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Biomedical subjects

D L Dillehay

Publications and source records attributed to D L Dillehay.

At least 55 records · Page 3Linked to original sources

Magnetic resonance imaging after arterial portography with manganese dipyridoxal diphosphate.

RATIONALE AND OBJECTIVES: The authors assess performing hepatic magnetic resonance imaging (MRI) after arterial portography with manganese dipyridoxal diphosphate (MnD-PDP), a hepatobiliary contrast agent, as an invasive but potentially highly sensitive means of focal lesion detection. METHODS: Eight pigs underwent superior mesenteric artery catheterization and injection of 10 mumol/kg MnDPDP. Magnetic resonance imaging at 1.5 T (SE-140/10) was performed before, then at 15 and 30 minutes after injection. Seven or more days later, the same MRI protocol was performed after intravenous injection of 10 mumol/kg MnDPDP. RESULTS: Fifteen minutes after intra-arterial injection, enhancement of the liver predominated (86 +/- 13%), followed by the renal cortex (44 +/- 14%), pancreas (26 +/- 9%), and spleen (14 +/- 9%). At 30 minutes, enhancement of renal cortex significantly increased (50 +/- 14%). There was no significant difference in enhancement of the liver, spleen, pancreas, or renal cortex when we compared intra-arterial and intravenous administration. CONCLUSION: After the injection of 10 mumol/kg MnDPDP into the superior mesenteric artery of pigs there is no significant difference in visceral organ enhancement compared to intravenous administration. The data suggests that the hepatocyte binding sites may be overwhelmed by this dose and/or injection rate of MnDPDP.

Animals↗

Potentiation of IL-2-induced t-cell proliferation by retinoids.

We evaluated the capacity of retinoids to potentiate proliferative responses of murine T-cells to recombinant human interleukin 2 (rIL-2). Concanavalin A (Con A) prestimulated spleen cells responded in a dose-dependent manner to added rIL-2. All-trans-retinoic acid (RA) at 10(-8) M potentiated the proliferative response by fivefold at saturating levels of IL-2. In similar experiments, two closely related retinamides, all-trans-(phenyl)retinamide (PR) and N-(4-hydroxyphenyl)retinamide (4-HPR), also potentiated murine splenocyte rIL-2 responses. Potentiation of IL-2-induced proliferation was dose-responsive to the concentration of added retinoid with peak potentiation occurring at 10(-10) - 10(-8) M in the presence of 10 U/ml rIL-2. Significant potentiation was observed at retinoid concentrations as low as 10(-14) M. Fluorescence flow cytometry of the responding cells revealed that among L3T4+, Lyt-2+ or total T-cells, at 72 h following Con A stimulation, essentially all of the cells expressed IL-2 receptors (IL-2R). This apparently represents near maximum IL-2R expression and treatment of the cells with retinoids did not increase IL-2R expression at that time point. The potentiation of IL-2 responses by retinoids was also observed with IL-2-dependent HT-2 cells, 98% of which were IL-2R positive. HT-2 proliferative responses to rIL-2 were potentiated as much as fourfold by 10(-10) M RA. HT-2 proliferative responses to rIL-2 were potentiated by all three retinoids dose dependently. Significant potentiation was observed with as little as 10(-14) M retinoid. Retinoids in the absence of IL-2 induced no proliferative responses. These data suggest that retinoids can augment the capacity of IL-2 to induce T-cell proliferation using Con A-activated murine splenic T-cell blasts and a long-term-cultured T-cell line.

Animals↗

Differential effects of retinoids on pokeweed mitogen induced B-cell proliferation vs immunoglobulin synthesis.

The effects of three retinoids, all-trans-retinoic acid (RA), 13-cis-retinoic acid (cRA), and N-(4-hydroxyphenyl) retinamide (4-HPR) on mouse splenocyte responses to pokeweed mitogen (PWM) and Escherichia coli lipopolysaccharide (LPS) in vitro were evaluated. All three retinoids caused a dose dependent increase in the proliferative response to PWM. The retinoids hierarchy of efficacy based on potentiation of PWM-induced splenocyte proliferation was RA greater than cRA greater than 4-HPR. 13-cis-retinoic acid and 4-HPR also resulted in significant increases in Ig secretion in response to PWM. However, RA did not produce a significant increase in secretion compared with cells treated with PWM alone. The efficacy hierarchy of retinoids ability to potentiate Ig secretion was 4-HPR greater than cRA greater than RA. All three compounds did not affect Ig secretion from LPS-stimulated splenocytes and produced dose dependent decreases in proliferation. Both inhibition of LPS-induced proliferation and potentiation of PWM-induced proliferation were maximal when the retinoids were added during the first hour of culture. These results indicate that retinoids have a differential effect on Ig secretion and B-cell proliferation based on structural differences of the retinoids. Potentiation of proliferation and Ig secretion are both T-cell dependent and could be a result of increased lymphokine synthesis by the T-cells or increased responsiveness to the effects of the T-cell produced lymphokines.

Animals↗

Pathogenicity of Pasteurella multocida A:3 in Flemish giant and New Zealand white rabbits.

Pasteurella multocida A:3 was isolated during an outbreak of pasteurellosis in Flemish Giant (FG) rabbits. Since New Zealand White (NZW) rabbits housed in the same room were not as severely affected as FG rabbits, experimental inoculation was undertaken to determine if FG rabbits were more susceptible than NZW rabbits to pasteurellosis induced by this isolate. Rabbits of each breed were inoculated with P. multocida A:3 and observed for 3 weeks. Four of 5 FG rabbits developed severe clinical disease on days 6, 9, 12 and 14 after inoculation; whereas, the one affected NZW rabbit became ill 14 days after inoculation. All rabbits with clinical disease developed fibrinosuppurative pleuritis, pyothorax and pneumonia which was more severe in FG than NZW rabbits. At necropsy, P. multocida A:3 was isolated from multiple sites of the diseased rabbits. No significant difference (P = 0.099) in the prevalence of lesions between the two breeds was found; however, the score of pneumonia and pleuritis was 3 times greater in FG rabbits than NZW rabbits.

Animals↗

Pharmacological and toxicological properties of arotinoids SMR-2 and SMR-6 in mice.

Studies were conducted to define primary pharmacological and toxicological properties of two arotinoids, SMR-2 and SMR-6, in male B6D2F1 mice. Mice were gavaged daily for up to 22 days with retinoids in corn oil (0.1, 0.2, or 0.4 mg/kg day SMR-2 or SMR-6 or 2.5, 10, or 30 mg/kg all-trans-retinoic acid as a reference control). Toxicological and biochemical endpoints were assayed after 8, 15, and 22 days. At toxic doses, i.e., those inducing weight loss, morphological changes were observed in skin, lymph nodes, spleen, bone marrow, liver, thymus, forestomach, adrenal, bone, and testes. Biochemical alterations included elevated serum alkaline phosphatase, corticosterone, and interleukins-1, -2, and -3. Additional immune alterations included increased responsiveness of spleen cells to both thymus-dependent and thymus-independent mitogens and increases in the total number of B cells in the spleen. At doses not inducing weight loss, target organ effects included the appearance of plasma cells and infiltration of polymorphonuclear cells in lymph nodes; myeloid cell hypercellularity in bone marrow; hematopoiesis in spleen; subacute inflammation in forestomach; and periportal cytoplasmic vacuolization in liver. At the low doses, SMR-2 resulted in decreased responsiveness of spleen cells to mitogens and SMR-6 caused increased responsiveness. SMR-6 also increased interleukin-1 and-2 production at low doses. Biochemical effects included reduced activities of liver aryl hydrocarbon hydroxylase (AHH) and soluble brain protein kinase C. Overall, the results suggest that leukopoiesis and reduced liver AHH and reduced soluble protein kinase C activities are the primary and initial pharmacological and toxicological effects of retinoids.

Animals↗

The effectiveness of a microisolator cage system and sentinel mice for controlling and detecting MHV and Sendai virus infections.

Experiments were conducted to determine (a) whether BALB/c mice housed on soiled bedding can be used as sentinels for the detection of Sendai virus and MHV from infected mice housed in microisolators, and (b) whether the microisolator caging system protects mice against Sendai virus and MHV infections. Sentinel mice were housed in microisolator cages, exposed continuously to soiled bedding and bled at 21 and 42 days for serology. All sentinel mice were seropositive for MHV by 42 days; however, sentinel mice exposed to soiled bedding were seronegative for Sendai virus at 21 and 42 days. These results suggest that sentinels housed on soiled bedding may not detect all infectious murine viruses. This study also showed that the microisolator caging system provided an effective barrier against MHV infection at the cage level and suggests that the microisolators should protect mice against other infectious agents.

Animal Husbandry↗

Inhibition of Moloney murine lymphoma and sarcoma growth in vivo by dietary retinoids.

The effects of dietary retinoids on the growth of Moloney lymphoma (LSTRA) and sarcoma (MSC) in BALB/c mice were evaluated. Transplantable syngeneic Moloney lymphoma and sarcoma tumors are immunogenic. Preimmunization with LSTRA cells provides protection against subsequent challenge and sarcomas spontaneously regress following injection of an appropriate inoculum of MSC cells. In normal mice fed varying concentrations of all-trans-retinoic acid (RA) and given injections of 10(3) LSTRA cells, RA caused a dose-dependent increase in the number of survivors; 50% of the mice fed RA at 50 mg/kg of diet were long-term survivors. All animals died that were fed a control diet and challenged with 10(3) LSTRA cells. Athymic (nu/nu) mice fed RA were not protected against lymphoma growth, whereas euthymic (nu/+) mice were; therefore, the antitumor effect of RA was thymus dependent. Primary immunization with irradiated LSTRA in the presence of RA caused a significant increase in cell-mediated cytotoxicity by spleen cells at 4 days after immunization. However, challenge of animals preimmunized with LSTRA in the presence of dietary RA revealed a dose-dependent inhibition of memory. A significant reduction in MSC growth was also observed in normal mice fed 13-cis-retinoic acid (cRA). A comparison of the primary antilymphoma effect of dietary RA, cRA, N-(all-trans-retinoyl)-DL-leucine (RL), and N-(4-hydroxyphenyl)retinamide (4-HPR) revealed an efficacy hierarchy of RL greater than RA greater than cRA greater than 4-HPR with RL producing 70% long-term survivors at 115 days after challenge with 10(3) LSTRA cells. These studies indicate that retinoids can inhibit the growth of transplantable, retroviral-induced, immunogenic tumors by thymus-dependent mechanisms and that a newly synthesized retinoylamino acid (RL) is more potent than RA at inhibiting Moloney lymphoma growth.

Animals↗

Effects of retinoids on human thymus-dependent and thymus-independent mitogenesis.

The effects of all-trans-retinoic acid (RA), 13-cis-retinoic acid, and N-(4-hydroxyphenyl)retinamide on the mitogenic responses of various populations of human lymphocytes have been evaluated. Superoptimal concentrations of mitogens allowed the greatest RA-induced potentiation of lymphocyte proliferation. All three retinoids at concentrations as low as 5 x 10(-14)M significantly potentiated the proliferation of adenoidal and tonsillar lymphocytes stimulated by pokeweed mitogen (PWM). However, the responses of adenoidal and tonsillar lymphocytes to Staphylococcus aureus Cowan strain A were not potentiated by retinoids. Retinoids also caused significant potentiation of proliferation of PWM-stimulated peripheral blood lymphocytes (PBL). However, endpoint concentrations of retinoids required to significantly potentiate PBL proliferative responses to PWM were much higher than required for potentiation of adenoidal or tonsillar lymphocytes. PBL responses to concanavalin A (Con A) were significantly potentiated by retinoid concentrations as low as 10(-8) to 10(-10) M. Retinoid-potentiated responses were also observed wi Con A-stimulated thymocytes, but the endpoint concentrations required for significant potentiation were 10-fold higher than required to potentiate PBL responses to Con A. These data indicate that the sensitivity of lymphocytes to the retinoid-mediated potentiation of mitogenesis depends on the lymphoid compartment from which the cells are obtained. Tonsillar and adenoidal lymphocytes were the most responsive of the lymphocytes tested to the retinoid-induced potentiation of PWM responses. In addition, retinoids appear to selectively potentiate T cell-dependent proliferative activity.

Adenoids↗

In vitro effect of acetaldehyde on cell-mediated cytotoxicity by murine spleen cells.

The effects of acetaldehyde in vitro on the lytic capacity of murine spleen cells have been evaluated in three systems: antibody-dependent cell-mediated cytotoxicity (ADCC), natural killer (NK) activity, and alloimmune cytotoxic T lymphocyte (CTL) activity. Acetaldehyde had a biphasic effect on ADCC. Concentrations less than 1 mM acetaldehyde potentiated ADCC. Concentrations greater than 1 mM produced a progressive decrease in lysis. The inhibitory effects were at the effector cell level and were partially irreversible. Preincubation experiments showed that inhibition of ADCC was both concentration and time-dependent. Preincubation of the spleen cells for short periods of time produced potentiated lysis by concentrations of acetaldehyde up to 10 mM. However, potentiation of lysis in preincubation and short term (4h) lytic assay experiments was more variable than longer term (18h) experiments in which the acetaldehyde was not removed by washing. NK activity and alloimmune CTL-mediated lysis were also inhibited by acetaldehyde. Concentrations of acetaldehyde up to 20 mM did not significantly decrease lymphocyte viability as determined by trypan blue exclusion. Acetaldehyde was lost from the reaction mixtures by first order kinetics with a rate constant of 0.5/hr. Thus, the final concentrations were 64-99.99% lower than the starting amounts.

Acetaldehyde↗

Inhibition of phagocytosis and interleukin-1 production in pulmonary macrophages from rats with sialodacryoadenitis virus infection.

To test whether or not sialodacryoadenitis virus (SDAV) infection in rats affects pulmonary macrophage function, we intranasally inoculated pathogen-free F344 rats with SDAV and collected alveolar and interstitial macrophages 5 d later. We assessed Fc receptor-mediated attachment and phagocytosis by phase-contrast microscopic examination of monolayers of alveolar and interstitial macrophages incubated with zymosan, nonopsonized sheep erythrocytes, or erythrocytes opsonized with rabbit antisheep-erythrocyte IgG. Alveolar macrophages from virus-infected rats had significantly (P less than or equal to .05) lower indices of attachment and phagocytosis of opsonized erythrocytes than control macrophages, but there was no difference in attachment of zymosan particles. Interstitial macrophages were not affected. Alveolar macrophages from SDAV-infected rats produced significantly less interleukin-1 than those from control rats, as assessed by testing supernatants from lipopolysaccharide-stimulated macrophage cultures for induction of mouse thymocytes to take up tritiated thymidine. Effects of SDAV infection on lung macrophages could increase host susceptibility to other pathogens or complicate studies of respiratory tract immunity.

Acute Disease↗

Effects of retinoids on macrophage function and IL-1 activity.

The effects of three retinoids, all-trans-retinoic acid (RA), 13-cis-retinoic acid (cRA), and N-(4-hydroxyphenyl) retinamide (4-HPR), on macrophage function were evaluated. In vitro, RA, cRA, and 4-HPR caused a greater than twofold increase in phagocytosis of IgG-sensitized bovine erythrocytes (IgG-ORBC) by a mouse macrophage cell line (RAW). Significant increases in phagocytosis were produced by retinoid concentrations as low as 2 x 10(-10) M. RA also significantly increased phagocytosis of IgG-sensitized ORBC by BALB/c peritoneal macrophages in vitro. The ability of RAW macrophages to bind IgG-ORBC was significantly increased by 10(-6) to 10(-14) M RA. The potentiation of mitogenic responses of spleen cells to Con A and PWM by RA was relatively independent of macrophage function, i.e., splenocytes that were macrophage-depleted were responsive to the potentiating effects of RA. The effects of retinoids on T-cell-dependent B-cell mitogenesis induced by PWM appeared not to be dependent on their previously reported capacity to alter prostaglandin synthesis. Treatment of spleen cells with 10(-6) M indomethacin did not abolish the potentiating effects of RA. However, RA in a dose-dependent fashion increased IL-1 activity at the level of the target T-cell. The greatest potentiation of IL-1 activity was at 10(-8) M RA. These results show that retinoids can modulate macrophage function at two different levels: potentiation of phagocytosis and potentiation of IL-1 activity at the level of the T-cell.

Animals↗

Toxicologic and immunologic evaluations of N-(all-trans-retinoyl)-DL-leucine and N-(all-trans-retinoyl)glycine.

Sprague-Dawley rats were dosed by gavage daily for 28 days with 5, 15, or 50 mg/kg of N-(all-trans-retinoyl)-DL-leucine (RL), N-(all-trans-retinoyl)glycine (RG), or all-trans-retinoic acid (RA). On the basis of mortality incidence, fracture incidence, body weight, and histopathologic effects, RG was slightly to moderately less toxic than RA, and RL was significantly less toxic than RA or RG. Doses that had no effect on weight loss and produced no bone fractures were approximately 5 and 15 mg/kg/day for RA administered to males or females, respectively; greater than 15 mg/kg/day for RG administered to males or females; and greater than 50 mg/kg/day for RL administered to males or females. At these doses, RA and RG produced effects, detectable at the microscopic level, of lymphoid hyperplasia and hematopoietic cell proliferation in the spleen, lymphoid hyperplasia in lymph nodes, necrosis of the cortex of the thymus, hypertrophy of the zona fasciculata of the adrenal, a periportal pattern of cytoplasmic vacuolization in hepatocytes, hematopoietic cell proliferation in the liver, epithelial hyperplasia and subacute inflammation in the forestomach, and osteodystrophy. Serological alterations consisted of reduced serum albumin levels and elevated levels of triglycerides and alkaline phosphatase. For RL, similar microscopic effects, dependent on dose level and sex, were observed in spleen, thymus, adrenal, and liver. In vitro, RL was as active as RA in potentiating pokeweed mitogen-induced lymphocyte proliferation; RG was inactive. This study indicates that, relative to RA and RG, RL has less toxicity but similar immunological effects. Since RL and RG expressed little or no binding affinity for cellular RA-binding protein, the immunological effects of these retinoids may be expressed by mechanisms not linked to this protein.

Alkaline Phosphatase↗