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Biomedical subjects

W Hofmann

Publications and source records attributed to W Hofmann.

At least 271 records · Page 15Linked to original sources

Co-ordinated electron microscopy and X-ray studies of glycerinated insect flight muscle. I. X-ray diffraction monitoring during preparation for electron microscopy of muscle fibres fixed in rigor, in ATP and in AMPPNP.

Synchrotron radiation was used for low-angle X-ray diffraction to monitor structural changes produced in insect flight muscle during fixation, dehydration and embedding for electron microscopy of thin sections. Fibre bundles were fixed by cold glutaraldehyde in one of three states, namely rigor, ATP or AMPPNP, followed by additional cross-linking treatment. No heavy metals were used before embedding. During fixation-embedding, all specimens lost the continuous actin layer lines of spacing 11-5 nm, shrank 18-21% in lattice spacing, shrank 0.5-2.5% in axial spacings and showed equatorial intensity changes which were similar for all three states, while the well-sampled inner layer lines (39-13 nm) were preserved with different fidelity in each state, highest for rigor and lowest for ATP. In different AMPPNP bundles, these layer lines indicated different degrees of unexplained shift (from slight to total) towards the structure of muscle fixed in ATP. Fixation in ATP caused obvious gain of intensity on 39, 19 and 13 nm layer lines, which can be interpreted as trapping of myosin crossbridge attachments to actin; this artifact was unchanged by seven variations in fixation conditions. Fixation in rigor gave no indication of crossbridge detachment nor of the presence or alteration of any significant population of non-bridging myosin heads. X-ray monitoring allowed selection of best-preserved samples for subsequent electron microscopy. The rapid pattern-recording possible with synchrotron X-ray intensity allowed us to complete and compare experiments with many fibre bundles from a single glycerinated Lethocerus muscle.

Adenosine Triphosphate↗

[Comparison of clinical methods for the demonstration of radiation-induced lung changes. Experimental study on animals].

The purpose of this study was to compare the value of different imaging methods (radiography, computer tomography and scintigraphy) for demonstrating pulmonary fibrosis or radiation pneumonitis. The right lungs of 50 rabbits were irradiated with 3200 to 6200 rd. The lung changes were observed by the above methods over a period of 13 weeks. Histological examination served as the basis for evaluating the imaging methods. The comparison demonstrated the superiority of computer tomography when density measurements were included in the diagnostic criteria. The accuracy was about 95%. Scintigraphy was inferior to computer tomography as a quantitative method, using differences in the counts per unit area. Radiology as a subjective method achieved an accuracy of about 84%, approximately the same as scintigraphy.

Animals↗

Structure and paramyosin content of tarantula thick filaments.

Muscle fibers of the tarantula femur exhibit structural and biochemical characteristics similar to those of other long-sarcomere invertebrate muscles, having long A-bands and long thick filaments. 9-12 thin filaments surround each thick filament. Tarantula muscle has a paramyosin:myosin heavy chain molecular ratio of 0.31 +/- 0.079 SD. We studied the myosin cross-bridge arrangement on the surface of tarantula thick filaments on isolated, negatively stained, and unidirectionally metal-shadowed specimens by electron microscopy and optical diffraction and filtering and found it to be similar to that previously described for the thick filaments of muscle of the closely related chelicerate arthropod, Limulus. Cross-bridges are disposed in a four-stranded right-handed helical arrangement, with 14.5-nm axial spacing between successive levels of four bridges, and a helical repeat period every 43.5 nm. The orientation of cross-bridges on the surface of tarantula filaments is also likely to be very similar to that on Limulus filaments as suggested by the similarity between filtered images of the two types of filaments and the radial distance of the centers of mass of the cross-bridges from the surfaces of both types of filaments. Tarantula filaments, however, have smaller diameters than Limulus filaments, contain less paramyosin, and display structure that probably reflects the organization of the filament backbone which is not as apparent in images of Limulus filaments. We suggest that the similarities between Limulus and tarantula thick filaments may be governed, in part, by the close evolutionary relationship of the two species.

Animals↗

Microdosimetry of plutonium in lungs.

Chord length distributions for alveolar cells and cell nuclei were determined by superimposing computer-generated alpha-particle tracks on magnified images of randomly selected rat lung sections using the Quantitative Television Microscope. Specific energy distributions were then calculated by applying image analysis techniques. These microdosimetric calculations suggest that radiation carcinogenesis can be described in physical terms by the number of cells hit in a defined tissue volume, the specific energy distribution in these cells, the resulting number of non-lethally damaged cells which are susceptible to transformation, and their spatial distribution. If multicellular effects are involved in radiation carcinogenesis, then hot spots might be more carcinogenic than the uniform distribution at low doses and less carcinogenic at high doses.

Alpha Particles↗

Radiation exposure of the respiratory tract and associated carcinogenic risk due to inhaled radon daughters.

The atmospheric content of radon and its decay products contributes significantly to the radiation exposure of man even in the normal environment. In this study, the risk for lung cancer induction associated with normal exposure to natural radionuclides is assessed in Salzburg, Austria. Altogether more than a thousand rooms have been investigated by using combined radon grab-sampling methods together with continuous measurements of radon and daughters at different control stations. Dose calculations were carried out for 729 demoscopically selected test persons, considering individual differences in age, sex and life-style and atmospheric nuclide concentrations at different sites. Using a specially developed age-dependent lung model, the dose frequency distribution of the absorbed dose to the basal cells of the bronchial epithelium could be evaluated for the population of Salzburg. Dose modifications caused by anatomical and physiological variabilities as well as microdosimetric considerations of the stochastic events during energy deposition result in a significantly increased dispersion of the dose histogram. Induction of lung cancer due to inhalation of radon and decay products can be correlated with cumulative exposure based on experience with lung cancer incidence amongst uranium miners. Using the recommended range of lifetime risk values of 20-45 X 10(-5)/WLM (UN77), it is shown for Salzburg that about 15% of the observed number of lung cancer cases may be induced by natural radionuclides.

Austria↗

Human tissue kallikrein. I. Isolation and characterization of human pancreatic kallikrein from duodenal juice.

Human pancreatic kallikrein was purified from duodenal juice by ion exchange chromatography on DEAE-Sepharose and immunoaffinity chromatography. Thus, an enzyme preparation with a specific activity (using Ac-Phe-Arg-OEt as substrate) of 1 000 U/mg protein was obtained. A specific biological activity of 1310 KE/mg protein was measured in the dog blood pressure assay and of 0.361 HMW kininogen-U/mg, corresponding to the liberation of 383 micrograms bradykinin-equivalents per mg enzyme per min from HMW kininogen in the rat uterus assay. In dodecyl sulfate gel electrophoresis one protein band corresponding to a molecular mass of 27 kDa was obtained. Using gel filtration on Ultrogel AcA-44 a molecular mass of 40 kDa was measured. The amino-acid composition was determined and isoleucine and alanine were identified as the only N-terminal amino-acid residues. On isoelectric focusing four protein bands with isoelectric points of 5.60, 5.65, 5.70 and 5.85 were separated. The bimolecular velocity constant for the inhibition by diisopropyl fluoro phosphate was determined as 10.5 l x mol-1 x min-1. The dissociation constant Ki of the human pancreatic kallikrein-aprotinin complex was calculated to be 1.5 x 10(-10)M. The kinetic constants for the kallikrein-catalysed hydrolysis of Ac-Phe-Arg-OEt and D Val-Leu-Arg-Nan were determined. Immunological studies showed a close relationship between the human pancreatic kallikrein and other human tissue kallikreins, especially with human urinary kallikrein. Detergents such as Triton X-100, Tween 20 and lysolecithin, as well as human serum albumin, activated the human pancreatic kallikrein preparation.

Detergents↗

Human tissue kallikrein. II. Isolation and characterization of human salivary kallikrein.

Human salivary kallikrein was isolated from saliva using affinity chromatography on aprotinin-Sepharose and anti-human urinary kallikrein IgG-Sepharose followed by ion exchange chromatography on DEAE-Sepharose. The enzyme preparation had a specific activity of 950 U/mg protein towards the synthetic substrate Ac-Phe-Arg-OEt, a specific biological activity of 2000 KE/mg protein (measured in the dog blood pressure assay) and 0.64 HMW-kininogen-U/mg, corresponding to the liberation of 679 micrograms bradykinin equivalents per mg enzyme per min from HMW-kininogen (using the rat uterus test). In sodium dodecyl sulfate gel electrophoresis one protein band corresponding to a molecular mass of 32 kDa was obtained. The amino-acid composition was determined and isoleucin was found as the only N-terminal residue. The bimolecular velocity constant for the inhibition by diisopropyl fluorophosphate was determined as 8 l x mol-1 x min-1. The dissociation constant Ki of the human salivary kallikrein-aprotinin complex was calculated to be 0.7 x 10(-10)M. The Km and Vmax values for the hydrolysis of the synthetic substrates Ac-Phe-Arg-OEt and D Val-Leu-Arg-Nan were determined. In the enzyme immunoassay for human urinary kallikrein parallel binding curves were obtained.

Humans↗

[Epidemiology of chronic non-specific lung disease in persons employed in animal production].

In 2,091 agricultural workers (animal production, plant production, agrochemistry) the parameters of ventilatory screening FVC and FEV 1.0 were investigated, completed by determination of PaO2 in 1,324 persons with the intention of making evident differences of pulmonary function for diagnosis between these fields of activity. The persons employed in animal production showed more obstructive disturbances of ventilation and highly significantly lower values of PaO2 than the persons in plant production. The regression-coefficient b1 for the decrease of PaO2 in dependence on the duration of activity was more than double as high in animal production than in plant production. The exposure to organic dust (of irritative, allergenic, infectious, toxic action) must be regarded as the essential etiologic factor in animal production.

Adult↗

[Fractionated irradiations of the normal rabbit lung with fast neutrons or photons].

115 rabbits were irradiated with our usual fractionation scheme, and the dose effect curves for fast neutrons and photons (60Co) were determined with respect to pneumonitis and pulmonary fibrosis, respectively. On comparison of the radiogenic alterations three months after therapy, the relative biological effectiveness calculated by means of these dose effect curves was 2,9 for the fast neutrons. Furthermore, the authors tested the conformity of some clinical examination methods such as X-ray, scintigraphy and computed tomography with histological findings of pneumonitis and pulmonary fibrosis, respectively. In this regard, computed tomography was superior to the other examination methods.

Animals↗

Cellular lung dosimetry for inhaled radon decay products as a base for radiation-induced lung cancer risk assessment. I. Calculation of mean cellular doses.

Lung cancer induction is commonly regarded as the most important somatic risk arising from the inhalation of radon and its decay products. Relating carcinogenesis to radiation exposure needs a detailed knowledge of the cellular dose distribution in the human respiratory tract. Different dosimetric models have been developed for the determination of cellular doses, particularly for the basal cells of the bronchial epithelium which are considered as the critical cells for lung cancer induction. Part 1 of the paper describes the influence of various environmental as well as anatomical and physiological factors on the resulting dose. Significant inter- as well as intra-subject variabilities of structural components of the human lung, respiration characteristics and clearance mechanisms demonstrate the necessity of applying stochastic models in lung dosimetry.

Adolescent↗

Cellular lung dosimetry for inhaled radon decay products as a base for radiation-induced lung cancer risk assessment. II. Microdosimetric calculations.

Lung dose calculations for inhaled radon decay products presented in part I have revealed that mean basal cell doses are significantly dependent on various personal and environmental factors. Whereas these macroscopic dosimetric methods have been applied with great success to radiation protection problems, the interpretation of radiobiological effects, such as lung cancer incidence, needs some refinement of these methods. Energy deposition at the microscopic level as the physical input quantity and radiation carcinogenesis as the biological endpoint are by nature stochastic processes. Therefore, a microdosimetric model was developed taking into consideration the randomness of physical and biological parameters involved, Part II of the paper presents results on specific energy distributions in lung cells, demonstrating that single event density distributions together with the number of cells receiving single hits represent more appropriate parameters than mean radiation doses.

Alpha Particles↗