinetic parameters could play a role in identifying neutron sensitive tumors if both tumor and normal cells are analyzed.

Cobalt Radioisotopes

RBE variation as a function of depth in the 200-MeV proton beam produced at the National Accelerator Centre in Faure (South Africa).

BACKGROUND AND PURPOSE: Thorough knowledge of the RBE of clinical proton beams is indispensable for exploiting their full ballistic advantage. Therefore, the RBE of the 200-MeV clinical proton beam produced at the National Accelerator Centre of Faure (South Africa) was measured at different critical points of the depth-dose distribution. MATERIAL AND METHODS: RBEs were determined at the initial plateau of the unmodulated and modulated beam (depth in Perspex = 43.5 mm), and at the beginning, middle and end of a 7-cm spread-out Bragg peak (SOBP) (depths in Perspex = 144.5, 165.5 and 191.5 mm, respectively). The biological system was the regeneration of intestinal crypts in mice after irradiation with a single fraction. RESULTS: Using 60Co gamma-rays as the reference, the RBE values (for a gamma-dose of 14.38 Gy corresponding to 10 regenerated crypts) were found equal to 1.16 +/- 0.04, 1.10 +/- 0.03, 1.18 +/- 0.04, 1.12 +/- 0.03 and 1.23 +/- 0.03, respectively. At all depths, RBEs were found to increase slightly (about 4%) with decreasing dose, in the investigated dose range (12-17 Gy). No significant RBE variation with depth was observed, although RBEs in the SOBP were found to average a higher value (1.18 +/- 0.06) than in the entrance plateau (1.13 +/- 0.04). CONCLUSION: An RBE value slightly larger than the current value of 1.10 should be adopted for clinical application with a 200-MeV proton beam.

Animals

RBE variation between fast neutron beams as a function of energy. Intercomparison involving 7 neutrontherapy facilities.

In fast neutron therapy, the relative biological effectiveness (RBE) of a given beam varies to a large extent with the neutron energy spectrum. This spectrum depends primarily on the energy of the incident particles and on the nuclear reaction used for neutron production. However, it also depends on other factors which are specific to the local facility, eg, target, collimation system, etc. Therefore direct radiobiological intercomparisons are justified. The present paper reports the results of an intercomparison performed at seven neutrontherapy centres: Orléans, France (p(34)+Be), Riyadh, Saudi Arabia (p(26)+Be), Ghent, Belgium (d(14.5)+Be), Faure, South Africa (p(66)+Be), Detroit, USA (d(48)+Be), Nice, France (p(65)+Be) and Louvain-la-Neuve, Belgium (p(65)+Be). The selected radiobiological system was intestinal crypt regeneration in mice after single fraction irradiation. The observed RBE values (ref cobalt-60 gamma-rays) were 1.79 +/- 0.10, 1.84 +/- 0.07, 2.24 +/- 0.11, 1.55 +/- 0.04, 1.51 +/- 0.03, 1.50 +/- 0.04 and 1.52 +/- 0.04, respectively. When machine availability permitted, additional factors were studied: two vs one fraction (Ghent, Louvain-la-Neuve), dose rate (Detroit), influence of depth in phantom (Faure, Detroit, Nice, Louvain-la-Neuve). In addition, at Orléans and Ghent, RBEs were also determined for LD50 at 6 days after selective abdominal irradiation and were found to be equal to the RBEs for crypt regeneration. The radiobiological intercomparisons were always combined with direct dosimetric intercomparisons and, when possible in some centres, with microdosimetric investigations.

Abdomen

Influence of ouabain on cell inactivation by irradiation.

BACKGROUND: It has been suggested that irradiation affects the function of the Na(+)-K(+)-ATPase. Here we examine the influence of the inhibitor ouabain on the cytotoxicity of irradiation. MATERIAL AND METHODS: Cell colony assay, cell survival, 86Rb-uptake, flow cytometry. RESULTS: In V79, HeLa and A549 cells ouabain alone causes a significant growth reduction at medium concentrations of 10(-4) M, 10(-6) M and 10(-7) M, respectively. When cells were exposed to the drug for 1 h and subsequently irradiated, the SF2 values decreased from 0.55 to 0.41, from 0.42 to 0.18 and from 0.57 to 0.35 in V79, HeLa and A549 cells, respectively. These effects were manifest at drug concentrations of 10(-3) M, 10(-6) M and 10(-7) M respectively, where Na(+)-K(+)-ATPase activity as measured by 86Rb-uptake was reduced to 40 to 60% of the control value. Addition of the drug after irradiation and when the G2/M cell cycle block was firmly established, markedly delayed the recovery of cells for well over 6 h and G1 levels remained at 50% of the control values. CONCLUSION: It is concluded that ouabain is strongly dose modifying in the human cell lines HeLa and A549 at concentrations which correlate with the inhibition of the Na(+)-K(+)-ATPase. Ouabain also inhibits the recovery of cells blocked in the cell cycle by irradiation.

Animals

Radiosensitivity variations in human tumor cell lines exposed in vitro to p(66)/Be neutrons or 60Co gamma-rays.

BACKGROUND: Neutron therapy should be beneficial to patients with tumor types which are resistant to photons but relatively sensitive to high-LET radiation. In this work the potential therapeutic gain of a clinical neutron beam is evaluated by quantifying the variations in radiosensitivity of different cell lines to neutrons and photons. MATERIAL AND METHODS: Different cell lines were exposed in vitro to p(66)/Be neutrons or 60Co gamma-rays. Micronuclei frequencies in binucleated cells and surviving fractions were determined for each cell type. RESULTS: Following exposure to either 1 or 1.5 Gy neutrons, micronuclei frequencies were significantly correlated with that observed for 2 Gy photons. A weak but significant correlation between the variation in neutron RBE values, determined from survival curve inactivation parameters and the mean inactivation doses for photon exposures, was also established. CONCLUSION: It is concluded that although neutron and photon sensitivities are related, the use of this high energy neutron source may constitute a potential therapeutic gain for tumor types that can be identified as very resistant to photons. Considering that a definitive oxygen gain factor has been established for this neutron beam the observed therapeutic gain is expected to be further enhanced in tumors where hypoxia protects cells from conventional radiation damage.

Beryllium

Cyclotron future.

Explore the source record for details and available documents.

Cyclotrons

Effect of pentoxifylline on radiation damage and tumor growth.

PURPOSE: Inactivation of tumor cells by photon irradiation can be markedly improved by tumor oxygenation. We have investigated the effect of the vasoactive drug pentoxifylline with respect to cell toxicity, radiation sensitivity, repair and tumor growth. METHODS: V79 and Hela cell survival curves and determination of the tumor volume using rhabdomyosarcoma growth in BALB/c mice. RESULTS: In the presence of 1 mM pentoxifylline, survival of V79 Chinese hamster lung fibroblasts and human Hela cells at a dose level of 2 Gy is reduced by factors of 1.12 +/- 0.09 and 1.62 +/- 0.10 S.E. respectively. A radiosensitizing effect of pentoxifylline is also evident from the change of the alpha-coefficient which increases from 0.140 to 0.19 and from 0.39 to 0.65 in V79 and Hela cells respectively. In 3 h split dose experiments Hela cells but not V79 cells showed a change in the recovery ratio from 3.0 in control cells to 1.0 in drug exposed cells. In vivo experiments on BALB/c mice receiving 50 mg/kg pentoxifylline alone by subcutaneous injection showed a marked stimulation of tumor growth. When combined with irradiation we observed a 1.3 to 1.7 fold gain in tumor growth delay depending upon tumor size or day of measurement. CONCLUSIONS: The results suggest that pentoxifylline has an intrinsic effect on cell recovery and in tumors also improves blood supply and oxygenation.

Animals

Folding of terminal histone-H1 peptides in the presence of the oligonucleotide 5'-(AT)6-3'.

Peptides H1(1-16) H1(204-218) of human histone H1, comprising the terminal parts of the N- and C-domain, and H1(120-210), comprising the entire C-domain of calf thymus H1, were studied using CD spectroscopy in the presence of trifluoroethanol (TFE) and the oligonucleotide 5'-(AT)6-3'. TFE induces a strong negative ellipticity at 220 nm, showing that the H1 fragments are capable of helical folding. The CD spectrum of free (AT)6 shows strong negative and positive absorptions in the 200-300 nm region resembling the psi-spectrum of DNA. Free (AT)6 showed no helix-coil transition and remained single stranded at room temperature. Combinations of the H1 peptides with increasing concentrations of (AT)6 in low-ionic-strength phosphate buffer developed a strong negative ellipticity at 235 nm. This ellipticity increased with rising (AT)6 concentration and diminished when the (AT)6 concentration exceeded the 1:1 molar ratio in H1(1-16) and H1(204-218) and the 2:1 molar ratio in H1(120-210). The 235 nm ellipticity is attributed to a complex of the H1 peptide with (AT)6 in which the protein is helical. Interaction between histone peptide and (AT)6 is also indicated by UV-absorption spectra which show that the 260 nm absorption is decreased and the 280 nm absorption is increased as compared to free (AT)6. The free peptides show no absorption in this window. The altered 260 and 280 nm absorption suggests that the single-stranded (AT)6 assumes a left-handed pitch and this is confirmed by the displacement of the 270 nm positive ellipticity of free (AT)6 towards 260 nm. Implications of a left-handed linker DNA for chromatin function are discussed.

Amino Acid Sequence

Epitope recognition in histone H1 by SLE autoantibodies in the presence of a DNA-ligand.

To investigate the specificity of anti H1 antibodies peptides from the N- and C-domain of H1 and the synthetic oligonucleotide (AT)6 were complexed. Circular dichroism (CD) spectroscopy indicated that the free peptides H1(1-16), H1(204-218) and C(121-210) in low salt buffer assume a random structure but become helical when bound to the oligonucleotide. The structured and unstructured H1 fragments were then analyzed by enzyme linked immunosorbent assay (ELISA) with anti-H1 antibodies in sera from patients with systemic lupus erythematosis (SLE) and with the monoclonal anti-H1 antibody MRA-12 derived from MLR lpr/lpr autoimmune mice. Binding of these antibodies to H1(204-218) and C was inhibited to a level of 50% when these H1 peptides were complexed with (AT)6. When the same antibody was tested with H1 fragment GC(34-210), attachment to oligonucleotide (AT)6 did not influence antibody binding. Competition studies with liquid phase GC and C antigen against solid phase GC and C indicated that liquid phase GC was more efficient in displacing antibody binding reactivity than liquid phase C. The displacement effect of both liquid phase antigens was greatest against solid phase C. We conclude that anti-H1 autoantibodies are directed against an epitope located near the junction of the G- and C-domain which is exposed and not masked when H1 is bound to DNA.

Autoantibodies

A new face of TB.

Explore the source record for details and available documents.

Acquired Immunodeficiency Syndrome

RBE and OER measurements on the p(66) + Be neutron beam at Faure, South Africa.

Results reported are for single dose exposures and refer to 60Co-gamma-irradiation. The RBE determined by V79 cell survival and based on the Do ratio was found to be 1.70 +/- 0.4 ranging from 1.5 to 1.8. In the case of the regeneration of mouse jejunal crypts the RBE was calculated at ten cell survival and was found to be 1.68. The maximum acute mouse skin reaction at a skin score of 2.0 was found to be 2.1 while the average skin reaction was 1.7. Growth retardation of Vicia faba bean roots measured at the level of 50% indicated an average RBE of 3.0 and a range of 2.7 to 3.7. The OER obtained for V79 cell survival was found to be 1.7 to 1.8. Comparison is made with the RBE and OER measurements for the neutron facilities at Clatterbridge, Fermilab and Louvain-la-Neuve which produce neutrons by the same nuclear reaction and whose physical specifications closely resemble those of the Faure neutrons. This comparison indicates that the Faure beam shows no unusual biological features and that its biological effectiveness is in line with that expected from its physical characteristics.

Animals

Hyperprolactinemia in acute myeloid leukemia and indication of ectopic expression of human prolactin in blast cells of a patient of subtype M4.

The sera of 28 patients with acute myeloid leukemia AML--subtypes M1 to M6 were screened for human prolactin (h-PRL). Serum TSH (thyroid stimulating hormone), LH (luteinizing hormone), FSH (follicle stimulating hormone), beta-estradiol, free T4 (tetra-iodotyronine) and testosterone were also determined. It was found that in 16 of the 28 patients h-PRL was significantly elevated while all other endocrine values were normal. In a patient subtype M4 with elevated serum h-PRL we demonstrate by immunoblotting that the hormone and its dimer are present in the blast cells. This may reflect ectopic synthesis due to altered expression of homeobox genes and a requirement of h-PRL as a growth stimulant of the leukemic myeloblast.

Aged

Radiobiological intercomparison of two clinical neutron beams using the regeneration of mouse intestinal crypts.

Determination of dose modification factor greatly facilitates the introduction of clinically proven neutron therapy schedules at new installations. We have compared the biological performance of the p(66)+Be neutron facility at Faure, South Africa, with the established p(65)+Be installation at Louvain-la-Neuve, Belgium. Filtration, D gamma/DT, dose rate and HVT 5/15 for the Louvain and Faure beam are: 2 cm, 2.5 cm polyethylene; 3%, 5%; 0.2 Gy/min, 0.4 Gy/min; and 20 cm and 19 cm respectively. Dosimetry was done in A-150 plastic. Irradiation of BALB/C mice was carried on according to the dose accumulation method in a perspex phantom at 5 cm depth and at an SSD of 150 cm at a field size of 28 X 28 cm2. Sections of the jejunum were prepared at each centre and analyzed by both. The RBE of the Faure beam determined at a survival level of 50 crypts ranged from 1.64 to 1.69. The dose modification factor RBE of the Louvain beam given by Beauduin et al. was 1.61 +/- 0.14. The dose modification factor of the Faure beam relative to the Louvain beam is thus 1.03 +/- 0.13 which could be expected from the similarity of the physical characteristics. Independent RBE measurements in a variety of systems also suggest similar biological properties. The depth variation of the RBE was found to be 4% (mouse gut) using 3 cm polyethylene filter over the depth range of 2.5 to 13.5 cm. This is in agreement with microdosimetry measurements using polyethylene filters of various thicknesses and with V79 measurements reported by Slabbert et al.

Animals