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Biomedical subjects

Ping Zou

Publications and source records attributed to Ping Zou.

At least 19 recordsLinked to original sources

Distance measurements by fluorescence energy homotransfer: evaluation in T4 lysozyme and correlation with dipolar coupling between spin labels.

We demonstrate the feasibility and practical limitations of using steady-state anisotropy to determine distances from fluorescence homotransfer in the context of a protein of known crystal structure. Eight double mutants of T4 lysozyme spanning the distance range between 20 A and 50 A were labeled with a methanethiosulfonate derivative of fluorescein. The measured distances in liquid solution are in agreement with those determined from dipolar coupling between spin labels in the frozen state. They can be interpreted in the context of the crystal structure after accounting for the probe linking arm. Overall, the results establish the necessary calibration for this spectroscopic ruler. The measurement of similar distance trends using independent probes sets the stage for the complementary use of homotransfer and dipolar coupling in the determination of static structures and detection of conformational changes.

Anisotropy↗

In vitro co-stimulation of anti-tumor activity by soluble B7 molecules.

In order to investigate the anti-tumor activity of a soluble B7-1/immunoglobulin G fusion protein and explore an effective method to eliminate immune escape of tumor cells, a recombinant vector encoding this fusion protein was constructed and constitutively expressed in Chinese hamster ovary cells. After purification with protein G affinity chromatography, the soluble fusion protein was tested for bioactivity. Results showed that the fusion protein could significantly increase the density of B7-1 molecules on WEHI-3 cells, a mouse leukemia cell line. Through allogeneic mixed lymphocyte tumor cultures, it was demonstrated that, with the presence of the first signal, it could also significantly enhance T cell activation and killing activity against WEHI-3 cells and interleukin-2 secretion by activated mouse T lymphocytes. The conclusion can be drawn that the soluble B7-IgG fusion protein has a potent capacity to generate or enhance anti-tumor immune response in vitro, and its clinical value deserves further investigation.

Animals↗

[Proliferation inhibiting and apoptosis inducing effects of parthenolide on human multiple myeloma cells].

OBJECTIVE: To investigate the effect of parthenolide (PTL) on human multiple myeloma (MM) cells in vitro and its mechanism. METHODS: Human MM cells of the line PRMI8266 were cultured and treated with PTL of the concentrations of 1, 2.5, 5, 7.5, and 10 micromol/L for 24, 48, or 72 hours. MM cells treated with DMSO were used as control group. The optical density was measured so as to draw a growth curve. The cell viability was detected by MTT and trypan-blue exclusion. The apoptosis was detected by flow cytometry. AO/EB staining and Wright-Giemsa staining were used to observe the morphological changes of the cells by fluorescence microscope and light microscope respectively. The caspase-3 activity was evaluated by BD ApoAlert Caspase Colorimetric Assay Kit. RESULTS: PTL significantly inhibited the proliferation and viability of the MM cells time and dose-dependently (all P < 0.01), and significantly induced the cell apoptosis after 48 h in a dose-dependent manner (P < 0.01). The early cell apoptosis rates for PTL of the concentrations of 2, 5 and 10 micromol/L were 17.1% +/- 2.6%, 33.6% +/- 3.8%, and 40.9% +/- 3.1% respectively, all significantly higher than that of the control group (5.6% +/- 1.2%, all P < 0.01). The MM cells treated with PTL of the concentration of 5 micromol/L for 48 h showed typical cell apoptotic features. The caspase-3 activity of the MM cells was enhanced significantly by PTL in a time and dose-dependent manner (all P < 0.01). CONCLUSION: This first report of anti-proliferation and apoptosis induction effects of PTL on MM cells shows that able to significantly inhibit the proliferation and induce the apoptosis of MM cells and enhance the caspase-3 activity, PTL may be a potentially useful drug for treatment of MM.

Actihaemyl↗

Assessment of bone marrow mesenchymal stem cell biological characteristics and support hemotopoiesis function in patients with chronic myeloid leukemia.

Mesenchymal stem cells (MSCs) are of great therapeutic potential because of their ability to self-renew and differentiate into multiple tissues. Compare to allogenetic MSCs, autologous MSCs from patients needed cell-based therapy may be an ideal alternative stem cell source. However, characteristics of MSCs from a disease state are poorly understood. So, we have isolated and characterized MSCs from choronic myeloid leukemia (CML) patients and compared them with MSCs derived from normal adult bone marrow. Our results showed that CML derived MSCs are similar to normal MSCs in phenotype, morphology and multi-differentiation capacity. Moreover, CML derived MSCs did not express BCR/ABL gene and Ph chromosome, and had not the ability to development tumor in nude mice. At last, they could express hematopoietic cytokines, and possessed hematopoietic supportive ability. These findings indicate that MSCs derived from CML patients' bone marrow may be an attractive tool for clinical needs.

Adult↗

Allogeneic peripheral blood hematopoietic stem cell transplantation for patients with hematologic malignancies.

To investigate the therapeutic effects and associated complications of allogeneic peripheral blood stem cell transplantation (allo-PBSCT). 40 patients with various malignant hematopoietic diseases received allo-PBSCT. The preparative regimens were based on BUCY2 or modified BUCY2. The acute graft-versus host disease (aGVHD) was prevented by cyclosporin A and short-term MTX regimen in all patients. Two patients from donors with one fully mismatched HLA on DRB1 locus and 4 from unrelated donor also administered Zenapox (CD25 MAb) at dosage of 1 mg/kg every day on the day before transplantation and day 4 after transplantation. These 6 patients were also treated with mycophenolate mofetil (MMF). Transfusion of the donor cells: The median of the transfused nucleated cells was 5.38 x 10(8)/kg and that of the CD34+ cells was 7.8 x 10(6)/kg respectively. All the patients gained hematopoietic reconstruction except one who died of infection before engraftment. Seven patients got II degrees-IV degrees aGVHI) and the incidence was 17.5%. Fourteen patients got cGVHD and the incidence was 53.8% in the patients who survived over 6 months. Twenty-eight patients had fever or other characteristics of infection. The median follow-up time was 13.8 months. The incidence of transplantation related mortality (TRM) was 17.5% and 2 patients relapsed (5.0%). It was concluded that allo-PBSCT can reconstruct hematopoiesis quickly and is a favorable therapeutic method for leukemia.

Adolescent↗

Changes of regulatory T cells in Graves' disease.

The immune mechanism of Graves' diseases (GD) and the roles of regulator T cells were investigated. In 32 patients with GD (GD group) and 20 healthy volunteers (control group), flow cytometry was used to detect the proportion of CD4+CD25+ cells, MACS to isolate CD4+ CD25+ cells, RT-PCR to assay the expression of FOXP3, and ELISA to test the level of IL-10, respectively. It was found that there was no significant change in the proportion of CD4+CD25+ T cells between GD group and control group (P>0.05), while secretion of IL-10 and expression of FOXP3 in GD group were lower than control group (P<0.01 and P<0.05, respectively). In conclusion, though the proportion of regulatory T cells of peripheral blood lymphocytes in the patients with GD, the functions of them were significantly weakened, which might be a pathogenic factor in GD.

Adolescent↗

[Expression of SDF-1alpha and its receptor CXCR4 in acute leukemias and their relationship with extramedullary infiltration].

The study was aimed to explore the expression of stromal cell derived factor-1alpha (SDF-1alpha) and its receptor CXCR4, and their relationship with the extramedullary infiltration in acute lymphoblastic, grannulocytic and monocytic leukemia. 66 cases of acute leukemia included 31 cases of acute lymphoblatic leukemia (ALL), 20 cases of acute grannulocytic leukemia (M(2)) and 15 cases of acute monocytic leukemia (M(4)+M(5)). There were 41 cases with extramedullary infiltration and 25 cases without-extramedullary infiltration. Enzyme-linked immunoabsorbent assay (ELISA) and flow cytometry were used to determine expression of SDF-1alpha and CXCR4 respectively on leukemia cells in peripheral blood and bone marrow of different groups. The results showed that average plasma level of SDF-1alpha in the ALL, M(4)+M(5), M(2) patients and the normal control were 1317.87 +/- 220.76, 1339.79 +/- 187.06, 1063.70 +/- 190.74, 1908.34 +/- 135.55 (pg/ml) respectively. The average levels in the ALL, M(4)+M(5) and M(2) patients groups were lower than those in normal control group. Both levels in ALL and M(4)+M(5) patient groups were higher than that in M(2) patient group. The average levels of SDF-1alpha in patient group with extramedullary infiltration and patient groups without-extramedullary infiltration were 1252.49 +/- 263.12, 1234.91 +/- 185.50 (pg/ml) respectively. The former seemed as if higher than the latter, but without statistical significance. The MFI of CXCR4 expression in ALL, M(4)+M(5), M(2) patient group were 78.47 +/- 33.96, 67.21 +/- 24.29, 41.66 +/- 17.18, respectively. CXCR4 expression in ALL and M(4)+M(5) patient groups were higher than that in M(2) patient group (P > 0.05). There was no significant difference between the ALL and M(4)+M(5) patient group (P > 0.05). The MFI of CXCR4 expression in patients with extramedullary infiltration and patients without extramedullary infiltration were 81.72 +/- 27.63, 36.94 +/- 11.86 respectively. The former was higher than the latter (P < 0.05). It is concluded that the higher expression of CXCR4 on acute lymphoblatic and monocytic leukemia cells may be one of the molecular mechanisms of extramedullary infiltration in both kinds of leukemia. The average plasma levels of SDF-1alpha decreased in leukemia patients and this decrease not related to the extramedullar infiltration, which may be due to the SDF-1alpha local expression in the organ infiltrated.

Acute Disease↗

[Thapsigargin-induced apoptosis of K562 cells and its mechanism].

The aim was to study the apoptotic induction effect of thapsigargin on leukemia cell line K562 and its possible mechanism. After the treatment of leukemia cell line K562 by thapsigargin, morphological change of apoptotic cells was investigated by AO/EB fluorescent staining under fluorescent microscope; apoptosis rate was determined with annexin V-FITC/PI double staining by flow cytometry; intracellular calcium concentrations ([Ca(2+)]i) were measured by fluorescence spectrophotometer with calcium sensitive fluorescence indicator Fura-2/AM; mitochondrial transmembrance potentials (Delta Psi m) was detected on flow cytometry through staining of Rhodamine (Rh123); the changes of caspase-3, -7, -9, -12, cytochrome C, GRP78 proteins were detected by Western blot. The results showed that K562 cells cultured in 4 micromol/L thapsigargin for 48 hours exhibited typical morphological changes of apoptotic cells under fluorescent microscope, including shrinkage of cell, condensation of chromatin, breakage of nuclear, formation of apoptotic bodies, fluorescence of yellow green and pellet observed in early apoptoyic cells and hyacinth fluorescence of chromatin showed in late apoptotic cells. 24 and 48 hours after exposure to 1, 2, 4, 8 micromol/L thapsigargin, the apoptotic rates of K562 were respectively 7.51%, 11.65%, 23.22%, 30.56% and 12.85%, 20.27%, 31.51%, 44.16%, in dose-dependent manner, and were statistically significant when compared with the controls (P < 0.05). The apoptotic rate of K562 was dose- and time-dependent in experiment range. The enhancement of [Ca(2+)]i and the decrease of the Delta Psi m in K562 cells were induced by thapsigargin and were dose-dependent in experiment range, compared with control, P < 0.05. Western blot results indicated that cleavage and activation of caspase-3, -7, -9, -12, releasing of cytochrome C from mitochondria, upregulation of GRP78 expression at the endoplasmic reticulum were induced in K562 cells after 24 hours exposure of 4 micromol/L thapsigargin. It is concluded that thapsigargin induces endoplasmic reticulum stress-induced apoptosis in K562 cells. Endoplasmic reticulum is a novel important initiatory site of apoptosis in cells; the cleavage and activation of caspase-3, -7, -9, -12 play very important role in endoplasmic reticulum stress-induced apoptosis of K562 cells and is one of the important mechanisms for thapsigargin-induced apoptosis. Thapsigargin-induced apoptosis in K562 cells is associated closely with the disruption of the Delta Psi m and the release of cytochrome C from mitochondria, mitochondria participates in endoplasmic reticulum stress-induced apoptosis in K562 cells.

Apoptosis↗

[Enhancive effect of PLK1 gene silencing on sensitivity of K562/A02 cells to adriamycin].

BACKGROUND & OBJECTIVE: Polo-like kinase 1 (PLK1), an important cell cycle regulator, is highly expressed in many types of cancer, and is associated with oncogenesis, treatment effectiveness and prognosis. This study was to investigate the enhancive effect of small interference RNA (siRNA) targeting PLK1 gene on the sensitivity of K562/A02 cells to adriamycin (ADM). METHODS: siRNA plasmid vector specifically targeting PLK1 gene with enhanced green fluorescent protein (EGFP) was constructed and transfected into K562/A02 cells. The expression of PLK1 was detected by reverse transcription-polymerase chain reaction (RT-PCR) and Western blot. The 50% inhibitory concentration (IC50) of ADM on K562/A02 cells was measured by MTT assay. Intracellular ADM accumulation and ADM-induced apoptosis of K562/A02 cells were detected by flow cytometry. RESULTS: After treatment with PLK1 siRNA, the mRNA and protein levels of PLK1 in K562/A02 cells were decreased by (61.9+/-2.5)% and (65.3+/-2.4)% of control. The relative reverse rate of sensitivity of K562/A02 cells to ADM was 67.8%. The intracellular accumulation of ADM was greatly increased, and ADM-induced apoptosis of K562/A02 cells was elevated from 11.33% to 54.39%. CONCLUSION: PLK1 gene silencing could enhance intracellular ADM accumulation in K562/A02 cells, improve sensitivity of K562/A02 cells to ADM, and induce cell apoptosis, therefore, reverse cell resistant to ADM.

Antibiotics, Antineoplastic↗

[Effect of PLK1 gene silence on cell cycle, proliferation and drug resistance in K562/A02 cells].

The study was purposed to investigate the effect of small interference RNA (siRNA) targeting Polo-like kinase 1 (PLK1) gene on cell cycle progression, proliferation and drug resistance in K562/A02 cells. siRNA plasmid vector specifically targeting PLK1 gene with enhanced green fluorescence protein (EGFP) was transfected into K562/A02 cells. Expressions of PLK1 mRNA and protein were assayed by RT-PCR and Western-blot; cell proliferation was evaluated by direct cell counting after trypan blue staining. Cell cycle and intracellular adriamycin (ADM) accumulation was determined by flow cytometry; 50% inhibition concentration (IC50) of ADM on K562/A02 cells was determined by MTT method. The results showed that, as compared with control cells, siRNA plasmid reduced PLK1 mRNA expression by (34.7 +/- 2.1)% for 24 hours and by (56.6 +/- 1.5)% for 48 hours, PLK1 protein significantly decreased simultaneously by (49.9 +/- 3.2)% and by (62.1 +/- 1.7)%. After being transfected for 24 and 48 hours, the rate of survival cells decreased by 30% and 59% respectively. Forty-eight hours after transfection, the ratio of K562/A02 cells at G2/M increased by 2.77-fold, at the same time, intracellular ADM accumulation increased and the relative efficiency of K562/A02 cells to ADM was 73.8%. It is concluded that PLK1 gene silence can inhibit K562/A02 cell proliferation, induce cell cycle arrest at G2/M, and increase intracellular ADM accumulation, so that enhance cell sensitivity to ADM.

Cell Cycle↗

[Biological characteristics and ability of supporting hematopoiesis of bone marrow mesenchymal stem cells pre- and post-cryop-reservation].

This study was aimed to observe the biological characteristics of cryopreserved bone marrow mesenchymal stem cell (MSC) and to examine their abilities to support in vitro hematopoiesis. Bone marrow MSC were cryopreserved in -196 degrees C liquid nitrogen for 4 weeks (short term) and 9-15 months (medium term) with IMDM containing 10% DMSO, 40% fetal calf serum as cryoprotectant. The viability, proliferation, immunophenotype, in vitro differentiation and ability of supporting hematopoiesis of thawed MSC were investigated and compared with these of pre-cryopreserved MSC. The results showed that the cell viability were (93 +/- 2.51)% and (90 +/- 3.75)% for MSC cryopreserved as long as 4 weeks or 9-15 months respectively. However, there were no changes detected, as compared with pre-cryopreserved MSC in immunophenotype, abilities of proliferation and supporting colony forming of CFU-GM, CFU-E and CFU-GEMM. It is concluded that bone marrow-derived MSC can be stored in liquid nitrogen for short-term (4 weeks) or medium-term (9-15 months) without changes of abilities of proliferation, differentiation and hematopoiesis support.

Blood Preservation↗

[Alteration of expression of survivin in HL-60 cells treated with chemotherapeutic drugs].

Survivin, a new member of the inhibitor of apoptosis protein (IAP) family, expressed in the most human cancers but not in terminally differentiated adult tissues, so survivin may be a target for tumor therapy. In addition, some scholars found that survivin expression is associated with the resistance in chemotherapy. To explore the relationship between survivin and drug-resistance, the alteration of survivin mRNA and protein of HL-60 cells treated with daunomycin (DNR), mitoxantrone (MIT) and arsenic trioxide (As2O3) was investigated, the expressions of survivin mRNA and survivin protein were detected on the first and third day by RT-PCR and Western blot, respectively. The results showed that survivin mRNA levels all decreased after the first day of treatment with drugs. It was decreased by 10% in DNR group, 40% (P < 0.01) in MIT group, and 25% (P < 0.01) in As2O3 group in comparison with control cells. In the third day, the survivin mRNA treated with DNR was up-regulated by 20% (P < 0.05), compared with the first day, and MIT was up-regulated by 65% (P < 0.01), but As2O3 was still down-regulated by 32% (P < 0.01). In Western blot, survivin protein level increased 14% after treated with DNR for three days, compared with the control cells, and 11% in MIT, but decreased by 82% in As2O3. It is concluded that after treatment with chemotherapeutic drugs, the survivin level descended at first day and then ascended obviously. This phenomenon may be associated with the resistance in chemotherapy for leukemia. On the other hand, As2O3 shows a different mechanism that may play a significant role to reverse resistance.

Antineoplastic Agents↗

[Expression of immune response molecules and function of fas ligand on surface of AML WEHI-3 cells].

The purpose of this study was to investigate the expression of Fas, Fas ligand (FasL) and CD80 and function of FasL on the surface of acute myelomonocytic leukemia cells from WEHI-3 line. The expression of Fas, FasL and CD80 on the surface of WEHI-3 were detected by flow cytometry, the apoptosis of YAC-1 cell induced by FasL on the surface of WEHI-3 were detected by (3)H-TdR incorporation. The results showed that the expression rate of Fas, FasL and CD80 on the surface of WEHI-3 cells were (6.75 +/- 2.31)% (n = 5), (63.73 +/- 5.23)% (n = 5) and (5.06 +/- 0.41)% (n = 5) respectively. The apoptosis rate of YAC-1 cells (target cells) co-cultured with WEHI-3 cells (Effector cells) at the rate of 1:3, 1:10 and 1:30 were (26 +/- 4.5)%, (35 +/- 3.2)% and (43 +/- 2.7)% (n = 5) respectively. It is concluded that WEHI-3 cells have high expression of FasL and low expression of Fas and CD80 on their cell membrane, and can induce the apoptosis of Fas(+) YAC-1 cells.

Apoptosis↗

[Indoleamine 2, 3-dioxygenase activity in acute myeloid leukemia cells contributing to tumor immune escape].

This study was aimed to investigate the mechanism of indoleamine 2, 3-dioxygenase (IDO) activity in acute myeloid leukemia cells contributing to tumor immune escape. Myeloid leukemia cells were isolated from bone marrow of 23 patients with acute myeloid leukemia (AML) and IDO expression was detected by immunochemistry and RT-PCR methods. Then mixed lymphocyte reaction (MLR) of one way was carried out, leukemia cells were used as stimulating cells and T-lymphocytes were used as reactive cells in culture with or without 1-MT. T-lymphocyte proliferation rate was determined by MTT assay and IDO activity in supernatant of MLR was detected by high-performance liquid chromatography (HPLC). The results showed that IDO expression was found in 17 out of 23 cases of acute myeloid leukemia cells; IDO enzyme activity in leukemia cells inhibited T-lymphocyte proliferation in MLR cultures. It is concluded that IDO activity expressing in leukemia cells can suppress T-lymphocyte proliferation responses, which may be contributing to tumor immune escape.

Cell Proliferation↗

Comparison of cytogenetics and clinical manifestations between M5a and M5b of acute monocytic leukemia.

To compare the cytogenetic difference between M5a and M5b of acute monocytic leukemia and to study the correlation between karyotypes and clinical manifestations, a total of 58 cases of de novo adult AML M5 have been investigated. Chromosome metaphases of bone marrow cells were prepared by using direct method and 24 hours short-term culture. The karyotypes were analyzed by G-banding. Meanwhile, clinical information of these cases were studied retrospectively. The results showed that there were 28 with normal karyotype and 30 with aberrant karyotype in 58 cases. The frequency of normal karyotype in patients with M5b was significantly higher than that in patients with M5a (P = 0.0001). The 11q23 aberrations and trisomy 8 were more common in patients with M5a in comparison with patients with M5b (P < 0.01). The patients with AML M5 with aberrant karyotype had a higher incidence of hyperleukocytosis, extramedullary central nerve system infiltration, lower complete remission (CR) rate and shorter overall survival. It is concluded that acute monocytic leukemia is a series of heterogeneous diseases, a distinctive cytogenetic features can be observed between patients with AML M5a and M5b, these results will provide insights into the classification and pathogenesis mechanism of AML M5 at molecular level.

Adolescent↗

[Depressing the immune escape of acute myelomonocytic leukemia via an anti-Fas ribozyme].

In order to investigate the inhibition role of anti-Fas hammerhead ribozyme on Fas expression and Fas-mediated apoptosis in CTLL-2 cells (mouse CTL cell line), and to explore a new way for enhancing the ability of T cells against Leukemia in donor lymphocytes infusion, CTLL-2 cells were transfected with pEGFP-RZ596 and pEGFPC1 (mock-transfected) via electroporation. Fas expression on CTLL-2 cells was detected by RT-PCR and Western blot. The killing effect of CTL against WEHI-3 (mouse acute myelomonocytic leukemia cell line) highly expressing FasL in vitro was detected by MTT assay. The caspase-3 proteolytic activity and the apoptosis rate of CTLL-2 cells were detected by means of BD AproAlert Caspase-3 Colorimetric kit and FITC labeled Annexin-V apoptosis detecting kit respectively. The results showed that the anti-Fas ribozyme could be successfully introduced into mouse CTLL-2 cells; Fas expression on the surface of cells transfected with the ribozyme was obviously decreased, in comparison with control and mock-transfected cells; after cocultured with WEHI-3 cells, the viability of CTLL-2 cells transfeced with the ribozyme was significantly increased, as compared with other two groups; caspase-3 activity and apoptosis rate of the ribozyme-transfeced cells were significantly decreased, the killing effect of CTLL-2 transfected with the ribozyme was stronger than that of other groups. It is concluded that anti-Fas ribozyme can remarkably decrease Fas expression on CTLL-2 cells, so as to avoid Fas-mediated apoptosis by Fas ligand on WEHI-3 cells, and to enhance their killing activity against WEHI-3 cells, as a result, the immune escape of acute myelomonocytic leukemia was depressed.

Animals↗