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Biomedical subjects

J W Hooton

Publications and source records attributed to J W Hooton.

8 recordsLinked to original sources

Randomization tests: statistics for experimenters.

Randomization (permutation) tests free the experimenter from the constraints of random sampling, a known error distribution and equal variances, to give a direct answer to the question "how likely is such a large (or small) result if the applied treatments had no effect?" The "result" may be the difference in mean responses, a correlation coefficient or any other value of interest. A randomization test is not a different statistical test but a different, and always valid, method of determining statistical significance. The familiar t-test and F-test can be carried out by data permutation without any parametric assumptions being fulfilled. A particular advantage of this method is that unbalanced designs and missing values are easily accommodated. Even with only a small number of subjects the number of permutations will be large and a computer is necessary if the randomization test is to be of practical value. To make this method of determining statistical significance generally available an interactive microcomputer program, forming a comprehensive package for the design and analysis of experiments, has been prepared.

Mathematical Computing

Human colostrum contains an activity that inhibits the production of IL-2.

The effect of human colostrum on T cell immune function was investigated. Colostrum inhibited the proliferation of human T cells activated by allogeneic, concanavalin A (Con A) or phytohaemagglutinin (PHA) stimulation. Colostrum also inhibited the production of IL-2 by Con A-activated human peripheral blood T cells and by Con A-activated Jurkat cells, a human T lymphoma line. Similarly, human colostrum inhibited the production of IL-2 by EL4 cells, a murine thymoma line, when stimulated with phorbol myristate acetate. The inhibitory activity was not cytotoxic and could not be neutralized by antibody to transforming human growth factor beta.

Cell Survival

IL-4 potentiates the IL-2-dependent proliferation of mouse cytotoxic T cells.

In addition to the regulation of B lymphocyte growth and differentiation, the cytokine IL-4 (BSF-1) exerts effects on T lymphocytes and other bone marrow-derived lineages. We show here that recombinant mouse IL-4 synergizes with low levels of IL-2 to increase the yield of cytotoxic activity in a primary MLR, and the proliferation of both cloned IL-2-dependent CTL lines and cells obtained from a primary MLR. IL-4 did not induce the proliferation of any of several cloned CTL cell lines on its own. It also did not replace IL-2 in stimulating the growth or reactivation of quiescent, antigen-dependent CTL clones. However, IL-4 was synergistic with IL-2 after reactivation of the quiescent cells with antigen plus IL-2. Enhancement by IL-4 of the IL-2-driven proliferation of an antigen-independent line was blocked by the addition of anti-IL-4 monoclonal antibody. Although incubation of the CTL clones with IL-4 or with IL-2 plus IL-4 induced a transient increase in the expression of the mRNA encoding the 55 kDa IL-2 receptor, no change in the number or affinity of IL-2 receptors because of IL-4 was detected. This suggests that IL-4 does not potentiate the IL-2 response by altering IL-2 receptor levels. Instead, we propose that the synergistic effect of IL-4 is mediated by a different signalling mechanism from that used by IL-2.

Animals

Development of precytotoxic T cells in cyclosporine-suppressed mixed lymphocyte reactions.

Cyclosporine (CsA) blocked the generation of cytolytic activity in a primary MLR of mouse spleen cells. As expected from the known mechanism of action of this drug, it also blocked the accumulation of IL-2 during the MLR. Addition of human rIL-2 did not overcome the inhibition of CTL generation, even when it was added daily to keep its level similar to that produced in a normal MLR. Daily addition was necessary, because the CsA-inhibited MLR consumed IL-2, either by utilization or degradation. The outcome of a 5-day MLR in the presence of CsA (CsA-MLR) depended on whether or not IL-2 was continuously present. In the presence of IL-2, there was no generation of CTL activity, probably because such cultures contained IL-2-dependent suppressive elements described previously. However, when day 5 CsA-MLR cells generated in the absence of IL-2 were washed and recultured with human rIL-2, there was a burst of CTL activity, with a more than 50-fold increase in alloantigen-specific cytotoxicity within 24 to 48 h. This increase is not explainable simply by the proliferation of existing effector CTL. The noncytotoxic cells produced in an MLR in the presence of CsA, and which can be rapidly activated to cytotoxic effector cells by IL-2, are termed "precursor-effector CTL" (peCTL). They could be detected by day 3 of a primary CsA-MLR culture. Their conversion to effector CTL by IL-2 was not inhibited by CsA. Exposure of peCTL to IL-4 also generated CTL activity, to a somewhat lesser degree than IL-2, but the IL-4-induced activation was inhibited by CsA, suggesting that it depended on the induction of another CsA-sensitive lymphokine. The intracellular levels of mRNA encoding the CTL-specific serine esterases CCP1 and CCP2 (granzymes B and C, respectively) increased rapidly during the IL-2-driven conversion of peCTL to effector CTL. This study demonstrates that in the presence of CsA precursors for CTL can accumulate, and that these can be rapidly converted to cytotoxic effector cells by IL-2.

Animals

DNA synthesis in isolated lymphocyte nuclei. Effects of megaloblastic anaemia due to folate or vitamin B-12 deficiency or antimetabolite drugs.

DNA synthesis has been studied in nuclei isolated from phytohaemagglutinin-stimulated lymphocytes from normal subjects and patients with megaloblastic anaemia. Lymphocytes were incubated for 72 h, nuclei isolated and incorporation of tritiated deoxythymidine triphosphate ([3H]TTP) into DNA measured, usually over a 10 min incubation period. Preincubation of normal phytohaemagglutinin-stimulated lymphocytes with methotrexate (1 - 10(-5) M, 48--72 h), 5-fluorouracil (1 - 10(-6) M, 70--72 h), and 1-beta-D-arabinofuranosyl cytosine (cytosine arabinoside) (4 - 10(-5) M, 71--72 h) caused a mean rise in [3H]TTP incorporation of 1.7 (P less than 0.01), 1.7 (P less than 0.05) and 2.4 (P less than 0.0025) fold, respectively. Hydroxyurea (3 - 10(-4) M, 48--72 h) in two experiments caused a mean increase of 1.6 fold. Untreated vitamin B-12- and folate-deficient cells showed a 2.0-fold (P less than 0.05) increase above the incorporation when the deficiencies were corrected by addition of vitamin B-12 and folic acid between 0 and 72 h in vitro. The mean percentages of the incorporation due to ATP-independent synthesis in nuclei from normal untreated cells, 5-fluorouracil-treated, cytosine arabinoside treated and vitamin B-12- or folate-deficient cells were 56 +/- 7% S.E., 41 +/- 7%, 84 +/- 3% and 28 +/- 6%, respectively. 5-Fluorouracil caused a two-fold increase in the cytoplasmic fraction of DNA polymerase when added to phytohaemagglutinin-stimulated lymphocytes between 48 and 72 h of culture but had no significant effect when added between 70 and 72 h.

Adenosine Triphosphate

Effect of iron deficiency and desferrioxamine on DNA synthesis in human cells.

Desferrioxamine (10(-3) M) caused a fall in the deoxyadenosine triphosphate level after 4 h incubation in normal phytohaemagglutinin-stimulated lymphocytes. There was a rise in the concentrations of the other three deoxyribonucleoside triphosphates (deoxythymidine-,deoxycytidine-and deoxyguanosine-triphosphate). The changes are similar to those caused by hydroxyurea, a known inhibitor of ribonucleotide reductase. Desferrioxamine (10(-3 M) was found to inhibit human lymphocyte ribonucleotide reductase to a mean of 11% of control activity after 45 min incubation. Both drugs, desferrioxamine and hydroxyurea, inhibited incorporation of [3H]thymidine DNA into lymphocytes in the presence or absence of deoxyuridine, and inhibited production of lymphocytic thymidine kinase, having opposite effects to methotrexate on both [3H]thymidine incorporation and thymidine kinase activity. Phytohaemagglutinin-stimulated lymphocytes from patients with chronic iron deficiency showed lower levels of all our deoxyribonucleoside triphosphates than normal lymphocytes. It is suggested that this may be due to reduced ribnucleotide reductase activity of the iron-deficient cells.

Anemia, Hypochromic

Thymidine kinase in megaloblastic anaemia.

Thymidine kinase has been measured in phytohaemagglutinin (PHA)-stimulated lymphocytes from 13 normal subjects and eight patients with megaloblastic anaemia. The levels in normal subjects ranged from 0.20 to 2.10 units/mg protein (mean 0.903 units/mg protein) and in megaloblastic anaemia from 2.99 to 9.97 units/mg protein). All the patients showed raised levels of the enzyme which were partly but not completely reduced to normal by addition of folic acid in vitro. Vitamin B12 in vitro had a lowering effect in the five vitamin-B12-deficient patients and two patients with combined deficiencies but not in one 'pure' folate-deficient patient. Thymidine kinase activity was highest in the cells of the least anaemic patients, suggesting that the degree of anaemia in megaloblastic anaemia may be determined in part by the ability of the cells to utilize thymidine by the 'salvage' pathway when the de novo pathway of thymidylate synthesis is failing. The rise in thymidine kinase activity in megaloblastic anaemia is presumably due to induction of the enzyme. Addition of methotrexate or 5-fluorouracil, drugs known to inhibit de novo thymidylate synthesis, caused an increase in thymidine kinase activity in normal PHA-stimulated lymphocytes after 24 h (but not after 1 h) which could be completely blocked by addition of puromycin. Thymidine mono- and di-phosphate kinases were also measured in normal PHA-stimulated lymphocytes. The activities were substantially higher than that of thymidine kinase and their activities were unaffected by methotrexate addition.

Anemia, Macrocytic