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Biomedical subjects

Q Wei

Publications and source records attributed to Q Wei.

At least 91 records · Page 5Linked to original sources

[Clinical significance of elevated serum sICAM-1 in patients with nasopharyngeal carcinoma].

OBJECTIVE: To study the expression of serum sICAM-1(soluble intercellular adhesion molecule-1) and tissue ICAM-1 in nasopharyngeal carcinoma and its clinical significance. METHODS: Expression of ICAM-1 in frozen sections of 20 normal nasopharyngeal mucosa and 54 nasopharyngeal carcinoma samples were studied with immunohistochemical technique, and levels of serum sICAM-1 in 54 patients with nasopharyngeal carcinoma (NPC group) and 32 healthy adults (normal group) by ELISA. RESULTS: Positive expression (45/54) of tissue ICAM-1 and levels (2,044.48 +/- 640.05) microgram/L of serum sICAM-1 in NPC group were significantly higher than that of 2/20 and (313.70 +/- 114.98) microgram/L in normal group (P < 0.01, respectively), and there was a positive relationship between the expression of tissue ICAM-1 and levels of serum sICAM-1 in nasopharyngeal carcinoma(P < 0.05). The levels (2,177.31 +/- 642.13) microgram/L of serum sICAM-1 in patients with III-IV stages were higher than those (1,847.25 +/- 308.15) microgram/L in I-II stages (P < 0.05), and those (1,678.89 +/- 685.01) microgram/L in patients with no lymph node metastasis lower than that (2,134.34 +/- 609.60) microgram/L in lymph node metastasis (P < 0.05). The levels of serum sICAM-1 decreased significantly from (2,211.42 +/- 717.59) microgram/L to (926.55 +/- 207.72) microgram/L in disappearance of tumor and metastatic lymph node after radiotherapy (P < 0.01). CONCLUSION: sICAM-1 might be involved in the cellular immunopathogenesis of nasopharyngeal carcinoma, and the measurement of the serum sICAM-1 may reflect ability of neoplasm cell in freedom from host immunological surveillance. Dynamic measurement of serum sICAM-1 may be a useful objective index to evaluate NPC prognosis and curative effects.

Adult↗

Direct inhibition of G(1) cdk kinase activity by MyoD promotes myoblast cell cycle withdrawal and terminal differentiation.

MyoD has been proposed to facilitate terminal myoblast differentiation by binding to and inhibiting phosphorylation of the retinoblastoma protein (pRb). Here we show that MyoD can interact with cyclin-dependent kinase 4 (cdk4) through a conserved 15 amino acid (aa) domain in the C-terminus of MyoD. MyoD, its C-terminus lacking the basic helix-loop-helix (bHLH) domain, or the 15 aa cdk4-binding domain all inhibit the cdk4-dependent phosphorylation of pRb in vitro. Cellular expression of full-length MyoD or fusion proteins containing either the C-terminus or just the 15 aa cdk4-binding domain of MyoD inhibit cell growth and pRb phosphorylation in vivo. The minimal cdk4-binding domain of MyoD fused to GFP can also induce differentiation of C2C12 muscle cells in growth medium. The defective myogenic phenotype in MyoD-negative BC3H1 cells can be rescued completely only when MyoD contains the cdk4-binding domain. We propose that a regulatory checkpoint in the terminal cell cycle arrest of the myoblast during differentiation involves the modulation of the cyclin D cdk-dependent phosphorylation of pRb through the opposing effects of cyclin D1 and MyoD.

Amino Acid Sequence↗

Glutathione-S-transferase polymorphisms and risk of squamous-cell carcinoma of the head and neck.

Differences in genetic susceptibility to tobacco-induced carcinogenesis appear to modulate an individual's risk of squamous-cell carcinoma of the head and neck (SCCHN). Risk for SCCHN may be associated with the null alleles of the carcinogen-metabolizing genes glutathione-S-transferase (GST) T1 and GSTM1. In this study, we evaluated the association between GSTM1 and GSTT1 null genotypes and risk of SCCHN in a matched case-control study of 162 patients with SCCHN and 315 healthy controls. Our results showed that 53.1% of cases and 42.9% of controls were null for GSTM1, whereas 32.7% of cases and 17.5% of controls were null for GSTT1 (p < 0.05 and p < 0.001, respectively). Furthermore, 19.8% of cases but only 7.9% of controls were null for both genes (p < 0.001). Multivariate analysis using logistic regression models, including age, sex, ethnicity, smoking status, alcohol status and GST genotypes, showed that both of these genotypes remained independent risk factors for disease [adjusted odds ratios (ORs) = 1.50 and 2.27, respectively; 95% confidence intervals (CIs) = 1.01-2.23 and 1.43-3.60, respectively). When the genotypes were divided into neither null, either null or both null, there was a dose-response relationship (adjusted OR = 1.50, 95% CI = 0.98-2.30) for the either-null group and (adjusted OR = 3.64, 95% CI = 1.94-6.84) for the both-null group (p < 0.001, trend test). Our findings suggest that the GSTM1 and GSTT1 null genotypes are independent risk factors for SCCHN and markers for genetic susceptibility to tobacco-induced carcinogenesis.

Adult↗

Phosphorylase phosphatase: new horizons for an old enzyme.

Protein phosphatase-1, originally studied as phosphorylase phosphatase, is one of the major ser/thr protein phosphatases. It has a long history and a complex enzymology. It consists of a catalytic subunit of 37 kDa, which is bound to a number of different regulatory or targeting subunits. These are believed to restrict its activity to its immediate microenvironment and thus define its specificity, as well as acting to regulate phosphatase activity. The existence of multiple protein phosphatase-1 binding proteins provides the mechanism whereby phosphatase-1 activity can be involved in a diverse range of cellular functions, and reflects a novel strategy for its evolutionary development.

Amino Acid Sequence↗

Coupling of the cell cycle and myogenesis through the cyclin D1-dependent interaction of MyoD with cdk4.

Proliferating myoblasts express the muscle determination factor, MyoD, throughout the cell cycle in the absence of differentiation. Here we show that a mitogen-sensitive mechanism, involving the direct interaction between MyoD and cdk4, restricts myoblast differentiation to cells that have entered into the G0 phase of the cell cycle under mitogen withdrawal. Interaction between MyoD and cdk4 disrupts MyoD DNA-binding, muscle-specific gene activation and myogenic conversion of 10T1/2 cells independently of cyclin D1 and the CAK activation of cdk4. Forced induction of cyclin D1 in myotubes results in the cytoplasmic to nuclear translocation of cdk4. The specific MyoD-cdk4 interaction in dividing myoblasts, coupled with the cyclin D1-dependent nuclear targeting of cdk4, suggests a mitogen-sensitive mechanism whereby cyclin D1 can regulate MyoD function and the onset of myogenesis by controlling the cellular location of cdk4 rather than the phosphorylation status of MyoD.

Animals↗

Vaccination of mice with DNA plasmids coding for the Chlamydia trachomatis major outer membrane protein elicits an immune response but fails to protect against a genital challenge.

A DNA plasmid encoding the gene of the major outer membrane protein (MOMP) of the Chlamydia trachomatis mouse pneumonitis (MoPn) serovar and three plasmids containing the variable domains (VD) of the MOMP were constructed. Female mice were inoculated with the plasmids and 60 days later were challenged in the genital tract with C. trachomatis. Six weeks after challenge female mice were caged with male mice and the course of the mating followed. Mice immunized with the MOMP plasmids mounted weak humoral and cell mediated immune responses. However, following the genital challenge no significant differences in vaginal shedding were observed between the groups immunized with the MOMP and control plasmids. In addition, the fertility rates were similar in the experimental and negative control groups. In conclusion, vaccination with DNA plasmids encoding the MOMP elicited a modest immune response but did not protect against infection or disease.

Animals↗

DNA repair in lymphoblastoid cell lines from patients with head and neck cancer.

OBJECTIVE: To analyze and compare components of the 3 primary DNA repair pathways of Epstein-Barr virus-transformed lymphocyte (lymphoblastoid) cell lines derived from 9 patients with squamous cell carcinoma of the head and neck and 11 cancer-free controls. These cell lines were previously characterized by using an established cytogenetic marker of cancer susceptibility (mutagen sensitivity assay). DESIGN: To evaluate nucleotide excision repair (NER), we measured the reactivation level of a tobacco carcinogen-damaged plasmid containing a bacterial reporter gene transfected into these cells. To assess mismatch repair (MMR) and recombinational repair, selected gene transcript levels were quantified by using a multiplex reverse transcriptase-polymerase chain reaction assay. The results of these DNA repair assays were correlated with the previously measured mutagen sensitivity values. RESULTS: The NER capacities of the 2 groups were similar: 25.1% (range, 14.3%-33.3%) for the patient cell lines and 26.0% (range, 9.4%-47.7%) for the control lines. Transcriptase levels for 6 MMR genes (hMSH3, hMSH2, hPMS2, GTBP, hMLH1 and hPMS1) did not differ in the 2 groups. Transcript levels for 4 of 6 recombinational repair genes (XRCC7, XRCC6, XRCC1, and RAD51) were higher in the patient cell lines, though this difference was significant only for XRCC7 (P = .003). The mutagen sensitivity values correlated with the NER capacity (P = .05) and the expression of XRCC4 (P = .01) and RAD51 (P = .06) genes. CONCLUSIONS: As revealed by the above-named assays, these lymphoblastoid cell lines derived from patients with head and neck cancer had minor alterations in DNA repair function. However, these differences in DNA repair do appear to affect the cytogenetic marker of cancer susceptibility, mutagen sensitivity.

Carcinoma, Squamous Cell↗

Needle-in-a-haystack detection and identification of base substitution mutations in human tissues.

Background and induced germline mutagenesis and other genotoxicity studies have been hampered by the lack of a sufficiently sensitive technique for detecting mutations in a small cluster of cells or a single cell in a tissue sample composed of millions of cells. The most frequent type of genetic alteration is intragenic. The vast majority of oncogenic mutations in human and mammalian cancer involves only single base substitutions. We have developed universally applicable techniques that not only provide the necessary sensitivity and specificity for site specific mutagenesis studies, but also identify the point mutation. The exponential amplification procedures of polymerase chain reaction (PCR) and ligase chain reaction (LCR) have been combined with restriction endonuclease (RE) digestion to enable the selective enrichment and detection of single base substitution mutations in human oncogenic loci at a sensitivity of one mutant in more than 10(7) wild type alleles. These PCR/RE/LCR procedures have been successfully designed and used for codons 12 and 248 of the Ha-ras and p53 genes, respectively, both of which contain a natural MspI restriction endonuclease recognition sequence. These procedures have also been adapted for the detection and identification of mutations in oncogenic loci that do not contain a natural restriction endonuclease recognition sequence. Using PCR techniques, a HphI site was incorporated into the codons 12/13 region of the human N-ras gene, which was then used for the selective enrichment of mutants at this oncogenic locus. These PCR/RE/LCR procedures for base substitution mutations in codon 12 of the N-ras gene were found to have the sensitivity of detection of at least one mutant allele in the presence of the DNA equivalent of 10(6) wild type cells. Only one peripheral blood leukocyte DNA specimen out of nine normal individuals displayed an observable Ha-ras mutation that was present at frequency between 10(-5) and 10(-6). These PCR/RE/LCR techniques for detecting and identifying base substitution mutations are universally applicable to almost any locus or base site within the human or animal genome. With the added advantage of the adjustability of both the amount of DNA (number of genomes) to be tested and the sensitivity (10(-2) to 10(-7)) of the assay selection or enrichment procedures, these PCR/RE/LCR techniques will be useful in addressing a broad range of important questions in mutagenesis and carcinogenesis.

Base Sequence↗

TEL-AML1 fusion identifies a subset of children with standard risk acute lymphoblastic leukemia who have an excellent prognosis when treated with therapy that includes a single delayed intensification.

The Children's Cancer Group (CCG) found that children with moderate risk acute lymphoblastic leukemia (ALL) had an improved 5-year event-free survival (EFS) rate when treated with therapy that included a doubled delayed intensification (DDI) vs a single DI (SDI) phase. Because of increased toxicity with DDI, it is important to determine whether subgroups of children with ALL can be identified who have excellent outcomes with SDI therapy. TEL-AML1 fusion and hyperdiploid DNA content are present in the leukemic blasts of significant proportions of children with ALL and have been associated with an excellent prognosis. In this study, we retrospectively examined the impact of TEL-AML1 status and ploidy on treatment outcome in a cohort of 75 children with standard risk ALL treated at our institution between 1983 and 1993 with SDI therapy. TEL-AML1 fusion was present in 19/43 (44%) evaluable cases. Fifteen of 56 (27%) evaluable cases were classified as hyperdiploid based on a modal chromosome number of >/=51 and/or a DNA index of >/=1.16. The 7-year EFS was 81% for the 19 TEL-AML1-positive patients vs 54% for the 24 TEL-AML1-negative patients (P = 0.0264). In multivariate analyses, TEL-AML1-positive status was associated with a superior EFS (P = 0.02) even when the intial white blood count was included in the model. Overall survival (OS) at 7 years for TEL-AML1-positive patients was 100% vs 83% for TEL-AML1-negative patients (P = 0.0677). There were no differences in 7-year EFS or OS based on ploidy comparisons. These results underscore the need to examine closely the effects of treatment intensification on specific biologically defined subgroups of children with ALL.

Antineoplastic Agents↗

Rectal transmission of human immunodeficiency virus type 1 to chimpanzees.

Inoculation of chimpanzees with human immunodeficiency virus type 1 (HIV-1) has been used as a model system to define mechanisms of pathogenesis and to test protective efficacy of candidate HIV-1 vaccines. In most of these studies, the animals were inoculated intravenously. However, because HIV-1 is transmitted primarily across mucosal surfaces, future evaluations of vaccines should employ mucosal routes for administering infectious virus to immunized animals. To develop a model of rectal transmission of HIV-1, chimpanzees were exposed without trauma to 4 different HIV-1 strains at doses ranging from 200 to 10,000 TCIDs. Infection, characterized by seroconversion and repeated isolation of virus from lymphocytes, was established in 1 of 5 animals. This animal was sequentially inoculated with a subtype B and then an E strain and was infected with both strains. The results show that rectal exposure of adult chimpanzees to cell-free HIV-1 was not an efficient mode of transmission in this cohort.

AIDS Vaccines↗

Polymorphisms of DNA repair gene XRCC1 in squamous cell carcinoma of the head and neck.

Because reduced DNA repair capacity (phenotype) has been suggested as a risk factor for squamous cell carcinoma of the head and neck (SCCHN), newly-identified DNA repair gene polymorphisms (genotype) may also be implicated in risk. To test this hypothesis, we conducted a case-control study of 203 SCCHN patients and 424 control subjects (matched for age, sex and ethnicity) to investigate the role of two XRCC1 polymorphisms (XRCC1 26304 T and XRCC1 28152 A, respectively) in SCCHN. Multivariate logistic regression analysis was performed to calculate the adjusted odds ratio (OR) and 95% confidence interval (CI). A total of 180 cases (88.7%) and 363 controls (85.6%) lacked the XRCC1 26304 T allele [adjusted OR = 1.34 (CI, 0.80-2.25)]. Lack of this polymorphism was a significant risk factor specifically for cancers of the oral cavity and pharynx [adjusted OR = 2.46 (CI, 1.22-4.97)]. Thirty-two cases (15.8%) and 46 controls (10.8%) were homozygous for the XRCC1 28152 A allele [adjusted OR = 1.59 (CI, 0.97-2.61) for all cases, and 1.41 (CI, 0. 80-2.48) for oral and pharyngeal cancer only]. Furthermore, when the two genotypes were combined into a three-level model of risk, a polymorphism-polymorphism interaction of increasing risk (trend test, P = 0.049) was evident: OR = 1.0 for those with neither risk genotype (referent group), adjusted OR = 1.51 (CI, 0.87-2.61) for those with either risk genotype, and 2.02 (CI, 1.00-4.05) for those with both risk genotypes. For oral and pharyngeal cancer, this trend was even more pronounced with the adjusted OR = 2.68 (CI, 1.28-5.61) for those with either risk genotype, and 3.22 (CI, 1.33-7.81) for those with both risk genotypes. The findings support the hypothesis that a polymorphic XRCC1 DNA repair gene contributes to risk of developing SCCHN.

Base Sequence↗

Increased chromosomal instability in peripheral lymphocytes and risk of human gliomas.

Brain tumors exhibit considerable chromosome instability (CIN), suggesting that genetic susceptibility may contribute to brain tumorigenesis. To test this hypothesis, in this pilot study, we examined for CIN in short-term lymphocyte cultures from 25 adult glioma patients and 28 age-, sex- and ethnicity-matched healthy controls (all Caucasian). We evaluated CIN by a multicolor fluorescence in situ hybridization assay using two probes: a classic satellite probe for a large heterochromatin breakage-prone region of chromosome 1 and an alpha satellite probe for a smaller region adjacent to the heterochromatin probe. Our results showed a significant increase in the mean number of spontaneous breaks per 1000 cells in glioma patients (mean +/- SD, 2.4+/-0.8) compared with controls (1.4+/-0.9; P < 0.001). By using the median number of breaks per 1000 cells in the controls as the cutoff value, we observed a crude odds ratio (OR) of 8.5 [95% confidence interval (CI) = 2.05-34.9, P < 0.001] for spontaneous breaks and brain tumor risk. After adjustment for age, sex and smoking status, the adjusted OR was 15.3 (95% CI, 2.71-87.8). A significant increase in cells with chromosome 1 aneuploidy (in the form of hyperdiploidy) (P < 0.001) was also observed in the glioma cases, with an adjusted OR of 6.6 (95% CI = 1.5-30, P < 0.05). These findings suggest that CIN can be detected in the peripheral blood lymphocytes of brain tumor patients and may be a marker for identifying individuals at risk.

Aneuploidy↗

High activity of the calcineurin A subunit with a V314 deletion.

A deletion mutant (V314) of the calcineurin A subunit was constructed using site-directed mutagenesis. Its phosphatase activity and function were then characterized. The V314 deletion significantly altered the phosphatase activity, which was more than ten times higher than that of wild-type calcineurin, the calcineurin-immunosuppressant/immunophilin interaction, the effect of metal ions and calcineurin subunit interaction. We propose that the change of the activity and function of V314 is due to conformational changes of calcineurin to benefit the binding of, or stimulation by, Mn2+, or to affect the interaction between the A and B subunits.

Amino Acid Sequence↗

Genetic susceptibility to tobacco carcinogenesis.

Lung cancer risk is thus defined by the balance between metabolic activation and detoxification of xenobiotic compounds and by the efficiency of DNA repair. It is most likely that multiple susceptibility factors must be accounted for to represent the true dimensions of gene-environment interactions. The ability to identify smokers with the highest risks of developing cancer has substantial preventive implications. These subgroups could be targeted for the most intensive screening and smoking cessation interventions and could be enrolled into chemoprevention trials. Studying susceptibility to common cancers and widely prevalent exposures may provide further insights into the basic mechanisms of carcinogenesis. Issues that will need to be addressed in the very near future include risk communication to study subjects and the ethical, legal, and social consequences of such testing.

Bleomycin↗

Expression in normal human tissues of five nucleotide excision repair genes measured simultaneously by multiplex reverse transcription-polymerase chain reaction.

DNA repair is central to the integrity of the human genome. Reduced DNA repair capacity has been linked to genetic susceptibility to cancer. An adequate expression level of DNA repair genes is essential for normal DNA repair activities. Although there is tissue specificity in the expression, searching for a surrogate tissue is needed for molecular epidemiological studies. In this study, the relative expression levels of five selected human nucleotide excision repair (NER) genes (ERCC1, XPB/ERCC3, XPG/ERCC5, CSB/ERCC6, and XPC) in 20 different types of human normal tissue were simultaneously measured by a new multiplex reverse transcription (RT)-PCR assay using the expression level of the beta-actin gene as an internal control. Transcripts of each of the five NER genes were detectable, but the levels varied in these normal tissues. Both mitogen (phytohemagglutinin)-stimulated and unstimulated human peripheral lymphocytes showed similar expression patterns for the five NER genes. In general, the expression levels of stimulated lymphocytes were also similar to most of the rapidly proliferating tissues, such as the skin, breast, intestine, liver, testis, ovary, placenta, or prostate, but was relatively higher than that of the slowly proliferating or nonproliferating tissues such as adipose, brain, hippocampus, muscle, spleen, or lung. The data suggested that although the five NER genes were expressed at different levels in the normal tissues examined, PHA-stimulated peripheral lymphocytes may be used as a surrogate tissue for estimating expression levels of these genes in proliferating tissues. This new multiplex RT-PCR assay may help detect aberrant expression of these NER genes in both normal and tumor tissues.

Cell Line↗

[Significance of human telomerase RNA expression in situ in malignant melanoma].

By using the method of hybridization in situ, human telomerase RNA(hTR) are detected in 36 cases of malignant melanoma tissue, 16 cases of nevocellular nevus and 12 cases of normal skin. Results showed that the positive expression percentage of hTR in malignant melanoma, nevocellular nevus and normal skin was 86.3%, 6.26% and 12.7%, respectively. The positive expression percentage of hTR in malignant melanoma was significantly higher than that of nevocellular nevus and normal skin(P < 0.01). Meanwhile, the positive expression intensity of hTR in metastatic malignant melanoma is frequently stronger than that of original malignant melanoma(P < 0.05). The results suggest that hTR might indirectly reflect the telomerase activity, and be used as a new marker for diagnosis of malignant melanoma and metastasis prediction.

Adult↗

[Rapid determination of cefazolin in porcine serum by high performance capillary electrophoresis].

A rapid high performance capillary electrophoretic method was established to assay cefazolin in porcine blood serum. Porcine serum was deproteined by 60% acetonitrile and superlants were injected with 10 s pressure load. The final assay condition was: 40 cm x 75 microns silica capillary, 50 mmol/L bicarbonate buffer at pH10, 20 kV for 5 min, 254 nm UV detection. The assay was linear within the range of 5-320 micrograms/ml, the intra-day and inter-day relative standard deviations ranged from 1.7% to 8.0%. Analytical recovery of cefazolin was 107.9%, the limit of detection was 1.5 micrograms/ml, the limit of quantitation was 3.6 micrograms/ml. To investigate the pharmacokinetic profile of cefazolin in pig, six adult pigs were injected with 16 mg/kg cefazolin and all data was analyzed by pharmacokinetic software 3P87. Cefazolin metabolism in adult pigs appeared to be a typical two-compartment model with a clearance of 8.43 ml/(kg.min).

Animals↗