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B Alexander

Publications and source records attributed to B Alexander.

At least 19 recordsLinked to original sources

Localisation of hepatic vascular resistance sites in the isolated dual-perfused rat liver.

The locations of the vascular resistance sites which regulate vascular tone in the hepatic arterial and portal venous vasculatures of the rat liver were identified using a new, in vitro, dual-perfused liver preparation. Twelve livers of male Wistar rats were perfused via the hepatic artery and portal vein at fixed flow and at physiological pressure. Dose-related vasoconstriction to injections or infusions of noradrenaline was measured as transient or sustained increases in perfusion pressure, respectively, in the hepatic arterial and portal venous vasculatures. Direct injections/infusions of noradrenaline refer to those administered into the vasculature from which pressure was recorded, e.g., the effects of hepatic arterial (direct) injections/infusions of noradrenaline upon hepatic arterial perfusion pressure. Indirect injections/infusions of noradrenaline were those administered to the adjacent afferent vasculature, e.g., the effects of portal venous (indirect) injections of noradrenaline upon hepatic arterial perfusion pressure. The converse applies for recordings of portal venous perfusion pressure. The -log(M) ED50 values to direct (hepatic arterial) and indirect (portal venous) injections in the hepatic artery were 4.25+/-0.20 and 3.40+/-0.10, respectively, and were significantly different (P < 0.01, Student's unpaired t-test); the -log(M) ED50 values to direct (portal venous) and indirect (hepatic arterial) injections in the portal vein were 3.91+/-0.08 and 3.85+/-0.11, respectively, and were not significantly different (P > 0.05, Student's unpaired t-test). Similarly, the -log(M) ED50 values to direct (hepatic arterial) and indirect (portal venous) infusions in the hepatic artery were 5.28+/-0.11 and 3.75+/-0.12, respectively, and were significantly different (P < 0.01, Student's unpaired t-test); the -log(M) ED50 values to direct (portal venous) and indirect (hepatic arterial) infusions in the portal vein were 5.31+/-0.19 and 5.70+/-0.16, respectively, and were not significantly different (P > 0.05, Student's unpaired t-test). These results demonstrated that there is little transfer of noradrenaline from the portal venous to the hepatic arterial resistance sites, but significant transfer from the hepatic artery to the portal venous suggesting that; (a) the portal venous resistance sites are located at the sinusoidal or post-sinusoidal level; and (b) the hepatic arterial resistance sites are located at the pre-sinusoidal level.

Animals

IL-2 adenovector-transduced autologous tumor cells induce antitumor immune responses in patients with neuroblastoma.

In many different murine models, the immunogenicity of tumor cells can be increased by transduction with a range of immunostimulatory genes, inducing an immune response that causes regression of pre-existing unmodified tumor cells. To investigate the relevance of these animal models to pediatric malignancy, we used autologous unirradiated tumor cells transduced with an adenovirus-IL-2 to immunize 10 children with advanced neuroblastoma. In a dose-escalation study, we found that this tumor immunogen induced a moderate local inflammatory response consisting predominantly of CD4(+) T lymphocytes, and a systemic response, with a rise in circulating CD25(+) and DR+ CD3(+) T cells. Patients also made a specific antitumor response, manifest by an IgG antitumor antibody and increased cytotoxic T-cell killing of autologous tumor cells. Clinically, five patients had tumor responses after the tumor immunogen alone (one complete tumor response, one partial response, and three with stable disease). Four of these five patients were shown to have coexisting antitumor cytotoxic activity, as opposed to only one of the patients with nonresponsive disease. These results show a promising correlation between preclinical observations and clinical outcome in this disease, and support further exploration of the approach for malignant diseases of children.

Adenoviridae

Interleukin-2 gene-modified allogeneic tumor cells for treatment of relapsed neuroblastoma.

Tumor cells that have been genetically modified to express immunostimulatory genes will induce effective antitumor responses in a range of syngeneic animal models. For human applications, transduced autologous tumor cell lines are often difficult or impossible to prepare, so that there are strong incentives for substituting a standardized allogeneic tumor cell line. However, such lines may be inferior immunogens if they differ from host tumors in the antigens they express. We have evaluated the safety, immunostimulatory, and antitumor activity of an interleukin-2-secreting allogeneic neuroblastoma cell line in 12 children with relapsed stage IV neuroblastoma. They received two to four subcutaneous injections of cells in a dose-escalating schedule, up to a maximum of 10(8) cells per injection. There was induration and pruritus at the injection site, and skin biopsies revealed mild panniculitis with CD3+ cells surrounding scanty residual tumor cells. There was a limited but significant peripheral monocytosis. No patient showed any increase in direct cytotoxic effector function against the immunizing cell line, but 3 patients had a rise in the frequency of neuroblastoma-reactive cytotoxic T lymphocyte precursor cells. One child had > 90% tumor response (PR), 7 had stable disease, and 4 had progressive disease in response to vaccine alone. Although these results offer some encouragement for the continued pursuit of allogeneic vaccine strategies in human cancer, the antitumor immune responses we observed are inferior to those obtained in an earlier immunization study using autologous neuroblastoma cells. Hence, we suggest that this earlier approach remains preferable, its difficulties notwithstanding.

Cancer Vaccines

Thyroid function in lead smelter workers: absence of subacute or cumulative effects with moderate lead burdens.

OBJECTIVE: To evaluate the effect of low to moderate occupational lead exposure on thyroid function we conducted a cross-sectional study of 151 male lead smelter workers. METHODS: Parameters of thyroid function were assessed in relation to both subacute and cumulative lead exposure over a 10-year employment period. Blood lead levels, obtained from plant surveillance records, were used to establish four ordinal levels of current and cumulative exposure (< 15, 15-24, 25-39, and > or =40 microg/dl). RESULTS: Mean values for the lowest as compared with the highest current exposure group were similar for thyroxine (T4: 6.8 versus 6.1 microg/dl), estimated free thyroxine (EFT4: 1.6 ng/dl in both groups), and thyroid-stimulating hormone (TSH: 1.8 versus 1.7 mIU/l); there was no evidence of a significant trend for diminished thyroid function associated with increasing current lead exposure. Similarly, no significant difference was observed for T4, EFT4, or TSH in relation to the 10-year cumulative exposure or for adjusted analyses controlling for potential confounders, including age and alcohol use. CONCLUSION: In contrast to studies observing thyroid dysfunction in the setting of high lead exposure and related clinical poisoning, our findings weigh against a significant physiologic effect on thyroid function at lower levels (< 60 microg/dl) of occupational lead exposure.

Adult

Detection of Leishmania (Viannia) braziliensis complex in wild mammals from Colombian coffee plantations by PCR and DNA hybridization.

The small mammal fauna of coffee plantations in SW Colombia was surveyed to determine which of the species present were infected with parasites of the Leishmania (Viannia) braziliensis complex and might therefore act as reservoirs of human cutaneous leishmaniasis. Fifty animals of seven different species were captured. Tissue samples were taken from the ears of specimens from each of the seven species. Thirty three samples were analysed by polymerase chain reaction (PCR) using oligonucleotide primers directed against conserved regions of L. (V) braziliensis complex kinetoplast DNA. Three of the samples (two from mouse opossums Micoureus demerarae, and one from a pygmy rice at Microryzomys minutus) gave positive results based on PCR analysis. When the samples were subjected to DNA hybridization (dot blot) analysis using the B18 (L. (V.) braziliensis complex-specific) probe, a total of ten specimens belonging to six species (the opossums M. demerarae and Didelphis marsupilalis, the rodents Melanomys caliginosus, Mi. minutus and Rattus rattus, and a rabbit Sylvilagus brasiliensis) gave positive results, indicating that all these animals had flies of species occurring in the same habitat by allowing them to feed on infected animals.

Animals

The role of nitric oxide in hepatic metabolism.

Nitric oxide (NO) may regulate hepatic metabolism directly by causing alterations in hepatocellular (hepatocyte and Kupffer cell) metabolism and function or indirectly as a result of its vasodilator properties. Its release from the endothelium can be elicited by numerous autacoids such as histamine, vasoactive intestinal peptide, adenosine, ATP, 5-HT, substance P, bradykinin, and calcitonin gene-related peptide. In addition, NO may be released from the hepatic vascular endothelium, platelets, nerve endings, mast cells, and Kupffer cells as a response to various stimuli such as endotoxemia, ischemia-reperfusion injury, and circulatory shock. It is synthesized by nitric oxide synthase (NOS), which has three distinguishable isoforms: NOS-1 (ncNOS), a constitutive isoform originally isolated from neuronal sources; NOS-2 (iNOS), an inducible isoform that may generate large quantities of NO and may be induced in a variety of cell types throughout the body by the action of inflammatory stimuli such as tumor necrosis factor and interleukin (IL)-1 and -6; and NOS-3 (ecNOS), a constitutive isoform originally located in endothelial cells. Another basis for differentiation between the constitutive and inducible enzymes is the requirement for calcium binding to calmodulin in the former. NO is vulnerable to a plethora of biologic reactions, the most important being those involving higher nitrogen oxides (NO2-), nitrosothiol, and nitrosyl iron-cysteine complexes, the products of which (for example, peroxynitrite), are believed to be highly cytotoxic. The ability of NO to react with iron complexes renders the cytochrome P450 series of microsomal enzymes natural targets for inhibition by NO. It is believed that this mechanism provides negative feedback control of NO synthesis. In addition, NO may regulate prostaglandin synthesis because the cyclooxygenases are other hem-containing enzymes. It may also be possible that NO-induced release of IL-1 inhibits cytochrome P450 production, which ultimately renders the liver less resistant to trauma. It is believed that Kupffer cells are the main source of NO during endotoxemic shock and that selective inhibition of this stimulation may have future beneficial therapeutic implications. NO release in small quantities may be beneficial because it has been shown to decrease tumor cell growth and levels of prostaglandin E2 and F2 alpha (proinflammatory products) and to increase protein synthesis and DNA-repair enzymes in isolated hepatocytes. NO may possess both cytoprotective and cytotoxic properties depending on the amount and the isoform of NOS by which it is produced. The mechanisms by which these properties are regulated are important in the maintenance of whole body homeostasis and remain to be elucidated.

Animals

The dependence of hepatic function upon sufficient oxygen supply during prolonged isolated rat liver perfusion.

It is unclear how the omission of a perfusate oxygen carrier may influence data derived from prolonged in vitro liver perfusions. The effects of reduced perfusate oxygen content upon liver function tests conducted in livers from male Sprague-Dawley rats perfused for 6 h, were studied using diluted rat blood (PCV = 10%) (group 1) and compared to lines perfused with Krebs' buffer (group 2). Perfusate and bile samples were withdrawn at the start and at hourly intervals following the commencement of perfusion for biochemical analysis of aspartate-serine transaminase, alkaline phosphatase, bilirubin, urea and potassium concentrations, and also for perfusate gas measurements for calculations of hepatic oxygen uptake. There were no significant differences between the initial perfusion pressures of 11.4+/-1.6 and 15.7+/-2.4 mm Hg at the start of perfusion (group 1 versus group 2, respectively). Maintenance of comparable perfusion pressures at the start of perfusion, however, resulted in a significant difference in the fixed flow rate between the two groups of 1.9+/-0.1 and 2.6+/-0.2* ml/min/g liver and resulted in significantly higher perfusion pressures in group 2 than in group 1 after 6 h of perfusion (18.2+/-2.0 versus 8.7+/-1.7 mmHg, respectively). Bile volume production was significantly greater in group 1 than in group 2, at 784+/-84 vs 458+/-75 microl/h** respectively. Hepatic oxygen uptake (HOU) was significantly greater in group 1 than in group 2, and maximal at 0.93+/-0.13 vs 0.32+/-0.08** micromol/min/g, respectively. Bile concentrations of bilirubin and potassium were significantly greater in group 1 than in group 2, 23.0+/-0.6 vs 4.9+/-0.4 micromol/l*** and 4.7+/-0.5 vs 1.1+/-0.2 mmol/l**, respectively. Perfusate concentrations of urea, bilirubin, and glucose were significantly higher in group 1 than group 2, 5.7+/-0.5 versus 1.4+/-0.2 micromol/l**; 2.4+/-0.5 versus 0.7+/-0.1 micromol/l** and 22.1+/-1.4 versus 17.8+/-0.9 micromol/l***. It is concluded that in vitro perfusion of the rat liver with Krebs'-Henseleit buffer (KHB) via the portal vein alone may be insufficient to maintain optimum liver function as assessed by the tests used. Inclusion of a perfusate oxygen carrier is optimal if livers are to be perfused at physiological pressures. *p < 0.05; **p < 0.01; ***p < 0.001; group 1 versus group 2, Student's unpaired t test.

Alkaline Phosphatase

Differentiation between the effects of unprocessed portal blood and reduced liver function on brain indole amine metabolism in the portacaval shunted rat.

Changes in brain 5-HT turnover which have been associated with portal-systemic encephalopathy (PSE) in man were studied in rats with experimental PSE for intervals up to 15 weeks following the surgical construction of end-to-side portacaval shunts (PCS). These were compared to changes measured in portacaval transposed rats (PCT) which, show little hepatic dysfunction or cerebral abnormalities but, in common with the PCS rat, sustain total portal-systemic diversion. Thus any differences between these two groups were indicative of hepatic dysfunction and not the systemic diversion of portal blood. After 15 weeks, sustained increases were measured in brainstem and cerebral concentrations of the catabolite of 5-hydroxytryptamine (5-HT), 5-hydroxyindole acetic acid (5-HIAA), from 0.25+/-0.01 to 0.68+/-0.01*** microg g(-1) brain and from 0.18+/-0.01 to 0.31+/-0.03*** microg g(-1) brain respectively in PCS rats and were statistically greater to those measured in the brainstem and cerebrum of PCT and control rats. Sustained increases in cerebral concentrations alone of 5-hydroxytryptophan (5-HTP), the precursor of 5-HT, from 0.17+/-0.01 to 0.23+/-0.02 microg g(-1) brain were measured in PCS rats and were significantly*** greater than in PCT control rats after 15 weeks. Some early increases in 5-HTP were measured in PCS above control rats but these were not significant after 15 weeks. No sustained significant differences between the 3 groups were measured in 5-HT after 15 weeks. These data confirm previous evidence that the elevations in 5-HTP and 5-HIAA concentrations observed in experimental chronic liver failure and PSE are due to liver dysfunction and not portal-systemic diversion and may contribute additional information regarding the role of derangements in central 5-HT turnover as one of the causes of PSE. ***p<0.001, Newman-Keuls ANOVAR followed by Student's unpaired t-test for individual comparisons, (data shown are mean +/- SEM).

Animals

Evidence that S-adenosyl-L-methionine diastereoisomers may reduce ischaemia-reperfusion injury by interacting with purinoceptors in isolated rat liver.

1. Mechanisms underlying the haemodynamic activity of diastereoisomers of S-adenosyl-L-methionine (SAM) were investigated using inhibitors of purinoceptors and nitric oxide (NO) synthase in perfused rat livers damaged by sequential 24 h cold and 20 min rewarming ischaemia + reperfusion. 2. Stored livers were flushed with 10 ml saline alone (control) or with added (R,S) or (S,S) SAM (100 microM) and reperfused in the absence (control) or presence of 10 microM 8-phenyltheophylline (8-PT) or 100 microM L-N-monomethylarginine (L-NMMA). 3. Both SAM diastereoisomers rapidly increased blood flow and bile production versus controls (P<0.001) but the (R,S) isomer induced greater increases in blood flow and the (S,S) isomer greater increases in bile production: 625 versus 596 versus 518 ml blood flow and 100 versus 119 versus 56 mg bile production per g liver over 3 h in (R,S), (S,S) and control, respectively. 4. 8-PT prevented the enhancement of blood flow by (S,S) SAM (529 versus 596 ml g(-1) liver over 3 h for (S,S) SAM alone, P<0.001), but was without effect in control livers. 8-PT also reduced SAM-enhanced bile production: 51 versus 119 mg g(-1) liver over 3 h, P<0.001. L-NMMA reduced blood flow and bile production similarly in the absence or presence of (S,S) SAM. 5. Thus, SAM may improve liver perfusion after ischaemia-reperfusion injury via stimulation of P, (A2) purinoceptors at which SAM shows activity. The choleretic activity of (S,S) SAM is disproportionately greater than enhanced blood flow and may occur independently of a NO-dependent component of bile production.

Animals

The relationship between intrahepatic portal systemic shunts and microsphere induced portal hypertension in the rat liver.

BACKGROUND: Portal hypertension is associated with gross haemodynamic disturbances characterised by high cardiac output, low peripheral vascular resistance, increased splanchnic blood flow, and portal systemic shunting. AIMS: To study the relationship between intrahepatic portal systemic shunts and microsphere induced portal hypertension in the rat liver. METHODS: Different sized microspheres were sequentially injected into the portal vein of male Wistar rats. RESULTS: Steady state portal venous pressure was increased by 102.2 (35.6)% (14.9 (3.6) mm Hg) and 272.3 (78.0)% (24.0 (2.2) mm Hg) above the basal pressure following sequential injections of 15 and 80 microns diameter microspheres, respectively. Sequential injection of 15, 40, and 80 microns diameter microspheres in either ascending or descending order of size did not generate further increases in portal venous pressure. A single injection of 1.8 x 10(5) 80 microns microspheres consistently produced a steady state portal venous pressure of 19.0 (1.3) mm Hg but did not approach the much higher value of 36.6 (43.2) mm Hg measured during clamping of the portal vein. These data indicate that the opening of patent intrahepatic shunts was responsible for the reduced pressures observed during microsphere injections and further evidence for this was provided by the location of microspheres in the pulmonary vascular bed. The elevation in portal venous pressure achieved by microsphere injections was not significantly different to that produced in rats subjected to partial portal vein ligation (20.7 (0.5) mm Hg, p > 0.05). Wedged hepatic venous pressure decreased from 6.7 (0.7) to 3.0 (0.6) mm Hg following injection of 80 microns microspheres, suggesting a decrease in total hepatic blood flow. Conversely, injection of 15 microns microspheres induced an increase in wedged hepatic venous pressure from 7.0 (1.0) mm Hg to 12.4 (1.8) mm Hg, indicating a localised redistribution of blood flow at the presinusoidal level of the portal venous vascular network and increased intrahepatic shunt flow. CONCLUSION: It is suggested that there may be a protective pathophysiological role for these shunts when the liver is subjected to changes which induce acute portal hypertension.

Acute Disease

The action of ATP on the hepatic arterial and portal venous vascular networks of the rabbit liver: the role of adenosine.

ATP is released from blood vessels during periods of hypoxia and may be responsible for hepatic arterial vasodilatation during instances of reduced hepatic portal venous flow. The role of adenosine in ATP-induced vasodilator and vasoconstrictor responses of the hepatic arterial and portal venous vascular networks respectively was studied in the isolated dual-perfused rabbit liver in vitro to ascertain whether ATP could be catabolised to adenosine during transit through the hepatic parenchyma. Intra-arterial and intra-portal injections of ATP (-10 to -4 log mol/100 g liver) resulted in dose-dependent vasodilatation in the hepatic artery and vasoconstriction in the portal vein. Addition of 8-phenyltheophylline (10 microM), a non-selective P1-purinoceptor antagonist, to the hepatic arterial and portal venous perfusate significantly inhibited the hepatic arterial ED50 for responses to intra-arterial injected ATP from -8.70 +/- 0.22 to -7.63 +/- 0.28 log mol/100 g liver (P < 0.001); it also inhibited hepatic arterial responses to, mid-range, portal venous injections of ATP. The data suggest that the hepatic arterial vasodliatation to ATP is partly mediated via catabolism to adenosine and may be an important mechanism during periods of relative hepatic hypoxia associated with portal flow reduction.

Adenosine

Morphological changes during hepatocellular maturity in neonatal rats.

BACKGROUND: Hepatocellular maturation is characterised by the progressive transition from an architecture in which hepatocyte plates are at least two cells thick to the familiar adult pattern in which liver cell plates are predominantly single-cell in thickness. A similar process also has been noted during compensatory hyperplasia following damage, or destruction to the hepatic parenchyma. The pathological events that underlie these processes remain inadequately explained. A new morphological approach has been developed to study the maturity of rat neonatal livers in order to identify the factors which govern the structured morphogenesis of the liver in greater detail. METHODS: Sections of hepatic tissue obtained from the left lateral and right posterior lobes from neonatal rats were studied at 8, 10, 11, 13, 14, 18, 23, and 28 days postpartum. These were mounted, fixed, and stained with haematoxylin and eosin and analysed using a modified point-counting technique. Following validation of the technique, the proportion of single-cell plates to double-cell plates was then calculated at each time point. RESULTS: Liver sections from 8-day neonatal rats had the lowest percentage of single-cell thick plates of 16.9 +/- 4.6% and the lowest standard deviation (mean +/- SD). The hepatic architecture had fully matured by 28 days and was characterised by predominantly single-cell plates (84.6 +/- 4.6%) lining the hepatic sinusoids. During the intervening time, the standard deviations increased significantly, peaking between 18-23 days, and reflected the rapidly changing morphology of the liver during this maturation process of the conversion of double-cell plates to single-cell plates. CONCLUSIONS: It is concluded that the process of hepatocellular maturity in the neonatal Sprague-Dawley rat is reproducibly complete by 28 days and that further studies may now be conducted to determine the anatomical and pathophysiological changes that govern this important transition.

Age Factors

Evaluation of the fungus Beauveria bassiana as a potential biological control agent against phlebotomine sand flies in Colombian coffee plantations.

In Colombia, the entomopathogenic fungus Beauveria bassiana (Deuteromycotina: Hyphomycetes) is widely used to control the coffee berry borer Hypothenemus hampei (Coleoptera: Scolytidae) in coffee plantations. Recent studies suggested that this fungus is also pathogenic to several important vectors of disease, including Phlebotomus papatasi and Lutzomyia longipalpis (Diptera: Psychodidae). The present study evaluated the use of B. bassiana as a potential biological control agent against phlebotomine sand flies in Colombian coffee plantations. Histopathologic examination indicates that B. bassiana is unable to infect sand flies under natural conditions, although dead sand flies were shown to be readily infected. In addition, laboratory bioassays where flies were exposed to the fungus applied onto coffee plants (though not filter paper) showed lower mean survival times than the control.

Animals

Retrospective study of selegiline-antidepressant drug interactions and a review of the literature.

Selegiline is a selective monoamine oxidase inhibitor used in the treatment of Parkinson's disease. It is estimated that approximately one-half of Parkinsonian patients will develop depression requiring antidepressant drug treatment. Recently, selegiline's package insert was revised to reflect the potential risk of adverse effects when it is used in combination with selective serotonin reuptake inhibitors and tricyclic antidepressants. The objective of our study is to assess the safety of combining selegiline with antidepressants. A retrospective chart review was performed on all 28 patients with Parkinson's disease receiving selegiline and antidepressants concurrently to identify possible drug interactions. Compliance was assessed according to prescription refill records. Suspected adverse reactions with combination therapy were documented. There was a total of 40 selegiline-antidepressant drug combinations involving tricyclic antidepressants (n = 25), selective serotonin reuptake inhibitors (n = 7), trazodone (n = 5), and bupropion (n = 3). One patient receiving fluoxetine developed a reaction consistent with the serotonin syndrome; however, it was never documented as such. No other selegiline drug interactions were found. Adverse effects noted were typical of antidepressant monotherapy. Although no selegiline drug interactions were documented in our study, the concurrent administration of selegiline and selective serotonin reuptake inhibitors should be avoided because of literature-reported interactions. We believe that bupropion, tricyclic antidepressants, and trazodone are reasonable choices in combination with selegiline, although tricyclic antidepressants and trazodone may be reserved as second-line treatments.

Antidepressive Agents, Second-Generation

Establishment of multipotential and antigen presenting cell lines derived from myeloid leukemias in GM-CSF transgenic mice.

In this study neonatal mice expressing a GM-CSF transgene (GMT mice), and their normal littermate controls, were infected with Moloney murine leukemia virus (MoMLV) to examine in vivo tumorigenesis. By 200 days, all of the GMT mice had died whereas median survival had not been reached in the littermates (P < 0.0003). Thymomas developed in 32% of GMT mice and were more frequently CD4+CD8+ (83%) compared to the CD4+CD8- phenotype seen in 90% of thymomas developing in MoMLV-infected littermate mice. A primitive myeloid leukemia was induced in 21% of GMT mice, but none of the littermates. To characterize further the nature of the leukemic cells, a factor-dependent cell line (DGM36) was derived. DGM36 cells were tumorigenic, capable of differentiation to neutrophils, macrophages and eosinophils, and contained a partial deletion of chromosome 2. A subline arose spontaneously that was factor-independent and produced GM-CSF in an autocrine manner (IGM36 cells). Stimulation of the IGM36 cells with TNF alpha and IFNgamma resulted in increased expression of B7-1, class I MHC and class II MHC and consequent presentation of antigen in allogeneic MLRs. IGM36 cells thereby satisfy many of the criteria of dendritic cells and consequently may be used to examine antigen presentation by leukemic cells. This is the first report of primary myeloid leukemias arising in GMT mice and documents the derivation of a multipotential, autocrine leukemic cell line with dendritic cell characteristics.

Animals

Changing structure to improve function: one academic health center's experience.

Academic health centers (AHCs) have been under siege for the past few years, with decreased federal and state funding for educational and research programs and increasing competition in the health care marketplace. In addition, many AHCs are burdened with the bureaucratic red tape of large educational institutions, which makes agility in responding to a demanding health care market difficult. The authors describe the response to these threats by Oregon Health Sciences University (OHSU), an approach that has been different from those of most similar institutions. OHSU chose to change its structure from being part of the state system of higher education to being an independent public corporation. The authors outline the political process of building widespread support for the legislation passed in 1995, the key features of the restructuring, the challenges faced before and after the transition to a public corporation, and lessons learned in this metamorphosis to a new form.

Academic Medical Centers

Cold-storage of rabbit thoracic aorta in University of Wisconsin solution reduces endothelium-independent vasodilation.

Optimum preservation conditions for storage of donor livers and blood vessels are essential for successful transplantation. The blood vessels are used as vascular conduits to facilitate anastomosis of the liver to the recipient's systemic vasculature. Failure of some transplants has been ascribed to thrombosis of these vascular conduits possibly because of alterations in vascular reactivity owing to inadequate storage techniques. To restrict data variability previously associated with studies using a heterogeneous sample of vessels from man, this study investigated changes in vascular reactivity in segments of rabbit thoracic aorta from male, age-matched, New Zealand White rabbits stored at 4 degrees C in either University of Wisconsin solution (UW; Du Pont Pharmaceuticals, UK) or Krebs-Bülbring buffer (KB). Percent vasodilation to acetylcholine remained significantly greater in UW than in KB at -log (M) concentrations of 7.0 (UW = 47.05 +/- 4.26 compared with KB = 13.20 +/- 7.20%; P < 0.001), 6.5 (UW = 66.82 +/- 4.83 compared with KB = 26.60 +/- 9.48%; P < 0.01), and 6.0 (UW = 83.68 +/- 5.26 compared with KB = 31.20 +/- 9.83%; P < 0.001). This was not significantly different to relaxation in unstored arteries and suggested improved endothelial function and structure, confirmed by electron microscopy. Percent vasodilation to sodium nitroprusside was significantly lower in UW than in unstored (D0) arteries at -log (M) concentrations of 7.5 (D0 = 28.27 +/- 4.02 compared with UW = 15.21 +/- 1.82%; P < 0.01), 7.3 (D0 = 52.58 +/- 5.05 compared with UW = 29.23 +/- 1.94%; P < 0.01), 7.0 (D0 = 69.70 +/- 4.85 compared with UW = 49.72 +/- 2.49%; P < 0.05), and 6.4 (D0 = 93.16 +/- 2.93 compared with UW = 71.29 +/- 5.20%; P < 0.05). Percent vasodilation was also lower in UW- compared with KB-stored arteries at -log (M) sodium nitroprusside concentrations of 7.0 (UW = 49.72 +/- 2.49 compared with KB = 64.11 +/- 5.03%; P < 0.05) and 6.4 (UW = 71.29 +/- 5.20 compared with KB = 96.91 +/- 5.96; P < 0.05). Electron microscopy confirmed that this was not a result of degradation of smooth muscle structure. The nitric oxide synthase inhibitor L-NG-nitro-L-arginine methyl ester (100 microM) did not significantly modulate sodium nitroprusside-induced vasodilation in unstored arteries, when endothelial function was maximum, or in UW-stored arteries, suggesting that the reduced responses in UW-stored arteries were not because of increased synthesis of nitric oxide. This reduced relaxation to sodium nitroprusside was therefore nitric oxide-independent and not a result of competition between sodium nitroprusside and endothelial 'nitric oxide donation' for cGMP. In summary, cold-storage preservation with UW reduced endothelium-independent vascular relaxation by mechanisms other than competition with NO; this requires further evaluation.

Acetylcholine

Norgestomet implants prevent pregnancy in beef heifers on pasture.

The efficacy of erodible norgestomet implants for preventing pregnancy in postpubertal heifers was evaluated in two experiments at five locations each. Heifers (n = 896) within each study location were stratified by weight and allotted randomly to receive an ear implant containing either 0, 24, 36, or 48 mg of norgestomet (d 0). Heifers were exposed to fertile bulls immediately after implantation for 75 d (d 0 to 74) in Exp. 1 (n = 476) or for 80 d (d 75 to 154) in Exp. 2 (n = 420). Weights were recorded on d 0 and 74 (Exp. 1 and 2) and d 154 (Exp. 2). Each heifer was palpated rectally for pregnancy at the end of each experiment. Pregnancy rates were higher (P < .01) for control heifers (0 mg implant) than for heifers that received 24, 36, or 48 mg of norgestomet. In Exp. 1, pregnancy rates were 96, 29, 6, and 4% for heifers that received 0, 24, 36, and 48 mg implants of norgestomet, respectively. In Exp. 2, pregnancy rates were 85, 36, 19, and 9% for heifers that received 0, 24, 36, and 48 mg implants of norgestomet, respectively. Estrous activity during the first 3 wk of bull exposure was reduced (P < .05) among heifers that received norgestomet implants compared to control heifers but was not completely abolished at any dosage in Exp. 1. During the first 75 d of Exp. 1 and 2, heifers treated with 36 or 48 mg norgestomet implants gained weight faster (P < .05) than control heifers. Combined across both experiments, ADG during the first 74 d were .53, .56, .59, and .60 kg/d for heifers treated with 0, 24, 36, and 48 mg implants of norgestomet, respectively. These data indicate that norgestomet implants increased rate of weight gain, reduced estrous activity, and reduced the occurrence of pregnancy in heifers on pasture.

Animal Feed