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Biomedical subjects

G Clark

Publications and source records attributed to G Clark.

At least 145 records · Page 8Linked to original sources

Laboratory studies on the immune effects of halogenated aromatics.

The effects of TCDD exposure on the developing immune system were investigated in Wistar/Fischer hybrid or Fischer rats. Fetal and neonatal rats were exposed to TCDD through maternal dosing (5 muk/kg) on day 18 of gestation and on days 0, 7, and 14 of postnatal life (group 1). Another group of neonatal rats was exposed to TCDD through maternal dosing on days 0, 7, and 14 of postnatal life only (group 2). Variable but significant effects on body weights and thymus/body weight ratios were found up to 133 days of age. Cell mediated immune functions were depressed up to 133 days of age in both groups but less severely in animals exposed only postnatally. Furthermore, TCDD suppressed cell-mediated immune functions without affecting humoral immune function. Adoptive cell transfer studies indicated suppression of T-cell functions was selective in that "helper" cell function was not suppressed. In other studies, the effects on lymphocyte function following brief exposure of spleens from B6C3F1 mice to TCDD in dimethylsulfoxide (DMSO) were investigated. DNA, RNA and protein synthesis were inhibited at concentrations less than 2 X 10(-7) M TCDD in DMSO. This concentration accounted for approximately 0.2 ng TCDD uptake per spleen. The structurally related chemicals 3,4,3',4'-tetrachlorobiphenyl and 1-amino, 3,7,8-trichlorodibenzop-p-dioxin did not show significant lymphocyte effects even at two-fold higher concentrations. The ability of lymphocyte mitogens to bind to their cell surface receptors was not affected by TCDD treatment. TCDD was slightly cytolytic to lymphocytes after 48 hours of culture. DMSO treatment alone was also slightly toxic to lymphoid cells as indicated by a 10--20% loss of cell viability, although this occurred within 4 hours after DMSO exposure. Studies were performed to investigate the effects of 2,3,7,8-tetrachlorodibenzofuran (TCDF) on immune function in adult Hartley guinea pigs. Animals received 6 weekly doses of either 0, 0.05, 0.17, 0.5 or 1.0 microgram TCDF/kg body weight. TCDF slightly depressed cell-mediated immune functions, particularly at the higher dose levels as indicated by decreased lymphocyte blastogenesis, delayed hypersensitivity reactions, and production of macrophage inhibitor factor. Additionally, thymus-to-body-weight ratios were slightly reduced in the 0.5 and 1.0 microgram dosage groups. Serum IgG levels and antibody titer to BGG did not differ from controls. These results indicate that TCDF-induced immunosuppression is similar to that of TCDD.

Animals↗

The assessing of acidophilia with Biebrich scarlet, ponceau de xylidine and woodstain scarlet.

Horobin and Bennion stated in 1973 that the bonding of Biebrich scarlet at an alkaline pH is hydrophobic as the isomers of Biebrich scarlet (ponceau de xylidine and woodstain scarlet) do not stain at that pH. If correct this would negate the use of Biebrich scarlet as proposed by Spicer and Lillie in 1961 as a measure of acidophilia. We have found all three isomers to stain similarly at an alkaline pH. Goldstein stated in 1963 that Biebrich scarlet saturated with urea stained elastic fibers only faintly or not at all. This we confirmed; we also found that the staining of other acidophilic structures (Paneth cell granules, sperm heads, etc.) was blocked. If only hydrogen bonding and not ionic bonding is blocked in an aqueous dye solution saturated with urea then the exact meaning of alkaline Biebrich scarlet staining is unknown.

Animals↗

Staining with chromoxane cyanine R.

Since Pearse in 1957 introduced chromoxane cyanine R as a dual nuclear and cytoplasmic stain there have appeared numerous procedures for use of this dye. These have differed widely, sharing in common mainly the implication that each is best. A defendable procedure has been developed on an experimental basis and is reported here. Four stock solutions are needed: (1) a 0.2% solution of chromoxane cyanine R in 0.5% aqueous H2SO4 (v/v); boil this solution for 5 min, (2) 10% FeCl3 in 3% HCl, (3) 1% aqueous HN4OH, and (4) 1% HCl in 70% ethanol. The staining solution: 40 ml of dye solution, 2 ml of FeCl3 solution, 8 ml H2O. Dewax and hydrate sections and stain for 10 min. If a myelin sheath stain is desired differentiate for 1 min in solution (3). For a nuclear stain differentiate for 1 min in solution (4). The nuclear stain when counterstained with eosin closely resembles the routine hematoxylin and eosin. Histochemical tests show that the functional group for myelin staining contains nitrogen, and probably hydrogen bonding is involved. The nuclear stain involves a different functional group and possibly neither electrostatic nor hydrogen bonding.

Acetylation↗

Displacement.

Displacement is a noncommital term for the reactions that occur when slides previously stained in phloxine or rose Bengal are immersed for varying lengths of time in a solution of another dye in ethyl Cellosolve. In most histotechnic texts Lendrum's (1947) phloxine-tartrazine is given as the stain for acidophilic inclusion bodies. However the lack between the phloxine and tartrazine has been a serious limitation. A number of dyes were tried as possible substitutes for the tartrazine. A rose Bengal-Bismark brown Y procedure was developed which stains similarly to Lendrum's phloxine-tartrazine and which does have the needed contrast. After staining for 10 min in 1% aqueous rose Bengal and rinsing in isopropyl alcohol slides are placed for 20, 30, 40 and 50 min in 0.05% Bismark brown Y in ethyl Cellosolve. In various tissues and structures the rose Bengal is sequentially displaced by the Bismark brown Y. Thus collagen loses the red stain after 30 min while acedophilic structures like sperm heads and Paneth cell granules retain the red stain after 50 min in the displacement solution. The results are strikingly similar to staining with alkaline Biebrich scarlet.

Animals↗