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Biomedical subjects

Q Liu

Publications and source records attributed to Q Liu.

At least 505 records · Page 28Linked to original sources

Nicorandil improves ischemic changes in epicardial ECG during short-term coronary occlusion by opening ATP-sensitive potassium channels in pigs.

The aims of this study were to investigate whether nicorandil (NIC), an ATP-sensitive potassium channel (KATP) opener and nitrate, has antiischemic effects during transient ischemia in pigs, and to investigate whether its effects are due to its KATP-opening action or nitrate action. Myocardial ischemia was induced by ligating the proximal portion of the left anterior descending coronary artery for 1 minute in anesthetized open-chest pigs, and was measured as the magnitude of ST-segment elevation on epicardial electrocardiogram (ECG). Epicardial ST-segment elevation during coronary occlusion was significantly reduced by pretreatment with NIC (3 mg, intracoronary [i.c.]), but not by pretreatment with nitroglycerin (NTG, 0.2 mg, i.c.). Pretreatment with glibenclamide (GLB, a KATP blocker, 6 mg, i.c.) significantly augmented the ST-segment elevation during coronary occlusion. The augmentation of ST-segment elevation by GLB was significantly reduced by subsequent administration of NIC, but not by that of NTG (0.2 mg, i.c.). There were no significant differences between hemodynamic variables immediately before coronary occlusion with and without pretreatment. The intracoronary administration of NIC (3 mg) significantly shortened the endocardial monophasic action potential durations at 50% (MAPD50) and 90% repolarization (MAPD90) by 28.3 +/- 6.9% and 17.0 +/- 4.7%, respectively. These results suggest that the intracoronary administration of NIC has antiischemic effects during transient ischemia via KATP activation in myocardium.

Action Potentials↗

A simple method to prepare calcium phosphate coatings on Ti6Al4V.

A two-step chemical treatment followed by immersion in a supersaturated calcification solution (SCS) was found to be a simple way to prepare calcium phosphate (Ca-P) coatings on Ti6Al4V. The Ca-P deposition on the treated metallic surfaces could be accelerated by employing a pre-calcification (Pre-Ca) procedure prior to immersion in SCS. The two-step treatment was performed by etching the metallic plates with a mixture of HCl and H2SO4 followed by ageing in boiling diluted NaOH solution at 140 degrees C. Pre-Ca was carried out by incubating the two-step treated plates in Na2HPO4 solution and then in saturated Ca(OH)2 solution. The formation of a bioactive microporous surface oxide layer on Ti6Al4V by the two-step treatment was most probably responsible for the induction of Ca-P precipitation. The deposition rates and compositions of Ca-P coatings in two different SCSs were investigated by means of scanning electron microscopy, X-ray diffraction and infrared spectrophotometry.

Journal Article↗

In-vitro apatite formation on phosphorylated bamboo.

Natural self-reinforced composite, bamboo, was surface modified by phosphorylation with urea-H3PO4 and NaOH-H3PO4 methods; then precalcification was performed by immersing samples in saturated Ca(OH)2 solution. After that, calcium phosphate can be formed on the surface of bamboo samples in calcification media: simulated body fluid (1.5 SBF) and accelerated calcification solution (ACS). Experimental results reveal that pre-calcification is an inevitable step for the formation of calcium phosphate. The calcium phosphate formed in 1.5 SBF was identified by thin-film X-ray diffraction as apatite which was not well crystallized. Compared with the urea-H3PO4 method, the NaOH-H3PO4 method has the advantages of quicker and continuous apatite formation and stronger adhesive between apatite and bamboo.

Journal Article↗

Calcium phosphate formation induced on silica in bamboo.

The effect of in vitro induction of calcium phosphate on bamboo surfaces is reported for the first time. Bamboo is studied for biomaterial application due to its elasticity modulus being closer to human bone than other biomaterials. Following an earlier study of cytotoxicity and precipitation of apatite on ground tissue and vascular bundles of bamboo, the composition and function of the minerals in bamboo, especially silica, are considered in the present work. It is found that in both outer and inner surfaces of bamboo culm, there exists some silica. Bamboo elicits an inert response when soaked directly in calcification solution. After the rind of bamboo is treated with sodium hydroxide solution, the silica underneath can induce precipitation of calcium phosphate in an ambient environment. Furthermore, by subsequent grafting with polyethylene glycol (PEG 1000), calcium phosphate induction of bamboo rind can be improved, depending on the concentration of NaOH solution and treatment time. Heat treatment of bamboo can remove the organic materials around the minerals in bamboo, allowing the calcification behaviour of the silica-containing inorganic phase of bamboo in aqueous solution to be studied.

Journal Article↗

Enhanced discrimination of single nucleotide polymorphisms by artificial mismatch hybridization.

In order to increase the discrimination of single nucleotide polymorphisms in DNA hybridization, artificial mismatches are inserted into probe oligonucleotides using the base analog 3-nitropyrrole. Differences in thermal stability (delta Tm) between hybrids formed with normal and single-nucleotide-variant DNA targets are increased by as much as 200% over conventional hybridization, and are strongly dependent upon the spacing between mismatches. The increased specificity is demonstrated by hybridization analysis and allele-specific amplification within the HLA-DRB locus.

Alleles↗

Correlation between severity and SMN protein level in spinal muscular atrophy.

Spinal muscular atrophy (SMA) is a common autosomal recessive neuromuscular disorder characterized by degeneration of motor neurons of the spinal cord. Three different forms of childhood SMA have been recognized on the basis of age at onset and clinical course: Werdnig-Hoffmann disease (type-1), the intermediate form (type-II) and Kugelberg-Welander disease (type-III). A gene termed 'survival of motor neuron' (SMN) has been recognized as the disease-causing gene in SMA. SMN encodes a protein located within a novel nuclear structure and interacts with RNA-binding proteins. To elucidate the molecular mechanism underlying the pathogenesis of the disease, we examined the expression of the SMN gene in both controls and SMA patients by western blot and immunohistochemical analyses using antibodies raised against the SMN protein. The present study shows a marked deficiency of the SMN protein in SMA.

Blotting, Western↗

Hypoxic dilatation of porcine small coronary arteries: role of endothelium and KATP-channels.

1. The aim of the present study was to determine the cellular mechanims and potential mediators involved in hypoxic dilatation of porcine small coronary arteries. 2. Small coronary arteries were isolated from a branch of the left anterior descending artery of porcine hearts, cannulated with glass micropipettes and studied in a perfusion myograph system. At a transmural pressure of 40 mmHg, the arteries had an internal diameter of 167.8 +/- 6.6 microns (n = 37). 3. In arteries contracted with acetylcholine (ACh), hypoxia (0% O2, 30 min) caused dilatation (86.9 +/- 6.7% relaxation, n = 6) in vessels with endothelium but constriction in endothelium-denuded vessels. 4. Hypoxic vasodilatation occurring in arteries with endothelium was abolished by the KATP channel inhibitor, glibenclamide (0.44 microM), but was not affected by inhibition of nitric oxide synthase (L-NAME, 44 microM) or cyclo-oxygenase (indomethacin, 4.4 microM). 5. Bradykinin evoked endothelium-dependent relaxation that was inhibited by L-NAME (44 microM) but not glibenclamide 0.44 microM). Cromakalim (0.1-0.3 microM), a KATP channel opener, caused relaxation that was inhibited by glibenclamide, but was not affected by L-NAME (44 microM) and/or indomethacin (4.4 microM). 6. Endothelium-removal inhibited vasodilatation evoked by cromakalim, but increased vasodilator responses to the NO donor, SIN-1 (10(-8) to 10(-5) M). 7. These results indicate that hypoxia acted directly on vascular smooth muscle of small coronary arteries to cause contraction. However, this effect was overwhelmed by endothelium-dependent relaxation in response to hypoxia. This relaxation was most likely mediated by release of an endothelium-derived factor, distinct from nitric oxide or prostacyclin, that activated smooth muscle KATP-channels.

Animals↗

Heterogeneity in the vasorelaxing effect of nicorandil on dog epicardial coronary arteries: comparison with other NO donors.

The relaxation responses to nicorandil, nitroglycerin (NTG), and cromakalim were compared in isolated dog large (>1.5 mm inside diameter) and small (<0.3 mm inside diameter) epicardial coronary arteries. Nicorandil and NTG produced more potent relaxing effects in large coronary arteries. In contrast, cromakalim produced greater relaxation in small arteries. No significant differences were observed in the nitric oxide (NO)-induced response after treatment with superoxide dismutase. The responses to 8-bromo-cyclic guanosine monophosphate (cGMP), SIN-1, and atrial natriuretic peptide did not differ in arteries of different sizes. Treatment with L-cysteine had no significant effect on the relaxation responses to NTG in both large and small coronary arteries. Oxyhemoglobin and glibenclamide inhibited relaxation induced by nicorandil in large and small coronary arteries. Oxyhemoglobin had a greater suppressive effect on the response to nicorandil in large coronary arteries than in small coronary arteries. Methylene blue inhibited the response to nicorandil in large coronary arteries. These findings suggest that nicorandil behaves predominantly as a nitrate in large epicardial coronary arteries rather than small epicardial arteries and that this difference between large and small coronary arteries with regard to the nitrate action of nicorandil may be the result of a pathway in which nicorandil is converted to NO.

Animals↗

Overlapping PCR for bidirectional PCR amplification of specific alleles: a rapid one-tube method for simultaneously differentiating homozygotes and heterozygotes.

Rapid detection of single-base changes is fundamental to molecular medicine. PASA (PCR Amplification of Specific Alleles) is a rapid method of genotyping single-base changes, but one reaction is required for each allele. Bidirectional PASA (Bi-PASA) was developed to distinguish between homozygotes and heterozygotes in one PCR reaction by utilizing novel primer design with appropriate cycling conditions. In Bi-PASA, one of the alleles is amplified by a PASA reaction in one direction while the second allele is amplified by a PASA reaction in the opposite direction. Two outer (P and Q) and two inner allele-specific (A and B) primers are required. In heterozygotes, three segments are amplified: a segment of size AQ resulting from one allele, another segment of size PB resulting from the second allele, and a combined segment of size PQ. In homozygotes, segment PQ and either segments AQ or PB amplify. The two inner primers (A and B) contain a relatively short complementary region and a 10-nucleotide G + C-rich 5' tail. The inner primers "switch" from low-efficiency to high-efficiency amplification when genomic DNA is replaced by previously amplified template DNA. In addition, the 5' tails prevent "megapriming". The parameters for optimizing Bi-PASA were investigated in detail for common mutations in the human factor V and catechol-O-methyltransferase genes. Guidelines for optimization of Bi-PASA also were developed and tested in a prospective study. Three additional Bi-PASA assays were optimized rapidly by utilizing these guidelines. In conclusion, Bi-PASA is a simple and rapid method for detecting the zygosity of known mutations in a single PCR reaction.

Alleles↗

Cytochrome P450 2D6 and glutathione S-transferase genotype in sudden infant death syndrome.

OBJECTIVES: The risk of sudden infant death syndrome (SIDS) has been linked with xenobiotic exposures, race and inheritance. Because cytochrome P450 2D6 (CYP2D6) and glutathione S-transferases (GSTM1 and GSTT1) are genetically regulated, polymorphically distributed, and responsible for detoxification of many centrally acting exogenous and endogenous bioactive compounds, our objective was to determine whether the prevalences of deficiencies in CYP2D6, GSTM1, and GSTT1 differ in SIDS victims compared to healthy controls. METHODS: CYP2D6 mutations (deletion, A, B, and T alleles) and GSTM1 and GSTT1 null genotypes were assessed in DNA from 50 SIDS victims. CYP2D6 phenotype, assigned using dextromethorphan urinary ratios, was assessed in 25 unrelated parents of SIDS victims. RESULTS: The CYP2D6B mutation was the only mutant CYP2D6 allele found in SIDS victims, present in 26.2% of patients (11/42) and 13.1% (11/84) of alleles. Adjusting for race, the prevalence of wild-type CYP2D6 alleles and of homozygous wild-type CYP2D6 phenotype was not different in SIDS victims compared to controls (P = 0.585 and 0.224, respectively). Among the 25 parents of SIDS victims, all subjects were extensive metabolizers, a prevalence not different from controls (P = 0.243). The prevalence of the null genotype for GSTM1, GSTT1 and double-null for GSTM1 and GSTT1 was 33.3%, 21.4% and 9.5%, respectively, among SIDS victims, and was not different than controls (P = 0.61, 0.1, 0.28, respectively). The combination of CYP2D6 homozygous wild-type genotype and the null genotype for GSTM1, GSTT1, or both GSTM1 + GSTT1 also did not differ in SIDS victims and controls. CONCLUSIONS: The frequencies of CYP2D6 mutant genotypes and the null genotypes for GSTM1 and GSTT1 were not different among SIDS victims compared to normal controls, and thus these polymorphisms are unlikely to identify families with a high risk of SIDS.

Cytochrome P-450 CYP2D6↗

mu-Opioid receptor-stimulated guanosine-5'-O-(gamma-thio)-triphosphate binding in rat thalamus and cultured cell lines: signal transduction mechanisms underlying agonist efficacy.

G protein activation by different mu-selective opioid agonists was examined in rat thalamus, SK-N-SH cells, and mu-opioid receptor-transfected mMOR-CHO cells using agonist-stimulated guanosine-5'-O-(gamma-thio)-triphosphate ([35S]GTP gamma S) binding to membranes in the presence of excess GDP. [D-Ala2, N-MePhe4, Gly5-ol]Enkephalin (DAMGO) was the most efficacious agonist in rat thalamus and SK-N-SH cells, followed by (in rank order) fentanyl = morphine > > buprenorphine. In mMOR-CHO cells expressing a high density of mu receptors, no differences were observed among DAMGO, morphine or fentanyl, but these agonists were more efficacious than buprenorphine, which was more efficacious than levallorphan. In all three systems, efficacy differences were magnified by increasing GDP concentrations, indicating that the activity state of G proteins can affect agonist efficacy. Scatchard analysis of net agon stimulated [35S]GTP gamma S binding revealed two major components responsible for agonist efficacy differences. First, differences in the KD values of agonist-stimulated [35S]GTP gamma S binding between high efficacy agonists (DAMGO, fentanyl, and morphine) and classic partial agonists (buprenorphine and levallorphan) were observed in all three systems. Second, differences in the Bmax value of agonist-stimulated [35S]GTP gamma S binding were observed between DAMGO and morphine or fentanyl in rat thalamus and SK-N-SH cells and between the high efficacy agonists and buprenorphine or levallorphan in all three systems. These results suggest that mu-opioid agonist efficacy is determined by the magnitude of the receptor-mediated affinity shift in the binding of GTP (or[35S]GTP gamma S) versus GDP to the G protein and by the number of G proteins activated per occupied receptor.

Animals↗

Trovafloxacin in treatment of rabbits with experimental meningitis caused by high-level penicillin-resistant Streptococcus pneumoniae.

The fluoroquinolone trovafloxacin was bactericidal (0.47 +/- 0.23 delta log10 CFU/ml x h after 10 mg/kg of body weight and 0.78 +/- 0.15 delta log10 CFU/ml x h after 30 mg/kg) in the treatment of experimental meningitis caused by a highly penicillin-resistant (MIC and minimum bactericidal concentration = 4 and 4 microg/ml) strain of Streptococcus pneumoniae. Combinations with ampicillin and rifampin were indifferent compared to single drugs.

Ampicillin↗

Regulated processing of hepatitis C virus core protein is linked to subcellular localization.

Posttranslational processing and subcellular localization of the HCV core protein are critical steps involved in the assembly of hepatitis C virus (HCV). In this study, both of these events were investigated by in vitro translation and transient COS-1 cell transfection of core protein expression constructs. Mutations at amino acid residues 173 to 174 and 191 to 192 disrupted processing events at the two putative cleavage sites in the C-terminal hydrophobic region of the core protein, indicating that these residues are implicated in the pathway of core protein maturation. As a result, two forms of core protein, C173 and C191, were detected by immunoblotting. Indirect immunofluorescence experiments showed that core proteins C173 and C191, when produced from HCV full-length protein or various polyprotein precursors, displayed a cytoplasmic localization. The C173 species, however, was translocated to the nucleus when expressed in the absence of C191. These findings indicate that preferential cleavage may occur during core protein maturation and that the association of the C191 with the C173 species may contribute to the distinct subcellular distribution of core protein. This may provide a possible mechanism for the control of the diverse biological functions of core protein during HCV replication and assembly.

Amino Acid Sequence↗

Protective effects of interleukin-11 in a murine model of ischemic bowel necrosis.

The present study examined the effect of interleukin-11 (IL-11) in a murine model of bowel ischemia (BI). Prophylactic IL-11 administration in BI mice (induced by occluding the superior mesenteric artery for 90 min) was associated with significantly decreased morbidity and mortality. IL-11-treated mice demonstrated rapid recovery of intestinal mucosa as evidenced by an increase in mitotic activity and suppression of apoptosis in intestinal crypt cells as well as increased peripheral platelet and leukocyte counts primarily due to an increase in peripheral lymphocyte number in BI mice. In contrast to vehicle-treated mice, which uniformly developed thrombocytopenia after ischemic injury, no IL-11-treated BI mice developed thrombocytopenia during the experimental period. These data suggest a role for IL-11 in the treatment of gastrointestinal mucosal diseases due to a wide variety of causative injuries.

Animals↗

Regulation of myeloid growth and differentiation by the insulin-like growth factor I receptor.

Flow cytometry was used to examine the expression of type I insulin-like growth factor receptors (IGF-IR) on three types of human hematopoietic cells that represent different stages of myeloid lineage development. Both HL-60 (promyeloid) and U-937 (monocytic) cells express abundant IGF-IR protein (> 79% cells positive for the IGF-IR), whereas KG-1 myeloblasts express negligible levels of IGF-IR (< 1% IGF-IR-positive cells). Exogenous IGF-I, IGF-II, and an IGF-I analog that binds poorly to IGF-binding protein-3 (des-IGF-I) increased DNA synthesis of HL-60 and U-937 cells in a dose-dependent (1-25 ng/ml) fashion by 2- to 4-fold in serum-free medium, whereas KG-1 cells did not respond to any of these growth factors. The IGF-induced increase in proliferation of HL-60 promyeloid cells was inhibited by soluble IGF-binding protein-3 (500 ng/ml) when these cells were stimulated with 10 ng/ml of either IGF-I (53 +/- 8%) or IGF-II (59 +/- 8%), but not with des-IGF-I (3 +/- 1%). In contrast, the anti-IGF-IR monoclonal antibody (mAb; alpha IR-3) inhibited the DNA synthesis caused by 10 ng/ml exogenous IGF-I (67 +/- 6%), IGF-II (72 +/- 8%), and des-IGF-1 (82 +/- 9%). Proliferation of KG-1 myeloblasts, however, was neither stimulated by the IGFs nor inhibited by the anti-IGF-IR mAb. In the absence of exogenous IGF-I, the mAb directed against the IGF-IR significantly suppressed basal DNA synthesis of HL-60 promyeloid (72 +/- 5%) and U-937 monocytic (39 +/- 7%) cells, but did not affect DNA synthesis of KG-1 myeloblasts (8 +/- 1%) compared to an isotype-matched control mAb. Similarly, the alpha IR-3 mAb abrogated vitamin D3-induced differentiation of the HL-60 cells into macrophages in serum-free medium, as assessed by expression of the leucam surface protein, CD11b. As the alpha IR-3 mAb inhibits DNA synthesis in the presence and absence of exogenous IGF-I on receptor-bearing cells, but not IGF-IR-negative cells, these data demonstrate that both endocrine and autocrine IGF-I are potent growth factors in human myeloid cells where expression of the surface receptor, rather than the ligand, is the critical control element. More importantly, these data support the hypothesis that autocrine IGF-I may play a significant role in the differentiation of promyeloid cells into macrophages.

Bone Marrow Cells↗

Genetic variation in the tumor necrosis factor alpha gene and the outcome of multiple sclerosis.

The objective of this study was to determine whether sequence variation in the tumor necrosis factor alpha (TNF alpha) gene is associated with MS course and severity in Olmsted County, MN. The severity and temporal course of MS are heterogeneous. Genetic factors may play a role in determining the course of MS. TNF alpha expression is temporally associated with exacerbations of MS and is increased in individuals with progressive disease. The entire TNF alpha gene was amplified by polymerase chain reaction in 78 MS patients and in 39 patients with schizophrenia. Denaturation finger-printing, a modification of direct sequencing that detects virtually all genetic polymorphisms, was performed for four regions spanning the functionally significant portions of the gene, including the promoter region. Polymorphisms were confirmed by complete sequencing. The severity and temporal course of MS were compared in those with wild-type versus variant alleles. Four sequence changes were detected, three of which occurred in MS patients. None occurred in a protein-encoding sequence. Neither of the two most common sequence variants were associated with disease severity or temporal course. Genetic variation of the TNF alpha gene is not associated with variation in the course or long-term outcome of MS in this population-based sample.

Alleles↗

A population-based case-control study of the tumor necrosis factor alpha-308 polymorphism in multiple sclerosis.

Tumor necrosis factor alpha (TNF alpha) expression is enhanced in patients with active MS and other inflammatory diseases. A guanine-to-adenine polymorphism at position -308 of the TNF alpha promoter region (the TNF2 allele) is associated with increased TNF alpha expression. We evaluated 110 MS patients derived from an Olmsted County, MN, prevalence study. Three other patient cohorts (autoimmune, serious infectious illness, and other neurologic diseases) and matched controls were derived from a Mayo Clinic DNA bank. We used polymerase chain reaction amplification of specific alleles to screen for the TNF2 allele and to determine zygosity. We found one homozygote and 29 heterozygotes in the MS patients. There was no association between the presence of the TNF2 allele and MS or the other disease categories by matched-pair and group analyses.

Alleles↗

Inhibition of PCR amplification by a point mutation downstream of a primer.

A T-->C point mutation is shown to specifically inhibit PCR amplification when compared to wild-type controls in exon H of the factor IX gene. Multiple primers of different lengths and locations were designed to examine this phenomenon. The experiments suggest that poor annealing and/or extension from the downstream primer are responsible for the observed inhibition and that the mutation can exert an inhibitory effect upon PCR amplification at a distance of at least 84 bp. The inhibition was not alleviated when amplification conditions such as annealing temperature, time of extension, type of DNA polymerase or concentration of DNA template, primer or DNA polymerase were varied. The inhibitory factor(s) are likely to be contained within the amplified segment itself because neither the use of a previously amplified PCR product as template for nested PCRs nor the restriction enzyme digestion of that previously amplified product relieved the inhibition of PCR amplification in the mutant sample. Computer analyses with the FOLDRNA and FOLDDNA programs did not reveal the mechanism of inhibition. Although dramatic inhibition, as shown here, may be uncommon, more subtle inhibition may be frequent. Documentation of differential amplification caused by a single-base substitution in template sequence has implications for certain commonly used PCR-based methods such as quantitative PCR, differential display and DNA fingerprinting. In addition, heterozygous single-base pair mutations down-stream of a primer may be missed if the PCR is inhibited; alternatively; the mutation may appear to be homozygous if amplification of the mutated allele is selectively enhanced.

DNA↗