Training hospital R.N.s in home care streamlines processes, ups income.
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Biomedical subjects
Publications and source records attributed to A Caplan.
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Biologically relevant concentrations as low as 500 microM spermine led to the specific release of chromatin-associated proteins from nuclei of rice (Oryza sativa) seedlings. Using a southwestern technique, it was shown that several of these proteins bind DNA. This affinity was lost upon in organello phosphorylation by an endogenous kinase. The effect of spermine was very specific. Spermidine was far less effective and putrescine was essentially ineffective in releasing these proteins. The most abundant spermine-released protein was shown to be homologous to the maize HMG1 protein. Our results suggest that spermine induces the release of spermine-released proteins by changing DNA conformation. Binding of these proteins might be sensitive to long-range changes in chromosome structure caused by torsional stress.
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In humans, the prenatal transfer of IgG from mother to foetus is facilitated by a receptor for IgG on the placenta. However, amniotic fluid contains IgG of maternal origin, and transfer of swallowed IgG into the circulation from the foetal intestine represents another potential pathway of passive immunization. In this study we assayed for a foetal intestinal IgG receptor to support the hypothesis of this alternate pathway of antibody transfer. Microvillous membrane (MVM) from small bowel of aborted foetuses (18 weeks gestation) were probed with [125I]IgG to detect specific IgG binding sites. Binding was pH dependent and was maximal at pH 6. Competitive inhibition of the binding of [125I]IgG was noted with the addition of increasing amounts of unlabelled IgG. Scatchard analysis showed one binding site with a dissociation constant of 1.58 x 10(-7), similar to that of the IgG receptor described on the suckling rat intestine. The binding of labelled IgG to the human MVM receptor was Fc mediated. These observations provide evidence for an Fc receptor on the human foetal intestine.
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This laboratory has developed a semiquantitative scale for grading the natural healing process of defects drilled into articular cartilage. The scale is composed of four parameters: percent filling of the defect, reconstitution of the osteochondral junction, matrix staining and cell morphology; it has a score range from 0 (best) to 14 (worst). The scale was used to evaluate the healing of defects drilled into rabbit knee articular cartilage at 2, 14, 30, 60 and 120 days after surgery. No statistically significant difference in the graded score was found between the two different defect sizes (2.7 and 1.5 mm). However, the differences in score observed between specimens from different sacrifice times were significant (p less than 0.01). Currently many investigators are manipulating cartilaginous lesions in an attempt to improve healing, and this scale will provide a means for quantitatively comparing results from control and experimental groups.
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A vector containing a transcriptionally inactive neomycin phosphotransferase II gene was used to select promoter sequences from a pool of random genomic DNA fragments. This paper describes how one such sequence (P4.7) isolated from Oryza sativa acts as a hormonally regulated promoter in Nicotiana tabacum. Relative expression ratios in leaf, root, midrib, callus, and stem tissue of tobacco plants are 1:5:4:10:17. Histochemical assays show that P4.7 activates the uidA reporter gene throughout the phloem and cortex of tobacco stems. Transcription from the P4.7 fragment is inducible in leaf tissue by low levels of alpha-naphthalene acetic acid or 6-benzyl-aminopurine, even when cell proliferation is inhibited by colchicine or hydroxyurea. Conversely, 1% DMSO was found to inhibit activation of P4.7 without interfering with callus formation. The fragment contains TATA and CAAT sequences normally found at the 5' end of many plant genes, and an additional region homologous to sequences located in similar positions in a variety of similarly regulated promoters. Promoter deletion and fusion experiments have indicated the location of a stem enhancer element in P4.7. The promoter trap system we have described may potentially be used to characterize transcriptional factors common to monocot and dicot species.