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Biomedical subjects

D L Dillehay

Publications and source records attributed to D L Dillehay.

63 records · Page 4Linked to original sources

In vitro effects of retinoids on murine thymus-dependent and thymus-independent mitogenesis.

The effects of three retinoids: all-trans-retinoic acid (RA), 13-cis-retinoic acid (13-cis-RA), and N-(4-hydroxyphenyl)retinamide (4-HPR) on murine splenic lymphocyte proliferative responses to mitogens were evaluated. The responses to T-cell mitogens, PHA and Con A, and a T-cell-dependent B-cell mitogen, PWM were significantly potentiated by these retinoids. However proliferative responses to a B-cell mitogen, Escherichia coli LPS were unaffected or inhibited. All three retinoids at concentrations ranging from 10(-6) to 10(-15) M significantly potentiated Con A-induced proliferative responses. In response to PWM, 10(-13) M RA, 10(-12) M 13-cis RA, and 10(-11) M 4-HPR were the lowest concentrations producing significant potentiation. Endpoint concentrations of retinoids significantly potentiating responses to PHA were; 10(-9) M RA, 10(-8) M 13-cis RA, and 10(-6) M 4-HPR. These responses were independent of retinol contained in fetal calf serum supplemented medium since responses were reproduced in serum-free medium devoid of retinol. Optimal potentiation by retinoids of responses to these T-cell-dependent mitogens were found at superoptimal concentrations of mitogen suggesting a selective inhibition of T-suppressor cells. Thus, potentiation of T-cell-dependent mitogen responses provides the most sensitive biological assay yet described for detection of retinoid activity and is a reproducible system to explore the cellular and molecular mechanisms of retinoid-mediated immunopotentiation.

Animals↗

Cerebral cuterebrosis in a dog.

A second instar Cuterebra larva was found in the thickened meninges of a 6-week-old female Doberman Pinscher at necropsy. The dog appeared blind and had chewing fits before death. Cerebral cuterebrosis in the dog is uncommon. This report briefly discusses the pathogenesis of the condition.

Animals↗

Alteration of chemically induced hepatotoxicity by copper (II) (3,5-diisopropylsalicylate)2.

The effects of copper (II) (3,5-diisopropylsalicylate)2 (CuDIPS), which is a synthetic superoxide dismutase, on the hepatotoxicity of carbon tetrachloride and acetaminophen in fed and fasted animals were investigated. CuDIPS did not alter the covalent binding of metabolites of either of these chemicals to the hepatic endoplasmic reticulum. However, CuDIPS did inhibit the hepatotoxicity of carbon tetrachloride by inhibiting the induction of lipid peroxidation by carbon tetrachloride. CuDIPS had only a slight, and histologically insignificant, ability to decrease acetaminophen hepatotoxicity which is related to the inability of CuDIPS to prevent depletion of reduced glutathione by acetaminophen. The observation that fasting potentiates the hepatotoxicity of acetaminophen is emphasized, and the mechanism of this potentiation is suggested to be related to the depletion of reduced glutathione.

Acetaminophen↗

Direct hepatic tumor injection in rats: can it be used for analysis of MR imaging contrast agent?

With a recently described rat model technique for direct hepatic injection of tumor cells for imaging research, there were concerns that the injection itself might produce lesions detectable with magnetic resonance (MR) imaging, thereby producing false-positive results. To examine this possibility, the authors prospectively studied 14 Sprague-Dawley rats after direct hepatic injection of cells from a rat hepatoma cell line. The rats were imaged with a variety of pulse sequences before and after intravenous injection of the contrast agent manganese dipyridoxal diphosphate at a dose of 8 mumol/kg. No intrahepatic lesions could be detected with MR imaging during the first 6 days after direct hepatic injection of the tumor cells. Therefore, the direct injection technique should be accurate for evaluating various MR imaging sequences and contrast agents for early hepatic tumor detection.

Animals↗