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Biomedical subjects

D A Davidson

Publications and source records attributed to D A Davidson.

15 recordsLinked to original sources

Physical abuse of preschoolers: identification and intervention through occupational therapy.

Child abuse is a major public health concern in the United States, one that has negative consequences on abused persons' productivity and mental health throughout their lives. Occupational therapists who work with preschool-aged children are in a strategic position to screen for physical abuse and aid in the rehabilitation of children and families engaged in abuse. This article provides a review of the literature and accounts of clinical experience with children and families in a variety of settings. It offers an overview of behavioral risk factors that have been shown to correlate with physical abuse, including how these factors can be observed within the context of an occupational therapy evaluation. Guidelines for interacting with child protective services via reporting suspected cases of child abuse and working collaboratively with such agencies are provided. Strategies for occupational therapy intervention with abused children and their parents are described. These strategies include using activities to facilitate positive parent-child interaction, educating parents regarding child development and management techniques, and facilitating children's psychosocial development.

Child↗

Evidence for separate receptors for insulin and insulin-like growth factor-I in choroid plexus of rat brain by quantitative autoradiography.

Binding of insulin and insulin-like growth factor-I (IGF-I) to the choroid plexus was quantitatively characterized using autoradiography and computer densitometry. Slide-mounted brain slices were incubated in 0.1 nM [125I]-insulin or [125I]-[Thr59]IGF-I. To determine specificity of the binding sites, the labeled peptides were mixed with unlabeled analogues. Autoradiography was done with LKB Ultrofilm and analyzed with a computer image analysis system and program for densitometry. Results showed that binding was time and temperature dependent and reversible. Binding of the iodinated insulin and IGF-I was inhibited by unlabeled peptides in a dose-dependent manner. The rank order of potency of these peptides in competing for the choroid plexus iodoinsulin binding sites was: chicken insulin greater than porcine insulin greater than desoctapeptide insulin greater than IGF-I. IGF-I was more potent than porcine insulin in competing for the choroid plexus iodolGF-I binding sites. Somatostatin was ineffective. Non-linear regression analysis revealed the presence of high- (Kd 1.3 +/- 0.2 nM) and low-affinity (Kd 36 +/- 1.4 nM) binding sites for insulin and a single high-affinity binding site (Kd 3.1 +/- 0.3 nM) for IGF-I in the choroid plexus. There were approximately 50 times more binding sites (Bmax) for IGF-I than for insulin high-affinity sites, whereas the number of low-affinity sites for insulin was about equal to the number of IGF-I high-affinity sites. The results of these binding studies with iodinated insulin and [Thr59]IGF-I support the conclusion that the rat choroid plexus has separate high-affinity receptors for insulin and IGF-I, and that the IGF-I receptors outnumber the insulin receptors.

Animals↗

Selective inhibition of arachidonic acid metabolite release from human lung tissue by antiinflammatory steroids.

The effects of antiinflammatory steroids on arachidonic acid metabolite release from human lung fragments were analyzed. Incubation of lung fragments for 24 hr with 10(-6) M dexamethasone inhibited the net release of the prostacyclin metabolite 6-keto-PGF1 alpha, PGE2, and PGF2 alpha from lung fragments stimulated with anti-IgE but failed to inhibit the anti-IgE-induced release of PGD2, TXB2, and iLTC4. The IC50 of dexamethasone for inhibition of both spontaneous and anti-IgE-induced 6-keto-PGF1 alpha release was approximately 2 X 10(-8) M, and a 6-hr preincubation with the drug was required for 50% inhibition of prostaglandin release. Other agents were tested for activity in stimulating arachidonic acid metabolite release from human lung fragments. FMLP (fmet-leu-phe) stimulated the release of all metabolites tested (6-keto-PGF1 alpha, PGD2, PGE2, PGF2 alpha, TXB2, iLTC4); platelet-activating factor (PAF), but not lysoPAF, stimulated the release of PGD2, TXB2, and iLTC4. In contrast to the case with anti-IgE, where dexamethasone failed to inhibit net PGD2 and TXB2 release, the steroid inhibited the release of these metabolites stimulated by both FMLP and PAF. The steroid inhibited iLTC4 release induced by the highest concentration of PAF (10(-6)M) but did not inhibit iLTC4 release stimulated by either 10(-7) M PAF, FMLP, or anti-IgE. Because neither FMLP nor PAF caused the release of PGD2 or TXB2 from purified human lung mast cells, and because they also failed to induce histamine release from lung fragments, it is suggested that these stimuli produce PGD2 and TXB2 release in lung fragments through an action on a cell distinct from the mast cell. This suggestion is supported by the selective inhibition of the release of these arachidonic acid metabolites by dexamethasone. We suggest that the inhibitory action of steroids on arachidonic acid metabolite in human lung fragments contributes to their therapeutic efficacy in pulmonary diseases.

Anti-Inflammatory Agents↗

Quantitative autoradiographic evidence for insulin receptors in the choroid plexus of the rat brain.

Techniques of in vitro receptor autoradiography were used to visualize binding of 125I-insulin on slices of frozen rat brain. Slide-mounted sections of frozen rat brain were incubated in 0.05 nM porcine 125I-monoiodoinsulin, alone or mixed with 1 microM unlabeled porcine insulin, ribonuclease, or glucagon, for 2 h at 22 degrees C. The labeled brain slices were apposed to LKB Ultrofilm to generate autoradiograms. The method permitted equal access of labeled insulin to both sides of the blood-brain barrier and localization of insulin binding sites in small anatomic regions. Quantitative estimates of specific iodoinsulin binding were made by computer digital image densitometry of the autoradiographic film images. High concentrations of specific binding sites for iodoinsulin were present in the choroid plexus of the lateral (26.9 +/- 2.0 X 10(-3) fmol/mm2), fourth (18.3 +/- 3.0 X 10(-3) fmol/mm2), and third (13.2 +/- 1.5 X 10(-3) fmol/mm2) ventricles (insulin binding is expressed per unit area of autoradiographic image). Binding to the third ventricular choroid plexus was similar to the concentrations observed for liver slices and the external plexiform layer of the olfactory bulb. Specific binding of iodoinsulin in the cingulate cortex and other surrounding regions was less than in choroid plexus. Ribonuclease or glucagon had no measurable effect on binding when mixed with labeled insulin. The results support the hypothesis that the choroid plexus has a high density of receptors for insulin, and suggests that the choroid plexus may be a target of CSF insulin action and/or a site of insulin transport into the CSF.

Animals↗

Inhibition of human basophil leukotriene release by antiinflammatory steroids.

We have previously shown that 24-hour culture of human basophils with the antiinflammatory steroid dexamethasone produces an inhibition of the IgE-dependent release of histamine. In contrast, similar treatment of purified human lung mast cells does not inhibit the subsequent release of either histamine, prostaglandin D2, or leukotriene (LT) C4. We now show that incubation of mixed leukocytes for 24 h with 10(-7) M dexamethasone produces an inhibition of anti-IgE-induced basophil LTC4 release as detected by radioimmunoassay. In three experiments, control (CON) and dexamethasone (10(-7) M; DEX)-treated cells were challenged with 0.01, 0.03 and 0.1 micrograms/ml of anti-IgE, and histamine and LTC4 were monitored. LTC4 release (ng LTC4/micrograms total cell histamine) from cells stimulated with anti-IgE was: 0.01 micrograms/ml anti-IgE, 6.9 +/- 4, 0.3 +/- 0.1 (CON, DEX); 0.03 micrograms/ml anti-IgE, 13.8 +/- 4.7, 0.9 +/- 0.5; 0.1 micrograms/ml anti-IgE, 19.5 +/- 2.3, 4.9 +/- 1.2. Histamine release was inhibited by 50-75% by treatment with DEX in these experiments. Dose-response studies (n = 4) indicate that the inhibitory actions of DEX on LTC4 release occur in the range of 10(-10) to 10(-7) M. The concentration of DEX at which LTC4 release was inhibited by 50% (IC50) was approximately 2 X 10(-9) M. Another glucocorticoid (betamethasone) inhibited LTC4 release, while the nonglucocorticoids tetrahydrocortisone and beta-estradiol were inactive. High performance liquid chromatography (HPLC) analysis (coupled with RIA) indicated that the relative proportions of LTC4, LTD4, and LTE4 did not differ in supernatants from CON- and DEX-treated, anti-IgE-challenged cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Anti-Inflammatory Agents↗

Employment practice liability: a new litigation epidemic.

Employment practices liability has become an increasing problem for all employers, including health care employers. This article defines the various factors that lead to employment-related claims. It also describes the legal and cultural factors that have led to the current situation and offers concrete proposals to decrease the likelihood of such claims.

Employment↗