Waldenströms macroglobulinaemia associated with chronic renal failure and coexisting with kidney carcinoma.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to K Ostrowski.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
It has been found that ionizing radiation induces stable paramagnetic centers in the crystalline lattice of bone hydroxyapatite (HA). These defects, which can be detected and measured by electron spin resonance (ESR) spectrometry, can be treated as a new kind of biologic marker and used for the following: (1) evaluation of crystallinity of bone mineral, because the yield of these centers depends on the size of HA crystals; (2) quantification of the rebuilding process of radiation-sterilized bone grafts, because of the stability of the centers; and (3) estimation of the dose of ionizing radiation absorbed by living organisms, because of the linear relation between the dose of ionizing radiation and the yield of radiation-induced paramagnetic centers in bone mineral.
The effect of various doses of ionizing radiation on the osteoinductive properties of decalcified bone matrices implanted heterotopically and on the rate of remodeling of nondecalcified bone grafts implanted orthotopically in allogeneic systems was studied. Decalcified bone matrices and nondecalcified bone grafts were preserved by lyophilization or by deep-freezing and were subsequently irradiated with appropriate doses at room temperature or at -72 degrees. Lyophilized matrices irradiated at room temperature with 35 and 50 kGy, respectively, were completely resorbed five weeks after heterotopic implantation into the muscles and did not induce osteogenesis, whereas the resorption of deep-frozen ones irradiated with the same doses at -72 degrees was slower and new bone formation was induced. The preservation of the osteoinductive capacity of irradiated, deep-frozen matrices may depend on two factors: reduction of radiation damage on the inducing agents and collagen irradiated in the presence of water, which may diminish the rate of matrix resorption. The rate of remodeling of undecalcified deep-frozen bone implants irradiated at -72 degrees and grafted orthotopically was higher than that of lyophilized ones irradiated at room temperature. It is possible that the temperature during irradiation plays a critical role in protection against radiation damage.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
About 300 samples of bone tissue from femoral diaphyses and from parietal bones of calvaria were collected from human fetuses aged from 6-8 to 40-41 weeks in order to compare the kinetics of the mineralization process in endochondral and intramembranous bone formation. The crystallinity of bone mineral was evaluated by the method based on electron spin resonance (ESR) spectrometry, and mineral content was measured after ashing of the samples. Highly significant differences in the kinetics of deposition of mineral (ash content) and maturation of deposited mineral (crystallinity coefficient) were found between parietal bones and femoral diaphyses in the course of fetal development. In the early stages of development (6-8 to 10-12 weeks), the content of mineral and its crystallinity in parietal bones were significantly lower than in femoral diaphyses. In the parietal bones a gradual increase in both values was observed until they reached a plateau at the age of 30 weeks. On the other hand, in femoral diaphyses of 6-8-week-old fetuses mineral content was high and deposited mineral showed a high degree of crystallinity. Both these values did not change significantly until birth. The differences in kinetics of the mineralization process between the weight-bearing bones and bones that are not exposed to the influence of strong external forces are most probably genetically conditioned. The collected data supply embryological information and might be used in the future for evaluation of pathologic changes in skeletal development.
The effect of 1-hydroxyethylidene-1,1-bisphosphonate (HEBP) and dichloromethylidene-bisphosphonate (Cl2MBP) on the structure of the organic matrix of heterotopically induced bone in guinea pig was studied. Heterotopic bone formation was induced by transplantation of allogenic urinary bladder epithelium. Starting from the day of transplantation the animals were treated subcutaneously with HEBP and Cl2MBP with a dose of 12.5 mg P/kg/day during 35 days. The control group was injected with 0.9% NaCl solution. The advantage of heterotopic bone induction as an experimental model is the fact that the applied drugs act on de novo bone formation. Collagen fibers were treated as markers of bone because their size and spatial arrangement reflect the structure and maturity of organic matrix of this tissue. Decalcified histological sections of induced bone, taken 35 days after implantation of inductor, were stained by the picrosirius method. This staining enhances the natural birefringency of collagen fibers and allows for better and specific visualization of collagen fibers bundles under polarizing microscope. In this way the amount of information in the analysed image is increased. Thirty five microphotographs were analysed from each of the investigated groups with the use of optical diffractometry. The radial distribution of light intensity in diffraction patterns was analysed what allowed to evaluate spatial frequencies connected with the width of collagen bundles in induced bone tissue. Since the spatial arrangement of collagen fibers in newly formed bone is random, analysis of angular distribution of light intensity in diffractograms was not performed. Using discriminant analysis the significant differences between all three studied groups of animals were found.(ABSTRACT TRUNCATED AT 250 WORDS)
MO mouse cells in culture on glass were treated with taxol, or nocodazole, or incubated at 4 degrees C to alter their cytoplasmic microtubule complex (CMTC). From each treated group and from an untreated group, 30 cells stained with an antiserum against tubulin, were photographed under the photomicroscope, and negatives were analysed by optical diffractometry. Differences between groups of cells were tested by variance analysis. Phase-contrast micrographs of the same cells were used for Fourier analysis of cell shape. Both types of analyses provided numerical objective data about changes in the CMTC and in cell shape that were typical for the kind of treatment. We conclude that optical diffractometry of immunostained cells and Fourier analysis of cell shape are complementary to photomicroscopy for the study of the CMTC in cell populations cultured on an artificial substrate.
The rationale of the present investigation is the observations made by many authors of changes in the molecular structure of the cell surface during the multistep process of malignant transformation. These changes may influence cell-matrix and cell-cell interactions and thereby cause changes in cell adhesiveness and cell shape. The aim of the present work was to investigate whether the development of various grades of transformation in vivo and in vitro of human urothelial cells is accompanied by significant changes in cell shape as measured by Fourier analysis. The following transformation grades (TGr) have been defined (Christensen et al. 1984; Kieler 1984): TGr I = nonmalignant, mortal cell lines that grow independently of fibroblasts and have a prolonged life span. TGr II = nonmalignant cell lines with an infinite life span. TGr III = malignant and immortal cell lines that grow invasively in co-cultures with embryonic chick heart fragments and possess tumorigenic properties after s.c. injection into nude mice. Comparisons of 4 pairs of cell lines were performed; each pair was of the same origin. Two pairs--each including a TGr I cell line (Hu 961b and Hu 1703S) compared to a TGr III cell line (Hu 961a or Hu 1703He)--were derived from two transitional cell carcinomas (TCC) containing a heterogeneous cell population. Two additional cell lines classified as TGr II (HCV-29 and Hu 609) were compared to two TGr III sublines (HCV-29T and Hu 609T, respectively) which arose by "spontaneous" transformation during propagation in vitro of the respective maternal TGr II-cell lines.(ABSTRACT TRUNCATED AT 250 WORDS)
A common approach to the study of cell substrate interactions is the measurement of the attachment of cells to different substrates or to cultured cell layers. The evaluation of attachment is made either by scintillation counting of previously labelled adhering cells, or by light microscopy using the criterion of cell shape, sometimes refined by automatic image analysis. These methods have many drawbacks. This paper suggests the use of fluorescence-activated flow cytophotometry, (FC) which yields direct counts of the non-adhering cells. These "free" cells are removed after completion of the adhesion experiment from the microtitre plate wells. An internal standard, in the form of fluorescent polystyrene beads is added, allowing evaluation of the percentage of cells adhering to the well walls. Flow cytophotometry then produces data based on the analysis of large populations of cells. Unequivocal discrimination is obtained between the counted cells and counted fluorescent beads eliminating counting errors. The results can be processed on line by computer. A suspension of mouse splenocytes was used for the evaluation of the overall error of the method arising from inaccuracies in pipetting, interference of glutaraldehyde with ethidium bromide (EB) staining and instrumental error. Each adhesion experiment was terminated by staining and post-fixation and it was established that this introduces no change in cell counting, in comparison with the original unfixed cells. Prefixation, however, quenches the EB staining and would interfere with the counting procedure. The overall standard error of the technique was found to be 5%-10%.(ABSTRACT TRUNCATED AT 250 WORDS)
Bilateral testicular biopsies were obtained from 27 patients and submitted to two different treatments for each of them: firstly, a classical fixation and colouring, permitting the histopathological diagnosis and subjective appreciation of the degree of fibrosis; secondly, a new objective technique based on optical diffractometry: this method is based on the analysis of light intensity distribution in the diffraction pattern of an original image. Using two different methods of discriminant analysis, we observed some errors due to the subjective examination; in particular, several fibrosed samples had been judged as 'normal' by the histopathologist. Moreover, we showed the existence of some heterogeneity between different slides from the same original biopsy.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Various cell lines, including SV40 virus-transformed human and mouse fibroblasts, established fibroblastic and epithelial cell lines, as well as their hybrids were tested for osteoinductive properties versus presence of Concanavalin A receptors. No correlation was found between the presence of these receptors and osteoinductive properties of cells. So far, however, no osteoinductive cell line was found without Concanavalin A receptors. Thus, the significance of surface properties of cells in transmission of osteoinductive signal(s) remains an open question. None of the fibroblastic lines exhibits osteoinductive potential, in contrast to the HT-40 and WISH epithelial lines.
Explore the source record for details and available documents.