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Biomedical subjects

Z Cai

Publications and source records attributed to Z Cai.

At least 109 records · Page 6Linked to original sources

Volume-dependent taurine release from cultured astrocytes requires permissive [Ca(2+)](i) and calmodulin.

Cell swelling results in regulatory activation of multiple conductive anion pathways permeable toward a broad spectrum of intracellular organic osmolytes. Here, we explore the involvement of extracellular and intracellular Ca(2+) in volume-dependent [(3)H]taurine efflux from primary cultured astrocytes and compare the Ca(2+) sensitivity of this efflux in slow (high K(+) medium induced) and fast (hyposmotic medium induced) cell swelling. Neither Ca(2+)-free medium nor Ca(2+)-channel blockers prevented the volume-dependent [(3)H]taurine release. In contrast, loading cells with the membrane-permeable Ca(2+) chelator 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid (BAPTA)-AM suppressed [(3)H]taurine efflux by 65-70% and 25-30% under high-K(+) and hyposmotic conditions, respectively. Fura 2 measurements confirmed that BAPTA-AM, but not Ca(2+)-free media, significantly reduced resting intracellular Ca(2+) concentration ([Ca(2+)](i)). The calmodulin antagonists trifluoperazine and fluphenazine reversibly and irreversibly, respectively, inhibited the high-K(+)-induced [(3)H]taurine release, consistent with their known actions on calmodulin. In hyposmotic conditions, the effects were less pronounced. These data suggest that volume-dependent taurine release requires minimal basal [Ca(2+)](i) and involves calmodulin-dependent step(s). Quantitative differences in Ca(2+)/calmodulin sensitivity of high-K(+)-induced and hyposmotic medium-induced taurine efflux are due to both the effects of the inhibitors on high-K(+)-induced cell swelling and their effects on transport systems and/or signaling mechanisms determining taurine efflux.

Animals↗

Methyltransferase inhibitor S-adenosyl-L-homocysteine sensitizes human breast carcinoma MCF7 cells and related TNF-resistant derivatives to TNF-mediated cytotoxicity via the ceramide-independent pathway.

In this study we investigated the signalling requirements for TNF-induced cytotoxicity modulated by the methyltransferase inhibitor S-adenosyl-L-homocysteine (AdoHcy) using the TNF-sensitive human breast carcinoma MCF7 cells and its established TNF-resistant clones (R-A1 and clone 1001). Our data indicate that inhibition of methylation reactions by adenosine plus homocysteine, which are known to condense within cells to AdoHcy, markedly potentiated TNF-induced cytotoxicity in MCF7 cells and rendered related TNF-resistant variants, TNF-sensitive by a mechanism independent from the ceramide pathway. We demonstrated that the dominant-negative derivative of FADD (FADD-DN) blocked methylation inhibition/TNF-induced cell death. Moreover, TNF-mediated cytotoxicity modulated by AdoHcy was blocked by the ICE-inhibiting peptide z-VAD-fmk, suggesting that an ICE-like protease is required for the methylation inhibition/TNF-inducible death pathway. In conclusion, these results suggest that the methyltransferase inhibitor AdoHcy potentiates TNF-induced cytotoxicity in MCF7 cells and renders TNF-resistant MCF7 clones, TNF-sensitive via the ceramide independent pathway and that FADD and the ICE-like protease are likely necessary components in transducing methylation inhibition/TNF signals for cell death.

Adenocarcinoma↗

[Morphological study of CD3+ dendritic epidermal T cells in human skin and scar].

OBJECTIVE: To investigate the CD3/TCR-bearing T cell in the epidermis and explore the influence of the dendritic epidermal T cells on regeneration and differentiation of epidermal cells. METHODS: The CD3/TCR-bearing T cells in epidermis of human skin and cicatrix were examined by means of histomorphology and immunohistochemistry. RESULTS: It was found that the density of CD3/TCR-bearing T cells in human skin and scar tissue had great dissimilarity. CD3+ dendritic epidermal T cells increased in hyperplastic scar. Such result was not observed in atrophic scar. CONCLUSION: Our findings indicate CD3+ dendritic epidermal T cells regulate the generation and differentiation of epidermal cells. CD3+ dendritic epidermal T cells may play an important role in the maintenance of the morphology of epidermal tissue.

Adult↗

[A study on guided tissue regeneration and tissue engineering-transplantation of collagen membrane seeded with cultured hyaline chondrocytes].

OBJECTIVE: Lack of transplant material is a main problem in the repair and reconstruction of tissue or organ defects. To seek the succedaneum of transplants, we studied and used tissue-engineered growth hyaline cartilage. METHODS: The articular hyaline cartilage obtained from newborn calf within 6 hours of sacrifice was enzymatically dissolved. The chondrocytes were then seeded onto the medical collagen membrane of guided tissue regeneration in a 24 well plate in RPMI1640 medium. One week later, the chondrocyte medical collagen membrane of guided tissue regeneration complex was implanted subcutaneously into the back of nude mice. Eight weeks after implantation, the animals were sacrificed. RESULTS: The present study seems to demonstrate that the cartilage-like tissue was strong enough to be transferred after being implanted for 8 weeks. The cartilage-like tissue was proved to be tissue-engineered hyaline cartilage by HE stain. The chondrocytes could secrete chondroitin sulfate as proved by Lev-Spicer stain. CONCLUSION: Tissue engineering technique was used to make tissue-engineered cartilage in vitro. It will provide a new transplant material for the repair of tissue or organ defects.

Animals↗

[Culture of chondrocytes using allogenous acellular cartilaginous matrix].

OBJECTIVE: To observe the effect of chondrocyte culture with natural ECM made from allogenous acellular cartilage. METHODS: The allogenous acellular cartilaginous matrix was used as a scaffold in chondrocyte culture in vitro, comparing with the acellular perichondrium. The growth and regeneration of the chondrocytes in vitro were observed. RESULTS: The chondrocytes seeded on the acellular cartilaginous matrix grew well while the chondrocytes on the acellular perichondrium matrix grew poorly. CONCLUSION: The surface condition of the scaffold has a notable influence on the growth of the cells. The allogenous acellular cartilaginous matrix may provide a suitable condition for chondrocytes, and it has the possibility to be developed as a natural scaffold for tissue engineering.

Animals↗

[Studies on appropriate methods for dust scrubbing from dust-laden gas in shaft kilns of small-sized cement plants].

OBJECTIVE: To study an appropriate method for dust scrubbing from dust-laden gas in the shaft kilns of small-sized cement plants. METHODS: Characteristics of dust-laden gas, including its temperature, dew point, dust concentration, diameters of dust particles and their distribution, as well as fractional dust collection efficiencies of the dust precipitator settling chamber, cyclone, impinging scrubber, impinging-spray scrubber, were measured according to the National Standards for Measurement of Particulate in Exhaust Gas Emitted from the Stationary Pollution Sources and Sampling Methods of Gaseous Pollutants (GB/T16157 - 1996), with a WY-1 In-stack 7-Stage Cascade Impactor for fractional dust collection. RESULTS: The fractional dust collection efficiency of the settling chamber for the particles greater than 12 microm was 72%, while that of the cyclone for the particles of 2 microm, 5 microm and 10 microm were 40.0%, 72.5% and 88.9%, respectively, and that of impinging scrubber was 55.0%, 91.0% and 98.9%, respectively; and that of impinging-spray scrubber were 96.0%, 99.2% and 99.6%, respectively. Results showed that 81% of the dust (by weight) from the shaft kilns were greater than 10 microm, so the settling chamber was effective for the removal of this fraction of dust. But dust particles behind the settling chamber were finer, and about 59% - 69% of them were less than 2 microm in diameters. In that case, the cyclone, impinging scrubber and impinging-spray scrubber could give an overall collection efficiency of 54%, 57% and 96%, respectively. Based on this, the following combination of dust collectors were adopted to meet the national standards for exhaust emission: a settling chamber plus an electrostatic precipitator, a settling chamber plus an impinging-spray scrubber and a settling chamber plus an impinging scrubber. The cement plants could select appropriate dust collectors according to their technical and economical conditions. CONCLUSION: Based on the results of the studies, appropriate dust collectors used to treat dust-laden gas from shaft kilns to meet the national standards for exhaust emission were recommended.

Air Pollutants, Occupational↗

[Isozyme electrophoresis of Fritillaria puqiensis during bulb organogenesis in vitro].

OBJECTIVE: Inquiring into the mechanism of bulb organogenesis of Fritillaria puqiensis. METHOD: Time course studies of the soluble protein, peroxidase and esterase were performed during the new bulb organogenesis by electrophoresis. RESULT: The atlas of electrophoresis changed greatly during the phase of differentiation and the formation of the new bulb. CONCLUSION: Different enzymes are associated with organogenesis and express activity at different times.

Culture Techniques↗

[Analysis of HPLC of isomers of nitrotoluene and nitrobenzoic acid].

Nitrotoluene and nitrobenzoic acid isomers were separated completely in less than 10 minutes by Kromasil C18 (200 mm x 4.6 mm i.d.), when V(CH3OH):V(H2O):V(THF) = 55:44:1 with beta-CD of 0.02 mol/L at flow rate of 2.0 mL/min (former 4 min) and 2.6 mL/min (later 6 min). Detector of UV-254 at 0.04 AUFS was used.

Chromatography, High Pressure Liquid↗

[EMG signal analysis based on fuggy and neural network].

Recognizing methods of EMG signal based on the fuzzy and neural network, applying to a gamma model network is trained for EMG signal of artificial-limbs, compared with assemble-category analysis. The results demonstrated that identification rate is being the better.

Algorithms↗

[Time-resolved fluorescence investigations of aggregation in Langmuir-Blodgett multilayers of hemicyanine dye].

UV-visible absorption and steady-state and time-resolved fluorescence techniques were used to investigate the aggregation behavior in Y-type hemicyanine Langmuir-Blodgett (LB) multilayers. Hemicyanine molecules formed H aggregates in LB films leading to blue-shifts of the absorption and fluorescence bands with respect to those of monomeric hemicyanine in chloroform solutions. The aggregates in LB films were dissociated by mixing with arachidic acid. The measurement of fluorescence decay profiles could be used to quantitatively characterize the lifetime, weights and size of aggregates.

English Abstract↗

Requirements for stimulating naive CD8+ T cells via signal 1 alone.

In the absence of costimulation, TCR recognition of peptide/MHC complexes is generally considered to be nonimmunogenic. In agreement with this view, naive TCR transgenic CD8+ cells failed to respond to specific peptides presented by MHC class I (Ld) molecules bound to mouse RBC. However, peptide/Ld complexes presented by cell-sized beads or bound to plastic led to overt proliferative responses in the absence of added cytokines. Significantly, equivalent strong proliferative responses occurred when mouse RBC were fixed with glutaraldehyde before Ld coupling. The implication therefore is that the intensity of signaling via the TCR is a reflection of the mobility of the ligand being recognized; TCR signaling is weak when the ligand can move laterally on the cell membrane but strong when the ligand is immobilized.

Animals↗

X-ray imaging and microspectroscopy of plants and fungi.

X-ray fluorescence microscopy and microspectroscopy with micrometre spatial resolution and unprecedented capabilities for the study of biological and environmental samples are reported. These new capabilities are a result of both the combination of high-brilliance synchrotron radiation and high-performance X-ray microfocusing optics and the intrinsic advantages of X-rays for elemental mapping and chemical-state imaging. In this paper, these capabilities are illustrated by experimental results on hard X-ray phase-contrast imaging, X-ray fluorescence (XRF) imaging and microspectroscopy of mycorrhizal plant roots and fungi in their natural hydrated state. The XRF microprobe is demonstrated by the simultaneous mapping of the elemental distributions of P, S, K, Ca, Mn, Fe, Ni, Cu and Zn with a spatial resolution of approximately 1 x 3 micron and with an elemental sensitivity of approximately 500 p.p.b. Microspectroscopy with the same spatial resolution is demonstrated by recording near-edge X-ray absorption (XANES) spectra of Mn at a concentration of approximately 3 p.p.m.

Journal Article↗

Analysis of human breast adenocarcinoma MCF7 resistance to tumor necrosis factor-induced cell death. Lack of correlation between JNK activation and ceramide pathway.

Considerable progress has been made in the understanding of tumor necrosis factor (TNF) signaling; however, the molecular and biochemical basis of tumor resistance to the cytotoxic action of TNF are still not definitively identified yet. Although a role of c-Jun N-terminal kinase (JNK) pathway has been suggested as an effector in TNF signaling, its exact relative contribution and its interaction with ceramide pathway and tumor resistance to TNF remain unknown. The relationship between JNK activation and human breast adenocarcinoma MCF7 resistance acquisition to the cytotoxic action of TNF was therefore investigated. We demonstrate that TNF triggers JNK activation in both TNF-sensitive MCF7 cells and its resistant derivative, RA1/1001. In addition, when MCF7 cells were stably transfected with mitogen-activated protein kinase kinase 4 (MKK4) dominant-negative cDNA or transiently transfected with a dominant-negative c-Jun mutant (TAM 67), their susceptibility to the cytotoxic action of TNF remains comparable with control cells. We also demonstrated that JNK activation does not require ceramide generation since in MCF7 cells transfected with a dominant-negative derivative of FADD (FADD-DN), which are resistant to the cytotoxic action of TNF, TNF induced JNK activation in the absence of ceramide generation. Furthermore, our data indicate that exogenous permeable synthetic ceramide C-6 induced the killing of MCF7 cells transfected with MKK4 dominant-negative cDNA. These results provide strong evidence indicating that tumor acquisition of resistance to the cytotoxic action of TNF may occur either independently or at a level downstream of JNK activation and suggest that JNK activation is not linked to ceramide pathway in TNF-mediated apoptosis.

Adenocarcinoma↗

Intrauterine hypoxia-ischemia alters nitric oxide synthase expression and activity in fetal and neonatal rat brains.

The effects of intrauterine hypoxia-ischemia (HI) on nitric oxide synthase (NOS) activity and on expression of NOS isoforms were investigated in fetal and neonatal rat brains. Rat fetuses were subjected to either a 30-min intrauterine HI insult or a sham operation (SH) on gestational day 17 (G17). NOS activity in the homogenate of the rat brain was detectable on G17 and increased with age. NOS activity in the HI group was 20-30% higher than in the SH group from 6 to 48 h after the HI, but was 30% lower than in the SH group from postnatal day 8 to 14. Expression of the inducible NOS (iNOS) mRNA, as examined by RT-PCR, was increased as compared to the SH group from 6 to 24 h after the HI surgery. Expression of the constitutive neuronal NOS (nNOS) mRNA was reduced in the HI group from 24 h after the HI surgery up to postnatal day 14. Immunoblotting data have shown that alterations in NOS isoform protein expression caused by the intrauterine HI were consistent with the mRNA expression data. The overall results indicate that prenatal HI has long-lasting effects on function and expression of NOS in fetal and neonatal rat brains and that the altered NOS activity may be associated with prenatal HI-induced neurological abnormalities.

Animals↗

Regulation of major histocompatibility complex class I expression by NF-kappaB-related proteins in breast cancer cells.

Downregulation of MHC Class I antigens has been observed in many cancers and usually results from a decreased gene transcription. A reporter CAT gene dependent on the MHC Class I kappaB site or on a longer promoter is transactivated by NF-kappaB complexes containing p65 or RelB. p100 as well as IkappaB-alpha are potent inhibitors of this transcription and p100 sequesters RelB and p65 complexes in the cytoplasm of breast cancer cells. However, although p100 is highly expressed in a number of breast cancer cell lines, MHC Class I antigen expression was observed on all the cell lines we analysed and could be further induced by stimulation with the cytokines IFN-gamma or TNF-alpha. Stable transfection of a unresponsive mutated IkappaB-alpha Ser 32-36 expression vector showed that TNF-alpha induced MHC Cl I expression in an NF-kappaB-dependent way while IFN-gamma did it independently of any NF-kappaB activation.

Antineoplastic Agents↗

Expression of a knocked-in AML1-ETO leukemia gene inhibits the establishment of normal definitive hematopoiesis and directly generates dysplastic hematopoietic progenitors.

The t(8;21)-encoded AML1-ETO chimeric product is believed to be causally involved in up to 15% of acute myelogenous leukemias through an as yet unknown mechanism. To directly investigate the role of AML1-ETO in leukemogenesis, we used gene targeting to create an AML1-ETO "knock-in" allele that mimics the t(8;21). Unexpectedly, embryos heterozygous for AML1-ETO (AML1-ETO/+) died around E13.5 from a complete absence of normal fetal liver-derived definitive hematopoiesis and lethal hemorrhages. This phenotype was similar to that seen following homozygous disruption of either AML1 or CBFbeta. However, in contrast to AML1- or CBFbeta-deficient embryos, fetal livers from AML1-ETO/+ embryos contained dysplastic multilineage hematopoietic progenitors that had an abnormally high self-renewal capacity in vitro. To further document the role of AML1-ETO in these growth abnormalities, we used retroviral transduction to express AML1-ETO in murine adult bone marrow-derived hematopoietic progenitors. AML1-ETO-expressing cells were again found to have an increased self-renewal capacity and could be readily established into immortalized cell lines in vitro. Taken together, these studies suggest that AML1-ETO not only neutralizes the normal biologic activity of AML1 but also directly induces aberrant hematopoietic cell proliferation.

Animals↗

Accumulation of the p53 protein allows recognition by human CTL of a wild-type p53 epitope presented by breast carcinomas and melanomas.

The p53 protein is accumulated in tumor cells of many human cancers and can elicit in vivo humoral and proliferative responses. Rare reports about p53-mediated tumor recognition by CTLs have remained questioned. We therefore studied a panel of breast tumor and melanoma cell lines that we assayed for the presence of accumulated p53 and surface HLA-A2 and for the presentation of p53 epitopes. From PBMC of a healthy donor, we have generated a CTL line, D5/L9V, directed against HLA-A2-restricted peptide 264-272 from wild-type p53. It efficiently lysed breast adenocarcinomas MCF-7, MCF7/RA1, and MDA-MB-231, and melanoma M8, which all accumulate the p53 protein. Using competition assays, we made sure that tumor lysis by D5/L9V was due to recognition of endogenously produced p53 peptide 264-272 associated with the HLA-A2.1 molecule on the surface of these tumor cells. Cells with undetectable levels of wild-type p53, such as lymphoblastoid cells and melanoma M74, were not recognized by D5/L9V. Neither were breast tumor cell line MCF7/ADR nor melanoma line M44 because of HLA loss. This study therefore shows that it is possible to obtain in vitro CTL lines that specifically recognize a p53 epitope spontaneously presented by a variety of HLA-A2+ transformed cell lines provided they display abnormal patterns of p53 expression. This work points out that breast tumors and melanomas share a p53 epitope, and raises hopes for future immunotherapeutic approaches.

Antigen-Presenting Cells↗