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At least 19 recordsLinked to original sources

Recently reported causes of contact dermatitis due to synthetic resins and hardeners.

This study is a survey of recent literature and my own observations concerning dermatological risks of processing and producing plastics. A plea for understanding and cooperation is directed to manufacturers, jurists, occupational physicians, safety engineers, toxicologists, allergologists, dermatologists, industrial and hobby workers, purchasers, consumers and other people involved in order to reach optimal knowledge about risks of processing, warnings and safety procedures.

Acrylamides

Use of an AR-1 resin column to reduce bilirubin-level in modified ascitic fluid.

Intractable ascites has been accompanied by significant jaundice in some patients. In such cases, a newly developed synthetic resin, AR-1, has been successfully employed to reduce excess bilirubin from the ascitic fluid. This resin has proved to be excellent compared with XAD-2, XAD-7 and activated charcoal, for removal of bilirubin from the plasma and ascitic fluid in our experiments. A column containing 100 ml of AR-1 is inserted in the drip infusion line between the modified ascitic fluid reservoir in the Autoascit device and the patient. This method has been used in 7 cases of intractable ascites associated with advanced gastric, pancreatic, hepatic, rectal and ovarian cancers. The column has sufficient capacity to adsorb excess bilirubin from the modified ascitic fluid. Other biochemical parameters were eseentially unchanged from pre-column values.

Acrylic Resins

A study of germ cell morphology and duration of spermatogenic cycle in the baboon, Papio anubis.

Biopsy and orchiectomy specimens were collected from two adult baboons (Papio anubis) at different intervals after intratesticular injection of H3-thymidine. Zenker-formol or Bouin's fixed materials were stained with PAS-Weigert-Hematoxylin and radioautographed using the H.S.R. (Harleco Synthetic Resin) coating technique. Morphological features of most germ cells appeared similar to those of other monkeys, except that the spermatids in steps 9 to 11 showed a spike-like projection of the acrosome. Also, the type A spermatogonia showed some resemblance to the human type A spermatogonia. The cell associations consisted of 12 stages and a large number of tubular cross sections showed the presence of two or more stages. In Papio anubis, the zygotene spermatocytes are formed in stage VIII, and spermatozoa are released during stages V and VI.

Animals

The use of a basic dye (azure A or toluidine blue) plus a cationic surfactant for selective staining of RNA: a technical and mechanistic study.

Selective purple staining of RNA-rich structures such as basophilic cytoplasms of exocrine pancreas and plasma cells, Nissl substance, and nucleoli was achieved by treating tissue sections as follows. Stain dewaxed sections for 1/2 hour in a dyebath containing 0.1% w/v axure A or toluidine blue and 1% cationic surfactant (Hyamine 2389, a 50% w/v aqueous solution of diisobutylphenoxyethoxyethyldimethylbenzylammonium chloride; or benzyldimethylammonium chloride, or cetylpyridinium bromide, or cetyltrimethylammonium bromide) buffered to pH 7 with phosphate. Rinse in water, blot, air dry and mount in synthetic resin. Intense purple staining of RNA-rich regions occurred after fixation in neutral formalin or in Carnoy's or Gendre's fluids, though satisfactory results were also found after fixation in acetone or alcohol. Chromatin generally stained a very pale azure after all fixations, though occasionally nuclei were unstained (Gendre's or Zenker's fluids). Subjecting tissue sections to acid hydrolysis or to digestion by RNAase eliminated or reduced the purple staining, but left the azure staining of nuclei unaffected. Satisfactory staining of RNA-rich structures was not critically dependent on the precise concentrations of dye, surfactant or inorganic salts in the dyebath, nor on pH, staining time or chemical nature of the surfactant. The staining patterns can be rationalized with a tissue model that considers both surface charge and permeability factors, since present in the dyebath are small dye cations and large cationic surfactant micelles. As micelles and dye will both quickly penetrate basophilic structures considered to be porous, such as chromatin, competition will then greatly reduce staining of such substrates. But the large micelles will only slowly penetrate regions considered to be more impermeable, such as basophilic cytoplasms, so consequently small fast moving dye ions may enter and stain without competition.

Animals

A simple fluorescence staining technique for the differentiation of human tissue transplanted into nude mice.

Human and mouse nuclei can be distinguished by differences in the constitutive heterochromatin when stained with quinacrine dihydrochloride. With the staining method described, mouse heterochromatin during interphase appears as brilliant fluorescent chromocenters. By replacing the commonly used aqueous buffer mounting medium with a xylene-diluted synthetic resin, the haziness of the nuclear fluorescence is eliminated thus allowing identification of the heterochromatin pattern in histological preparations. A requirement for the definite identification of cells of human or murine origin in the nude mouse is the knowledge that the heterochromatin arrangements changes according to the stage of differentiation of the cell of the position of a particular nucleus within the cell cycle.

Animals

A naphthol yellow S and erythrosin B staining procedure for use in studies of the acrosome reaction of rabbit spermatozoa.

Rabbit spermatozoa suspended in Krebs-Ringer-phosphate containing 0.25% glucose were smeared on polylysine-coated slides and dried in air at room temperature for 30 min at room temperature, blotted, rinsed in 1.0% aqueous acetic acid for 10-15 sec, drained and stained for 7 min in a mixture of equal parts of aqueous naphthol yellow S and erythrosin B (final concentration of each dye 0.1% w/v) at pH 4.6-5.0 (pH adjusted with acetic acid). Stained slides were well rinsed in distilled water adjusted to pH 4.6-5.0 with acetic acid, blotted, allowed to dry completely, rinsed in xylene and mounted in synthetic resin. Acrosomal caps were stained cherry-red (apical ridge) to pink (dorsal and ventral aspects); postnuclear caps stained pale pink; nuclei were either unstained or stained a very faint yellowish-pink. The mid-piece and flagellum were stained different shades of pink. The procedure is simple, rapid, and gives highly reproducible results. When present, acrosomes are easily detected regardless of the density of the smear.

Acrosome

27 Years of occupational dermatology in Finland.

A survey is given of the actual causes of occupational dermatoses and the variation in their incidence in a series of 4,529 patients seen at the out-patient clinic for skin diseases in the Institute of Occupational Health, Helsinki, and its precursor, during the 27-year period from 1946 to 1972. The overall incidence was highest for alkalis and detergents, cement, oil of turpentine and other solvents. Due to the increased use of synthetic resins in recent years a rise was seen in the frequency of eczema caused by these substances. Nevertheless, eczema due to rubber chemicals has also increased. The decreased incidence of turpentine eczema reflects its reduced use. In 45% of the cases the diagnosis was verified by positive epicutaneous tests. Of the 8,057 patients admitted because of a suspected occupational skin disorder, a non-occupational skin disease was diagnosed or the occupational origin remained unproved in 3,528 cases. The most important differential diagnoses and the differences in the location of the skin changes in the non-occupational as compared with the occupational group are discussed.

Chromates

[Persistance of epidermal sensitizations in occupational allergic contact eczemas (author's transl)].

Allergic contact eczemas occur in the region of Halle (DDR) in the chemical industry, in health services, in architecture, in the metal industry and in local logistics. In 732 cases of occupational eczemas, "para"-substances, chromates, plastic materials and adhesives, technical oils and fats, turpentine oil, dyestuffs and disinfectants were the principal noxious substances. Phenothiazine, synthetic resins and adhesives, nickel, turpentine oil, chromates, iodine, p-phenylendiamine, mercury compounds, etc. cause epidermal sensitizations that persist up to 10-12 years. Sensitized persons must strictly avoid these noxious substances, even in their para-professional shere; repeated tests should be abandoned because the epidermal sensitization might be "boosted".

Adolescent

Structural features determining the antibiotic potencies of natural and synthetic hop bitter resins, their precursors and derivatives.

Twenty-six hop bitter resins, some hitherto not investigated, were tested for antimicrobial activities. Gram-positive bacteria were much more sensitive than Gram-negative ones. The inhibitory effect against Bacillus subtilis 168 was measured by several methods and the general rule could be established that the antibiotic properties are mainly dependent on the hydrophobic parts of the molecules. Thus the acyl-lupuphenones (2-acyl-3,5-4,4',6-tri(3-methyl-2-butenyl)-cyclohexane-triones (1, 3, 5) having three prenyl and one acyl side chain are the most active substances. Their minimum inhibitory concentration (MIC) increases from the capro (0.5 muM) to the aceto derivative (11 muM). Any substitution with hydrophilic functions or loss of hydrophobic groups causes reductions in biological activity. This is most evident with the corresponding acyl-phloroglucine precursors (2-acyl-1,3,5-trihydroxybenzenes) which lack the three prenyl side chains (MIC, 110 to 5050 muM respectively). Conversion of the central six-membered ring structure into a five-membered one results in additional losses of antimicrobial activity. These findings support the proposal that the lipophilic region of the cell membrane represents the target site for the hop bitter resins.

Anti-Bacterial Agents

Impregnation of soft biological specimens with thermosetting resins and elastomers.

A new method for impregnation of biological specimens with thermosetting resins and elastomers is described. The method has the advantage that the original relief of the surface is retained. The impregnation is carried out by utilizing the difference between the high vapor tension of the intermedium (e.g., methylene chloride) and the low vapor tension of the solution to be polymerized. After impregnation, the specimen is subject to polymerization conditions without surrounding embedding material. The optical and mechanical properties can be selected by proper choice from various kinds of resins and different procedures, for example, by complete or incomplete impregnation. Acrylic resins, polyester resins, epoxy resins, polyurethanes and silicone rubber have been found suitable for the method. Excellent results have been obtained using transparent silicone rubber since after treatment the specimens are still flexible and resilient, and have retained their natural appearance.

Animals

Mutagenicity of resin acids identified in pulp and paper mill effluents using the Salmonella/mammalian-microsome assay.

Ten resin acids which have been identified as constituents of pulp and paper mill effluents have been examined for potential mutagenicity in the Salmonella/mammalian-microsome assay. Only neoabietic acid has been found to be mutagenic. Neoabietic acid showed dose-related increases in mutagenicity in strains TA1535, TA100, TA1538, and TA98, but not in strain TA1537. Metabolic activation with a preparation of Aroclor 1254-induced liver homogenate (S9) slightly reduced the mutagenic responses. Negative responses were found for abietic acid, dehydroabietic acid, levopimaric acid, 7-oxodehydroabietic acid, monochlorodehydroabietic acid, dichlorodehydroabietic acid, pimaric acid, isopimaric acid, and sandaracopimaric acid.

Acids