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Biomedical subjects

X X Wu

Publications and source records attributed to X X Wu.

At least 19 recordsLinked to original sources

Monoclonal antibody to tumor necrosis factor-related apoptosis-inducing ligand receptor 2 (TRAIL-R2) induces apoptosis in primary renal cell carcinoma cells in vitro and inhibits tumor growth in vivo.

Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) triggers apoptosis in a variety of tumor cells through two of its receptors: TRAIL-R1 and TRAIL-R2. We investigate the susceptibility of human renal cell carcinoma (RCC) cells to TRM-1 and HGS-ETR2, 2 human monoclonal agonistic antibodies specific for TRAIL-R1 and TRAIL-R2, respectively. HGS-ETR2 effectively induced apoptotic cell death in 10 of 11 cell cultures, including 2 human RCC cell lines and 9 human primary RCC cell cultures, with a more pronounced effect after preincubation with anti-human IgG Fc. In contrast, TRM-1 was effective in only 1 primary RCC cell culture. The increased effectiveness of HGS-ETR2 for inducing cell death might have been affected by differences in the cell-surface expression of the 2 TRAIL receptors, namely that TRAIL-R2 but not TRAIL-R1 was frequently expressed in most of the RCC cells tested. The activities of caspase-9, -8, -6, and -3 were increased with HGS-ETR2-induced apoptosis, and cell death could be blocked by specific caspase inhibitors for caspase-9, -8, and -3, and the general caspase inhibitor. In vivo administration of HGS-ETR2 with or without cross-linker significantly suppressed tumor growth of subcutaneously inoculated human RCC xenografts in immunodeficient mice. These results suggest the potential utility of TRAIL-R2 antibody as a novel therapeutic agent in RCC.

Animals↗

Enhancement of arsenic trioxide-induced apoptosis in renal cell carcinoma cells by L-buthionine sulfoximine.

Arsenic trioxide (As2O3) induces clinical remission in acute promyelocytic leukemic patients and apoptosis in various tumor cells in vitro. To develop As2O3-based combination chemotherapy for renal cell carcinoma (RCC), we investigated the cytotoxic effects of As2O3 in combination with chemotherapeutic agents or L-buthionine sulfoximine (BSO), a glutathione (GSH) synthesis inhibitor. Cytotoxicity and synergy were assessed by the MTT assay and isobolographic analysis, respectively. Apoptosis was monitored by Hoechst 33342 staining, flow cytometrical analysis, and DNA fragmentation assay. Treatment of ACHN cells with As2O3 in combination with adriamycin, vinblastine, or 5-fluorouracil induced an antagonistic effect. However, combination treatment with As2O3 and BSO resulted in a synergistic cytotoxic effect. Synergy was also obtained in Caki-1, Caki-2, NC65 cells and freshly derived RCC cells from 6 patients. Simultaneous treatment of ACHN cells with As2O3 and BSO caused significantly more cytotoxicity than the As2O3 first BSO second or the reverse treatment. We further explored the mechanisms underlying this synergistic effect and found that the synergistic cytotoxicity of As2O3 and BSO was realized by inducing apoptosis. This combination markedly decreased intracellular GSH content and GSH-S-transferase (GST) activity. However, neither the intracellular GSH nor GST was decreased by As2O3 with adriamycin, vinblastine, or 5-fluorouracil. Furthermore, the GSH-increasing agents N-acetylcysteine and lipoic acid significantly inhibited the combined cytotoxicity of As2O3 and BSO. These findings indicate that BSO sensitizes RCC cells to As2O3-induced apoptosis through the down-regulation of the intracellular GSH redox system, suggesting the potential application of a combination of As2O3 and BSO for the treatment of RCC.

Antineoplastic Combined Chemotherapy Protocols↗

Seasonal distribution of antiphospholipid antibodies.

BACKGROUND AND PURPOSE: The purpose of this study was to determine if there was a seasonal variation in antiphospholipid antibody (aPL) titers and whether this variation differed between stroke cases and control subjects. METHODS: IgG and IgM anticardiolipin and antiphosphatidyl serine antibody titers were obtained on serum samples from 884 stroke patients and 1024 control subjects over a 7-year period. Temporal distributions by month of blood draw were evaluated. RESULTS: Marked seasonal differences in the proportion of positive titers were found for control subjects, but no seasonal variability among patients was noted. In control subjects, positive titers occurred less frequently in the summer months, mirroring the seasonal trends seen in respiratory track infections and rheumatic fever. CONCLUSIONS: Our data suggest some aPL antibodies arise from different origins in patients and control subjects. The seasonality observed in the apparently normal population may be related to antibodies of infectious origin and is consistent with the reported lack of association with thrombosis of infection-related antibodies.

Age Distribution↗

Activation of caspase-3 in renal cell carcinoma cells by anthracyclines or 5-fluorouracil.

The caspase family of proteases is speculated to have a crucial role in apoptosis. The effect of treatment with adriamycin (ADR), cisplatin (CDDP), 5-fluorouracil (5-FU), vinblastine (VLB), IFN-alpha, or IFN-gamma on the activation of caspase-3, -6, -8, and -9 in renal cell carcinoma (RCC) cells was investigated, to clarify the mechanisms of chemo- and immunotherapeutic agent-mediated apoptosis. Caspase activity was determined by a quantitative colorimetric assay. Apoptosis was monitored by acridine-orange staining assay. Treatment of ACHN cells with CDDP, VLB, IFN-alpha, or IFN-gamma did not activate caspase-3, but its activity was increased 7.2-fold (p = 0.0001) with ADR and 2.8-fold (p = 0.0385) with 5-FU in comparison with control. Furthermore, when the ADR treatment time was shortened from 24 to 8 or 2 h, the same caspase-3 activation occurred. Activation of caspase-3 was also observed in six freshly isolated human RCC cells after the treatment with ADR. Of the six freshly derived RCC cells treated with 5-FU, caspase-3 activity was increased 3.1-fold (p = 0.0051) and 2.4-fold (p = 0.0346) in two of them, respectively. Epirubicin and pirarubicin, compounds closely related to ADR, also respectively enhanced 4.2-fold (p = 0.0052) and 2.8-fold (p = 0.0147) caspase-3 activity in ACHN cells. The activation of caspase-3 observed with a colorimetric assay was confirmed with immunocytochemical analysis using the anti-active caspase-3 mAb, which specifically recognizes the active form of caspase-3. Furthermore, both active caspase-3 and apoptosis triggered by either ADR or 5-FU were inhibited significantly by the general caspase inhibitor Z-VAD-FMK, or a specific caspase-3 inhibitor DMQD-CHO. These findings provide a mechanistic explanation for anthracyclines and 5-FU induced-apoptosis.

Amino Acid Chloromethyl Ketones↗

Enhancement of Fas-mediated apoptosis in renal cell carcinoma cells by adriamycin.

Anti-Fas monoclonal antibody (mAb) kills Fas-expressing cells by apoptosis. Several anticancer agents also mediate apoptosis and may share common intracellular pathways leading to apoptosis with Fas. Thus, we reasoned that combination treatment of drug-resistant cells with anti-Fas mAb and drugs might overcome their resistance. We investigated whether anticancer agents enhance Fas-mediated apoptosis and cytotoxicity against renal cell carcinoma (RCC) cells. Treatment of ACHN RCC cells with anti-Fas mAb in combination with 5-fluorouracil, vinblastine, IFN-alpha, or IFN-gamma did not overcome resistance to these agents. However, combination treatment with anti-Fas mAb and Adriamycin (ADR) resulted in a synergistic cytotoxic effect. Furthermore, synergy was also obtained even when the exposure time was shortened from 24 h to 8 or 2 h. Synergy was also achieved in four other RCC cell lines and five freshly derived human RCC cells. Treatment with anti-Fas mAb in combination with epirubicin or pirarubicin also resulted in a synergistic cytotoxic effect on ACHN cells. Similar results were achieved with a combination of humanized anti-Fas mAb and ADR. Incubation of ACHN cells with ADR augmented the expression of Fas and p53, but not Bcl-2, Bax, or caspase-3. However, the activity of caspase-3 itself was apparently enhanced after treatment with ADR alone or combined treatment with anti-Fas mAb. The synergy obtained in cytotoxicity with anti-Fas mAb and ADR was also achieved in apoptosis. Exposure of ACHN cells and freshly derived RCC cells to ADR enhanced their susceptibility to lysis by peripheral blood lymphocytes and tumor-infiltrating lymphocytes. This study demonstrates that combination treatment of RCC cells with anti-Fas mAb and ADR might overcome their resistance. The sensitization required a low concentration of ADR and a short exposure time, thus supporting the potential in vivo application of a combination of ADR and anti-Fas mAb or immunotherapy in the treatment of ADR- and/or immunotherapy-resistant RCC.

Acridine Orange↗

Telomerase activity in urine after transurethral resection of superficial bladder cancer and early recurrence.

BACKGROUND: To explore the relationship between telomerase activity in urine after transurethral resection (TUR) of superficial bladder cancer and early intravesical recurrence. METHODS: Urine samples were obtained from 42 patients with superficial bladder cancers prior to TUR and on the postoperative day 1 and day 6. These patients were followed-up prospectively by cystoscopy at 3 and 6 months after TUR in combination with urinary cytology and telomerase activity. Telomerase activity in the urine was assessed by the telomeric repeat amplification protocol assay. RESULTS: Urinary telomerase activity prior to TUR was positive in 24 (57%) of the 42 patients. On the postoperative day 1 and day 6, positive urinary telomerase activity was seen in 13 (31%) and nine (21%) patients, respectively. Postoperative urinary telomerase activity on either day 1 or day 6 was significantly associated with pre-operative urinary telomerase activity status (P = 0.0024). Fifteen patients showed intravesical tumor recurrence at 3 months cystoscopic check-up and an additional nine had recurred at the 6 months check-up. Recurrence rate within 6 months in patients with pre-operative positive urinary telomerase activity was similar to that in those with negative activity (58.3 vs 58.8%). However, recurrence rate at 3 months for patients with positive activity was higher than that of those with negative activity (50 vs 17.7%), in 23 patients treated only by TUR. CONCLUSIONS: Presence of cells positive for telomerase activity in urine after TUR of superficial bladder cancer indicates persistently existing cancer cells in the urine. It is, however, not a sole predictor of the early intravesical recurrence.

Adult↗

Detection of circulating cancer cells by reverse transcription-polymerase chain reaction for uroplakin II in peripheral blood of patients with urothelial cancer.

Few attempts have been made at the molecular detection of urothelial cancer cells in the blood or lymph nodes mainly because of an absence of good candidate molecular or genetic changes specific to urothelial cancer or urothelium. In 1990, however, genes that encode urothelium-specific transmembrane proteins, uroplakins (UPs), were cloned. We have established a method of detecting circulating cancer cells in peripheral blood of patients with transitional cell carcinoma by nested reverse transcription-PCR assay for UP II. UP II mRNA-positive cells were detected in 3 (10.3%) of 29 patients with superficial cancers (pTa-1N0M0), 4 (28.6%) of 14 patients with muscularly invasive cancers (pT2-4N0M0), 2 (40.0%) of 5 loco-regional node-positive patients (pN1-2M0), and 6 (75.0%) of 8 patients with distant metastases. Positive rates, therefore, increased with tumor extension (P = 0.0033, Kruskal-Wallis test). Furthermore, sequential blood sampling was performed in three patients with metastases during and after systemic chemotherapy, and UP-II-positive cells were found to have disappeared in two patients who responded well to the systemic chemotherapy. These results suggest that our nested reverse transcription-PCR assay for UP II is highly specific and might be used as a tumor marker for molecular staging of urothelial cancers, although the sensitivity is not so optimal.

Adult↗

Elevated anticardiolipin antibody titer is a stroke risk factor in a multiethnic population independent of isotype or degree of positivity.

BACKGROUND AND PURPOSE: Previous studies have produced conflicting results regarding the putative association between anticardiolipin antibodies (aCL) and infarction in the general stroke population. These inconsistencies may be a function of sample size and methodological differences among the studies. The purpose of the present study, the largest case-control study of this issue to date, was to assess aCL status as an independent risk factor for ischemic stroke in a multiethnic, urban population. METHODS: We obtained aCL titers in 524 hospitalized acute stroke patients and 1020 community controls enrolled in the Minorities Risk Factors and Stroke Study. The results were interpreted as negative (</=22.9 IgG phospholipid [GPL] or 10.9 IgM phospholipid [MPL] units), low positive (22.9 to 30.0 GPL or 10.9 to 15.0 MPL units), or high positive (>30.0 GPL or 15.0 MPL units). Odds ratios (ORs) were adjusted for age, sex, race/ethnicity, history of diabetes, hypertension, atrial fibrillation, coronary artery disease, and current cigarette smoking. RESULTS: A positive aCL titer was present in 11% (111/1020) of controls and 34% (180/524) of cases. The adjusted OR for any positive aCL titer was 4.0 (95% CI, 3.0 to 5.5). For any positive IgG aCL titer this value was 3.9 (95% CI, 2.8 to 5.5), and for any positive IgM aCL titer it was 3.4 (95% CI, 2.1 to 5.5). There were no significant differences in ORs associated with high- or low-positive IgG or IgM aCL titers. CONCLUSIONS: In the largest study of its kind to date, aCL antibodies were demonstrated to be independent stroke risk factors across the 3 ethnic groups studied, conferring a 4-fold increased risk of ischemic stroke. IgG and for the first time IgM aCL were each shown to be associated with increased stroke risk. The prevalence of these antibodies and the stroke risk associated appear greater than previously reported.

Acute Disease↗

Antiphospholipid antibodies accelerate plasma coagulation by inhibiting annexin-V binding to phospholipids: a "lupus procoagulant" phenomenon.

The antiphospholipid syndrome is a thrombophilic condition marked by antibodies that recognize anionic phospholipid-protein cofactor complexes. We recently reported that exposure to IgG fractions from antiphospholipid patients reduces the level of annexin-V, a phospholipid-binding anticoagulant protein, on cultured trophoblasts and endothelial cells and accelerates coagulation of plasma exposed to these cells. Therefore, we asked whether antiphospholipid antibodies might directly reduce annexin-V binding to noncellular phospholipid substrates. Using ellipsometry, we found that antiphospholipid IgGs reduce the quantity of annexin-V bound to phospholipid bilayers; this reduction is dependent on the presence of beta2-glycoprotein I. Also, exposure to plasmas containing antiphospholipid antibodies reduces annexin-V binding to phosphatidyl serine-coated microtiter plates, frozen thawed washed platelets, activated partial thromboplastin time (aPTT) reagent and prothrombin time reagent and reduces the anticoagulant effect of the protein. These studies show that antiphospholipid antibodies interfere with the binding of annexin-V to anionic phospholipid and with its anticoagulant activity. This acceleration of coagulation, due to reduced binding of annexin V, stands in marked contrast to the "lupus anticoagulant effect" previously described in these patients. These results are the first direct demonstration of the displacement of annexin-V and the consequent acceleration of coagulation on noncellular phospholipid surfaces by antiphospholipid antibodies.

Annexin A5↗

[The effect of lycium barbarum polysaccharide on vascular tension in two-kidney, one clip model of hypertension].

In the present study, the effects of lycium barbarum polysaccharide (LBP) on endothelial function in the two-kidney, one clip model of hypertension were observed. The results showed that the increase of blood pressure in hypertension rats (HR) could be prevented significantly by treatment with 10% LBP. In isolated aortic rings of LBP-treated rats, the contraction of phenylephrine (PE) was reduced as compared with HR rats. Removal of the endothelium abolished the difference of PE-induced vasoconstriction among groups. In vitro incubation of aortic rings from LBP-treated rats with methyl blue (MB) or N-nitro-L-arginine methyl ester (L-NAME) increased the magnitude of PE-induced contraction. Meanwhile the response to acetylcholine (ACh) was significantly increased in LBP-treated rats, but the response to nitroprusside had no significant difference among groups. Pretreatment with L-arginine partially restored ACh-induced relaxation in RH rats, but no effect in LBP-treated rats. These results suggested that the role of LBP in decreasing vasoconstriction to PE may be mediated by increase of the effects or/and production of endothelium-derived relaxation factor (EDRF). LBP increased formation of EDRF may be related to increase the substrate of EDRF.

Animals↗

[Expression of major histocompatibility complex antigens and adhesion molecules on renal cell carcinoma cells, and effect of interferon-alpha and/or cimetidine on the expression].

Recently the combined therapy with interferon-alpha (IFN-alpha) and cimetidine has been reported to be effective against advanced renal cell carcinoma (RCC). IFN-alpha and cimetidine have an antitumor effect partly due to enhancement of cytotoxic activity of lymphocytes against cancer cells. We examined the expression of major histocompatibility complex (MHC) antigens and adhesion molecules on 4 fresh RCC cells and 5 RCC cultured cell lines, which have an important role in recognition and killing of cytotoxic lymphocytes against cancer cells. The effect of treatment with IFN-alpha and/or cimetidine on the expression of MHC antigens and adhesion molecules on RCC cells was also investigated. MHC class I and leukocyte function-associated antigen-3 (LFA-3) were expressed on all RCC cells, but not MHC class II. Intercellular adhesion molecule-1 (ICAM-1) and B7 were expressed on 6 and 5 of 8 RCC cells, respectively. IFN-alpha significantly augmented the expression of MHC class I in 6 of 9 RCC cells, ICAM-1 in 1 and LFA-3 in 2 of 8 RCC cells. However, IFN-alpha did not affect the expression of MHC class II and B7. On the other hand, cimetidine enhanced the expression of LFA-3 in 2 of 8 RCC cells, but not MHC antigens, ICAM-1 or B7. The combination of IFN-alpha and cimetidine did not show a synergistic enhancing effect on the expression of MHC antigens, ICAM-1, LFA-3 or B7. These results suggest that IFN-alpha augments the sensitivity of RCC cells to lysis by cytotoxic lymphocytes partly due to the enhancement of expression of MHC class I, ICAM-1 and LFA-3 on RCC cells, and that cimetidine also augments the susceptibility of RCC cells to lymphocytes by the enhanced expression of LFA-3 on RCC cells.

Adjuvants, Immunologic↗

Pregnancy loss in the antiphospholipid-antibody syndrome--a possible thrombogenic mechanism.

BACKGROUND: The mechanisms of vascular thrombosis and pregnancy loss in the antiphospholipid-antibody syndrome are unknown. Levels of annexin V, a phospholipid-binding protein with potent anticoagulant activity, are markedly reduced on placental villi from women with this syndrome. Hypercoagulability in such women may therefore be due to the reduction of surface-bound annexin V by antiphospholipid antibodies. To test this idea, we studied how antiphospholipid antibodies affect levels of annexin V on cultured trophoblasts and human umbilical-vein endothelial cells and how they affect the procoagulant activity of these cells. METHODS: We isolated IgG fractions from three patients with the antiphospholipid-antibody syndrome and from normal controls. These antibodies were incubated with cultured BeWo cells (a placental-trophoblast cell line), primary cultured trophoblasts, and human umbilical-vein endothelial cells. Annexin V on the cell surfaces was measured by an enzyme-linked immunosorbent assay. The coagulation times of plasma overlaid on the cells were also determined. RESULTS: Trophoblasts and endothelial cells exposed to antiphospholipid-antibody IgG as compared with control IgG had reduced levels of annexin V (trophoblasts, 0.37 +/- 0.02 vs. 0.85 +/- 0.12 ng per well, P=0.02; endothelial cells, 1.6 +/- 0.04 vs. 2.1 +/- 0.05 ng per well, P=0.001). Also, trophoblasts and endothelial cells exposed to antiphospholipid-antibody IgG had faster mean (+/- SE) plasma coagulation times than cells exposed to control IgG (trophoblasts, 8.7 +/- 2.0 vs. 21.3 +/- 2.9 minutes, P=0.02; endothelial cells, 9.8 +/- 0.8 vs. 14.2 +/- 1.2 minutes, P=0.04). CONCLUSIONS: Antiphospholipid antibodies reduce the levels of annexin V and accelerate the coagulation of plasma on cultured trophoblasts and endothelial cells. The reduction of annexin V levels on vascular cells may be an important mechanism of thrombosis and pregnancy loss in the antiphospholipid-antibody syndrome.

Abortion, Spontaneous↗