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Biomedical subjects

H Beasley

Publications and source records attributed to H Beasley.

15 recordsLinked to original sources

Human recombinant soluble decay accelerating factor inhibits complement activation in vitro and in vivo.

Complement plays a role in activating the inflammatory response and has been implicated in the pathogenesis of some inflammatory diseases. With a view toward controlling unwanted C activation, we evaluated the C regulator, human decay accelerating factor (DAF). Three forms of recombinant DAF were purified from transfected Chinese hamster ovary cells: glycophosphatidylinositol (GPI)-linked membrane DAF (mDAF) extracted from cell membranes; spontaneously shed soluble DAF (sDAF) derived from mDAF; and a novel secreted protein (seDAF), generated by deletion of the signal for GPI attachment. We show that all three molecules inhibit both the classical and alternative pathways of C activation. The following observations indicate that mDAF extracted from Chinese hamster ovary cells reincorporates into RBC membranes via its GPI anchor: 1) cells that are preincubated with mDAF and then washed remain fully protected from C-mediated hemolysis; 2) incubation with phosphatidylinositol-specific phospholipase C abolishes this protection; and 3) sDAF and seDAF, which lack a GPI anchor, do not associate with cell membranes. mDAF is a more potent inhibitor of C-mediated hemolysis than either sDAF or seDAF, suggesting that incorporation into cell membranes greatly enhances the efficiency with which DAF inhibits C activation on the cell surface. In contrast, C activation in the fluid phase is inhibited by sDAF and seDAF, but not by mDAF, possibly due to interference by serum lipoproteins. A reversed passive Arthus reaction in guinea pigs was used to evaluate the ability of recombinant seDAF to inhibit C activation in vivo. When administered at dermal sites, seDAF reduced the severity of immune complex-mediated inflammatory reactions induced by a reversed passive Arthus reaction, as judged by both gross and histologic examination. These data indicate that seDAF may be useful as an anti-inflammatory therapeutic.

Animals

Multicenter trial of an intraocular hydrogel lens implant.

Several features suggest that hydrogels may have potential advantages as an intraocular lens material. The IOGEL lens is a single piece hydrogel composed of 38% poly HEMA. Clinical experience with the IOGEL lens in Australia has been published, and the safety and efficacy of the lens is currently being investigated in a multicenter trial in Europe, the U.S.A., Canada, Australia, and Japan. This is the first large-scale study of a hydrogel implant. The IOGEL lens clinical study was initiated in May 1986 in Europe, in September 1986 in the U.S.A., and in November 1986 in Canada and Australia. The enrollment progress in May 1987 showed that 501 cases had been implanted in Europe, Canada, and Australia and 100 cases in the U.S.A. The visual acuity outcome is equivalent to that reported in the literature. Patients in the multinational trial achieved 20/40 or better in 86% of cases and in 96% of cases excluding unrelated pathologies. Although hydrogels have only had limited use in the clinical situation, the results of this study suggest that the IOGEL lens is a viable alternative to polymethylmethacrylate lens implants.

Clinical Trials as Topic

Retinal detachments and topical ocular miotics.

There is increasing suspicion that topical ocular miotic therapy in selected persons may precipitate retinal detachments. This is a rare event and probably does not occur in patients free of retinal pathology. Data supporting a possible cause and effect relationship, obtained from the National Registry of Drug-Induced Ocular Side Effects, a survey of the Retina Society, medicolegal decisions, and a review of the literature, is presented.

Administration, Topical

Chloramphenicol in aqueous humor after topical application.

Chloramphenicol 0.5% ophthalmic solution was applied topically to patients at various times before cataract surgery. The aqueous humor was obtained at the time of surgery and analyzed for chloramphenicol content by thin-layer chromatography. Aqueous humor chloramphenicol levels ranged from 3.5mn-g/ml to 6.7mn-g/ml at the initial sampling period one to two hours following topical administration. Chloramphenicol was measurable in samples for up to five hours following administration. The compound measured in the aqueous humor samples was chemically identified as intact chloramphenicol, and no metabolites of chloramphenicol were shown.

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