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Cellulosic building insulation versus mineral wool, fiberglass or perlite: installer's exposure by inhalation of fibers, dust, endotoxin and fire-retardant additives.

A task-specific exposure matrix was designed for workers installing building insulation materials. A priori, a matrix element was defined by type of task (installer or helper), type of work area (attic spaces or wall cavities) and type of insulation material (slabs from mineral wool, fiberglass or flax; loose-fill cellulosic material or perlite). In the laboratory a mock-up (full scale) of a one-family house was used for simulated installation of insulation materials (four replicates per matrix element). Personal exposure to dust and fibers was measured. The dust was analyzed for content of endotoxin and some trace elements (boron and aluminum) from fire-retardant or mold-resistant additives. Fibers were characterized as WHO fibers or non-WHO fibers. In support of the exposure matrix, the dustiness of all the materials was measured in a rotating drum tester. For installers in attic spaces, risk of exposure was low for inhalation of dust and WHO fibers from slab materials of mineral wool or fiberglass. Slab materials from flax may cause high risk of exposure to endotoxin. The risk of exposure by inhalation of dust from loose-fill materials was high for installers in attic spaces and for some of the materials risk of exposure was high for boron and aluminum. Exposure by inhalation of cellulosic WHO fibers was high but little is known about the health effects and a risk assessment is not possible. For the insulation of walls, the risk of installers' exposure by inhalation of dust and fibers was low for the slab materials, while a high risk was observed for loose-fill materials. The exposure to WHO fibers was positively correlated to the dust exposure. A dust level of 6.1 mg/m3 was shown to be useful as a proxy for screening exposure to WHO fibers in excess of 10(6) fibers/m3. In the rotating drum, slabs of insulation material from mineral wool or fiberglass were tested as not dusty. Cellulosic loose-fill materials were tested as very dusty, and perlite proved to be extremely dusty.

Aluminum Oxide↗

Subchronic inhalation study of stone wool fibres in rats.

Pathology results after subchronic inhalation in rats of three separate fibres representing the new biosoluble high-aluminium low-silica HT type stone wool are given, and the results were compared with the results from a similar study done with the traditional stone wool MMVF21. Male Wistar rats were exposed at one exposure level by nose-only inhalation to well-characterized fibre test atmospheres. The fibres had been size selected to be largely rat respirable. The target dose was an exposure to 150 long fibres/ml (length>20 microm) in each group, and this dose was achieved for all the fibres. The negative control groups were exposed to filtered air. The exposure duration was 6 h/day, 5 days/week for 3 months, with a subsequent non-exposure period lasting 3 months. The rats were killed 1 week after the last exposure and additional post-exposure kills were performed at 1.5 and 3 months to monitor the progression of pulmonary change and fibre numbers in the lung. The assessments included bronchoalveolar lavage fluid (BALF) for evaluation of inflammatory response (e.g. protein content, enzymes, increase in polymorphonuclear leucocytes) and measurement of cell proliferation, assessment of early fibrosis through histological examination and comparison of body weight and lung lobe weights. After exposure of rats to the new biosoluble fibres no biologically significant effects were observed except that a statistically significant increase in lung weight was observed up to 1.5 months post-exposure in all three treatment groups. At 3 months post-exposure, the small increase was no longer significant. The increase in lung weight was still present in the MMVF21 group at the 3 months post-exposure kill. After 3 months exposure, lung retention of long fibres (length>20 microm) varied from 0.4 to 5.2 x 10(6) per lung for the biosoluble fibres. At 3 months post-exposure, the long fibre concentration in the lungs had decreased to 1-7% of this figure. The fibre with the relatively highest biopersistence (RIF41001) showed the highest fibre retention. The retention of the more biopersistent traditional stone wool MMVF21 was 5.7 x 10(6) per rat lung after 3 months exposure and had decreased to 64% of this figure at 3 months post-exposure. There was no clear difference in the bronchoalveolar lavage fluid cell concentration and percentage of cells between MMVF21 and the HT groups. Fibre inhalation caused a significant increase after 3 months in all the biochemical parameters measured in the BALF. Cell proliferation was enhanced at the end of exposure for MMVF21 for all three labelling indices, but only for the bronchiolar epithelium in the RIF41001 group and for alveolar parenchymal cells in the RIF43006-1 group. At the termination of the 3 month exposure period, as well as after 1.5 and 3 month recovery periods, minimal morphological changes were diagnosed in the biosoluble fibre groups. These changes included alveolar macrophage aggregation and/or microgranulomas at the bronchiolar-alveolar junction in the few rats affected. No fibrogenic potential was noted for any of the three fibres. No clear-cut difference between the different biosoluble fibre types was noted. In the MMVF21 group, minimal interstitial fibrosis was observed that gradually decreased after the 1.5 and 3 month non-exposure periods. In this study, the pathological changes found in the lungs of exposed rats were in accordance with the pathology previously reported from full lifespan inhalation studies. This may indicate that for fibres belonging to the man-made vitreous fibres group a well conducted biopersistence study is sufficient to predict possible pathogenic effects for new fibre types. The biological parameters examined in a 90 day study may indicate little additional information to contribute to the prediction of the outcome of carcinogenicity studies.

Administration, Inhalation↗

Rapid and inexpensive recovery method of DNA fragments from agarose and polyacrylamide gels by a cotton-wool column tube.

We developed a rapid, convenient, simple, and inexpensive method for isolating pure DNA from agarose and polyacrylamide gels using cotton wool tubes. DNA fragments ranging in size from 193-23,130 bp can be easily recovered within 2 hours by centrifugation through cotton wool from gel slices. The recovery rate of this method is 35% to 50%, when estimated for isolation of lambda DNA-HindIII fragments. We have also recovered 700-bp polymerase chain reaction (PCR) products using cotton wool tubes from electrophoresis on both a 0.8% agarose gel and a 6% polyacrylamide gel, in which satisfactory yields of more than 50% were obtained. The DNA thus recovered in this way is biologically active and can be used as a substrate for further experimental procedures without additional purification steps.

Bacteriophage lambda↗

Synergistic effect of TEST--yolk buffer treatment and glass wool filtration of spermatozoa on the outcome of the hamster oocyte penetration assay.

Enhanced penetration of zona-free hamster oocytes occurs after spermatozoa have either been treated with TEST--yolk buffer or processed by glass wool filtration. The present study was conducted to determine if a synergistic effect on fertilizing ability could be achieved by combining these two treatments. Ejaculates (n = 16) were treated with TEST--yolk buffer (TYB) and divided into two aliquots. One aliquot was kept as control and the other aliquot was filtered through glass wool prior to the sperm penetration assay. The TYB--glass wool filtered spermatozoa penetrated a significantly higher percentage of oocytes than the TYB treated spermatozoa.

Animals↗

Cotton-wool spots.

A series of 24 consecutive patients presenting with a fundus picture characterized by a predominance of cotton-wool spots, or a single cotton-wool spot, is reported. Excluded were patients with known diabetes mellitus. Etiologic conditions found included previously undiagnosed diabetes mellitus in five patients, systemic hypertension in five patients, cardiac valvular disease in two patients, radiation retinopathy in two patients, and severe carotid artery obstruction in two patients. Dermatomyositis, systemic lupus erythematosus, polyarteritis nodosa, leukemia, AIDS, Purtscher's retinopathy, metastatic carcinoma, intravenous drug abuse, partial central retinal artery obstruction, and giant cell arteritis were each found in one patient. In only one patient did a systemic workup fail to reveal an underlying cause. The presence of even one cotton-wool spot in an otherwise normal fundus necessitates an investigation to ascertain systemic etiologic factors.

Adult↗

Nerve fiber bundle visual field defect resulting from a giant peripapillary cotton-wool spot.

Cotton-wool spots are the clinical manifestation of focal infarcts of the retinal nerve fiber layer. They rarely cause significant visual field loss. A large idiopathic cotton-wool spot in a 34-year-old healthy woman caused a nerve fiber bundle visual field defect and an afferent pupillary defect that remained after the cotton-wool spot had disappeared and the retina and optic nerve appeared normal.

Adult↗

Measured anisotropic air flow resistivity and sound attenuation of glass wool.

The air flow resistivity of glass wool has been measured in different directions. The glass wool was delivered from the manufacturer as slabs measuring 100x600x900 mm3, where the surface 600x900 mm2 was parallel with the conveyor belt used in the manufacturing. Directions in the glass wool are described by a coordinate system with the X axis perpendicular to the conveyor belt, the Z axis in the direction the conveyor belt moves, and the Y axis perpendicular to the two other axes. It was found that the resistivities in the Y and Z directions were equal in all cases. For density 14 kg/m3 the mean resistivity in the X direction was 5.88 kPa s m(-2) and in the Y direction 2.94 kPa s m(-2). For density 30 kg/m3 the mean resistivity in the X direction was 15.5 kPa s m(-2) and in the Y direction 7.75 kPa s m(-2). A formula for prediction of resistivity for other densities is given. By comparing measured values of sound attenuation with results calculated from resistivity data, it is demonstrated that the measured attenuation can be predicted in a simple manner.

Journal Article↗

Recovery of protein from urine specimens collected in cotton wool.

Cotton wool balls have been used to aid the collection of urine from infants. Concentrations of two urinary proteins, albumin and retinol binding protein, decreased by 40 and 80% respectively within 15 minutes of contact with the cotton wool. Cotton wool balls should not be used when investigating proteinuria.

Female↗

Half-life of cotton-wool spots in the acquired immunodeficiency syndrome.

Cotton-wool spots are a hallmark of human immunodeficiency virus (HIV) retinopathy in the acquired immunodeficiency syndrome (AIDS). We analysed the half-life of cotton-wool spots in AIDS in a prospective study, and found the average time to disappearance to be 6.9 weeks. HIV retinopathy differs from diabetic retinopathy in having a smaller size cotton-wool spot and a much shorter half-life, suggesting a patchy involvement of the retinal capillaries in AIDS and a widespread capillary disease in preproliferative and proliferative diabetic retinopathy.

Acquired Immunodeficiency Syndrome↗

Comparison between swim-up and glass wool column filtration of human semen in a gamete intrafallopian transfer program.

This study compared swim-up and glass wool filtration in both pregnancy outcome and fertilization of excess oocytes in patients undergoing gamete intrafallopian transfer. Gamete intrafallopian transfer patients were retrospectively included in the study group (n = 52). The criteria for inclusion were as follows: Semen had to have been prepared by means of glass wool filtration and at least 2 metaphase II oocytes had to have been transferred. Each patient from this group was then carefully matched with another patient according to specific criteria (number of metaphase II oocytes aspirated and transferred, normal sperm morphology, wife's age, the absence of anti-sperm antibodies, semen preparation by means of the swim-up procedure). Fourteen patients were matched with themselves (groups A1 and A2) and 38 patients were matched with another patient (groups B and C). The results indicate that there was no significant difference in the fertilization and pregnancy probabilities of sperm prepared by means of glass wool filtration or swim-up procedure. The comparative pregnancy rates for the groups were A1 (7.1%) versus A2 (7.1%) and B (28.9%) versus C (31.6%). Factors other than fertilization and pregnancy potential may have a greater influence on choosing the optimum sperm preparation procedure.

Female↗

Nylon wool column separation of chicken thymic-derived (T) and bursal-derived (B) lymphocytes.

Since the original work of Julius et al. (1973), the nylon wool technique has become a standard laboratory procedure for separating cell populations and obtaining relatively pure populations of T and B cells. While this technique has been applied to a number of different animal systems, it had, to our knowledge, neither been qualitated nor quantitated in the chicken. One passage of chicken splenic lymphocytes through a nylon wool column yields an enriched T cell population in the effluent fraction and an enriched B cell population in the column fraction. As in the murine system, we found fractionation of chicken splenic cells by nylon wool to be a rapid method for enrichment of both T and B cell populations. It is emphasized, however, that each passage should be monitored to check the relative purity of the two cell populations.

Animals↗

Discolouration of wool: 1 green discolouration.

Since 1974 green bacterial discolouration of Merino wool was frequently encountered in the Karoo and Eastern Cape areas. The occurrence of this condition coincided with the extraordinary wet conditions that prevailed during this period. Pseudomonas aeruginosa was recovered in almost pure culture from affected wool of 24 out of 25 different sheep. The role played by this particular organism was fonfirmed by the successful reproduction of this condition after exposure of unaffected sheep to cultures of Ps. aeruginosa isolated from green wool.

Animals↗

Cotton-wool spots associated with pancreatic carcinoma.

BACKGROUND: Malignant tumors of different organs may cause changes in the eye. PATIENTS: A 62-year-old woman and a 47-year-old man who both had a metastasizing carcinoma of the pancreas suffered from visual disturbances. RESULTS: The 62-year-old woman experienced cloudy vision in her left eye. The 47-year-old man noticed a left visual deterioration. Both patients exhibited cotton-wool spots in both eyes. In addition, the man revealed a metastasis of the choroid in the right eye. The woman was treated with Gemcitabine (1999), and the man with 5 Fluo-Uracil/Leukovorin (1997). The cotton-wool spots were reduced in size in the woman after treatment with Gemcitabine. The patients had no diabetes mellitus and no arterial hypertension. After termination of treatment, their general condition deteriorated and they died within a few weeks. CONCLUSION: Cotton-wool spots are unusual findings in the retina of a metastasizing carcinoma, suggesting the presence of a retinal ischemia. Therefore, early screening of patients with metastasizing pancreas carcinoma for retinal abnormalities may be important.

Adrenal Gland Neoplasms↗

[The determination of serum amino-terminal procollagen type-III propeptide (PIIINP) in occupational exposure to rock wool fiber].

Fifty-six males workers exposed to rock wool during production, and 20 referents were examined. Exposure, evaluated by personal sampling, ranged from 0.05 to 0.74 fibres/ml (median 0.15). The subjects underwent a medical examination, chest X-ray according to ILO recommendations and pulmonary function tests. In all subjects the serum levels of type III procollagen N-terminal propeptide (PIIINPs) were determined. No evidence of pulmonary fibrosis, nor work-related lung diseases were observed. PIIINPs mean values in the exposed (9.8 ng/ml; 2.8 S.D.) were slightly higher, but not significantly different when compared to referents (8.5 ng/ml; 2.5 S.D.). No significant correlation between PIIINPs and rock wool exposure (both airborne levels and exposure duration) was observed. Furthermore, peptide levels were not related to pulmonary function test results. Our results suggest that occupational exposure to rock wool fibres lower than 0.75 fibres/ml for less than 20 years does not induce definite cases of pulmonary fibrosis nor an increase of type III collagen synthesis in the lung.

Air Pollutants, Occupational↗

[The pathogenesis of cotton-wool spots].

Cotton-wool spots have been recognized as distinct ophthalmoscopic entities, yet the pathogenesis of these lesions has not been fully appreciated until now. Cotton-wool spots should be regarded as localised accumulations of axoplasmic debris in the retinal nerve-fibre lay, which result from interruption of axoplasmic transport. Cotton-wool spots could be found especially in diabetic retinopathy, retinopathy from nephropathy, collagen diseases, retinal vein occlusions and cachexia. Any factor responsible for local interruption of axonal flow in the retinal nerve-fibre layer will give rise to similar accumulations, although, pathogenically speaking, the cause is usually ischaemia.

Axonal Transport↗

A nylon wool filter coated with human immunoglobulin for rapid depletion of monocytes and myeloid cells from peripheral blood stem cell transplants.

The aim of this study was to develop an inexpensive method for reducing the number of differentiated cells from granulocyte colony-stimulating factor-mobilized leukocytapheresis products (LPs) containing peripheral blood stem cells. Analysis of LPs showed the presence of significant numbers of monocytes and myeloid cells. The myeloid cells represented largely immature stages of the granulocyte lineage (myelocytes and metamyelocytes). We investigated whether these cells could be selectively depleted by filtration over nylon wool. Filtration of LP samples over nylon wool in a medium containing fetal calf serum resulted in variable but on average low yields of CD34+ cells (48 +/- 30%; n=13) and strongly variable depletions of myeloid cells. The adherence of CD34+ cells to the polyamide fiber was partially mediated by activated platelets that were present in the LPs. Removal of platelets by counterflow centrifugal elutriation before filtration resulted in increased yields of CD34+ cells in the filtrates (65 +/- 13%; n=10). The yield of progenitor cells was similarly enhanced when trisodium citrate, a chelating substance, was added to the filtration medium. Adherence of the myeloid cells to the nylon fiber was promoted by preincubation of the columns with human immunoglobulin (Ig) (2 mg/mL). Small-scale filtrations of LP samples in the presence of trisodium citrate over columns with Ig-coated nylon wool resulted in removal of 96 +/- 4% of the monocytes and 74 +/- 18% of the myeloid cells, with a yield of 71 +/- 15% CD34+ cells and 67 +/- 10% granulocyte-monocyte colony-forming units (CFU-GM) (n=23). There was no loss of primitive stem cells during the procedure: the yield of late-appearing cobblestone area-forming cells (CAFCs, week 6) was 110 +/- 30% (n=4). CFU-GM production per CAFC-derived clone was unchanged upon filtration, indicating that the quality of stem cells was not affected. Moreover, the proportions of CD34+ cells expressing a primitive immunophenotype (CD38low or Thy-1+) were unchanged after filtration. Further enrichment of progenitor cells was obtained by separation of LP samples by elutriation before filtration. The combination of these two techniques resulted in complete removal of platelets, 89 +/- 7% depletion of erythrocytes, and 91 +/- 6% reduction of leukocytes, with a 50% yield of CD34+ cells (n=14). In conclusion, we have developed a rapid filtration technique by which monocytes and myeloid cells can be depleted from LP samples, with only minor loss of colony-forming cells and complete recovery of primitive stem cells.

Animals↗

The analysis of Merino wool cuticle and cortical cells by Fourier transform Raman spectroscopy.

Wool fibers are comprised of proteins known as alpha-keratins and have a complex morphological structure. The major components of this structure, the cuticle and cortical cells, differ in the conformations of their chains as well as their amino acid compositions. High quality Fourier transform Raman spectra of cortical and cuticle cells isolated from fine Merino wool fibers have been obtained. Raman spectroscopy has been shown to be sensitive to the differences in both secondary structure and amino acid composition. The cortical cells were found to be higher in alpha-helical content as compared to the cuticle cells, which had an increased disordered content. Specific information, consistent with amino acid analysis results, regarding cystine, tyrosine, tryptophan, and phenylalnine residues, were obtained for both the cortical and cuticle cells. In addition, the Raman spectra provided information about free thiol groups, amino acids residues with amide group side chains, and residues with protonated carboxyl group side chains. Middle ir transmission spectra of these isolated cells were also obtained. In comparison to the Raman data, the middle ir spectra were found to be not as rich in information.

Amino Acids↗

Keratin orientation in wool and feathers by polarized raman spectroscopy.

Good quality polarized Raman spectra of a single wool fiber and an intact feather barbule are presented. The intensity ratio of the alpha-helix component of the amide I band measured parallel and perpendicular to the wool fiber axis was 0.39 +/- 0.05. This is consistent with theoretical predictions based on orientational calculations using the normal Raman polarizability tensor for an alpha-helical amide I band where the protein strands are aligned roughly parallel with the fiber axis. However, the depolarized spectral intensity of the alpha-helix mode was greater than expected. For the feather barbule, despite high quality spectra, a unique orientation of the beta-sheet structure could not be determined using the Raman intensity ratios of the amide I band alone. Using previously developed methods, the protein chains were found to be oriented between 60 and 90 degrees from the long axis of the barbule compared to an angle of 51 degrees calculated from polarized IR spectra of the same barbule. The Raman tensor methods for the determination of protein orientation in these fibers was found to be constrained by the complexity of the materials and the limitations of the band fitting methods used to apportion the intensity among the various vibrational modes of their spectra. Other advantages and limitations of polarized Raman microscopic methods of structural determination are discussed.

Animals↗