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Biomedical subjects

Q Lu

Publications and source records attributed to Q Lu.

At least 163 records · Page 9Linked to original sources

[Application of VNTR D17S30 locus polymorphism in the paternity test].

A sensitive and rapid PCR-based technique was adopted to genotype the VNTR D17S30 locus. It was confirmed through the genetic analysis of 20 normal families that the inheritance of D17S30 locus coincides with Mendelian law as simple co-dominant. Retrospective analysis of 100 paternity cases demonstrated that D17S30 locus could be used in forensic paternity test in our country. The exclusion probability estimated from allele frequencies of D17S30 locus (74.04%) does not differ significantly from the observed rate of exclusion (80.00%) in these cases. In all excluded paternity cases there are two in which the exclusion evidence is solely provided by the D17S30 locus.

Chromosomes, Human, Pair 17↗

[p53 gene mutation in hepatocellular carcinoma].

OBJECTIVE: To study the relationship between mutation of p53 gene and hepatocellular carcinoma (HCC). METHOD: Sixty-five cases of HCC from Nanning prefecture of high aflatoxin (AFB1) exposure were studied by polymerase chain reaction and restrictive fragment length polymorphism (PCR-RFLP) analysis to examine the exon 7 of p53 gene in HCC. RESULT: 58.5% of the cases were found to show mutation at codon 249 of p53 gene; 63.6% for the HCCs with HBsAg negative, and 57.4% for those with HBsAg positive; 88.9% for those with metastasis, and 46.8% for those with no metastasis. The mutation rate of p53 gene was 10.0%, 55.2% and 80.8% in the well-, moderately- and poorly-differentiated HCC respectively. CONCLUSION: AFB1 is the most important agent for the mutation at the hot-spot, and hepatitis B virus is the synergistic risk factor. Further study indicated that the p53 gene mutation is correlated with the differentiation and the metastasis of HCC and may serve as an important prognostic factor.

Aflatoxin B1↗

Preclinical studies using the intratumoral aromatase model for postmenopausal breast cancer.

To determine the most effective strategies for the treatment of postmenopausal hormone dependent breast cancer, we recently developed a model system in nude mice. In this model, estrogen receptor-positive human breast cancer cells (MCF-7) stably transfected with the aromatase gene are inoculated into ovariectomized, immunosuppressed (nude) mice. These cells synthesize sufficient estrogen from androgen substrate to stimulate their proliferation and the development of tumors. Moreover, estrogen secreted by the tumor cells maintains uterine weight comparable to that of the intact mouse. In the present study, we employed this model to investigate the effects of the aromatase inhibitor, letrozole (CGS 20267 [Femara]) on mammary tumor growth and on the uterus. We also used this model to predict the effects of combining two aromatase inhibitors, letrozole and anastrozole (Arimidex), with the antiestrogen tamoxifen (Nolvadex). Letrozole was found to be a highly potent inhibitor of tumor proliferation and more effective than tamoxifen. No stimulation of uterine growth was observed with the aromatase inhibitors. However, the combination of letrozole or anastrozole and tamoxifen was no more effective than either aromatase inhibitor alone. The agonistic effect of tamoxifen on the uterus was observed when it was given alone and when combined with the aromatase inhibitors. Furthermore, letrozole had the most potent antitumor activity when compared to other aromatase inhibitors and antiestrogens. No additional benefit was observed by combining these agents with tamoxifen over treatment with aromatase inhibitors alone.

Anastrozole↗

[HLA-Cw genotyping of serologically and non-serologically defined alleles using sequence-specific primers (PCR-SSP) in a Shanghai Han population].

The new classical complement-mediated microlymphocytotoxicity test can detect a total of 10 different serologically defined antigen specificities (CWl-10) encoded by HLA-Cw locus. However, the blank amounts to 20%-50% for there are Cw antigens which can not be detected with antisera available. We adopted a PCR-SSP method to genotype a sample of 70 subjects collected from a Chinese Han population in Shanghai. We identified for the first time the following non-serologically defined HLA-Cw alleles in the Chinese Han population: Cw*1201/1202,1203,1301,14,1601,1602,1701, and also the serologically defined HLA-Cw alleles such as: Cw*01,02,0302/0304,0303,04,0501,0602,0701/0702/0703,08. With this sample we have made a survey of HLA-Cw allele frequencies in a Chinese Han population in Shanghai, with blank frequency being lowered from 0.307 to 0.028. The Cw*08 was originally considered to be rare in Chinese population. However, we found 12 cases of Cw*08 in this sample, which clearly does not coincide with the original point of view. Our results confirmed that PCR-SSP typing is rapid and accurate for HLA-Cw alleles.

Alleles↗

Regulation of cell migration by the calcium-dependent protease calpain.

Integrin receptors play an important role during cell migration by mediating linkages and transmitting forces between the extracellular matrix and the actin cytoskeleton. The mechanisms by which these linkages are regulated and released during migration are not well understood. We show here that cell-permeable inhibitors of the calcium-dependent protease calpain inhibit both beta1 and beta3 integrin-mediated cell migration. Calpain inhibition specifically stabilizes peripheral focal adhesions, increases adhesiveness, and decreases the rate of cell detachment. Furthermore, these inhibitors alter the fate of integrin receptors at the rear of the cell during migration. A Chinese hamster ovary cell line expressing low levels of calpain I also shows reduced migration rates with similar morphological changes, further implicating calpain in this process. Taken together, the data suggest that calpain inhibition modulates cell migration by stabilizing cytoskeletal linkages and decreasing the rate of retraction of the cell's rear. Inhibiting calpain-mediated proteolysis may therefore be a potential therapeutic approach to control pathological cell migration such as tumor metastasis.

Animals↗

A discussion about the DiFrancesco-Noble model.

An obvious defect in the DiFrancesco-Noble (DN) model was found, so methods to overcome this inadequacy are put forward. Based on these methods, different kinds of modified DN model can be obtained, and numerical results show that most of the dynamics of the DN model can be essentially preserved by these modified systems.

Animals↗

Using Schizosaccharomyces pombe as a host for expression and purification of eukaryotic proteins.

We have established a eukaryotic protein expression and purification system by using the yeast Schizosaccharomyces pombe as the host and the glutathione S-transferase (GST) as a protein purification tag. This system provides opportunities for rapid, inexpensive, and high yield production of proteins in a eukaryotic organism. Unlike E. coli, S. pombe provides for post-translational modifications of the proteins, which are often critical for the structure and function of eukaryotic proteins. Two vectors have been constructed for protein expression in S. pombe, pESP-1 and pESP-2. Both vectors use the nmt1 promoter for constitutive or induced expression of the gene of interest. Expressed GST-tagged proteins are easily and rapidly purified using glutathione agarose beads. The GST tag can be removed from the fusion proteins by treatment with either the thrombin or enterokinase protease. Proteins expressed from the pESP-2 vector will yield native amino acid sequence when the GST tag is removed by treatment with enterokinase. Nine proteins have been purified by using the system with yields ranging from 1.0 mg/l to 12.5 mg/l of induced culture.

Amino Acid Sequence↗

Inhibition of the growth of WI-38 fibroblasts by benzyloxycarbonyl-Leu-Leu-Tyr diazomethyl ketone: evidence that cleavage of p53 by a calpain-like protease is necessary for G1 to S-phase transition.

The effect of a calpain-selective cell permeant inhibitor, benzyloxycarbonyl Leu-Leu-Tyr diazomethylketone (ZLLY-CHN2), on the serum-stimulated growth of WI-38 human fibroblasts has been investigated. Only cell permeant protease inhibitors with activity against calpains prevented progression into S-phase. Protein blotting experiments indicated that p53 immunoreactivity increased in late G1 cells treated with ZLLY-CHN2. The content of p21Waf1/Cip1 CDK inhibitor also increased, providing a mechanism for the observed failure to enter S-phase. Further studies indicated that p53 could be degraded by a ZLLY-CHN2-sensitive protease immediately prior to S-phase, but that proteolysis did not occur after this critical time point. Chelation of extracellular Ca2+ by addition of EGTA inhibited the p53 degradation. Consistent with proteolysis of p53 in late G1 phase, mu-calpain immunoreactivity transiently accumulated in cell nuclei at this time. ZLLY-CHN2 did not appear to increase p53 mRNA in WI-38 cells. Purified mu-calpain required only 1 to 3 microM Ca2+ to proteolyze p53 in WI-38 cell lysates. These results indicate that ZLLY-CHN2 inhibits progression of WI-38 cells into S-phase by inactivating a calpain-like protease that is responsible for proteolysis of constitutively expressed p53 in late G1.

Calcium↗

Targeted mutation in beta1,4-galactosyltransferase leads to pituitary insufficiency and neonatal lethality.

Despite much attention, the function of oligosaccharide chains on glycoproteins and glycolipids remains largely unknown. Our understanding of oligosaccharide function in vivo has been limited to the use of reagents and targeted mutations that eliminate entire classes of oligosaccharide chains. However, most biological functions for oligosaccharides have been attributed to specific terminal sequences on these glycoside chains; yet, there have been few studies that examine the consequences of modifying terminal oligosaccharide structures in vivo. To address this issue, mice were created bearing a targeted mutation in beta1,4-galactosyltransferase (GalTase), an enzyme responsible for elaboration of many of the proposed biologically active carbohydrate epitopes. Most GalTase-null mice died within the first few weeks after birth and were characterized by stunted growth, thin skin, sparse hair, and dehydration. In addition, spermatogenesis was delayed, the lungs were poorly developed, and the adrenal cortices were poorly stratified. The few surviving adults had puffy skin (myxedema) and difficulty delivering pups at birth (dystocia) and failed to lactate (agalactosis). All of these defects are consistent with endocrine insufficiency, which was confirmed by markedly decreased levels of serum thyroxine. The polyglandular nature of the endocrine insufficiency is indicative of a failure of the anterior pituitary gland to stimulate the target endocrine organs. Previous in vitro studies have suggested that incomplete glycosylation of anterior pituitary hormones leads to the creation of hormone antagonists, which down-regulate subsequent endocrine function, producing polyglandular endocrine insufficiency. In GalTase-null mice, the anterior pituitary acquired a normal secretory phenotype during neonatal development indicative of normal glycoprotein hormone synthesis and secretion. However, as expected, the gland was devoid of GalTase activity. These results support a requirement for terminal oligosaccharide sequences for anterior pituitary hormone function. The fact that approximately 10% of the GalTase-null mice survive the neonatal period indicates the presence of a previously unrecognized compensatory pathway for glycoprotein hormone glycosylation and/or action.

Abnormalities, Multiple↗

Heterodimerization of Hox proteins with Pbx1 and oncoprotein E2a-Pbx1 generates unique DNA-binding specifities at nucleotides predicted to contact the N-terminal arm of the Hox homeodomain--demonstration of Hox-dependent targeting of E2a-Pbx1 in vivo.

Hox proteins control genetic programs that orchestrate development, and a large subset of Hox proteins can bind DNA elements as heterodimers with the Pbx family of homeodomain proteins. A transcriptionally activated version of Pbx1, E2a-Pbx1, is an oncoprotein in human pre-B cell leukemia that strongly suppresses differentiation and retains its ability to heterodimerize with Hox proteins. Because monomeric Hox proteins bind very similar DNA motifs, it is unclear how they activate diverse developmental programs. Here we demonstrate that heterodimers containing different Hox proteins and a common Pbx1 or E2a-Pbx1 partner bind different DNA motifs. Structural models suggest that the specificity of the Hox protein is altered by a conformation change involving residues in the N-terminal arm of the Hox homeodomain. Mutational analysis also supported the hypothesis that unique sequences in the N-terminal arm of the Hox homeodomain are at least partially responsible for mediating this specificity. In vivo, Hox proteins directed E2a-Pbx1-mediated transactivation with moderate specificity to cognate Hox-Pbx motifs. Thus, the development specificity of individual Hox proteins may be mediated, in part, by differential targeting of cellular genes by Pbx1-Hox complexes. Likewise, through its function as a common heterodimer partner, oncoprotein E2a-Pbx1 may be able to interfere with multiple programs of development that are induced by the sequential or simultaneous expression of Hox proteins during hematopoiesis.

DNA↗

Bacterial translocation is inhibited in inducible nitric oxide synthase knockout mice after endotoxin challenge but not in a model of bacterial overgrowth.

BACKGROUND: Studies have shown that nitric oxide (NO) and NO synthase (NOS) inhibitors injure and protect organs after endotoxin (lipopolysaccharide [LPS]) challenge. OBJECTIVE: To test the hypothesis that LPS-induced gut injury and bacterial translocation (BT) are mediated through activation of inducible NOS (iNOS). DESIGN: A randomized, controlled study using genetically altered, iNOS gene knockout mice. SETTING: University research laboratory. METHODS: Forty-five wild-type (iNOS+/+) or homozygous mutant (iNOS-/-) mice weighing 25 to 35 g were challenged with Escherichia coli LPS or saline (10 mg/ kg) intraperitoneally (n = 8/group). In a second set of experiments, a bacterial overgrowth model of BT (E coli monoassociation) was tested (n = 6-7/group). The mesenteric lymph nodes and cecums were cultured, and liver, ileal, and blood nitrite and nitrate levels measured 24 hours after LPS or E coli monoassociation. RESULTS: After LPS challenge, 87.5% of the iNOS+/+ mice but 0% of the iNOS-/- mice had BT to their mesenteric lymph nodes (P < .01; chi 2 analysis). Nitrite and nitrate levels of the liver, ileum, and blood were higher in the iNOS+/+ mice (P < .05). In the E coli overgrowth model, BT to mesenteric lymph nodes occurred in 100% of iNOS-/- and iNOS+/+ mice. CONCLUSIONS: In this limited study, LPS-induced BT did not occur in iNOS-deficient mice, suggesting that LPS induction of increased iNOS activity is necessary for LPS-induced BT to occur. In contrast, iNOS activation does not seem to be necessary in a bacterial overgrowth model of BT.

Animals↗

Selective phosphorylation of adult tau isoforms in mature hippocampal neurons exposed to fibrillar A beta.

How senile plaques and neurofibrillary tangles are linked represents a major gap in our understanding of the pathophysiology of Alzheimer's disease. We characterized a hippocampal neuronal culture system in which tau undergoes maturation in vivo; rat neurons maintained in culture for more than 3 weeks replicated the splicing and phosphorylation changes that tau undergoes upon maturation in situ. Using this model system, we induced an Alzheimer-like neuritic dystrophy following the application of fibrillar beta-amyloid. The dystrophy consisted of focal distortions and swellings within the neurites and an altered phosphorylation of the adult tau isoforms. Fibrillar beta-amyloid induced the concomitant activation of MAP kinase and GSK3 beta. The aberrant activation of several signaling pathways may lead to the abnormal phosphorylation of tau and neuritic degeneration.

Amyloid beta-Peptides↗

Distribution of inhaled nitric oxide during sequential and continuous administration into the inspiratory limb of the ventilator.

OBJECTIVES: The concentrations of nitric oxide (NO) in the ventilatory circuits and the patient's airways were compared between sequential (SQA) and continuous (CTA) administration during inspiratory limb delivery. DESIGN: Prospective controlled study. SETTING: 14-bed Surgical Intensive Care Unit of a teaching University hospital. PATIENTS AND PARTICIPANTS: Eleven patients with acute lung injury on mechanical ventilation and two healthy volunteers. INTERVENTIONS: A prototype NO delivery device (Opti-NO) and César ventilator were set up in order to deliver 1, 3 and 6 parts per million (ppm) of NO into the bellows of a lung model in SQA and CTA. Using identical ventilatory and Opti-NO settings, NO was administered to the patients with acute lung injury. MEASUREMENTS AND RESULTS: NO concentrations measured from the inspiratory limb [INSP-NOMeas] and the trachea [TRACH-NOMeas] using fast response chemiluminescence were compared between the lung model and the patients using controlled mechanical ventilation with a constant inspiratory flow. INSP-NOMeas were stable during SQA and fluctuated widely during CTA (fluctuation at 6 ppm = 61% in the lung model and 58 +/- 3% in patients). In patients, [TRACH-NOMeas] fluctuated widely during both modes (fluctuation at 6 ppm = 55 +/- 3% during SQA and 54 +/- 5% during CTA). The NO flow requirement was significantly lower during SQA than during CTA (74 +/- 0.5 vs 158 +/- 2.2 ml.min-1 to attain 6 ppm, p = 0.0001). INSP-NOMeas were close to the values predicted using a classical formula only during SQA (bias = -0.1 ppm, precision = +/-1 ppm during SQA; bias = 2.93 ppm and precision = +/-3.54 ppm during CTA). During SQA, INSP-NOMeas varied widely in healthy volunteers on pressure support ventilation. CONCLUSIONS: CTA did not provide homogenous mixing of NO with the tidal volume and resulted in fluctuating INSP-NOMeas. In contrast, SQA delivered stable and predictable NO concentrations during controlled mechanical ventilation with a constant inspiratory flow and was economical compared to CTA. However, SQA did not provide stable and predictable NO concentrations during pressure support ventilation.

Analysis of Variance↗

Properties of citric acid at the glass transition.

To better understand the properties of citric acid when used in solid dosage forms as an acid-base buffer, we initiated a study of its properties in the amorphous state. Such a state often arises during processes such as lyophilization and wet granulation. In view of inconsistencies in the literature concerning the glass transition temperature, Tg, of citric acid in the dry and hydrated states, we measured the Tg of samples formed by a melt-quench cool sequence in a DSC. We also used DSC to measure Tg', the glass transition temperature of the maximally freeze-concentrated solution. It was shown that dry citric acid has a Tg of 11 degrees C, while that containing 8.6% water (equimolar) has a value of -25 degrees C. The Tg' of a frozen solution of citric acid is -53 degrees C. Measuring Tg for the dry and hydrated samples at various scanning rates allowed measurement of the activation energy for enthalpy relaxation at Tg and enabled estimation of the degree of fragility (or the strength parameter) for both samples. It was shown that citric acid is a fairly fragile liquid expected to exhibit non-Arrhenius dynamic behavior and that the presence of residual water at a level of 8.6% causes a decrease in fragility.

Calorimetry, Differential Scanning↗

Two new sesterterpenoids and a new 9,11-secosterol from Spongia matamata.

Two novel sesterterpenoids, 12 alpha-acetoxy-19 beta-hydroxyscalara-15,17- dien-20,19-olide (3) and 12 alpha,-16 beta-diacetoxyscalarolbutenolide (5), and a new 9,11-secosterol, 3 beta-hydroxy-5 alpha,6 alpha-epoxy-9-oxo-9,11-seco-5 alpha-cholest-7-en-11-al (6), were isolated from the marine sponge Spongia matamata from Palau together with the known compounds scalarin (1) and 12 alpha-acetoxy-16 beta-hydroxyscalarolbutenolide (4). The structures were determined by interpretation of spectroscopic data.

Animals↗

Factors influencing the tracheal fluctuation of inhaled nitric oxide in patients with acute lung injury.

BACKGROUND: Inhaled nitric oxide (NO) improves arterial oxygenation in patients with acute lung injury (ALI) by selectively dilating pulmonary vessels perfusing ventilated lung areas. It can be hypothesized that NO uptake from the lung decreases with increasing ventilation perfusion mismatch. This study was undertaken to determine the factors influencing the fluctuation of tracheal NO concentration over the respiratory cycle as an index of NO pulmonary uptake in patients with ALI. METHODS: By using a prototype system (Opti-NO) delivering a constant flow of NO only during the inspiratory phase, 3 and 6 ppm of NO were administered during controlled mechanical ventilation into a lung model and to 11 patients with ALI. All patients had a thoracic computed tomography (CT) scan. Based on an analysis of tomographic densities, lungs were divided into three zones: normally aerated (-1.000 to -500 Hounsfield units [HU]), poorly aerated (-500 to -100 HU), and nonaerated (-100 to +100 HU), and the volume of each zone was computed. Concentrations of NO in the inspiratory limb and trachea were continuously measured by a fast-response chemiluminescence apparatus. RESULTS: In the lung model, tracheal NO concentration was stable with minor fluctuation. In contrast, in patients, tracheal NO concentration fluctuated widely during the respiratory cycle (55 +/- 10%). Because uptake of NO from the lungs was absent in the lung model but present in the patients, this fluctuation was considered as an index of pulmonary uptake of NO. This was further substantiated by (1) the coincidence of the peak and minimum tracheal NO concentration with the end-inspiratory and end-expiratory phases, respectively, and (2) continued decrease of tracheal NO concentration during prolonged expiratory phase. In patients with ALI, the fluctuation of tracheal NO concentration expressed as the difference between inspiratory and expiratory NO concentrations divided by inspiratory NO concentration was greater at 6 ppm than at 3 ppm (P < 0.01), was linearly correlated with normally aerated lung volume, inversely correlated with alveolar dead space and with poorly aerated lung volume. CONCLUSION: In patients with ALI, fluctuation of tracheal NO concentration over the respiratory cycle can be considered as an index of NO uptake from the lungs that depends on aerated lung volume and perfusion of ventilated lung areas. At bedside, it may be used to follow the evolution of ventilation-perfusion mismatch.

Administration, Inhalation↗

Interleukin-6 and tumor necrosis factor production in an enterocyte cell model (Caco-2) during exposure to Escherichia coli.

Data linking interactions between bacteria and the intestine with elevated serum cytokine levels has led to the concept of the gut as a cytokine-producing organ. An in vitro cell culture model was used to investigate the potential role of intestinal mucosa within this paradigm. Polarized monolayers of human enterocytes (Caco-2) were grown in a two compartment system where the apical and basal aspects of the membrane could be studied. Supernatant was collected at 0, 1, 3, 6, and 24 h after the monolayer was exposed (apically or basally) to 10(2), 10(5), or 10(8) colony-forming units of Escherichia coli C25/mL and saved for interleukin (IL)-6 and tumor necrosis factor (TNF) bioassay analysis. Caco-2 cells (not bacterially challenged) secreted significant amounts of constitutive IL-6, but not TNF, into the apical and basal chambers. Both cytokines levels were increased in a dose-dependent fashion (p < .05) after the E. coli challenge. This stimulated cytokine response was polar, in that the highest cytokine levels were at the side of the bacterial challenge and were most notable at the highest dose (10(8) colony-forming units/mL) of E. coli C25 tested. Caco-2 cells produce IL-6 and TNF in a dose-dependent fashion in response to E. coli C25 and the magnitude of this response is maximal on the side of the bacterial challenge. This data supports the hypothesis that bacterially challenged human enterocytes may be important producers of cytokines.

Caco-2 Cells↗

Molecular architecture of the hsp70 promoter after deletion of the TATA box or the upstream regulation region.

GAGA factor, TFIID, and paused polymerase are present on the hsp70 promoter in Drosophila melanogaster prior to transcriptional activation. In order to investigate the interplay between these components, mutant constructs were analyzed after they had been transformed into flies on P elements. One construct lacked the TATA box and the other lacked the upstream regulatory region where GAGA factor binds. Transcription of each mutant during heat shock was at least 50-fold less than that of a normal promoter construct. Before and after heat shock, both mutant promoters were found to adopt a DNase I hypersensitive state that included the region downstream from the transcription start site. High-resolution analysis of the DNase I cutting pattern identified proteins that could be contributing to the hypersensitivity. GAGA factor footprints were clearly evident in the upstream region of the TATA deletion construct, and a partial footprint possibly caused by TFIID was evident on the TATA box of the upstream deletion construct. Permanganate treatment of intact salivary glands was used to further characterize each promoter construct. Paused polymerase and TFIID were readily detected on the normal promoter construct, whereas both deletions exhibited reduced levels of each of these factors. Hence both the TATA box and the upstream region are required to efficiently recruit TFIID and a paused polymerase to the promoter prior to transcriptional activation. In contrast, GAGA factor appears to be capable of binding and establishing a DNase I hypersensitive region in the absence of TFIID and polymerase. Interestingly, purified GAGA factor was found to bind near the transcription start site, and the strength of this interaction was increased by the presence of the upstream region. GAGA factor alone might be capable of establishing an open chromatin structure that encompasses the upstream regulatory region as well as the core promoter region, thus facilitating the binding of TFIID.

Animals↗