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Biomedical subjects

J D Campbell

Publications and source records attributed to J D Campbell.

At least 19 recordsLinked to original sources

CD40 activation boosts T cell immunity in vivo by enhancing T cell clonal expansion and delaying peripheral T cell deletion.

In this report we show that activation of APC with an agonist anti-CD40 mAb profoundly alters the behavior of CD4 T cells in vivo. Stimulation of mice with anti-CD40 2 days before, but not 1 day after, administration of superantigen (SAg) enhanced CD4 and CD8 T cell clonal expansion by approximately threefold. Further, CD40 activation also delayed peripheral T cell deletion after activation. Dying, activated T cells were quantitated by detecting extracellular phosphatidylserine with concomitant staining for SAg-reactive T cells using a TCR Vbeta-specific mAb. Upon close examination, it was shown that CD40 activation delayed the death of the activated T cells. Additionally, it was found that enhanced survival of CD4 T cells was equally dependent on APC expression of B7-1 and B7-2. This is in contrast to CD8 T cells, which did not depend as much on B7-1 as B7-2. Thus, CD40 activation indirectly promotes T cell growth and delays the death of SAg-stimulated CD4 T cells in vivo. These data suggest that one way CD40 activation promotes a more robust immune response is by indirectly increasing the production of effector T cells and by keeping them alive for longer periods of time.

Animals

A stage-specific, parasite-induced, "window" of in vivo interferon-gamma production is associated with pathogenesis in Theileria annulata infection.

The tick-borne protozoan parasite Theileria annulata causes tropical theileriosis, a severe leukoproliferative disease of cattle, which naive susceptible animals fail to control. The parasite infects and transforms macrophages, developing in the local draining lymph node. IFN gamma has been shown to block parasite development in newly infected cells, and inhibits the growth of fully differentiated macroschizont stage-infected cells in vitro. However, the parasite has been found to specifically induce IFN gamma production by T cells and appears to flourish in the face of this T cell-derived response in vivo. Here we show that the production of IFN gamma in vivo is tightly controlled by the parasite. Induction of cytokine production by T cells is not initiated until the parasite has developed beyond the IFN gamma sensitive trophozoite stage. Cytokine production is kept high as infected macrophages develop, and IFN gamma appears to play an active role in maintaining the growth of these cells. Once the infection is fully established, IFN gamma is down regulated, avoiding potential inhibitory effects. Thus by controlling T cell IFN gamma production, the parasite induces a "window" of cytokine expression which promotes its own growth, but avoids potential inhibitory effects of the cytokine.

Animals

A novel cell surface proliferation-associated marker expressed on T cells and up-regulated on germinal center B cells.

In this study we present data on a novel cell surface antigen recognized by monoclonal antibody (mAb) VPM30, originally thought to recognize only bovine and ovine sIg+ B cells from peripheral blood. Here we show that the antigen, molecular mass 28 kDa, is not only found in B cell follicles in frozen sections, but when used on paraffin sections VPM30 specifically stains B cells in the light zone of germinal centers but not in the mantle or dark zones. In addition we show that the antigen is also expressed by 90% of T cells after activation, with kinetics of antigen expression mirroring those of proliferation. By both size and distribution, the antigen appears to be novel, corresponding to no known cluster of differentiation, and will be of great use in the study of ruminant cellular immune responses.

Animals

Evidence for strain specificity in cytotoxic T-lymphocyte-mediated, major histocompatibility complex class I-dependent killing of Theileria annulata-infected cells.

Cattle immunised against Theileria annulata with one parasite strain have been found to be immune to re-challenge with different strains of the parasite. However, recent evidence of apparent strain specificity has been documented in cattle immunised with attenuated parasite-infected cells. In this study the strain specificity of major histocompatibility complex class I-restricted cytotoxic T-lymphocytes (CTL), a major anti-parasite effector mechanism, was examined. CTL generated following challenge with the Hissar (Indian) strain effectively lysed autologous cells infected with this strain of the parasite. However, CTL were less effective against cells infected with the Gharb (Moroccan) strain and showed virtually no reactivity against the Ankara (Turkish) strain, providing the first direct evidence for strain specificity in immune responses against T. annulata.

Animals

Long-term effects of perindopril on metabolic parameters and the heart in the spontaneously hypertensive/NIH-corpulent rat with non-insulin-dependent diabetes mellitus and hypertension.

The spontaneously hypertensive/NIH-corpulent (SHR/N-cp) rat is a genetic model that exhibits both non-insulin-dependent diabetes mellitus (NIDDM) and hypertension. To determine the impact of long-term treatment with the long-acting angiotensin-converting enzyme (ACE) inhibitor perindopril (PE) on the glucose metabolism, lipid levels, and heart in this model, studies were performed in three groups of SHR/N-cp rats maintained on a diet containing 54% carbohydrate with 18% sucrose and 36% starch. One group of obese rats received PE (0.5 to 1.0 mg/kg body weight/d) for 3 to 4 months, a second group of obese rats received no treatment, and a third group of lean rats were used as controls. The mean systolic blood pressure (SBP) increased gradually in both untreated obese and lean rats, with lean animals showing slightly higher levels compared with untreated obese rats. By contrast, SBP was reduced to normal levels in PE-treated obese rats throughout the treatment period. Compared with lean rats, obese rats showed significantly higher body weight and fasting serum levels of glucose, insulin, total cholesterol (TC), and triglyceride (TG). However, no significant differences were observed in these metabolic parameters between PE-treated and untreated obese rats. Plasma renin activity measured at the end of the treatment period was significantly higher in PE-treated rats compared with untreated obese and untreated lean rats. The mean heart weight and left ventricular weight, expressed in absolute terms or indexed to body weight, were significantly lower in PE-treated versus untreated obese and untreated lean rats. To further determine whether glucose metabolism is directly affected by PE treatment, in vitro glycogen synthesis was evaluated in isolated soleus muscles obtained from three additional groups of animals. The basal rate of muscle glycogen synthesis was significantly lower in obese compared with lean rats (P < .05), but did not differ between PE-treated and untreated obese rats. Maximal insulin-stimulated glycogen synthesis increased threefold in PE-treated obese rats, but this increase did not differ from the increases observed in untreated obese and lean rats. In conclusion, the present study shows that long-term PE treatment in obese SHR/N-cp rats with NIDDM and hypertension effectively controlled systemic arterial pressure and resulted in a significant reduction in left ventricular weight. However, these favorable effects of PE were not associated with significant improvement in glucose tolerance, hyperinsulinemia, and hyperlipidemia in this model. PE also had no direct stimulatory effects on either basal or insulin-mediated glycogen synthesis in the isolated soleus muscle of obese rats, perhaps because of the severe insulin-resistant state of the animals. Our results support the clinical observations that antihypertensive therapy with ACE inhibitors has neutral effects on glucose metabolism and insulin sensitivity in patients with combined hypertension and NIDDM.

Angiotensin-Converting Enzyme Inhibitors

Stereospecific pharmacokinetics of free and protein-bound ketoprofen in serum and synovial fluid of horses after intravenous and intramuscular administration.

OBJECTIVE: To determine intravascular and intrasynovial pharmacokinetics of the R and S enantiomers of ketoprofen after i.v. and i.m. administration to horses. ANIMALS: 6 healthy adult mares. PROCEDURE: Horses were weighed and ketoprofen (2.2 mg/kg of body weight) was administered i.v. Blood and synovial fluid samples were obtained and analyzed for concentrations of the R and S enantiomers by means of a modified reverse-phase stereospecific high-pressure liquid chromatographic method. Three weeks later, the procedure was repeated, except that ketoprofen was given IM. Protein binding of ketoprofen enantiomers was determined by means of ultrafiltration. Nonlinear least squares methods were used to calculate pharmacokinetic parameters. RESULTS: Data obtained after i.v. administration best fit an open, two-compartment model. Mean +/- SD S-to-R serum concentration ratios after i.v. and i.m. administration were 1.36 +/- 0.214 and 1.34 +/- 0.245, respectively. Intrasynovial concentrations of the R and S enantiomers of ketoprofen could be measured for only the first 3 hours after i.v. administration; concentrations were less than the limit of quantification by 4 hours after i.v. administration and at all times after i.m. administration. Extent of protein binding of the R enantiomer was not significantly different from extent of protein binding of the S enantiomer; extent of protein binding did not appear to be concentration dependent. Mean free S-to-free R serum concentration ratios, adjusted for protein binding, after i.v. and i.m. administration were 1.58 and 1.56, respectively. CONCLUSIONS: The R and S enantiomers of ketoprofen are rapidly absorbed and eliminated, have low volumes of distribution, and are highly protein bound.

Animals

Parasite-mediated steps in immune response failure during primary Theileria annulata infection.

"Exotic" European cattle are highly susceptible to T. annulata infection. In immunised animals, several effective anti-parasite responses can be demonstrated, such as anti-macroschizont cytotoxic T cells (CTL), and nitric oxide killing of parasites. The failure of infected animals to mount an effective primary immune response suggests that the presence of the parasite directly interferes with the development of immunity. When the activation pathways of CD4+ T cells in draining lymph nodes were examined during the course of a primary infection it was found that the development of this essential arm of the immune response was altered. Instead of interacting with antigen presenting cells in the paracortex, the majority of CD4+ T cells were rapidly activated by developing infected cells in the medulla of the node. Activation of T cells by infected cells also drastically alters the cytokines produced by the T cells. During effective immune responses, the principal cytokine involved appears to be IL-2, with only small, controlled "bursts" of IFN gamma production. However, IL-2 responsiveness is only transient in animals undergoing primary infection, while IFNg production is greatly elevated. IFN gamma does not appear to control parasitised cells, and may even aid the growth of infected macrophages--large numbers of macrophages enter the cell cycle during the peak period of IFN gamma production. Uncontrolled parasite-induced IFN gamma production is also likely to account for the local failure of antibody responses. Germinal centres in infected lymph nodes lose normal morphology, with IFN gamma sensitive zones failing to develop. A third strategy which the parasite uses to evade immune response destruction is through affecting CTL activity. CTL in infected draining lymph nodes lose expression of the adhesion molecule CD2--a molecule is essential in adherence to target cells for lysis. CD2- CTL are unable to lyse macroschizont infected cells.

Animals

A non-protective T helper 1 response against the intra-macrophage protozoan Theileria annulata.

Theileria annulata is a protozoan parasite which infects and transforms bovine macrophages. Infected macrophages possess augmented antigen presentation capabilities, as they are able to activate the majority of T cells from unexposed animals. In vivo, T cells in the draining lymph node (principal site of parasite development) are activated 'non-specifically' by the parasite. This event is followed by failure of the immune response to control the infection. Protective immune responses against intra-macrophage protozoa are usually mediated by T helper 1 (Th1) T cell responses. Here we examine the cytokine responses made by T. annulata-activated T cells. We show that the outcome of in vitro activation of T cells by parasitized macrophages is a skewing of their cytokine responses towards preferential expression of interferon-gamma (IFN-gamma) mRNA. The in vitro response is mirrored during in vivo infection, as greatly elevated amounts of IFN-gamma protein are found in lymph efferent from infected lymph nodes, while expression of IL-4 mRNA within the node stops. IFN-gamma production does not correlate with protection against the parasite, as infected cells flourish during peak IFN-gamma production, and only very small amounts of IFN-gamma are produced during the effective immune response of an immunized animal. Overproduction of IFN-gamma and loss of IL-4 expression are also likely to account for the failure of B cells to reach the light zone of germinal centres, a developmental step which is tightly regulated by cytokines.

Animals

Allograft responses can interfere with the development of immunity against Theileria annulata following vaccination with parasite infected cell lines.

Theileria annulata macroschizont-infected cell lines are successfully used as vaccines in several countries. The inoculated animals produce a strong allogeneic response against the MHC antigens of the immunizing cell line followed by an anti-parasite response. Immunity against the parasite wanes in the absence of challenge and re-immunization is sometimes recommended. However, it is not known if allogeneic responses generated by the first immunization with a T. annulata infected cell line will interfere with the boosting of immunity against the parasite at the time of re-immunization with the same cell line. Animals were primed against MHC antigens by skin grafting, followed by immunization with a T. annulata infected cell line prepared from the skin donor. A strong anti-MHC response was produced. This interfered with parasite transfer and the development of an anti-parasite immune response; the effect was more marked when a low vaccine cell dose was used. There was a negative correlation between the ease of isolating infected cells from the animals after cell line immunization, and the subsequent response to challenge. Where no cell lines could be isolated, the animals were fully susceptible to sporozoite challenge. These observations are of immediate importance in endemic areas where cell lines of T. annulata schizonts are being used as vaccines to control the disease.

Animals

Takayasu's arteritis presenting as a mediastinal mass.

Patients with Takayasu's arteritis generally present with symptoms secondary to arterial insufficiency or with aneurysm formation. We report the unusual presentation and subsequent management of a patient with Takayasu's arteritis who developed symptoms secondary to an expanding mediastinal mass of unknown origin.

Adult

Extrapleural suction buttress of primary esophageal repair.

Buttress reinforcement of a primary esophageal repair after perforation may diminish the potential for breakdown or leakage of the approximation. We describe a method of reinforcing a primary esophageal repair by using pleural tissue that is secured in place with an extrapleural, soft T-tube attached to a suction device. This technique is simple to apply and may maximize recovery of respiratory function by permitting timely removal of chest tubes.

Chest Tubes

Developing sympathetic neurons express a neuronal trait before a catecholaminergic synthetic enzyme in vivo.

How multiple mature phenotypic traits are regulated in developing neurons remains a central problem in developmental neurobiology. Mature sympathetic neurons express general neuronal epitopes, including neuron specific tubulin (NST) as well as markers involved in neurotransmitter synthesis including tyrosine hydroxylase (TH). To investigate the relationship between neuronal differentiation and neurotransmitter development, the order of appearance of NST and TH was determined in both chick and rat embryonic sympathetic ganglia by double-label immunohistochemistry. In differentiated ganglia, these two markers were expressed in virtually all sympathetic neurons examined. By contrast, at early stages of embryonic development in both chick and rat, sympathetic ganglia contained many NST immunoreactive (IR) cells, but few precursors were TH-IR. With further development, more NST-IR cells were also TH-IR, and these two markers gradually became coexpressed with subsequent development. These data provide evidence that general neuronal and neurotransmitter differentiation events are separable and independently regulated during cellular diversification in the adrenergic lineage.

Animals

Functional expression of a cattle MHC class II DR-like antigen on mouse L cells.

Cattle DRA and DRB genes, cloned by reverse-transcription polymerase chain reaction, were transfected into mouse L cells. The cattle DR-expressing L-cell transfectant generated was analyzed serologically, biochemically, and functionally. Sequence analysis of the transfected DRB gene clearly showed showed that it was DRB3 allele DRB3(*)0101 , which corresponds to the 1D-IEF-determined allele DRBF3. 1D-IEF analysis of the transfectant confirmed that the expressed DR product was DRBF3. Functional integrity of the transfected gene products was demonstrated by the ability of the transfectant cell line to present two antigens (the foot-and-mouth disease virus-derived peptide FMDV15, and ovalbumin) to antigen-specific CD4(+) T cells from both the original animal used to obtain the genes, and also from an unrelated DRBF3(+) heterozygous animal. Such transfectants will be invaluable tools, allowing us to dissect the precise contributions each locus product makes to the overall immune response in heterozygous animals, information essential for rational vaccine design.

Animals

Nitric oxide activates multiple potassium channels in canine colonic smooth muscle.

1. Nitric oxide (NO), an inhibitory neurotransmitter released from peripheral neurones, hyperpolarizes smooth muscle cells and inhibits contraction. The mechanism of this hyperpolarization is unknown. 2. We have identified three classes of K+ channels activated by NO and NO donors in colonic smooth muscle cells. NO and NO donors increased the open probability of 80 pS channels (KNO1), very small channels (< 4 pS, KNO2), and 270 pS Ca(2+)-activated K+ channels (BK channels) in cell-attached patches. 3. Dibutyryl cGMP and 8-bromo cGMP also increased the open probability of KNO1 and KNO2 in cell-attached patches. 4. In excised patches of membrane, direct application of NO or the NO donor, S-nitroso-N-acetyl penicillamine (SNAP), increased the open probability of KNO1 and KNO2, but cGMP or dibutyryl cGMP had no effect. SNAP had no effect on the open probability of BK channels in excised patches. 5. The reducing agent dithiothreitol and the alkylating agent N-ethylmaleimide blocked NO-induced channel openings. 6. In summary, the hyperpolarization response to NO in smooth muscles may be mediated by multiple K+ channels. At least two of these classes of channels may be activated by dual pathways involving direct activation by NO and cGMP-mediated mechanisms.

Animals