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Biomedical subjects

M L Kuo

Publications and source records attributed to M L Kuo.

At least 37 records · Page 2Linked to original sources

Lowered IL-4-producing T cells and decreased IL-4 secretion in peripheral blood from subjects with juvenile rheumatoid arthritis.

BACKGROUND: To evaluate T helper 1 (Th1)/Th2 cells and cytokines in patients with three different subtypes of juvenile rheumatoid arthritis (JRA). METHODS: Peripheral blood was obtained from 25 children with JRA suffering from active arthritis (8 systemic, 9 pauciarticular and 8 polyarticular). Eight healthy children were recruited as controls. T helper cells from peripheral blood mononuclear cells (PBMC) were evaluated by using intracellular staining analysis of cytokine production with 3-colored flow cytometry. A Th1 cell was defined as an interferon-gamma (IFN-gamma) producing CD4+ cell, and a Th2 cell as an interleukin-4 (IL-4) producing CD4+ cell. The production of IL-2, IL-4, IL-5 and IFN-gamma from PBMC was measured by ELISA. RESULTS: In comparison with normal controls, the patients with JRA had significantly fewer Th2 cells among their PBMC (0.78 +/- 0.56% vs. 5.44 +/- 2.33%, p < 0.001). The percentage of Th1 cells among PBMC was not different between patients and normal controls (4.32 +/- 3.24% vs. 4.52 +/- 2.56%, p > 0.5). The ratio of Th1/Th2 cells in the patient group was significantly higher than the control group (8.38 +/- 8.63 vs. 0.95 +/- 0.66, p < 0.001). After 24-hour culture, the PBMC from JRA patients produced less IL-4 than that of controls (3.61 +/- 0.56 pg/mL vs. 4.29 +/- 0.68 pg/mL, p = 0.002). The production of IL-2, IL-5, and IFN-gamma did not show significant differences between JRA patients and normal controls. CONCLUSION: Decreased IL-4 producing T-helper cells were identified in all three subtypes of JRA. This implicates that an imbalance of Th sub-populations might be a predominant factor in JRA pathogenesis.

Adolescent↗

Lens subluxation: 10-years' experience at Chang Gung Memorial Hospital, Kaohsiung.

BACKGROUND: This study aimed to describe the clinical manifestations and surgical outcomes of subluxated lens. METHODS: Reviewing charts from January 1991 to June 2000, we studied 110 patients (123 eyes) who had lens subluxation at Chang Gung Memorial Hospital, Kaohsiung. For 21 eyes, patients accepted conservative treatment, and 102 eyes underwent surgery (8 eyes had Marfan syndrome; 18 eyes had idiopathic dislocation; and 76 eyes had experienced trauma). Indications of surgery included reduction in visual acuity, uncorrectable refractive error, and secondary glaucoma. RESULTS: There were 81 male and 29 female patients. Their mean age was 47.6 years (range, 2-76 years). The mean post-operative follow-up period was 22.24 months (range, 2-118 months). In spite of the different lens statuses, similar visual results were found between the surgical treatment group and the nonsurgery group. In the surgery group, 47 eyes (46.1%) achieved best corrected visual acuity (BCVA) of 20/40 or better. A total of 80 eyes (78.4%) achieved an improvement (log MAR change >0.3) in BCVA. The major postoperative complications included glaucoma (11 eyes), retinal detachment (9 eyes) and intraocular lens dislocation into the vitreous cavity (3 eyes). CONCLUSIONS: Results indicate that the presence of a subluxated lens alone is not an absolute indication for surgical removal. The lens status had no significant influence on surgical outcome. Most cases can achieve an improvement in BCVA after appropriate management.

Adolescent↗

BCRP/MXR/ABCP expression in topotecan-resistant human breast carcinoma cells.

We have previously described a mitoxantrone-resistant MCF7 cell line that is cross-resistant to topotecan, 7-ethyl-10-[4-(1-piperidino)-1-piperidino]carbonyloxy-camptothecin (CPT-11), and 9-aminocamptothecin, but not to camptothecin. A novel mechanism that resulted in decreased topotecan accumulation in MCF7/MX cells was proposed (Yang et al. Cancer Res 55: 4004-4009, 1995). We now have developed a topotecan-resistant cancer cell line from wild-type MCF7 cells. MCF7/TPT300 cells were 68.9-fold resistant to topotecan, 68.3-fold to 10-hydroxy-7-ethylcamptothecin (SN-38), and 116-fold to mitoxantrone, but only 4.1-fold to camptothecin. Topotecan efflux was increased in MCF7/TPT300 cells compared with MCF7/WT cells, and this increase was reversed upon ATP depletion by sodium azide, suggesting an energy-dependent drug efflux mechanism. However, MCF7/TPT300 cells did not overexpress P-glycoprotein or the multidrug resistance-associated protein (MRP1). In contrast, overexpression of the breast cancer resistance protein (BCRP/MXR/ABCP) was observed in MCF7/TPT300 cells as well as DNA topoisomerase I down-regulation. Our data suggest that enhanced topotecan efflux contributes partly to topotecan resistance in MCF7/TPT300 cells, possibly mediated by BCRP/MXR/ABCP.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Hepatitis B virus X protein inhibits transforming growth factor-beta -induced apoptosis through the activation of phosphatidylinositol 3-kinase pathway.

Transforming growth factor-beta (TGF-beta) is a potent inducer of apoptosis in Hep 3B cells. This work investigated how hepatitis B virus X protein (HBx) affects TGF-beta-induced apoptosis. Trypan blue exclusion and colony formation assays revealed that HBx increased the ID(50) toward TGF-beta. In the presence of HBx, TGF-beta-induced DNA laddering was decreased, indicating that HBx had the ability to block TGF-beta-induced apoptosis. Furthermore, HBx did not alter the expression levels of type I and type II TGF-beta receptors. HBx did not affect TGF-beta-induced activation of promoter activities of the plasminogen activator inhibitor-1 (PAI-1) gene. These results indicate that HBx interferes with only a subset of TGF-beta activity. In the presence of phosphatidylinositol (PI) 3-kinase inhibitors, wortmannin or LY294002, the HBx-mediated inhibitory effect on TGF-beta-induced apoptosis was alleviated. In addition, the tyrosine phosphorylation levels of the regulatory subunit p85 of phosphatidylinositol 3-kinase (PI 3-kinase) and PI 3-kinase activity were elevated in stable clones with HBx expression. Transactivation-deficient mutants of HBx lost their ability to inhibit TGF-beta-induced apoptosis. Phosphorylation of the p85 subunit of PI 3-kinase and Akt, a downstream target of PI 3-kinase, was not observed in stable clones with transactivation-deficient HBx mutant's expression. Thus, the anti-apoptotic effect of HBx against TGF-beta can be mediated through the activation of the PI 3-kinase signaling pathway, and the transactivation function of HBx is required for its anti-apoptosis activity.

Androstadienes↗

Induction of cytochrome P-450 1A1 in human hepatoma HepG2 and lung carcinoma NCI-H322 cells by motorcycle exhaust particulate.

The effects of motorcycle exhaust particulate (MEP) on human cytochrome P-450 (P-450)-dependent monooxygenases were determined using human hepatoma cell line HepG2 and lung carcinoma cell line NCI-H322 treated with organic extracts of MEP from a two-stroke engine. Gas chromatography and mass spectrometry analysis of MEP extract revealed the presence of carcinogens benzo[a]pyrene, benz[a]anthracene, benzo[b]fluoranthene, benzo[k]fluoranthene, benzo[g,h,i]perylene, chrysene, and indeno[1,2,3-c,d]pyrene in the chemical mixture. Treatment with MEP extract produced concentration- and time-dependent increases of monooxygenase activity in HepG2 cells. Treatment of the cells with 100 microg/ ml MEP extract for 24 h markedly increased benzo[a]pyrene hydroxylation, 7-ethoxycoumarin, and 7-ethoxyresorufin O-deethylation activities in microsomes. Immunoblot analysis of microsomal proteins using mouse monoclonal antibody 1-12-3 against P-450 1A1 revealed that MEP extract induced a P-450-immunorelated protein in the hepatoma cells. RNA blot analysis of cellular total RNA using a human P-450 1A1 3'-end cDNA probe showed that MEP extract increased the level of a hybridizable P-450 mRNA. These P-450 1A1 inductive effects of MEP extract were similar to those from treatment with 10 microM benzo[a]pyrene or 3-methylcholanthrene (3-MC) in HepG2 cells. Treatment of lung carcinoma NCI-H322 cells with 100 microg/ml MEP extract, 10 microM benzo[a]pyrene, or 3-MC resulted in induction of monooxygenase activity, protein, and mRNA of P-450 1A1, similar to the induction observed with the hepatoma cells. The present study demonstrates that MEP extract has the ability to induce human hepatic and pulmonary P-450 1A1 in the liver- and lung-derived cell lines, and the induction involves a pretranslational mechanism. Induction of the human hepatic and pulmonary P-450 1A1 in vitro may provide important information in the assessment of MEP metabolism and toxicity in humans.

Adenocarcinoma, Bronchiolo-Alveolar↗

Inhibition by curcumin of diethylnitrosamine-induced hepatic hyperplasia, inflammation, cellular gene products and cell-cycle-related proteins in rats.

Curcumin (CCM), a major yellow pigment of turmeric obtained from powdered rhizomes of the plant Curcuma longa Linn, is commonly used as coloring agent in foods, drugs and cosmetics. In this study we report that gavage administration of 200 mg/kg or 600 mg/kg CCM effectively suppressed diethylnitrosamine (DEN)-induced liver inflammation and hyperplasia in rats, as evidenced by histopathological examination. Immunoblotting analysis showed that CCM strongly inhibited DEN-mediated the increased expression of oncogenic p21(ras) and p53 proteins in liver tissues of rats. In cell-cycle-related proteins, CCM selectively reduced the expression of proliferating cell nuclear antigen (PCNA), cyclin E and p34(cdc2), but not Cdk2 or cyclin D1. Moreover, CCM also inhibited the DEN-induced increase of transcriptional factor NF-kappa B. However, CCM failed to affect DEN-induced c-Jun and c-Fos expression. It has become widely recognized that the development of human hepatocellular carcinoma (HCC) is predominantly due to the chronic inflammation by virus, bacteria or chemical. Our results suggest a potential role for CCM in the prevention of HCC.

Animals↗

Changes of serum levels of interleukin-2, intercellular adhesion molecule-1, endothelial leukocyte adhesion molecule-1 and Th1 and Th2 cell in severe atopic dermatitis after intravenous immunoglobulin therapy.

OBJECTIVE: To evaluate the effect of intravenous immunoglobulin (IVIG) in the treatment of severe intractable atopic dermatitis (AD) in children and to investigate the inflammatory markers used to measure their disease activity. MATERIALS AND METHODS: Serum levels of interleukin-2 receptor (sIL-2R), intercellular adhesion molecule-1 (ICAM-1), endothelial leukocyte adhesion molecule (ELAM-1), and eosinophil cationic protein (ECP) were measured in five children with AD (group A) who had a mean age of 9.4 months (range 7 to 12 months) before and after IVIG therapy. Seven age-matched patients with similar severity of AD who only received topical corticosteroid therapy served as the control group (group B). Ten normal control serum samples were collected from well-baby clinic (group C). T helper 1 (Th1) was defined by IFN-gamma/CD4+ and Th2 by IL4/CD4+, using 3-colored flow cytometry. Clinical severity of AD was evaluated with the SCORAD index. Intravenous immunoglobulin (2 g/kg/dose) was administered monthly for a total of 3 doses. RESULTS: The serum levels of ICAM-1, ELAM-1, and IL-2R in patients with AD were significantly higher than normal control infants. After IVIG therapy, the SCORAD index and the inflammatory markers (ICAM-1, ELAM-1, and ECP) in group A were significantly decreased (P = .01 for SCORAD index; .034, .043, and .03 for ICAM-1, ELAM-1 and ECP, respectively). The serum levels of ICAM-1, ELAM-1, ECP and IL-2R in group B did not show a significant reduction after 3 months of topical corticosteroid therapy. In comparison to normal healthy children, patients with AD had decreased Th2 cells (P = .009) and higher ratio of Th1/Th2 (P = .009) in peripheral blood mononuclear cells (PBMC). There was no significant difference of Th1, Th2 cells, and ratio of Th1/Th2 in PBMC before and after IVIG therapy in patients with AD. CONCLUSION: Intravenous immunoglobulin can be safely and effectively given for the treatment of severe intractable AD. The determination of ICAM-1, ELAM-1, and ECP levels may be useful in monitoring disease activity of AD in childhood. The IVIG may play a role in treatment.

Dermatitis, Atopic↗

Complementary DNA cloning and immunologic characterization of a new Penicillium citrinum allergen (Pen c 3).

BACKGROUND: Penicillium citrinum has been identified as the most prevalent airborne Penicillium species in the Taipei area. It is important to understand the allergenic composition of this ubiquitous fungal species. OBJECTIVE: The complementary DNA (cDNA) clone of an allergen from P citrinum was isolated and expressed in Escherichia coli as a fusion protein. mAbs were prepared with the recombinant protein as antigen. The corresponding natural allergen in the fungal extracts was identified with the mAbs. METHODS: A Uni-Zap XR P citrinum cDNA library was screened with sera from asthmatic patients. An IgE-binding cDNA clone was isolated and expressed as a glutathione-S-transferase fusion protein. The frequency of IgE binding to the expressed protein was analyzed by immunoblotting. Spleen cells from BALB/c mice immunized with the recombinant protein were fused with NS-1 cells for mAb generation. RESULTS: A P citrinum cDNA library was screened with a mixture of serum samples from 4 asthmatic patients. An IgE-binding cDNA clone was obtained and designated as PCE2. PCE2 has a 694-bp insert that contains a 167 amino acids open reading frame. The deduced amino acid sequence of the encoded protein has 82.6% (138 amino acids) identity with an Aspergillus fumigatus peroxisomal membrane protein allergen (Asp f 3). PCE2 was expressed in E coli as a fusion protein and designated as Pen c 3. Sera from 13 (46%) of the 28 Penicillium-sensitized asthmatic patients demonstrated IgE binding to Pen c 3. In addition, 11 of the 13 Pen c 3-positive serum samples have IgE immunoblot reactivity to recombinant Asp f 3. The presence of IgE cross-reactivity between Pen c 3 and Asp f 3 was also detected by immunoblot inhibition. Four of the 6 mAbs generated against Pen c 3 cross-react with Asp f 3. The presence of the corresponding 18-k natural allergens in the crude extracts of P citrinum and A fumigatus were detected by immunoblot with use of the mAbs and sera from asthmatic patients. CONCLUSION: Results obtained suggest that the peroxisomal membrane protein (Pen c 3) is an important allergen of P citrinum. PCE2 is a full-length cDNA clone encoding this allergen. In addition, the mAbs generated may be useful in standardizing the diagnostic allergenic extracts.

Adult↗

Curcumin-containing diet inhibits diethylnitrosamine-induced murine hepatocarcinogenesis.

Curcumin has been widely used as a spice and coloring agent in foods. Recently, curcumin was found to possess chemopreventive effects against skin cancer, forestomach cancer, colon cancer and oral cancer in mice. Clinical trials of curcumin for prevention of human cancers are currently ongoing. In this study, we examine the chemopreventive effect of curcumin on murine hepatocarcinogenesis. C3H/HeN mice were injected i.p. with N-diethylnitrosamine (DEN) at the age of 5 weeks. The curcumin group started eating 0.2% curcumin-containing diet 4 days before DEN injection until death. The mice were then serially killed at the scheduled times to examine the development of hepatocellular carcinoma (HCC) and changes in intermediate biological markers. At the age of 42 weeks, the curcumin group, as compared with the control group (DEN alone), had an 81% reduction in multiplicity (0.5 versus 2.57) and a 62% reduction in incidence (38 versus 100%) of development of HCC. A series of intermediate biological markers were examined by western blot. While hepatic tissues obtained from the DEN-treated mice showed a remarkable increase in the levels of p21(ras), PCNA and CDC2 proteins, eating a curcumin-containing diet reversed the levels to normal values. These results indicate that curcumin effectively inhibits DEN-induced hepatocarcinogenesis in the mouse. The underlying mechanisms of the phenomenon and the feasibility of using curcumin in the chemoprevention of human HCC should be further explored.

Animals↗

Cooperative signals governing ARF-mdm2 interaction and nucleolar localization of the complex.

The ARF tumor suppressor protein stabilizes p53 by antagonizing its negative regulator, Mdm2 (Hdm2 in humans). Both mouse p19(ARF) and human p14(ARF) bind to the central region of Mdm2 (residues 210 to 304), a segment that does not overlap with its N-terminal p53-binding domain, nuclear import or export signals, or C-terminal RING domain required for Mdm2 E3 ubiquitin ligase activity. The N-terminal 37 amino acids of mouse p19(ARF) are necessary and sufficient for binding to Mdm2, localization of Mdm2 to nucleoli, and p53-dependent cell cycle arrest. Although a nucleolar localization signal (NrLS) maps within a different segment (residues 82 to 101) of the human p14(ARF) protein, binding to Mdm2 and nucleolar import of ARF-Mdm2 complexes are both required for cell cycle arrest induced by either the mouse or human ARF proteins. Because many codons of mouse ARF mRNA are not recognized by the most abundant bacterial tRNAs, we synthesized ARF minigenes containing preferred bacterial codons. Using bacterially produced ARF polypeptides and chemically synthesized peptides conjugated to Sepharose, residues 1 to 14 and 26 to 37 of mouse p19(ARF) were found to interact independently and cooperatively with Mdm2, while residues 15 to 25 were dispensable for binding. Paradoxically, residues 26 to 37 of mouse p19(ARF) are also essential for ARF nucleolar localization in the absence of Mdm2. However, the mobilization of the p19(ARF)-Mdm2 complex into nucleoli also requires a cryptic NrLS within the Mdm2 C-terminal RING domain. The Mdm2 NrLS is unmasked upon ARF binding, and its deletion prevents import of the ARF-Mdm2 complex into nucleoli. Collectively, the results suggest that ARF binding to Mdm2 induces a conformational change that facilitates nucleolar import of the ARF-Mdm2 complex and p53-dependent cell cycle arrest. Hence, the ARF-Mdm2 interaction can be viewed as bidirectional, with each protein being capable of regulating the subnuclear localization of the other.

3T3 Cells↗

The effect of interleukin-12 and interleukin-15 on CD69 expression of T-lymphocytes and natural killer cells from umbilical cord blood.

We investigated the effect of two immunoregulatory cytokines interleukin-12 (IL-12) and IL-15, alone or in combination, on CD69 expression of mononuclear cells (MNCs) obtained from umbilical cord blood (CB) and adult peripheral blood (APB). We established that (1) CD3/69, but not CD16/69, expression on CB MNCs could be increased with IL-12, IL-15 or both in 18-hour cultures, but to a lesser degree compared to that on corresponding APB MNCs, (2) CD3/69 expression on CB MNCs was significantly increased after 1 week's culture with IL-12, especially with IL-15, exceeding that on APB MNCs similarly activated and (3) CD16/69 expression on CB MNCs, but not APB MNCs, was greatly increased after 1 week's culture with IL-15. The combination of IL-12 + IL-15 resulted in greater CB CD3/69 expression than individual cytokines, while producing less of an effect on CD16/CD69 expression as compared to IL-15 alone. The results of our study indicate that neonatal T and NK cells readily respond to cytokine stimulation by upregulating CD69 expression, with a greater effect achieved using IL-15 compared to IL-12.

Adult↗

Effect of interleukin-15 and Flt3-ligand on natural killer cell expansion and activation: umbilical cord vs. adult peripheral blood mononuclear cells.

Expansion and activation of cord blood (CB) natural killer (NK) cells by cytokines might greatly benefit patients undergoing stem cell transplantation by increasing resistance against viral infections and providing graft-vs.-leukemia (GVL) effects through enhanced cytolytic abilities. We tested the ability of a recently cloned stem cell factor, Flt3-ligand (Flt3L), in combination with interleukin-15 (IL-15), to stimulate CB mononuclear cells (MNCs) to proliferate and differentiate into NK cells, in comparison with adult peripheral blood (APB) MNCs. Unstimulated CB MNCs had low NK and lymphokine-activated killer (LAK) activity compared with APB MNCs. A similar dose-dependent increase in NK and LAK activity and CD16/56 expression was found with IL-15 in CB and APB MNCs after 10 days of culture. The NK cytotoxicity (against K562 cells) of IL-15-treated CB MNCs was lower than that of corresponding APB MNCs, while IL-15-induced LAK activity (against Daudi cells) of CB MNCs was comparable to that of corresponding APB MNCs. IL-15 resulted in greater CD16/56 expression in CB MNCs compared with APB MNCs after 10 days of culture. Flt3L, alone or in combination with IL-15, had little effect on CD16/56 expression and cytotoxicity. Cytotoxic activities and CD16/56 expression did not alter after CD34 depletion of CB MNCs. We therefore concluded that CB NK cells could be greatly activated and expanded with IL-15, but not with Flt3L. The greater expression of CD16/56 induced by IL-15 in CB MNCs may originate from non-CD34+ NK progenitor cells.

Adult↗

Interleukin-6 inhibits transforming growth factor-beta-induced apoptosis through the phosphatidylinositol 3-kinase/Akt and signal transducers and activators of transcription 3 pathways.

The multifunctional cytokine interleukin-6 (IL-6) regulates growth and differentiation of many cell types and induces production of acute-phase proteins in hepatocytes. Here we report that IL-6 protects hepatoma cells from apoptosis induced by transforming growth factor-beta (TGF-beta), a well known apoptotic inducer in liver cells. Addition of IL-6 blocked TGF-beta-induced activation of caspase-3 while showing no effect on the induction of plasminogen activator inhibitor-1 and p15(INK4B) genes, indicating that IL-6 interferes with only a subset of TGF-beta activities. To further elucidate the mechanism of this anti-apoptotic effect of IL-6, we investigated which signaling pathway transduced by IL-6 is responsible for this effect. IL-6 stimulation of hepatoma cells induced a rapid tyrosine phosphorylation of the p85 subunit of phosphatidylinositol 3-kinase (PI 3-kinase) and its kinase activity followed by the activation of Akt. Inhibition of PI 3-kinase by wortmannin or LY294002 abolished the protection of IL-6 against TGF-beta-induced apoptosis. A dominant-negative Akt also abrogated this anti-apoptotic effect. Dominant-negative inhibition of STAT3, however, only weakly attenuated the IL-6-induced protection. Finally, inhibition of both STAT3 and PI 3-kinase by treating cells overexpressing the dominant-negative STAT3 with LY294002 completely blocked IL-6-induced survival signal. Thus, concomitant activation of the PI 3-kinase/Akt and the STAT3 pathways mediates the anti-apoptotic effect of IL-6 against TGF-beta, with the former likely playing a major role in this anti-apoptosis.

Apoptosis↗

Activation of c-Jun NH2-terminal kinase and subsequent CPP32/Yama during topoisomerase inhibitor beta-lapachone-induced apoptosis through an oxidation-dependent pathway.

Beta-lapachone (beta-Lap) has been found to inhibit DNA topoisomerases (Topos) by a mechanism distinct from that of other commonly known Topo inhibitors. Here, we demonstrated a pronounced elevation of H2O2 and O2- in human leukemia HL-60 cells treated with beta-Lap. Treatment with other Topo poisons, such as camptothecin (CPT), Vbeta-16, and GL331, did not have the same effect. On the other hand, antioxidant vitamin C (Vit C) treatment effectively antagonized beta-Lap-induced apoptosis. This suggested that a reactive oxygen species (ROS)-related pathway was involved in beta-Lap-induced apoptosis program. We also found that c-Jun NH2-terminal kinase (JNK) but not p38 mitogen-activated protein kinase or extracellular signal-regulated kinase 1/2 was persistently activated in apoptosis induced by beta-Lap. Overexpression of a dominant-negative mutant mitogen-activated protein kinase kinase kinase 1 (MEKK1-DN) or treatment with JNK-specific antisense oligonucleotide or Vit C all prevented beta-Lap-induced JNK activation and the subsequent apoptosis. Only the expression of MEKK1-DN, not Vit C treatment, blocked the JNK activity induced by CPT, Vbeta-16, or GL331. These results confirm again that ROS acts as a mediator for JNK activation during beta-Lap-induced apoptosis. Furthermore, we found that beta-Lap can stimulate CPP32/Yama activity, which was, however, markedly inhibited by the MEKK1-DN expression or Vit C treatment. Again, CPT-induced CPP32/Yama activation can be abolished by MEKK1-DN but not by Vit C treatment. Taken together, these results indicate that beta-Lap but not other Topo inhibitors triggers apoptosis signaling, i.e., JNK and subsequent CPP32/Yama activation are mediated by the generation of ROS.

Apoptosis↗

Arsenic trioxide sensitivity is associated with low level of glutathione in cancer cells.

Arsenic trioxide (As2O3) is a novel anticancer agent, which has been found to induce remission in acute promyelocytic leukaemic patients following daily intravenous administration. The therapeutic value of As2O3 in other cancers is still largely unknown. Cytotoxic tests in a panel of cancer cell lines showed that bladder cancer, acute promyelocytic leukaemic and gastrointestinal cancer cells were the most sensitive to As2O3 among 17 cell lines tested. Cellular glutathione (GSH) system plays an important role in arsenic detoxification in mammalian cells. Cancer cells that were intrinsically sensitive to As2O3 contained lower levels of GSH, whereas resistant cancer cells contained higher levels of GSH. On the other hand, there was no association of glutathione-S-transferase-pi or multidrug resistance-associated protein 1 levels with arsenic sensitivity in these cancer cells. Multidrug-resistant cancer cells that were cross-resistant to arsenic contained higher levels of GSH or multidrug-resistance-associated protein 1 than their drug-sensitive parental cells. Cancer cells become more sensitive to arsenic after depletion of cellular GSH with L-buthionine sulphoximine. We concluded that cellular GSH level is the most important determinant of arsenic sensitivity in cancer cells. Cellular GSH level and its modulation by buthionine sulphoximine should be considered in designing clinical trials using arsenic in solid tumours.

Antimetabolites, Antineoplastic↗

Inhibition of inducible nitric oxide synthase by beta-lapachone in rat alveolar macrophages and aorta.

Beta-lapachone, a plant product, has been shown to be a novel inhibitor of DNA topoisomerase. In this study, we performed experiments to examine the effects of beta-lapachone on lipopolysaccharide (LPS)-induced inducible nitric oxide (NO) synthase (iNOS) in rat alveolar macrophages and aortic rings. In alveolar macrophages, incubation with LPS (10 microg ml(-1)) for various time intervals resulted in a significant increase in nitrite production and iNOS protein synthesis, that was inhibited by coincubation with beta-lapachone (1-4.5 microM) without any cytotoxic effects. However, addition of beta-lapachone after induction of NO synthase by LPS failed to affect the nitrite production. Treatment with LPS (10 microg ml(-1)) for 6 h resulted in significant expression of mRNA for iNOS which was significantly inhibited in the presence of beta-lapachone (3 microM) in alveolar macrophages. In endothelium-intact rings of thoracic aorta, beta-lapachone (1 and 3 microM) markedly inhibited the hypocontractility to phenylephrine in aortic rings treated with LPS (10 microg ml(-1)) for 4 h. When beta-lapachone was added 3 h after LPS into the medium, the contractions evoked by phenylephrine were not significantly different in the presence or absence of beta-lapachone. Treatment with LPS (10 microg ml(-1)) for 4 h resulted in a significant increase in iNOS protein synthesis which was inhibited in the presence of beta-lapachone (3 microM), but did not affect the constitutive (endothelial and neuronal) NOS forms in aortic rings. These results indicate that beta-lapachone is capable of inhibiting expression and function of iNOS in rat alveolar macrophages and aortic rings. It is considered that beta-lapachone can be developed as a potential anti-inflammatory agent in the future.

Animals↗

Comparison of enterovirus 71 and coxsackie-virus A16 clinical illnesses during the Taiwan enterovirus epidemic, 1998.

OBJECTIVES: To compare enterovirus 71 (EV 71) with coxsackievirus A16 (Cox A16) clinical illness in patients at Chang Gung Children's Hospital during Taiwan's enterovirus epidemic of 1998. METHODS: With the use of the immunofluorescence assay and neutralization test, 177 cases of EV 71 and 64 cases of Cox A16 illness were confirmed from April to September, 1998. The clinical signs and symptoms, complications and case fatality rates were compared. RESULTS: Three-fourths of the cases were younger than 3 years of age, and the ratio of males to females was 1.3 in the EV 71 group and 1.2 in the Cox A16 group. In the EV 71 group 120 (68%) cases were uncomplicated, including 94 cases of hand, foot and mouth disease and 15 cases of herpangina, and 57 (32%) cases had complications, including 13 (7.3%) cases of aseptic meningitis, 18 (10%) cases of encephalitis, 4 (2.3%) cases of polio-like syndrome, 8 (4.5%) cases of encephalomyelitis and 12 (6.8%) cases of fatal pulmonary edema. Fourteen (7.9%) patients died, including 12 cases of pulmonary edema and 2 cases of encephalitis; seven (4%) patients had sequelae. By contrast, 60 (94%) of the 64 cases of Cox A16 infection were uncomplicated and only 4 (6.3%) cases were complicated by aseptic meningitis; no fatalities or sequelae were observed. By multivariate analysis vomiting (P = 0.01) and fever higher than 39 degrees C plus lasting longer than 3 days (P = 0.02) were significantly more frequent in the EV 71 group. CONCLUSION: EV 71 illness is more severe with significantly greater frequency of serious complications and fatality than is illness caused by Cox A16.

Adolescent↗

The antiapoptotic gene mcl-1 is up-regulated by the phosphatidylinositol 3-kinase/Akt signaling pathway through a transcription factor complex containing CREB.

mcl-1 is an immediate-early gene activated by the granulocyte-macrophage colony-stimulating factor (GM-CSF) and interleukin 3 (IL-3) signaling pathways and plays an important role in the viability response of these cytokines. In this study, we demonstrated that cytokine stimulation of mcl-1 mRNA and protein expression were attenuated by pretreatment of cells with phosphatidylinositol 3-kinase (PI3-K) inhibitors. Reporter gene assays further showed that the PI3-K/Akt signaling pathway was involved in IL-3 activation of mcl-1 gene transcription. Analysis of the mcl-1 promoter revealed that both promoter elements, SIE at position -87 and CRE-2 at -70, contribute to IL-3 stimulation of mcl-1 gene expression. Although either the SIE site or the CRE-2 site alone was sufficient to confer IL-3 inducibility on a heterologous promoter, only IL-3 activation of the CRE-2 reporter was mediated via the PI3-K/Akt pathway. The SIE binding activity was constitutively high in cells deprived of or stimulated by IL-3. In contrast, the CRE-2 binding activity was low in cytokine-starved cells and was strongly induced within 1 h following cytokine treatment of cells. In addition, cytokine induction of the CRE-2 but not of the SIE binding activity was dependent on activation of the PI3-K/Akt signaling pathway. Lastly, we showed that CREB was one component of the CRE-2 binding complex and played a role in IL-3 activation of the mcl-1 reporter gene. Taken together, our results suggest that both PI3-K/Akt-dependent and -independent pathways contribute to the IL-3 activation of mcl-1 gene expression. Activation of mcl-1 by the PI3-K/Akt-dependent pathway is through a transcription factor complex containing CREB.

Apoptosis↗