PubMed HealthSearch

Biomedical subjects

X L Zhang

Publications and source records attributed to X L Zhang.

At least 19 recordsLinked to original sources

Flow cytometric analysis of peripheral blood and bone marrow for tumor cells in patients with neuroblastoma.

BACKGROUND: Several sensitive surveillance tests reportedly have been used to detect occult neuroblastoma (NB) cells in peripheral blood (PB) and bone marrow (BM). They may be useful in monitoring minimal residual tumor cells. The authors report the feasibility and clinical usefulness of a sensitive flow cytometric assay that has been newly developed and evaluated to detect NB cells. METHODS: Nine NB patients and 15 healthy donors were included in the current study. Primary tumor tissues, BM, and PB were examined for the detection of NB cells using a triple-color flow cytometric assay. Tumor cells in PB and BM, isolated by fluorescence-activated cell sorting, were used for morphologic studies and differential polymerase chain reaction analysis of N-myc gene amplification. RESULTS: Neuroblastoma cells consistently showed CD9+/CD56+/CD45- phenotype. Flow cytometric analysis could detect NB cells at a level of 1 per 10(4-5) cells. The CD9+/CD56+/CD45- cell population was absent in normal PB and BM. This assay identified occult NB cells, which were not detected by conventional cytology, in PB and BM obtained from six patients (one of two with Stage II and all five with advanced disease) at diagnosis. Residual NB cells also were detected in PB and BM during therapy. Neuroblast-like morphology and N-myc gene amplification of sorted cells confirmed that CD9+/CD56+/CD45- cells were truly NB cells. CONCLUSIONS: A triple-color flow cytometric assay was a sensitive and specific method to detect occult NB cells in PB and BM. This assay could be an additional component of surveillance testing for NB patients.

Antigens, CD

Thymic B-cell non-Hodgkin's lymphoma in a child.

A 13-year-old male developed thymic non-Hodgkin's lymphoma. Microscopically, the tumor was composed of large cells, resembling centroblasts. Immunohistochemically, the tumor demonstrated leukocyte common antigen+, L26 (B-cell)+, UCHL1 (T-cell)-, suggesting the B-cell phenotype. In contrast to the terminally differentiated phenotype (CD10-, surface immunoglobulin-) observed in adult cases, flow cytometric analysis showed that they were relatively immature: CD10+, CD19+, HLA-DR-, IgM+/-, kappa+. He was successfully treated with intensive chemotherapy. Since childhood thymic lymphomas are exclusively small non-cleaved cell lymphoma with T-cell phenotype, this case represents a unique entity in children.

Adolescent

Na(+)-K(+)-ATPase expression in alveolar epithelial cells: upregulation of active ion transport by KGF.

We evaluated the effects of keratinocyte growth factor (KGF) on alveolar epithelial cell (AEC) active ion transport and on rat epithelial Na channel (rENaC) subunit and Na(+)-K(+)-adenosinetriphosphatase (ATPase) subunit isoform expression using monolayers of AEC grown in primary culture. Rat alveolar type II cells were plated on polycarbonate filters in serum-free medium, and KGF (10 ng/ml) was added to confluent AEC monolayers on day 4 in culture. Exposure of AEC monolayers to KGF on day 4 resulted in dose-dependent increases in short-circuit current (Isc) compared with controls by day 5, with further increases occurring through day 8. Relative Na(+)-K(+)-ATPase alpha 1-subunit mRNA abundance was increased by 41% on days 6 and 8 after exposure to KGF, whereas alpha 2-subunit mRNA remained only marginally detectable in both the absence and presence of KGF. Levels of mRNA for the beta 1-subunit of Na(+)-K(+)-ATPase did not increase, whereas cellular alpha 1- and beta 1-subunit protein increased 70 and 31%, respectively, on day 6. mRNA for alpha-, beta-, and gamma-rENaC all decreased in abundance after treatment with KGF. These results indicate that KGF upregulates active ion transport across AEC monolayers via a KGF-induced increase in Na pumps, primarily due to increased Na(+)-K(+)-ATPase alpha 1-subunit mRNA expression. We conclude that KGF may enhance alveolar fluid clearance after acute lung injury by upregulating Na pump expression and transepithelial Na transport across the alveolar epithelium.

Animals

Keratinocyte growth factor modulates alveolar epithelial cell phenotype in vitro: expression of aquaporin 5.

We investigated the role of keratinocyte growth factor (KGF) in regulation of alveolar epithelial cell (AEC) phenotype in vitro. Effects of KGF on cell morphology, expression of surfactant apoproteins A, B, and C (SP-A, -B, and -C), and expression of aquaporin 5 (AQP5), a water channel present in situ on the apical surface of alveolar type I (AT1) cells but not expressed in alveolar type II (AT2) cells, were evaluated in AECs grown in primary culture. Observations were made on AEC monolayers grown in serum-free medium without KGF (control) or grown continuously in the presence of KGF (10 ng/ml) from either Day 0 (i.e., the time of plating) or Day 4 or 6 through Day 8 in culture. AECs monolayers express AQP5 only on their apical surfaces as determined by cell surface biotinylation studies. Control AECs grown in the absence of KGF through Day 8 express increasing levels of AQP5, consistent with transition toward the AT1 cell phenotype. Exposure of AECs to KGF from Day 0 results in decreased AQP5 expression, retention of a cuboidal morphology, and greater numbers of lamellar bodies relative to control on Day 8 in culture. AECs treated with KGF from Day 4 or 6 exhibit a decrease in AQP5 expression through subsequent days in culture, as well as an increase in expression of surfactant apoproteins. These data, showing that KGF both prevents and reverses the increase in AQP5 (and decrease in surfactant apoprotein) expression that accompanies progression of the AT2 toward the AT1 cell phenotype, support the concepts that transdifferentiation between AT2 and AT1 cell phenotypes is at least partially reversible and that KGF may play a major role in modulating AEC phenotype.

Animals

Electrophysiological evidence of memory impairment in alcoholic patients.

In a series of event-related potential (ERP) studies, we have consistently demonstrated an ERP component correlate of visual short-term memory. There have been frequent reports on the deficits of information encoding, retention, and retrieval in chronic alcoholics. In the present study, we investigated that the ERP mnemonic effects could be influenced by long-term alcohol abuse. ERP data were recorded from 48 controls and 77 alcoholics while the subjects performed a modified delayed matching to sample paradigm using a series of object pictures as stimuli. The alcoholics completed the task with more errors and longer response times than the controls. The major differences in the evoked potentials between the two groups are found at the temporo-occipital and frontal regions in the sample and nonmatching trials, and mostly prominent in the right hemisphere. The current study indicates that the ERP technique can be a useful tool to index short-term memory. The ERP mnemonic effect difference between the two groups may be a reflection of a working memory deficit caused by long-term alcohol abuse. Our data also suggest right hemisphere dysfunction in alcoholics, with deficits in information encoding.

Adult

Molecular cloning, nucleotide sequence, and function of a site-specific recombinase encoded in the major 'pathogenicity island' of Salmonella typhi.

The genome of the typhoid fever bacterium, Salmonella typhi, contains at least three large insertions ('pathogenicity islands') relative to the chromosome of Salmonella typhimurium (which is normally non-invasive for humans) [Liu, S.-L., Sanderson, K.E., 1995. Rearrangements in the genome of the bacterium Salmonella typhi. Proc. Natl. Acad. Sci. USA 92, 1018-1022]. DNA encoding a site-specific recombinase (the rci gene) and an adjacent putative pilus-tip adhesin protein (the pilV gene) was located (near min 94) in the major 'pathogenicity island' of the S. typhi chromosome, cloned, and sequenced. It was shown that the Rci protein inverted a DNA segment of 490 bp, between two 19-bp inverted repeat elements, to place either of two possible C-termini on a constant N-terminal region of the PilV protein. Both possible PilV proteins were seen when the alternative pilV genes were transcribed from the T7 promoter and translated in vivo. Both the rci and the N-terminal region of the pilV gene show a high degree of homology to genes encoded by the IncI2 plasmid R721 and the IncI1 plasmid R64. One of the possible pilV C-termini (in the pilV1 gene) is highly homologous to shufflon C (one of the possible PilV C-termini) of R64; the other possible pilV C-terminus (in the pilV2 gene) shows no homology to any published shufflon. In the R64 plasmid, the PilV proteins are pilus-tip adhesins; different PilV proteins recognize different potential recipient bacterial strains as a prelude to mating in liquid culture [Komano, T., Kim, S.-R., Yoshida, T., Nisioka, T., 1994. DNA rearrangement of the shufflon determines recipient specificity in liquid mating of IncI1 plasmid R64. J. Mol. Biol. 243, 6-9]. It is likely that S. typhi encodes pili bearing two alternative PilV proteins as tip adhesins, one of which recognizes, specifically, a membrane component of Escherichia coli K-12, while the specificity of the other PilV protein is not known.

Amino Acid Sequence

A 150-base pair 5' region of the MHC class I HLA-B7 gene is sufficient to direct tissue-specific expression and locus control region activity: the alpha site determines efficient expression and in vivo occupancy at multiple cis-active sites throughout this region.

To characterize cis- and trans-acting mechanisms that regulate MHC class I transcription during development and in adult tissues, we have used transgenic mice to study a series of human MHC (HLA)-B7 class I gene constructs. Previous studies identified the 5' -0.66-kb to -0.075-kb region as sufficient to direct appropriate and efficient tissue-specific levels of HLA-B7 RNA relative to H-2 class I. Results here show that DNA 5' of -0.26 kb is not required for any aspect of expression. As the expression level correlated with the transgene copy number, was comparable to H-2 or a per-gene copy basis and was independent of integration site, the -0.075 to -0.26-kb segment also functions as a locus control region. With this region, sequences 3' of -0.075 kb, possibly at the promoter, appear to direct the appropriate tissue distribution. Of conserved sequences in the -0.075 to -0.26-kb region, enhancer B box is nonessential. In contrast, in vivo "footprinting" implicated region I/ enhancer A/NF-kappaB, IFN consensus/response sequence, and alpha in class I regulation as they are "occupied" in a tissue-specific pattern that correlates with expression. Mutation of alpha leads to decreased expression and loss of occupancy not only at alpha but also at region I/enhancer A/NF-kappaB and IFN consensus/response sequence. Thus, site alpha is an essential class I regulatory element, the dominant function of which is to mediate tissue-specific occupancy at multiple adjacent cis-active sites, possibly by facilitating stable synergistic interactions between factors at these distinct elements.

Animals

Is working memory intact in alcoholics? An ERP study.

Few investigators have applied the working memory theory to studies on abstinent chronic alcoholics, though it has been reported that the deficits in short-term memory appear to be specific to visuo-spatial and problem-solving tasks. In the present study, we recorded ERPs from 40 male control subjects and 78 alcoholics performing a modified delayed matching to sample task. To minimize the possible confound of retinotopic projections for the matching stimuli, in contrast to the non-matching stimuli, we employed a unique set of stimuli in our delayed matching to sample task. Our results indicate that an ERP component, occurring at approximately 250 ms post-stimulus, may be a reflection of the ERP mnemonic effect for working memory. This component distinguishes the two groups at the right occipitotemporal region, providing evidence of right hemisphere dysfunction in alcoholics. Thus, the current experiment may show electrophysiological evidence of working memory deficits in alcoholics.

Adult

Inhibition of interleukin-2 receptor (CD25) expression induced on T cells from children with acute lymphoblastic leukemia.

Peripheral blood lymphocytes obtained from children with acute lymphoblastic leukemia (ALL) at onset were studied for the expression of interleukin-2 (IL-2) receptor alpha-chain (CD25) by two-color flow-cytometric analysis. Stimulated with anti-CD3 monoclonal antibody (mAb) alone. CD25 expression was significantly suppressed in CD4+ T cells from 27 of 48 (56.3%) cases and in CD8+ T cells from 29 of 48 (60.4%) cases. When stimulated with anti-CD3 mAb plus phorbol 12-myristate 13-acetate (PMA), CD25 expression was clearly restored in certain cases of ALL. When PMA plus ionomycin were used for stimulation of T cells. CD25 was inducible in a majority of cases. Interestingly CD25 expression upon anti-CD3 mAb stimulation was recovered after complete remission had been achieved. These observations suggest the presence in ALL children at onset of an in vitro defect in the signal transduction pathway of the T-cell-receptor/CD3 complex, resulting in inefficient CD25 expression. However, immune-staining analysis indicated that protein kinase C was normally translocated from the cytosol fraction to the cell membrane fraction. The mobilization of cytoplasmic free calcium is also normal.

Antibodies, Monoclonal

Visual object priming differs from visual word priming: an ERP study.

Implicit memory is inferred from repetition priming effects in tasks such as word identification, word fragment completion, and perceptual recognition with masking or brief exposures. In this experiment, we explored whether the visual word and object repetition priming effects can be reflected by features of ERP and whether visual word repetition priming differs from visual object repetition priming. We have observed that (1) pre-exposure to recognizable stimuli (both word and object picture) shortened the response time in identifying their repetitions; (2) repetition of unrecognized scrambles of words or object pictures did not show any effects on ERP patterns; (3) ERPs distinguished recognizable from unrecognizable stimuli; and, (4) repetitions of both words and pictures strongly influenced the patterns of ERPs, though the ERPs to word stimuli differed from the ERPs to picture stimuli.

Adult

Do chronic alcoholics have intact implicit memory? An ERP study.

In order to investigate whether visual object priming differs from visual word priming and whether the visual repetition priming in chronic alcoholic patients is impaired, we performed an ERP study on 27 male control and 67 male alcoholic subjects. Sixty-one electrodes were employed to record ERPs that were elicited by random presentations of object pictures, words, and scrambles for both pictures and words. We also used an implicit task that required subjects to identify whether each stimulus was recognizable. The current experiment revealed that (1) the reaction times to both recognizable picture and word stimuli were significantly shortened by the prior exposures of the same stimuli, (2) control subjects reflected visual object and word priming in different ERP components with different topographic patterns, (3) alcoholic subjects manifested visual word priming in the same ERP component as controls, and (4) the differences in ERP components, both in amplitude and topographic distribution, between the two groups occurred mainly in the different stimuli. These data suggest that the visual object and word priming have distinctive neural processes. The visual object priming in alcoholic subjects may be impaired while the visual word priming seemed to be intact.

Adult

Reflection of working memory: ERP mnemonic effects.

The study of working memory often utilizes a delayed matching to sample paradigm (DMS). Typically in the matching condition, the test and sample stimuli are identical, raising the possible confound of retinotopic projections for the matching stimuli in contrast to the non-matching stimuli. In the present study, 65 healthy subjects performed a modified delayed matching to sample task while monitoring their ERP waveforms. The stimuli consisted of 60 different sample stimuli (S1) and 60 different test stimuli (S2). Half of the S2s were complementary to the sample stimuli (Fit), the other half of the S2s were not complementary (Nonfit). After S2, the subjects pressed one of the buttons to indicate whether the test stimulus fits the sample stimulus. Our statistical results indicated that the ERPs to sample stimuli differed from the ERPs to test stimuli from 200 ms poststimulus to the end of the recording epoch. The ERPs to fitting stimuli were significantly different from those to non-fitting stimuli from 200 to 400 ms poststimulus. The ERP patterns in the present study may reflect ERP mnemonic effect for working memory. Our results ruled out the retinotopic confound as a potential mediator variable, and are in agreement with other animal or human neurophysiological studies on memory.

Adult

Apoptotic cell death of human T lymphoblastoid cells induced by arginine deiminase.

A growth-inhibitory substance found in the culture of a B-precursor leukemia cell line, NALM-20, was purified from the serum-free culture medium and identified as arginine deiminase derived from Mycoplasma arginini (EC 3.5.3.6). Arginine deiminase strongly inhibited, in a dose-dependent manner, the growth of human T cells and T lymphoblastoid cell lines, but not that of B-precursor and myeloid cell lines. The addition of L-arginine completely restored the growth of T lymphoblastoid cells that had been inhibited by arginine deiminase. The addition of L-ornithine also partially restored it. This enzyme suppressed interleukin-2 (IL-2) production and IL-2 receptor expression in T cells stimulated by non-specific mitogens. The morphologic features of dying cells and DNA fragmentation indicated that arginine deiminase induced apoptotic cell death in T lymphoblasts. Cell cycle analysis revealed that G1-->S transition was blocked in cell treated with arginine deiminase, accompanied by the increase of apoptotic nuclei in the sub-G1 fraction. In conclusion, the deletion of the essential nutrient L-arginine by arginine deiminase significantly inhibited cell growth and activation in T lymphoblasts, accompanied by the induction of apoptotic cell death.

Apoptosis

mRNA expression of Fas receptor (CD95)-associated proteins (Fas-associated phosphatase-1/FAP-1, Fas-associating protein with death domain/FADD, and receptor-interacting protein/RIP) in human leukaemia/lymphoma cell lines.

mRNA expression of Fas (CD95)-associated proteins [Fas-associating protein with death domain (FADD), receptor-interacting protein (RIP), and Fas-associated phosphatase-1 (FAP-1)] has been investigated in 26 Fas-positive human leukaemia/lymphoma cell lines. Reverse transcriptase-polymerase chain reaction analysis revealed that FADD and RIP mRNA were invariably expressed in both Fas-sensitive and Fas-insensitive cell lines. However, FAP-1 mRNA was detected in only 11 of 26 cell lines. Interestingly 7/14 cell lines in the Fas-sensitive group were positive for FAP-1 mRNA expression. 8/12 cell lines in the Fas-refractory group did not express FAP-1 mRNA, but half of these cell lines were susceptible to tumour necrosis factor alpha-induced growth inhibition. These findings suggest that the presence or absence of FAP-1 mRNA expression did not always correlate with relative sensitivity of Fas-mediated growth inhibition. Furthermore, it is assumed that leukaemia/lymphoma cells could possess structural or functional defects of Fas or Fas-associated proteins resulting in the failure to trigger apoptotic cell death.

Adaptor Proteins, Signal Transducing

Fas/APO-1 (CD95)-mediated cytotoxicity is responsible for the apoptotic cell death of leukaemic cells induced by interleukin-2-activated T cells.

Apoptotic cell death is induced by the cross-linking of Fas/APO-1 receptor (CD95) in acute myelogenous leukaemia (AML) cells. Since CD95 ligand (CD95L) is expressed on interleukin-2 (IL-2)-activated T cells, we investigated the involvement of CD95-CD95L pathway in T cell-mediated cytotoxicity against AML cells. Activated CD8+ T cells could efficiently kill a parental CD95-sensitive AML cell line, MML-1 and, to a lesser extent, a CD95-resistant clone, MML-1R. Neither MML-1 nor MML-1R cells were killed by activated CD4+ T cells. The blocking monoclonal antibody (MoAb) against CD95, ZB4, caused a significant inhibition of T-cell-mediated cytotoxicity against MML-1 cells but not against MML-1R cells. Interestingly, MML-1 cells underwent the classic nuclear morphologic changes and DNA fragmentation characteristic of apoptosis when cultured with activated T cells. Enumeration of apoptotic and necrotic nuclei showed that both apoptosis and necrosis were induced in MML-1 cells, whereas necrosis was exclusively observed in MML-1R cells. Apoptosis of MML-1 cells was completely blocked in the presence of ZB4 MoAb. Similarly, blocking by ZB4 MoAb significantly inhibited T-cell-mediated lysis of fresh AML cells in a CD95-sensitive group, but not in a CD95-refractory group. In addition CD8+ T cells expressed CD95L mRNA more abundantly than CD4+ T cells upon activation by IL-2. These findings suggest that T-cell-mediated cytotoxicity against AML cells requires participation of CD95-CD95L pathway for cytotoxic signal transduction leading to target apoptosis.

Apoptosis

Status of the eradication of indigenous wild poliomyelitis in the People's Republic of China.

A large nationwide outbreak occurred in 1989-1990 in China, in which nearly 10,000 poliomyelitis cases were reported. After two rounds of oral poliovirus vaccine (OPV) supplemental activity in nearly every province in the 1992-1993 winter season, no wild poliovirus was detected in 1993 in 22 provinces in the middle of China that contained 86% of the population. During the first national immunization days (NIDs) conducted in December 1993 and January 1994, 83 million children 0-47 months of age were immunized. In 1994, wild poliovirus was identified in only 6 of 2397 children with stool specimens tested. After a second NID in December 1994 and January 1995, no wild poliovirus was detected in 1995 despite a very high level of virus surveillance. In summary, double-round mass supplemental OPV immunizations in children 0-3 years old in two consecutive winters eliminated wild poliovirus from 23% of the world's population (1.2 billion people).

Child, Preschool

Surveillance for polio eradication in the People's Republic of China.

A case-based virus surveillance system for wild poliovirus in China was developed. By 1993, all 30 provincial immunization units and, by 1994, all 29 provincial laboratories were sending computerized data to the national level. In 1993, a county-level, computerized map was operationalized that permitted visual monitoring of the progress of the polio eradication program every month by county. In 1993, wild poliovirus type 1 was detected in 8 provinces. Wild poliovirus mainly caused clusters of polio cases identified by a surveillance system that detected primarily clinical polio in children <5 years old (1 stool sample was collected on approximately 50% of reported cases). By 1995, the surveillance system had reached certification-like levels (80% of acute flaccid paralysis [AFP] patients with 2 stool specimens and AFP case rate of 1/100,000 children <15 years old). No indigenous wild poliovirus was detected in 1995. This general case-based model can be applied to measles and other important diseases, and may then lead to a more rapid decrease in adverse health outcomes.

Adolescent

Identification of Na(+)-K(+)-ATPase beta-subunit in alveolar epithelial cells.

The Na(+)-K(+)-ATPase is a heterodimeric plasma membrane protein that consists of a catalytic alpha-subunit and a smaller glycosylated beta-subunit that has not been fully characterized in alveolar epithelial cells (AEC) to date. In this study, we identified the Na(+)-K(+)-ATPase beta-subunit protein in rat AEC and lung membranes using immunochemical techniques. Rat AEC grown in primary culture and rat lung, brain, and kidney membranes were solubilized in either 2% sodium dodecyl sulfate (SDS) sample buffer for SDS-polyacrylamide gel electrophoresis or in 1% Nonidet P-40 lysis buffer for immunoprecipitation studies. Na(+)-K(+)-ATPase beta-subunit was not detected in either AEC or lung membranes on Western blots when probed with a panel of antibodies (Ab) against beta-subunit isoforms, whereas brain and kidney beta-subunit were recognized as broad approximately 50-kDa bands. AEC, lung, and kidney membranes were immunoprecipitated with anti-beta Ab IEC 1/48, a monoclonal Ab that recognizes beta-subunit protein only in its undenatured state. The beta-subunit was detected in the immunoprecipitate (IP) from kidney membranes by several different anti-beta-subunit Ab. The beta-subunit was faintly detectable from AEC and lung IP as a broad approximately 50-kDa band when blotted with the polyclonal anti-beta 1-subunit Ab SpET but could not be detected by blotting with other anti-beta Ab. Treatment of the IP from kidney, lung, and AEC with N-glycosidase F for 2 h at 37 degrees C resulted in immunodetection of identical approximately 35 kDa bands when probed with all anti-beta 1 Ab on Western blots. From these results, we conclude that rat lung and AEC possess immunoreactive beta-subunit protein that is only readily detectable after deglycosylation. Because anti-beta Ab fail to detect the Na(+)-K(+)-ATPase beta-subunit in rat lung or AEC by standard Western blotting techniques under the conditions of these experiments, our results suggest that lung beta-subunit may be glycosylated differently from kidney and other tissues. These differences appear to be due to organ- or cell-specific posttranslational processing of the beta 1-subunit and may result in altered regulation of sodium pumps in lung compared with other epithelia.

Animals