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Biomedical subjects

R Paxton

Publications and source records attributed to R Paxton.

At least 19 recordsLinked to original sources

Studies evaluating the antitumor activity and toxicity of interleukin-15, a new T cell growth factor: comparison with interleukin-2.

Interleukin-15 is a new cytokine that stimulates the proliferation of T cells and other cells of the immune system. Some of the biological properties of interleukin-15 overlap that of interleukin-2. Using murine models, the present studies have shown that interleukin-15, in vivo, is three to four times more potent than interleukin-2 in generating cytolytic effector splenocytes that lyse YAC target cells. It is approximately one-third as potent as interleukin-2 in inducing specific cytolytic cells that lyse allogeneic target cells. Interleukin-15 is approximately half as potent as interleukin-2 in suppressing pulmonary metastasis induced by MCA-205 tumor cells. The dose of interleukin-15 required to induce pulmonary vascular leak in mice is six times higher than that required for interleukin-2. These results support the view that interleukin-15 exhibits a therapeutic index that is superior to interleukin-2.

Animals

IL-15 has stimulatory activity for the induction of B cell proliferation and differentiation.

The identification and cloning of the novel cytokine IL-15 were recently described. IL-15 is produced by a wide range of cell types, with the highest levels of IL-15 mRNA being detected in epithelial lines, monocytes, muscle, and placenta. Although it has no sequence identity with IL-2, IL-15 shares many of the T cell-stimulatory activities described for IL-2. We have examined IL-15 for its ability to stimulate B cells and have compared its activity with that of IL-2. IL-15 costimulates proliferation of B cells activated with immobilized anti-human IgM or phorbol ester, but has no stimulatory effect on resting B cells. In combination with recombinant CD40L, IL-15 is a potent inducer of polyclonal IgM, IgG1, and IgA secretion, but does not cause production of IgG4 or IgE. The activity of IL-15 in B cell proliferation and differentiation assays is comparable with that of IL-2. Studies that used neutralizing Abs have demonstrated that, for signal transduction in B cells, IL-15 uses the beta-chain of the IL-2R complex but, unlike IL-2, does not require the alpha-chain. IL-2 is required for the generation of a human primary Ag-specific in vitro response using sheep erythrocytes as Ag. Of all cytokines examined, only IL-15 has the capacity to replace IL-2 in this system, although only partially. In summary, IL-15 has comparable activity with IL-2 for the induction of B cell proliferation and differentiation and uses at least some of the components of the IL-2R complex to mediate its effects.

Antibody Formation

Interleukin (IL) 15 is a novel cytokine that activates human natural killer cells via components of the IL-2 receptor.

Interleukin 15 (IL-15) is a novel cytokine that has recently been cloned and expressed. Whereas it has no sequence homology with IL-2, IL-15 interacts with components of the IL-2 receptor (IL-2R). In the present study we performed a functional analysis of recombinant IL-15 on phenotypically and functionally distinct populations of highly purified human natural killer (NK) cells. The CD56bright subset of human NK cells constitutively expresses the high affinity IL-2R and exhibits a brisk proliferative response after the binding of picomolar amounts of IL-2. Using a proliferation assay, IL-15 demonstrated a very steep dose-response curve that was distinct from the dose-response curve for IL-2. The proliferative effects of IL-15 could be abrogated by anti-IL-2R beta (p75), but not by anti-IL-2R alpha (p55). The proliferative effects of IL-2 on CD56bright NK cells could be inhibited by both antibodies. CD56dim NK cells express the intermediate affinity IL-2R in the absence of the high affinity IL-2R. Activation of CD56dim NK cells by IL-15 was similar to that of IL-2 as measured by enhanced NK cytotoxic activity, antibody-dependent cellular cytotoxicity, and NK cell production of interferon gamma, tumor necrosis factor alpha, and granulocyte/macrophage colony-stimulating factor. The IL-15-enhanced NK cytotoxic activity could be completely blocked by anti-IL-2R beta monoclonal antibody. The binding of radiolabeled IL-2 and IL-15 to CD56dim NK cells was inhibited in the presence of anti-IL-2R beta. Scatchard analysis of radiolabeled IL-15 and IL-2 binding to NK-enriched human lymphocytes revealed the presence of high and intermediate affinity receptors for both ligands. IL-15 is a ligand that activates human NK cells through components of the IL-2R in a pattern that is similar but not identical to that of IL-2. Unlike IL-2, IL-15 is produced by activated monocytes/macrophages. The discovery of IL-15 may increase our understanding of how monocytes/macrophages participate in the regulation of NK cell function.

Antigens, CD

Structural characteristics of CD40 ligand that determine biological function.

CD40 ligand (CD40L) is a 33 kDa type II glycoprotein which is transiently expressed on the surface of T cells following activation. The demonstration that signals delivered by CD40L are essential for the process of affinity maturation and immunoglobulin isotype switching following antigenic challenge came from the study of X-linked hyper-IgM patients whose T cells cannot express functional CD40L. While some of the biological activities of CD40L, especially on B cells, can be mimicked by monoclonal antibodies (MAb) specific for CD40, it is becoming increasingly clear that CD40L also mediates various functional effects on other cell types. Not only are there distinctions between the activities of CD40L and CD40 MAb, but the manner in which CD40 is ligated appears to play an important part in the biological outcome of signaling through this receptor. In this review, we compare and contrast the activities which can currently be ascribed to CD40L and CD40 MAb and consider the role that ligand oligomerization plays in CD40-mediated signal transduction.

Amino Acid Sequence

Sensitivity and specificity of Gold types 1 to 5 anti-carcinoembryonic antigen monoclonal antibodies: immunohistologic characterization in colorectal cancer and normal tissues.

Carcinoembryonic antigen (CEA) is one of the better-studied oncodevelopmental antigens to which numerous monoclonal antibodies (MoAbs) have been generated. Many of these MoAbs have been recently grouped (Gold classification) according to their epitope recognition. The present study was designed to immunocharacterize various MoAbs, each representative of the five Gold groups, on colorectal cancers and normal tissues using semiquantitative immunohistochemistry. Sensitivity, based on the number of colorectal cancer cases (n = 100) with positive reaction (> 5% cells), was greater with Gold groups 1 and 2 (93% each) than with groups 3, 4, and 5 (78%, 83%, and 87%, respectively). The intensity of the strain also correlated with the Gold groups, with 24%, 20%, and 18% of cancer cases displaying weak or negative staining (0 or 1+) when reacted with MoAbs from groups 3, 4, and 5, respectively, versus 6% and 12% with Gold 1 and 2 antibodies. Cross-reactivity of the anti-CEA antibodies with CEA-related molecules was found to be significant with Gold 5 antibody, which stained most of the normal lung, liver, stomach, and intestinal tissues tested. Strong staining also was seen in granulocytes when they were reacted with Gold 4 and 5 antibodies. The other antibodies showed much less and variable cross-reactivity with normal tissues, with a not statistically significant advantage for Gold 1 antibodies. In addition to lower sensitivity in CEA detection, Gold 3 to 5 MoAbs were less specific due to cross-reaction with one or more of the CEA-related macromolecules expressed by normal tissues. Based on these results and given the broad clinical applications of anti-CEA MoAbs, it is essential to characterize each MoAb to be used for clinical purposes in order to avoid interpretation errors of potential relevance resulting from poor sensitivity/specificity. The use of antibodies that recognize the epitope of group 1 or 2 is recommended to maximize sensitivity and specificity for CEA detection.

Antibodies, Monoclonal

An improved assay for pyruvate dehydrogenase in liver and heart.

A radiochemical assay was developed to measure pyruvate dehydrogenase complex (PDC) activity in liver and heart without interference by branched-chain 2-oxo acid dehydrogenase (BCODH). Decarboxylation of pyruvate by BCODH was eliminated by using low pyruvate concentration (0.5 mM), a preferred substrate for BCODH (3-methyl-2-oxopentanoate) that is not used by PDC, and a competitive inhibitor of BCODH, dichloroacetate. This method was validated by assaying a combination of both purified enzymes and tissue homogenates with known amounts of added BCODH. The actual percentage of active PDC decreased after 48 h starvation from 13.6 to 3.1 in liver and from 77.1 to 9.0 in heart. Total PDC activity (munits of PDC/units of citrate synthase) in starved rats was increased by 34% in liver and decreased by 23% in heart. Total PDC activity (munits/g wet wt.) in fed- and starved-rat liver was 0.8 and 1.3, and in heart was 6.6 and 5.8, respectively.

Animals

Spectrophotometric enzymatic assay for S-3-hydroxyisobutyrate.

An enzymatic spectrophotometric end-point assay has been developed for determination of S-3-hydroxyisobutyrate in biological fluids. The assay measures NADH production at 340 nm after initiation of the reaction with rabbit liver 3-hydroxyisobutyrate dehydrogenase (EC 1.1.1.31). The assay is not affected by R-3-hydroxyisobutyrate, lactate, malate, 3-hydroxybutyrate, 2-methyl-3-hydroxybutyrate, 3-hydroxyisovalerate, 3-hydroxy-n-valerate, 2-methyl-3-hydroxy-valerate, and 3-hydroxypropionate. The assay does measure 2-ethyl-3-hydroxypropionate, a minor metabolite produced by catabolism of alloisoleucine. Application of the method to measure S-3-hydroxyisobutyrate in plasma obtained from normal, 48-h starved, and mildly and severely diabetic rats gave levels of 28, 42, 112, and 155 microM, respectively.

Alcohol Oxidoreductases

Self-help materials for anxiety: a randomized controlled trial in general practice.

The efficacy of a self-help package in treating chronic anxiety was evaluated in a randomized controlled trial in which the intervention group received self-help materials in the form of an audiotape and booklet, in addition to their current treatment. The intervention was successful in terms of mean depression scores (P = 0.01), anxiety scores (P = 0.04) and general health questionnaire scores (P = 0.02) which were significantly lower for the intervention group than for the controls. In addition, the depression scores fell faster for the intervention group than for the controls. The overall mean reduction in three months in adjusted depression scores was approximately two points greater for the intervention group than for the controls (P = 0.02). Clinicians welcomed the package as a valuable addition to the therapies available for managing chronic anxiety problems. Further studies should include larger sample sizes, taking into account the non-response to postal questionnaires over time.

Adolescent

Nutritional and hormonal regulation of the activity state of hepatic branched-chain alpha-keto acid dehydrogenase complex.

The hepatic branched-chain alpha-keto acid dehydrogenase complex plays an important role in regulating branched-chain amino acid levels. These compounds are essential for protein synthesis but are toxic if present in excess. When dietary protein is deficient, the hepatic enzyme is present in the inactive, phosphorylated state to allow conservation of branched-chain amino acids for protein synthesis. When dietary protein is excessive, the enzyme is in the active, dephosphorylated state to commit the excess branched-chain amino acids to degradation. Inhibition of protein synthesis by cycloheximide, even when the animal is starving for protein, results in activation of the hepatic branched-chain alpha-keto acid dehydrogenase complex to prevent accumulation of branched-chain amino acids. Likewise, the increase in branched-chain amino acids caused by body wasting during starvation and uncontrolled diabetes is blunted by activation of the hepatic branched-chain alpha-keto acid dehydrogenase complex. The activity state of the hepatic branched-chain alpha-keto acid dehydrogenase complex is regulated in the short term by the concentration of branched-chain alpha-keto acids (inhibitors of branched-chain alpha-keto acid dehydrogenase kinase) and in the long term by alteration in the total branched chain alpha-keto acid dehydrogenase kinase activity.

3-Methyl-2-Oxobutanoate Dehydrogenase (Lipoamide)

Purification and characterization of 3-hydroxyisobutyrate dehydrogenase from rabbit liver.

3-Hydroxyisobutyrate dehydrogenase (3-hydroxy-2-methyl propanoate: NAD+ oxidoreductase, EC 1.1.1.31) was purified 1800-fold from rabbit liver by detergent extraction, differential solubility in polyethylene glycol and (NH4)2SO4, and column chromatography on DEAE-Sephacel, phenyl-Sepharose, CM(carboxymethyl)-Sepharose, Affi-Gel Blue, and Ultrogel AcA-34. The enzyme had a native Mr of 74,000 and appeared to be a homodimer with subunit Mr = 34,000. The enzyme was specific for NAD+. It oxidized both S-3-hydroxyisobutyrate and R-3-hydroxyisobutyrate, but the kcat/Km was approximately 350-fold higher for the S-isomer. Steady state kinetic analysis indicates an ordered Bi Bi reaction mechanism with NAD+ binding before 3-hydroxyisobutyrate. The enzyme catalyzed oxidation of S-3-hydroxyisobutyrate between pH 7.0 and 11.5 with optimal activity between pH 9.0 and 11.0. The enzyme apparently does not have a metal ion requirement. Essential sulfhydryl groups may be present at both the 3-hydroxyisobutyrate and NAD+ binding sites since inhibition by sulfhydryl-binding agents was differentially blocked by each substrate. The enzyme is highly sensitive to product inhibition by NADH which may play an important physiological role in regulating the complete oxidation of valine beyond the formation of 3-hydroxyisobutyrate.

Animals

Branched chain alpha-ketoacid dehydrogenase and pyruvate dehydrogenase activity in isolated rat pancreatic islets.

Branched-chain alpha-ketoacid dehydrogenase and pyruvate dehydrogenase in isolated rat pancreatic islets were shown to be regulated by a phosphorylation/dephosphorylation mechanism. Broad-specificity phosphoprotein phosphatase treatment stimulated and ATP addition inhibited their activities. The kinases responsible for inactivating these complexes were shown to be sensitive to inhibition by known inhibitors, alpha-chloroisocaproate and dichloroacetate. Total activity (nmol/min/islet / 37 degrees C) of branched-chain alpha-ketoacid dehydrogenase and pyruvate dehydrogenase was 0.86 and 5.09, with a % active form (activity before phosphatase treatment divided by activity after phosphatase treatment X 100) of 36% and 94%, respectively. Incubation of intact isolated islets with alpha-chloroisocaproate affected neither insulin release nor flux through branched-chain alpha-ketoacid dehydrogenase.

3-Methyl-2-Oxobutanoate Dehydrogenase (Lipoamide)

Teaching nurses therapeutic conversation: a pilot study.

A 2-day video-based workshop developed for teaching psychiatrists was used to instruct learner psychiatric nurses in the conversational model of psychotherapy. A small evaluation was carried out to assess the effects of the teaching on the performance of these nurses in interviewing other learner nurses who role-played people with common emotional difficulties. A randomized groups design was used comparing the interview behaviour of experimental and control groups before and after the workshops, and at 3 months follow-up. Considered as a pilot the study was instructive, although only one significant result emerged. The conversational model of psychotherapy and the teaching workshops devised and used previously with psychiatrists can be used by nurses, including those still in training.

Adult

Preservation of the activity state of hepatic branched-chain 2-oxo acid dehydrogenase during the isolation of mitochondria.

A comparison was conducted of current methods for estimation of the activity states (proportion of enzyme in active, dephosphorylated, form) of hepatic branched-chain 2-oxo acid dehydrogenase. Practically all of the enzyme was active in freeze-clamped liver obtained from chow-fed and 48 h-starved rats, regardless of the presence of fluoride in the extraction and assay media to inhibit phosphatase activity. Likewise, the enzyme was almost completely active in mitochondria isolated by a conventional method from livers of chow-fed and starved rats. However, when fluoride and 4-methyl-2-oxopentanoate were included in the mitochondrial isolation medium the activity state was decreased to 73% and 47% in mitochondria isolated from chow-fed and starved rats respectively. Furthermore, branched-chain 2-oxo acid dehydrogenase became partially inactivated upon incubation of isolated mitochondria on ice in fluoride- and/or 4-methyl-2-oxopentanoate-supplemented media. The rate of inactivation was greater in mitochondria prepared from starved than from chow-fed rats, which correlated with the lower activity state found in mitochondria of starved rats isolated in the fluoride- and 4-methyl-2-oxopentanoate-supplemented media. Thus the activity state of branched-chain 2-oxo acid dehydrogenase is underestimated in mitochondria isolated in media supplemented with fluoride plus 4-methyl-2-oxopentanoate.

3-Methyl-2-Oxobutanoate Dehydrogenase (Lipoamide)

Purification of branched chain alpha-ketoacid dehydrogenase complex from rat liver.

A new method using hydrophobic interaction chromatography on phenyl-Sepharose was developed to purify branched chain alpha-ketoacid dehydrogenase complex from commercially available frozen rat liver. Yields of greater than 50% were routinely achieved. The purified enzyme, composed of E1 alpha, E1 beta, and E2 subunits, appeared homogeneous on sodium dodecyl sulfate-polyacrylamide gel electrophoresis and contained endogenous kinase activity for phosphorylation and inactivation of the complex.

3-Methyl-2-Oxobutanoate Dehydrogenase (Lipoamide)

Enzymatic determination of the branched-chain alpha-keto acids.

A spectrophotometric endpoint assay for determination of branched-chain alpha-keto acids is described. The assay depends on measurement of the NADH produced after addition of branched-chain alpha-keto acid dehydrogenase. Interference by pyruvate and alpha-ketobutyrate was eliminated by pretreating the sample with pyruvate dehydrogenase. The method yielded a peripheral venous plasma value of 59 +/- 5 microM (mean +/- SE) for the branched-chain alpha-keto acids of five overnight fasted healthy humans.

3-Methyl-2-Oxobutanoate Dehydrogenase (Lipoamide)

Activities of branched-chain amino acid aminotransferase and branched-chain 2-oxo acid dehydrogenase complex in tissues of maternal and fetal sheep.

Branched-chain amino acid aminotransferase (BCAAT) and branched-chain 2-oxo acid dehydrogenase (BCODH) activities were determined in sheep maternal and fetal liver, kidney, skeletal muscle, adipose and placenta in the fed and 5-day-starved states at 125 days gestation (term is 147 days). BCAAT activities were quite low in maternal skeletal muscle, low in fetal and maternal liver, high in fetal muscle, and very high in placenta. No significant changes occurred with maternal starvation. The high BCAAT activity of the placenta may provide the essential branched-chain 2-oxo acids for the fetus. BCODH activity was highest in liver and kidney of both the mother and fetus; it was largely in the active (dephosphorylated) state in maternal liver and kidney, and in fetal kidney, and about 50% active in fetal liver. The enzyme was largely inactive in fetal muscle, and about 50% active in maternal muscle. Although starvation had little effect on the activity of BCODH in fetal tissues, a significant decrease in activity was observed in maternal tissues, thereby potentially sparing branched-chain amino acids or the corresponding 2-oxo acids for maintenance of the fetus during compromised maternal nutrition.

3-Methyl-2-Oxobutanoate Dehydrogenase (Lipoamide)