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Biomedical subjects

J Henthorn

Publications and source records attributed to J Henthorn.

12 recordsLinked to original sources

Different patterns of DNA fragmentation and degradation of nuclear matrix proteins during apoptosis induced by radiation, hyperthermia or etoposide.

Several nuclear matrix proteins are substrates for proteolytic cleavage during apoptosis. Using Western blotting, the temporal patterns of cleavage of three nuclear matrix proteins (lamin B, NUMA and the nucleoporin TPR) were compared in HL60 cells induced to undergo apoptosis after irradiation, heat shock or treatment with etoposide. Flow cytometry was used to compare the kinetics of post-cleavage degradation of lamin B, NUMA and TPR after irradiation, and to correlate DNA fragmentation with protein degradation in cells induced to undergo apoptosis with different agents. During radiation-induced apoptosis, cleavage and subsequent degradation of lamin B, NUMA and TPR occurred with different kinetics. Low-molecular-weight DNA fragmentation occurred subsequent to the initiation of NUMA cleavage, coincided with lamin B cleavage, but occurred before more extensive degradation of lamin B and NUMA. A similar sequence was observed for cells treated with etoposide. However, during heat-induced apoptosis, cleavage of lamin B and NUMA occurred much sooner compared to other agents, with NUMA cleaved into multiple fragments within 15 min after heating. We conclude that the hierarchical sequence and kinetics of degradative events contributing to nuclear disassembly during apoptosis are highly dependent on the inducing agent. Furthermore, the nuclear pore complex, like the nuclear lamina and internal nuclear matrix, is a target for proteolytic cleavage.

Antigens, Nuclear↗

Degradation of the nuclear matrix is a common element during radiation-induced apoptosis and necrosis.

Human promyelocytic leukemia (HL60) cells were irradiated with 10 or 50 Gy of X rays and studied for up to 72 h postirradiation to determine the mode of death and assess changes in the nuclear matrix. After 50 Gy irradiation, cells were found to die early, primarily by apoptosis, while cells irradiated with 10 Gy died predominantly by necrosis. Disassembly of the nuclear lamina and degradation of the nuclear matrix protein lamin B occurred in cells undergoing radiation-induced apoptosis or necrosis. However, using Western blotting and a recently developed flow cytometry assay to detect changes in nuclear matrix protein content, we found that the kinetics and mechanisms of disassembly of the nuclear lamina are different for each mode of cell death. During radiation-induced apoptosis, cleavage and degradation of lamin B to a approximately 28-kDa fragment was detected in most cells within 4-12 h after irradiation. Measurements of dual-labeled apoptotic cells revealed that nonrandom DNA fragmentation was evident prior to or concomitant with breakdown of the nuclear lamina. Disassembly of the nuclear lamina during radiation-induced necrosis occurred much later (between 30-60 h after irradiation), and a different cleavage pattern of lamin B was observed. Degradation of the nuclear lamina was also inhibited in apoptosis-resistant BCL2-overexpressing HL60 cells exposed to 50 Gy until approximately 48 h after irradiation. These data indicate that breakdown of the nuclear matrix may be a common element in radiation-induced apoptosis and necrosis, but that the mechanisms and temporal patterns of breakdown of the nuclear lamina during apoptosis are distinct from those of necrosis.

Apoptosis↗

Flow cytometric analysis of nuclear matrix proteins: method and potential applications.

The nuclear matrix (NM) is an important structural component of the nucleus that participates in the regulation of several diverse metabolic processes. Immunometric assays have shown that alterations in NM-associated functions and morphological characteristics may occur as a result of changes in NM composition. Recent evidence suggests that detection of quantitative or qualitative changes in nuclear matrix protein (NMP) composition may be useful in the diagnosis of cancer and as a reliable indicator of cell death. We have developed an in situ flow cytometric technique for the simultaneous detection of specific NMPs and DNA content in fixed, permeabilized cells. Illustrative results from two different applications of these methods involving two different cell lines (human melanoma and promyelocytic leukemia) are presented, including: 1) measurements of NM breakdown in necrotic and apoptotic cells after treatment with the cytotoxic agents camptothecin, etoposide, or hyperthermia; and 2) detection of changes in NMP content immediately after heat shock. We demonstrate that the technique is useful for the identification of cell-cycle specificity of NM breakdown and allows correlations to be made between the kinetics of DNA fragmentation and NMP solubilization. Furthermore, our studies indicate that flow cytometric detection of changes in NM composition may be useful for identifying different modes and temporal patterns of cell death. We discuss other potential applications of the technique and advantages over standard biochemical assays.

Antibodies, Monoclonal↗

Thrombocytopoiesis in normal and sublethally irradiated dogs: response to human interleukin-6.

The response of megakaryocytes and platelets to the administration of recombinant human interleukin-6 (IL-6) was investigated in normal and sublethally irradiated dogs. IL-6 was administered for 2 weeks at doses of 10 to 160 micrograms/kg/d to normal animals to assess dose-response and toxicity. Subsequently, 40, 80, or 160 micrograms/kg/d for 2 weeks was administered to animals treated with 200 cG total body irradiation. Analysis of normal dogs showed a significant increment in the platelet count detectable approximately 11 days after initiation of IL-6 at all administered doses. Large platelets greater than 6.3 microns in diameter were observed 1 day after beginning IL-6, progressively increasing to as many as 19.1% of the total circulating platelets by day 10. The ploidy distribution of the marrow megakaryocytes did not differ from the normal at doses of less than or equal to 80 micrograms/kg/d, but at 160 micrograms/kg/d, a shift toward higher ploidy cells was noted. No change in total white count was noted; however, a decrease in hematocrit was seen at all doses. In the irradiated animals, the platelet count recovered earlier in the IL-6-treated dogs than in the controls, but no consistent change in the ploidy distribution was observed irrespective of dose. Large platelets were also noted in the treated animals, comprising up to 6.9% of the total platelet count. Fibrinogen levels were elevated to greater than 4 times normal. A significant decrease in hematocrit was seen in all animals, while no consistent change was noted in the white count. Elevations in serum cholesterol, triglycerides, and alkaline phosphatase, together with a decline in serum albumin were observed in all the treated animals (both normal and irradiated), but clinical symptoms were observed only in the dogs receiving greater than or equal to 80 micrograms/kg/d. The data show that IL-6 alone is capable of enhancing platelet recovery in dogs with bone marrow suppression.

Animals↗

Leukemia inhibitory factor and interleukin-11 promote maturation of murine and human megakaryocytes in vitro.

The growth-promoting activities of optimally stimulating concentrations of leukemia inhibitory factor (LIF) and interleukin-11 (IL-11), a stromal cell-derived cytokine, on megakaryocytes in liquid marrow cultures were compared to interleukin-6 (IL-6), a known megakaryocytes maturation factor. Maximally stimulating concentrations of LIF (25 ng/ml), IL-11 (10 ng/ml), or IL-6 alone (10 ng/ml) promoted an 81, 157, and 153% increase, respectively, in acetylcholinesterase (AchE) activity in murine serum-free cultures compared with controls (n = 5). In combination with 25 U/ml murine interleukin-3 (IL-3), LIF, IL-6, and IL-11 showed increases, respectively, of 35%, 49%, and 174% in AchE activity compared with IL-3 alone (n = 4). Flow cytometric analysis of 4-day-old cultures showed that LIF alone had minimal effect on megakaryocytic ploidy, whereas IL-11 and IL-6 alone markedly augmented high ploidy cells. Enumeration of cells stained for AchE showed that IL-11 increased the numbers of Mks in comparison to LIF, IL-6 or controls by up to 59%. Moreover, a twofold increment in Mk number was noted when IL-11 was used in combination with IL-3 (compared with either IL-3 alone of IL-3+IL-6). Flow cytometric ploidy analysis of 8-day-old human liquid marrow cultures showed that either LIF, IL-11, or IL-6 alone markedly augmented the percentage of 32N cells compared with cultures containing only human IL-3. The data suggest that LIF and IL-11 promote murine and human Mk maturation in vitro, although the effect of IL-11 exceeds that of LIF in mice. Despite the comparable influence of IL-11 and IL-6 on Mk ploidy, IL-11 has the additional characteristic of enhancing the number of Mks, particularly in combination with IL-3.

Acetylcholinesterase↗

Serum interleukin-6 levels in patients with thrombocytosis.

Interleukin-6 (IL-6) has been shown to increase platelet counts in several animal models and to enhance megakaryocytopoiesis in vitro. In order to investigate the possible relationship between IL-6 and thrombocytosis, serum IL-6 levels in patients with platelet counts > or = 6 x 10(5)/microliters were measured using an IL-6-responsive bioassay. A cohort of healthy volunteers with normal platelet counts was used to establish a control mean serum IL-6 level [2.19 U/ml +/- 1.08 SD (range 0-5.5)]. Patients with primary thrombocytosis had a mean serum IL-6 level not significantly different from controls. In comparison, serum IL-6 levels of patients with reactive thrombocytosis were significantly greater than controls (38.3 U/ml +/- 94.6; range 0-933; P < 0.001). Although no significant correlation was observed between the degree of serum IL-6 elevation and the height of the platelet count in any individual, elevated serum IL-6 was highly correlated with reactive thrombocytosis.

Hematopoiesis↗

Interleukin-6 mRNA and protein increase in vivo following induction of acute thrombocytopenia in mice.

Induction of experimental thrombocytopenia in rodents results in the enhancement of megakaryocytic growth and differentiation. Interleukin-3 (IL-3) and IL-6, cytokines with a broad spectrum of biologic activities, stimulate megakaryocytopoiesis in vitro. To determine if expression of these factors might increase in response to experimental thrombocytopenia, we measured steady-state levels of IL-3 and IL-6 mRNA following rabbit antiplatelet serum (APS) injection. Groups of mice were injected intravenously with 0.2 mL APS while control animals received rabbit antilymphocyte serum (ALS), normal rabbit serum (NRS), or phosphate-buffered saline (PBS). At various times up to 72 hours after injection mice were exsanguinated and splenectomized. Platelet counts in the experimental animals were less than 12% of controls. Splenic RNA was hybridized in solution to 32P-UTP-labeled cRNA probes for IL-3 and IL-6. RNase-resistant hybrids were resolved on denaturing gels and visualized autoradiographically. IL-3 hybrids were undetectable at all time points tested, irrespective of the film exposure time or specific activity of the probe. Conversely, IL-6 hybrids were easily visualized and showed peak expression at 1.5 to 2.0 hours. By 3 hours, IL-6 mRNA had returned almost to the level of the controls. Similar results were observed in the bone marrow, although maximal IL-6 mRNA in that tissue was observed 4 hours following APS administration. To determine if this mRNA increment was associated with a concomitant increase in bioactive protein, serum was tested for its ability to stimulate IL-6-dependent B9 cells. At 1.75 hours following injection, experimental animals showed a small but significant increment in IL-6 activity compared with controls (200 +/- 30 U/mL IL-6 compared with 129 +/- 17 U/mL in ALS-injected controls, 106 +/- 17 U/mL in NRS-injected controls and 84 +/- 17 U/mL in PBS-injected controls). The data show that IL-6 mRNA and bioactive protein increase in response to acute immunothrombocytopenia, while no increment in IL-3 is detectable. These results suggest that IL-6 may play a role in the physiologic response to acute immunothrombocytopenia.

Acute Disease↗

Elevated serum interleukin-6 levels in patients with reactive thrombocytosis.

Interleukin-6 (IL-6) is known to promote megakaryocytopoiesis in vitro and raise platelet counts in vivo. To determine if there is a relationship between circulating IL-6 and thrombocytosis in man, we measured bioactive IL-6 in the serum of 13 patients with myeloproliferative disorders and 143 patients with reactive thrombocytosis having platelet counts greater than or equal to 600 x 10(9)/l. IL-6 activity was assayed using the IL-6-responsive B9 cell line. Seventy-one controls with normal platelet counts had a mean IL-6 level of 2.19 U/ml +/- 1.08 (SD). None of the 13 patients with myeloproliferative disorders had elevated IL-6 levels (1.56 U/ml +/- 1.2). In contrast, serum IL-6 levels of 143 patients (158 samples) with reactive thrombocytosis were significantly greater than controls (38.3 U/ml +/- 94.6; P less than 0.001), with 83% of the samples showing elevated serum IL-6. No significant correlation was observed between serum IL-6 levels and platelet counts in the reactive thrombocytosis group. We conclude that elevated IL-6 is associated with reactive thrombocytosis, and hypothesize that the increased platelet count in many cases is causally related to elevated IL-6.

Humans↗

Regulation of interleukin 6 expression in murine bone marrow stromal cells.

The regulation of interleukin 6 (IL-6) expression in the B-lymphocyte-supporting murine stromal cell line BMS2 has been examined in response to exogenous cytokines and chemical agents. Kinetic analyses of IL-6 mRNA induction and decay are presented together with analysis of the IL-6 biological activity. The cytokines tumor necrosis factor, interleukin 1 (alpha and beta), and transforming growth factor beta, as well as forskolin and dibutyryl cyclic AMP, all induce a transient rise in the steady-state level of IL-6 mRNA and an increased release of IL-6 protein. To study its regulation at the chromatin level, the murine IL-6 genomic gene has been cloned. Induction of IL-6 expression correlates with increased DNA nicking, consistent with increased topoisomerase I and endogenous nuclease activity. This finding is supported by kinetic analyses using camptothecin, a topoisomerase I inhibitor. We conclude that IL-6 regulation in murine stromal cells capable of supporting B-lymphopoiesis is comparable to that observed in human diploid fibroblasts.

Animals↗

Screening cord blood for sickle haemoglobinopathies in Brent.

Between 1981 and 1983, 3165 consecutive specimens of cord blood were tested at the Central Middlesex Hospital for the presence of an abnormal haemoglobin: the incidence of sickle cell trait was 2.8%, of HbC trait 0.9%, and the overall incidence of an abnormal haemoglobin at birth was 6.9%. Five babies with homozygous sickle cell disease, three with HbSC, and three with either HbCC or HbC beta thalassaemia were detected. Twenty two per cent of the mothers were of Afro-Caribbean origin. The cost of the test was 30p. An H6000 blood count was carried out on 1000 consecutive cord blood samples. The mean red cell volume was 97.95 (SD 3.67) fl. Thirteen cord blood samples had a mean cell volume below 85 fl, and all contained Hb Barts. In addition, six samples with a mean cell volume between 86 and 92 fl also showed Hb Barts on electrophoresis. The overall incidence of Hb Barts was 2.1%. These results indicate that the incidence of HbSS and HbSC on neonatal screening in Brent is similar to that found in the urban areas of North America and that the number may be predicted from the number of births to mothers of Afro-Caribbean origin.

Anemia, Sickle Cell↗

Iron deficiency in sickle cell anaemia.

Thirty-seven patients with SCD were studied: 24 were diagnosed as homozygous Hb S on the basis of their haematological findings, and alpha:non-alpha globin chain ratios were found to be balanced in all. Thirteen patients were thought to have alpha or beta thalassaemia interaction with Hb S on the basis of low MCV and MCH, family history and/or presence of Hb A on electrophoresis. Six of them had abnormal alpha:non-alpha ratio (one had a ratio of 0.72 suggestive of alpha thalassaemia, and five had ratios between 1.4 and 1.9, compatible with beta thalassaemia interaction). The remaining seven patients with microcytosis had balanced globin chain synthesis and five were found to be iron deficient. Five additional patients (3 with Hb SS and 2 with Hb S/beta thalassaemia) had lower than normal serum ferritin concentration. The analysis of case histories disclosed that peptic ulceration, recurrent epistaxis and multiple pregnancies could account for iron loss in seven patients. These findings indicate that iron deficiency may be common in SCD and should be excluded as a cause of microcytosis. Microcytosis, in the absence of conclusive family studies and/or presence of Hb A on electrophoresis, is an unreliable indicator of alpha or beta thalassaemia interaction with Hb S.

Adolescent↗