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Biomedical subjects

L Haynes

Publications and source records attributed to L Haynes.

At least 19 recordsLinked to original sources

Age-related changes in CD4 T cells of T cell receptor transgenic mice.

Much of the decrease in immunoresponsiveness seen in elderly populations is associated with changes in T cells responses. The observed functional changes include decreased responsiveness to T cell receptor stimulation and altered profiles of cytokine secretion. At the same time there is a decrease in the proportion of T cells that express a naive phenotype (CD44lo, CD45RBhi, CD62Lhi) and an increase in those that express a memory phenotype (CD44hi, CD45RBlo, CD62Llo). These changes are thought to result in the increased susceptibility to infection and decreased efficacy of vaccination that are observed in the elderly population. In this paper, we compare our published findings of the changes in antigen-specific T cell responsiveness using aged T cell receptor transgenic (TCR Tg) mice to what is known using conventional murine models. The specific antigen recognized by this transgenic T cell receptor apparently does not appear in the environment and the T cells expressing the Tg retain a naive phenotype. Similar to the findings in aged humans and rodents, the TCR Tg+ and TG- CD4 T cells from aged transgenic mice display decreased capacities for proliferation and cytokine secretion. Although the proportion of CD4 T cells that possess a memory phenotype increased in aged TCR Tg mice, they are Tg-. These findings support the presence of age-related deficiencies which do not depend on response to antigen. The implications of these findings are discussed.

Aging

Antigen-independent changes in naive CD4 T cells with aging.

In the elderly, a dramatic shift within the CD4+ T cell population occurs, with an increased proportion having a memory phenotype with markedly decreased responsiveness. To determine what aspects of the aged phenotype are dependent upon repeated contact with antigen in the environment, we examined CD4+ cells isolated from TCR Tg mice. There is good evidence that no cross-reacting antigens for the Tg TCR recognizing pigeon cytochrome c are found in the environment of the animal, so that alterations in the Tg CD4+ cells with aging are likely to be due to antigen-independent processes. We found that in aged animals, TCR transgene(pos) CD4+ cells, although decreased in number and antigen responsiveness, maintain a naive phenotype rather than acquiring a prototypical aged memory phenotype. In contrast, the population of transgene(1o-neg) CD4+ cells increase in proportion and express the aged phenotype. Consistent with their naive status, transgene(pos) cells of aged individuals remain CD44lo CD45RBhi, secrete IL-2 and not IL-4 or IFN-gamma upon antigenic stimulation, and require co-stimulation to proliferate to anti-CD3 stimulation. These findings suggest that the aging-associated shift to CD4 cells expressing the memory phenotype is dependent on antigenic stimulation. However, the decrease in antigen responsiveness of naive transgenepos cells, as revealed by a lower secretion of IL-2 and IL-3 and a lower proliferative capacity, suggests that additional intrinsic changes occur with aging that do not depend on encounter with antigen.

Aging

Transglutaminase forms midkine homodimers in cerebellar neurons and modulates the neurite-outgrowth response.

Midkine is a prominent acyl donor substrate for the protein cross-linking enzyme transglutaminase type 2 in rat brain neurons. Transglutaminase type 2 and midkine immunoreactivity are regionally colocalized in developing cerebellar cortex. Monomeric midkine is present in the embryonic dorsal rhombic lip which gives rise to the cerebellar cortex. A high-molecular weight (29-30 kDa) midkine appears during postnatal cerebellar development. The presence of the high-molecular weight midkine in cultured cerebellar cortical interneurons is dependent upon culture conditions. Transglutaminase catalyzes the calcium-dependent cross-linking of midkine predominantly into 29-30 kDa dimers. Dimer-formation of midkine in vitro and in cultured neurons is reduced in the presence of a transglutaminase inactivator. Neurons plated onto previously cross-linked midkine exhibit larger growth cones and enhanced neurite outgrowth compared to those plated onto monomeric midkine alone.

Aging

Gastrostomy and growth in dystrophic epidermolysis bullosa.

Chronic malnutrition and growth failure are features of severe dystrophic epidermolysis bullosa (DEB). Conventional dietetic intervention is of limited benefit. Oesophageal dilatation or reconstruction to alleviate stricture is associated with substantial risks. Surgical placement of a feeding gastrostomy is a comparatively straightforward procedure, provided that specialized anaesthetic and surgical techniques are employed. Gastrostomy insertion was undertaken in 18 children with severe DEB and the effects of this intervention were retrospectively evaluated. The majority received button devices (inserted primarily) and gastrostomy feeding supplemented oral intake. One year postoperatively, the average increase in weight standard deviation scores (SDS) of 13 patients was 0.9 SDS (95% confidence interval 0.44, 1.35) and in height 0.42 SDS (95% confidence interval 0.05, 0.79). One patient developed an incisional hernia and four patients experienced minor leakage around the gastrostomy entry site. Two patients never accepted their gastrostomies, which were therefore removed. Two further patients died for reasons unrelated to the procedure. Our observations suggest that gastrostomy feeding can play a valuable role in severe DEB and is associated with minimal morbidity. Such intervention is best undertaken before growth failure is established, and prior to puberty.

Adolescent

Transforming growth factor beta (TGF beta) is produced by and influences the proliferative response of Xenopus laevis lymphocytes.

Both TGF beta 2 and 5 have been described in the South African clawed frog Xenopus laevis and have been cloned from the tadpole-derived fibroblast cell line, XTC. Because TGF beta has such a profound inhibitory effect on the mammalian immune system, this study was performed to determine whether TGF beta: (a) has any in vitro effects on the growth of Xenopus lymphoblasts, and (b) is produced by mitogen-activated Xenopus lymphocytes. Following stimulation with mitogen or alloantigen, T lymphocytes from Xenopus secrete a T-cell growth factor (TCGF) that is functionally homologous to mammalian interleukin-2 (IL-2). Both recombinant human TGF beta 1 and Xenopus TGF beta 5 inhibit TCGF-induced proliferation of Xenopus splenic blasts and this inhibition can be reversed with anti-pan TGF beta antiserum. The Xenopus mitogen-induced saturated ammonium sulfate precipitated TCGF-containing supernatant (SAS TCGF SN) also contains latent TGF beta as assayed on mink lung fibroblasts and Xenopus splenic blasts, and experiments utilizing anti-TGF beta antiserum showed that only TGF beta 5 is present in this supernatant.

Animals

Further characterization of an interleukin-2-like cytokine produced by Xenopus laevis T lymphocytes.

A T-cell growth factor (TCGF) is produced by antigen- or mitogen-stimulated T lymphocytes from the South African clawed frog Xenopus laevis. This study further defines the physical and biological properties of this cytokine and demonstrates that TCGF is biochemically similar to mammalian interleukin-2 (IL-2). Biologically active TCGF eluted from SDS-PAGE displays a M(r) of 16 kD and lectin-affinity chromatography indicates that the three-dimensional configuration of carbohydrates on TCGF and human IL-2 is similar. Secretion of TCGF is detectable 1 day after stimulation of splenocytes with the T-cell mitogen phytohemagglutinin (PHA) and peaks following 2 to 3 days of stimulation. Finally, despite the biological and physical similarities between Xenopus TCGF and mammalian IL-2, anti-human IL-2 monoclonal antibodies do not recognize Xenopus TCGF.

Animals

Nutrition in dystrophic epidermolysis bullosa.

In dystrophic epidermolysis bullosa (EB), a combination of diminished food intake and increased nutritional requirements commonly leads to malnourishment. Adequate nutrition in these patients could provide many benefits, including improved growth, accelerated healing, decreased susceptibility to infection, and enhanced well-being. We assessed nutrition status of children with dystrophic EB, and evaluated the benefits of nutritional advice in those who were considered malnourished. The majority of patients had inadequate intakes of a wide spectrum of nutrients, including those who appeared to be relatively mildly affected. We were unable to secure persisting substantial improvements in dietary intake despite thorough counseling. Adequate nutrition in patients with dystrophic EB depends on active nutritional support starting from birth. The need for more invasive techniques of nourishment, such as nasogastric and gastrostomy feeding, may have to be considered earlier than is currently the case.

Body Height

Beta-endorphin C-terminal peptide evokes arachidonic acid release from cortical neurones.

The release of free [3H]arachidonic acid and its metabolites (AAM) from mouse embryo cortical neurones cultured in serum-free medium stimulated by beta-endorphin C-terminal dipeptide (glycl-L-glutamine, Gly-Gln) was investigated. Gly-Gln but not the related dipeptide, glycyl-glutamic acid, caused a 2-fold elevation of AAM release which was blocked in the absence of extracellular calcium, in the presence of 5 mM magnesium and by the phospholipase A2 (PLA2) inhibitor, mepacrine. Other proopiomelanocortin (POMC) peptides did not elicit AAM release. The response to Gly-Gln was unaffected by D-amino-2-phospho-5-valeric acid (AP5) and 7-chlorokynurenic acid (7-ClKY), antagonists respectively at the ligand and allosteric glycine binding sites of the NMDA glutamate receptor subtype. However, it was inhibited in a dose-dependent manner by antagonists at the phencyclidine (PCP) and sigma sites. The results suggest that Gly-Gln causes AAM release by activating PLA2 through the mediation of a PCP/sigma-like receptor.

Animals

Shark spontaneous cytotoxicity: characterization of the regulatory cell.

Down regulation of shark macrophage-mediated spontaneous cytotoxicity is evident in vitro when animals are maintained at environmental temperatures greater than 26 degrees C. Previous work has shown that inhibition of spontaneous killing is mediated by viable, glass nonadherent, nonphagocytic cells which are sensitive to alterations in environmental temperature. The current report further characterizes the regulatory cell population. Glass nonadherent leukocytes were enriched for regulatory activity by density gradient centrifugation, and the majority of activity sedimented to 34% iso-osmotic Percoll. Two morphologically distinct cells are found in this fraction, lymphocyte-like cells and granulocytes. The 34% fraction was further separated by adherence to SIg-coated dishes, and the ability to inhibit spontaneous killing partitioned with the SIg- subset. In addition, fractionation of cells bearing Fc receptors (FcR) for shark Ig showed the regulator to be devoid of FcR. Sequential depletion of cells expressing SIg and FcR confirmed these data. Inhibition by allogeneic cells indicated that histocompatibility between the cytotoxic effector and the regulator is not a requirement for expression of activity. Thus, down regulation of spontaneous cytotoxicity is mediated by nonadherent, nonphagocytic, SIg-, FcR-cells which are not MHC restricted. The lymphoid or granulocytic lineage of the regulatory cell is discussed.

Animals

A monoclonal antibody against the human IL-2 receptor binds to paraformaldehyde-fixed but not viable frog (Xenopus) splenocytes.

Others have reported that a monoclonal anti-human IL-2 receptor antibody (anti-CD25) specifically binds a membrane receptor on Xenopus laevis PHA-induced and paraformaldehyde-fixed splenic blasts. In this paper, we present evidence suggesting that this binding is an artifact of membrane damage. Specifically, significant binding of anti-CD25 could only be achieved if the lymphoblasts were acid-washed and/or paraformaldehyde-fixed prior to being incubated with the fluoresceinated antibody. For example, in a representative experiment 95% of paraformaldehyde-fixed blasts, about 19% of acid-washed but not fixed blasts, but fewer than 2% of viable (untreated) blasts were positive for the CD25 epitope. Paraformaldehyde is known to alter membrane permeability. The DNA dye propidium iodide (PI) was used to demonstrate that the acid washing procedure also causes membranes to become permeable. Flow cytometric analyses of acid-washed PHA-induced splenic blasts doubly stained with the anti-CD25 antibody and PI showed that only 1.5% of the cells that were positive for CD25 did not stain with PI. Additionally, the anti-CD25 antibody, which immunoprecipitated a molecule from human lymphoblasts of between 50 and 60 kDa, did not immunoprecipitate any surface molecules from 125I-labeled Xenopus splenic blasts. Since binding of anti-CD25 to Xenopus splenic blasts appears to occur only after membrane damage, the antibody may be recognizing a cross-reactive internal epitope that is not involved in ligand binding on the cell surface.

Animals

NMDA receptors activate the arachidonic acid cascade system in striatal neurons.

Receptors for excitatory amino-acid transmitters on nerve cells fall into two main categories associated with non-selective cationic channels, the NMDA (N-methyl-D-aspartate) and non-NMDA (kainate and quisqualate) receptors. Special properties of NMDA receptors such as their voltage-dependent blockade by Mg2+ (refs 3, 4) and their permeability to Na+, K+ as well as to Ca2+ (refs 5, 6), have led to the suggestion that these receptors are important in plasticity during development and learning. They have been implicated in long-term potentiation (LTP), a model for the study of the cellular mechanisms of learning. We report here that glutamate and NMDA, acting at typical NMDA receptors, stimulate the release of arachidonic acid (as well as 11- and 12-hydroxyeicosatetraenoic acids from striatal neurons probably by stimulation of a Ca2+-dependent phospholipase A2. Kainate and quisqualate, as well as K+-induced depolarization were ineffective. Our results provide direct evidence in favour of the hypothesis, that arachidonic acid derivatives, produced by activation of the postsynaptic cell, could be messengers that cross the synaptic cleft to modify the presynaptic functions known to be altered during LTP. In addition, we suggest that NMDA receptors are the postsynaptic receptors which trigger the synthesis of these putative transynaptic messengers.

Arachidonic Acid

Fc receptor for shark IgM.

Fc receptors for shark IgM have been demonstrated on shark leukocytes. Measurement of receptor binding required treatment of leukocytes with Cytochalasin D to inhibit phagocytosis. EA rosetting assays were carried out using human erythrocytes coated with shark anti-human antibody. Binding to shark leukocytes was demonstrated to be specific to shark IgM in that affinity purified shark IgM and purified Fc5 mu fragments could block rosette formation, but not shark transferrin, bovine serum albumin or fetal bovine serum. The binding was shown to be saturable and reversible, characteristic of receptor-ligand interaction. Further, it was shown that affinity purified, radioiodinated IgM could also bind Cytochalasin D-treated shark leukocytes in a manner analogous to rosetting. We conclude that Fc receptors appeared early in evolution, and that previous difficulties in demonstrating the Fc mu receptor resulted from non-specific binding associated with phagocytosis.

Animals

Macrophage-like effector of spontaneous cytotoxicity from the shark.

The effector of spontaneous cytotoxicity from shark peripheral blood has been shown to be a macrophage-like cell. Effector cells are isolated by centrifugation over Lymphocyte Separation Medium, adherence to glass, Percoll density gradient centrifugation and adherence to fibronectin sequentially. Effector cells are adherent to glass, sediment to densities of 1.048-1.052 g/ml and are adherent to fibronectin. The isolated effectors represent less than 1% of the peripheral blood leukocytes, and exhibit potent cytotoxic capability, both spontaneous and in the presence of phytohemagglutinin. In addition, the activity of these cells is resistant to 3000 rads gamma irradiation. Although nurse sharks have natural antibody to trinitrophenol, spontaneously cytotoxic cells are incapable of killing trinitrophenol modified targets indicating that natural antibody is not required for reactivity, and that natural antibody and spontaneous effectors do not have the same repertoire. However, cold target inhibition studies showed that these effector cells can recognize four of five human lymphomyeloid targets. It is concluded that the spontaneous, extracellular killing by the macrophage-like effector most closely resembles that of activated mammalian tumoricidal macrophages with the exception that they do not appear to require in vitro activation.

Animals

The role of the conjugated carbonyl of cytochalasin A in contractility inhibitions.

A study of the mechanism of action of cytochalasin A (CA) in relation to its structural features and to its selective inhibition of certain contractile processes has been initiated. Quantitative structure-function analyses with several CA-related cytochalasins - including synthetic 21,22-dihydro-CA (DHCA), the 22-beta mercaptoethanol CA-adduct, (CA-2ME), and the 22-dithiothreitol CA-adduct (CA-DTT) - have been carried out in a temperature sensitive gel-sol extract from Ehrlich ascites tumor cells. Each drug congener was purified to homogeneity by HPLC prior to biological testing. The undiminished inhibitory indices of DHCA and CA-2ME (ID50 congruent to 3.7 x 10(-7) M) overrules the prior circumstantial evidence accumulated for the obligatory electrophilic interaction of this drug, at its alpha-beta-unsaturated ketone region, with presumptive receptor nucleophiles.

Animals