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M Lu

Publications and source records attributed to M Lu.

At least 235 records · Page 13Linked to original sources

Effect of angiotensin II on the apical K+ channel in the thick ascending limb of the rat kidney.

We have used the patch-clamp technique to study the effect of angiotensin II (AII) on the activity of the apical 70 pS K+ channel and used Na(+)-sensitive fluorescent dye (SBFI) to investigate the effect of AII on intracellular Na+ concentration (Na+i) in the thick ascending limb (TAL) of the rat kidney. Addition of 50 pM AII reversibly reduced NPo, a product of channel open probability (Po) and channel number (N), to 40% of the control value and reduced the Na+i by 26%. The AII (50 pM)-induced decrease in channel activity defined by NPo was partially reversed by addition of 5 microM 17-octadecynoic acid (17-ODYA), an agent which blocks the cytochrome P450 monooxygenase. The notion that P450 metabolites of arachidonic acid (AA) may mediate the inhibitory effect of AII was further suggested by experiments in which addition of 10 nM of 20-hydroxyeicosatetraenoic acid (20-HETE) blocked the channel activity in cell-attached patches in the presence of 17-ODYA. We have used gas chromatography mass spectrometry (GC/MS) to measure the production of 20-HETE, a major AA metabolite of the P450-dependent pathway in the TAL of the rat. Addition of 50 pM AII increased the production of 20-HETE to 260% of the control value, indicating that 20-HETE may be involved in mediating the effect of AII (50 pM). In contrast to the inhibitory effect of 50 pM AII, addition of 50-100 nM AII increased the channel activity to 270% of the control value and elevated the Na+i by 45%. The effect of AII on the activity of the 70 pS K+ channel was also observed in the presence of 5 microM 17-ODYA and 5 microM calphostin C, an inhibitor of protein kinase C. However, addition of 100 microM NG-nitro-L-arginine methyl ester (L-NAME), an inhibitor of nitric oxide synthase, abolished completely the AII (50-100 nM)-induced increase in channel activity and addition of an exogenous nitric oxide (NO) donor, S-nitroso-N-acetyl-penicillamine (SNAP), increased channel activity in the presence of L-NAME. These data suggest that the stimulatory effect of AII is mediated by NO. We conclude that AII has dual effects on the activity of the apical 70 pS K+ channel. The inhibitory effect of AII is mediated by P450-dependent metabolites whereas the stimulatory effect may be mediated via NO.

Angiotensin II↗

The genes encoding the P39 and CG30 proteins of Bombyx mori nuclear polyhedrosis virus.

We have cloned and analysed the transcriptional properties of two closely linked genes, p39 and cg30, of Bombyx mori nuclear polyhedrosis virus (BmNPV). These genes encode a structural polypeptide and a putative transcriptional regulator of the virus, respectively. The cg30 gene is transcribed prior to and after DNA replication from a site located within the ORF of the adjacent p39 gene. Its transcription product, a 1.3 kb mRNA, is polyadenylated at a site containing consensus eukaryotic polyadenylation signals and mapping 87 bp downstream of the translation termination codon for CG30. During the later stages of infection, two additional RNAs, 2.2 and 6.5 kb, are also transcribed through the cg30 gene. The 2.2 kb RNA, representing the mRNA that encodes P39, is initiated from three relatively closely spaced sites located upstream of the P39 ORF. The 6.5 kb RNA is apparently transcribed from the promoter sequences of another gene located further upstream of the p39 gene. The 2.2 and 6.5 kb transcripts have two polyadenylation sites. The first site is the same as the one used to generate the cg30 gene-specific transcripts. The second is located 4 bp downstream of the CG30 translation termination codon. Transient expression assays show that the p39 gene sequences immediately upstream of the CG30 ORF can direct expression of a reporter gene when the latter is co-transfected with the gene encoding the early baculovirus trans-activator IE1. Thus, these sequences behave as a delayed-early baculovirus gene promoter.

Amino Acid Sequence↗

The human leukocyte antigen TAP2 gene defines the centromeric limit of melanoma susceptibility on chromosome 6p.

A single human leukocyte antigen (HLA) class II allele, DQB1*0301, is strongly associated with melanoma, and the HLA-DR locus provides the telomeric boundary for melanoma susceptibility in the HLA class II region of chromosome 6. However, the centromeric boundary is unknown. This study was designed to determine whether the adjacent upstream transporter associated with antigen processing (TAP) locus, TAP2, constitutes the centromeric boundary of disease susceptibility in melanoma. Molecular oligotyping of TAP2 genes was performed for 36 Caucasian patients with melanoma and for 32 Caucasian control individuals by both amplification refractory mutation system (ARMS) polymerase chain reaction (PCR) and PCR-sequence-specific oligonucleotide (SSO) typing. TAP2 allele frequencies in the melanoma patients were compared to those in non-melanoma Caucasian control populations, and to HLA-DQ allele frequencies determined by molecular oligotyping. While HLA-DQB1*0301 was more common in this group of 36 melanoma patients compared to a group of 200 controls (56 percent vs. 27 percent, Bonferoni-corrected chi-square p < = 0.01), no significant differences were observed in TAP2 allele frequencies between melanoma patients and controls. The TAP2 locus represents the centromeric boundary of disease susceptibility for melanoma in the class II region of chromosome 6p. These results support an etiologic role for HLA-DQB1*0301 in melanoma susceptibility.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Human cytomegalovirus infection inhibits cell cycle progression at multiple points, including the transition from G1 to S.

Human cytomegalovirus inhibits the growth of human foreskin fibroblast cells by 12 h after infection. Analysis of the cellular DNA content of infected cells by flow cytometry demonstrated that cytomegalovirus does not arrest cell cycle progression at a single point. At least two blockages occur, one of which is in the G1 phase of the cell cycle. The G1 arrest introduced by cytomegalovirus infection blocks S-phase entry after serum stimulation.

Cell Cycle↗

Nitric oxide regulates the low-conductance K+ channel in basolateral membrane of cortical collecting duct.

Two types of K+ channels, low conductance (28 pS) and intermediate conductance (85 pS), have been previously identified in the basolateral membrane of the cortical collecting duct (CCD) of the rat kidney (31, 32). In the present study, we used the patch-clamp technique to explore further the mechanism by which the low-conductance K+ channel is regulated. The conductance of the low-conductance K+ channel is inward rectifying, with an inward slope conductance of 30 pS between 0 and -20 mV and an outward slope conductance of 16 pS between 0 and 50 mV in symmetrical 140 mM KCl in the bath and in the pipette. This K+ channel was not sensitive to ATP (10 mM), tetraethylammonium chloride (5 mM), and quinidine (1 mM). Addition of 100 microM N omega-nitro-L-arginine methyl ester (L-NAME) or N omega-(imonoethyl)-L-ornithine (L-NIO), an inhibitor of nitric oxide synthase (NOS), completely blocked channel activity in cell-attached patches. In contrast, addition of 200 microM-D-NAME, which does not block NOS, had no effect on channel activity. The inhibitory effect of L-NAME or L-NIO was fully reversible and completely overcome by addition of exogenous nitric oxide (NO) donors, such as 10 microM S-nitroso-N-acetyl-penicillamine or sodium nitroprusside. Furthermore, addition of 100 microM 8-bromoguanosine 3',5'-cyclic monophosphate (8-BrcGMP) restored the activity of the channel when it had been inhibited by either L-NAME or L-NIO, indicating that the effect of NO on the channel activity was mediated by a cGMP-dependent pathway. In conclusion, NO plays a key role in the regulation of the basolateral 30-pS K+ channel and the effect of NO on channel activity is mediated by a cGMP-dependent pathway.

Adenosine Triphosphate↗

Cytochrome P-450 metabolites mediate extracellular Ca(2+)-induced inhibition of apical K+ channels in the TAL.

We used the patch-clamp technique to study the effect of extracellular Ca2+ (Ca2+o) on the activity of the apical 70-pS K+ channel in the isolated split-open thick ascending limb (TAL) of the rat kidney. Raising Ca2+o from 1.1 to 5 mM reversibly reduced the activity of the 70-pS K+ channel in cell-attached patches to 16 +/- 2% of the control value within 300 s. In addition, 50 microM neomycin mimicked the effect of an increase in Ca2+o on channel activity in cell-attached patches and completely inhibited channel activity. The effect of neomycin on the channel activity in cell-attached patches is an indirect effect, since addition of 50 microM neomycin on the 70-pS K+ channel in inside-out patches reduced only the apparent amplitude of the channel current without changing channel open probability. We examined further the role of protein kinase C (PKC) and the cytochrome P-450-dependent metabolites of arachidonic acid in mediating the Ca2+o -induced inhibition of channel activity. Addition of phorbol 12-myristate 13-acetate (2 microM) reversibly blocked channel activity in cell-attached patches to 4 +/- 1% of the control value, whereas 75 nM calphostin C increased the channel activity by 115 +/- 10%. Moreover, addition of 1 nM exogenous PKC reversibly and completely inhibited the 70-pS K+ channel. However, inhibition of PKC with calphostin C (75 nM) only slightly prolonged the time course of the effect of Ca2+o on channel activity (370 +/- 40 s) and failed to abolish the inhibitory effect of 5 mM Ca2+o on channel activity in cell-attached patches, indicating that PKC was not mainly responsible for the effect of Ca2+o on channel activity. In contrast, the effect of 5 mM Ca2+o on the apical 70-pS K+ channel was completely abolished when TAL tubules were first incubated in the 17-octadecynoic acid (5 microM)-containing solution, an agent that specifically blocks cytochrome P-450 monooxygenase. In conclusion, these data indicate that Ca2+o is an important regulator of the apical 70-pS K+ channel and that a cytochrome P-450-dependent metabolite of arachidonic acid is involved in mediating this inhibitory effect.

Adenosine Triphosphate↗

Protein kinase C stimulates the small-conductance K+ channel in the basolateral membrane of the CCD.

We have used the patch-clamp technique to study the regulation of the activity of the basolateral small-conductance K+ channel (SK) in the cortical collecting duct (CCD) of the rat kidney. Addition of 50-75 nM calphostin C, an agent which specifically inhibits protein kinase C (PKC), reduced channel activity by 90% in cell-attached patches. In contrast, addition of 1 microM phorbol 12-myristate 13-acetate, a stimulator of PKC, led to addition of "new" K+ channel currents in 9 of 20 patches in the basolateral membrane of the CCD, and the mean increase in NP0, a product of channel number (N) and open probability (Pzero), was 0.90 in these 9 patches. However, application of 1 nM exogenous PKC had no significant effect on channel activity in inside-out patches, suggesting that the PKC effect on the activity of the SK observed in cell-attached patches was not a result of a membrane-delimited action, such as a direct phosphorylation of the SK or closely associated proteins. The effect of calphostin C on the SK can be reversed by addition of either 10 microM S-nitroso-N-acetylpenicillamine, a donor of nitric oxide, or 100 microM 8-bromoguanosine 3',5'-cyclic monophosphate. In addition, the inhibitory effect of calphostin C on the SK was completely abolished by pretreatment of the cells with 1 microM okadaic acid, an inhibitor of protein phosphatase. However, 100 microM N omega-nitro-L-arginine methyl ester, an agent that inhibits nitric oxide synthases (NOS), blocked the SK in cell-attached patches in the presence of okadaic acid, suggesting that the effect of okadaic acid on calphostin C-induced inhibition of the SK was a step before formation of nitric oxide. We conclude that PKC is involved in the stimulation of the SK and that the effect of PKC on the SK may be mediated by regulation of NOS activity in the CCD of the rat kidney.

Animals↗

Use of a global test for multiple outcomes in stroke trials with application to the National Institute of Neurological Disorders and Stroke t-PA Stroke Trial.

BACKGROUND: The National Institute of Neurological Disorders and Stroke (NINDS) held a workshop on statistical approaches to analysis of acute stroke trials that have multiple pre-specified outcomes. An objective was to plan for statistical analysis of the NINDS t-PA Stroke Trial, a randomized, double-blind, placebo-controlled trial of recombinant tissue plasminogen activator (rt-PA) for patients with acute ischemic stroke. Treatment success was defined as a "consistent and persuasive difference" in the proportion of patients achieving favorable outcomes on the Barthel Index, Modified Rankin Scale, Glasgow Outcome Scale, and National Institutes of Health Stroke Scale. The Data and Safety Monitoring Committee for the trial recommended this outcome because the committee did not believe that a positive result for a single outcome would provide sufficient evidence of efficacy. SUMMARY OF COMMENT: Workshop participants accepted the global test as a viable approach to testing the primary trial hypothesis. Clinician participants advocated categorizing outcomes as favorable/unfavorable, outcomes more clinically meaningful than continuous outcomes for evaluating a drug with potentially serious side effects. They agreed that a global test was appropriate for ischemic stroke when no single outcome is accepted. Hypothetical, special-case examples illustrate that highly correlated outcomes diminish the power of the global test. NINDS t-PA Stroke Trial data demonstrate the clinical interpretability of the global test. CONCLUSIONS: Workshop participants concluded that a global statistic should be used to test the trial's primary hypothesis accompanied by secondary tests of individual outcomes. Workshop participants recommended familiarizing the clinical/scientific community with the global approach.

Acute Disease↗

Lipoprotein changes in relation to body mass index in Native American adolescents.

In view of their known high incidence of noninsulin dependent diabetes (NIDDM), we sought to determine whether Native American (Plains Indian) children and adolescents show evidence of risk factors for both NIDDM and cardiovascular disease. Children and adolescents between the ages of 4 and 19 y were recruited, and field days were organized for data collection, which included height, weight [to compute body mass index (BMI)], waist and hip circumference, family histories, quantum of Native American ancestry, and blood sampling for fasting lipids, apolipoproteins, insulin, and glucose. BMI increased with age in boys and girls and tended to be higher than in Caucasian children. The difference was significant in 5-9-y-old (p < 0.05) and 10-14-y-old (p < 0.05) boys and 10-14-y-old girls (p < 0.001). Ten- to 14-y-old girls in the highest quartile for BMI had higher triglyceride levels (p < 0.05) and lower HDL cholesterol (p < 0.001) when compared with those in the lower quartiles. In contrast, 15-19 y olds in the highest quartile for BMI had higher cholesterol, LDL cholesterol, and apolipoprotein B (p < 0.001). The mean fasting insulin levels were not related to BMI. The data suggest that, within this Plains Indian population, obesity associated with elevated lipid levels tends to begin at an early age in Native American children. Insulin levels do not appear to be related to BMI, a putative index of adiposity, in this population of children known to be prone to NIDDM in adult life.

Adolescent↗

Functional regions of the homeodomain protein IDX-1 required for transactivation of the rat somatostatin gene.

The insulin-, glucagon- and somatostatin-producing cells (beta, alpha, and delta, respectively) in the pancreatic islets derive from a common precursor stem cell and differentiate sequentially during embryonic development. The homeodomain protein islet duodenum HOX (IDX)-1 [insulin promoter factor (IPF)-1/somatostatin transactivating factor (STF)-1)] is a transcription factor critically required for both the development of the pancreas and the transcriptional expression of the insulin gene. IDX-1 may also act to determine the differentiation of the common pancreatic precursor to beta, alpha, and delta cells. Although IDX-1 is detected in most adult mouse islet beta-cells and regulates insulin gene transcription, it is also found in 15% of the delta-cells and transactivates the rat somatostatin gene. The roles of different domains of IDX-1 involved in the transactivation of the somatostatin gene are unclear. In this study, we have created a series of amino- and carboxy-terminal deletions, as well as point substitution mutations to delineate functional domains within the IDX-1 protein. We find that deletions amino-proximal to the homeodomain enhance DNA-binding to the TAAT-1 transcriptional control element within the somatostatin gene promoter. However, these amino-terminal deletions result in substantial decreases in transactivation of a transcriptional reporter containing the TAAT-1 element. Paradoxically, coexpression of the transcriptionally inactive, amino-terminally deleted IDX-1 mutant proteins, either with the wild-type IDX-1 or with themselves, results in a marked enhancement of transactivation of the transcriptional TAAT-1 element reporter. We provide evidence that this synergistic enhancement of transactivation is mediated by protein-protein interactions among the regions of IDX-1 located carboxyl-proximal to the homeodomain. Although successive deletions into the carboxy-terminal region do not alter DNA-binding, these deletions result in a biphasic enhancement and diminution of transactivation. The IDX-1 homeodomain mediates sequence- specific DNA-binding because substitution mutations within this region abolish DNA-binding. All of the amino- and carboxy-terminal deletion proteins were present in nuclear extracts of transfected cells, suggesting that nuclear localization signals reside within the IDX-1 homeodomain. The mapping of the functional domains of IDX-1 may facilitate understanding of IDX-1-mediated gene regulation and islet cell development.

3T3 Cells↗

[A brief history of western hospital in modern Shanghai].

This paper introduces the brief history of western hospital in modern Shanghai. It deals with this problem under the following three headings: missionary western hospital, public western hospital and private western hospital.

China↗

Immunihistochemical detection of Bcl-2 in AIDS-associated and classical Kaposi's sarcoma.

Kaposi's Sarcoma (KS) is an angioproliferative disease that is characterized by proliferation of spindle-shaped cells predominantly of vascular endothelial cell origin, neoangiogenesis, inflammatory cell infiltration, and edema. Although the lesions of classical KS and AIDS-associated KS (AIDS-KS) share common histological features, AIDS-KS occurs at a markedly higher frequency with a more aggressive clinical course. Immunohistochemical analyses of 26 evolutionarily staged AIDS-KS lesions derived from HIV-infected patients demonstrate significant cytoplasmic levels of Bcl-2, a protooncogene known to prolong cellular viability and to antagonize apoptosis. Bcl-2 expression increases as the pathological stage of KS advances. Immunohistochemical analyses of classical KS lesions demonstrate prevalent expression of Bcl-2 as well, indicating that upregulation of Bcl-2 may be important in the pathogenesis of both classical and AIDS-associated KS. Coexpression of Bcl-2 and factor VIII-related antigen in spindle-shaped cells present within KS lesions suggests that Bcl-2 is upregulated within the vascular endothelial spindle-shaped cells of KS. The consequences of upregulated Bcl-2 expression within KS lesions may be prolonged spindle cell viability which, when coupled with dysregulated cellular proliferation due in part to synergistic activities of inflammatory and angiogenic cytokines and HIV-1 Tat protein, may result in the maintenance, growth, and progression of KS.

Acquired Immunodeficiency Syndrome↗

Rational use of diagnostic tools in hepatitis C.

Six years after the introduction of serological tests for the detection of antibodies to HCV these diagnostic procedures have been improved significantly. The ELISA's of the third generation contain 4-5 fragments of structural and nonstructural proteins which have increased the sensitivity and specificity for antibody detection. Several confirmatory assays have been established to detect non-specific reactions. Viremia in acute and chronic HCV infection can be detected by RT-PCR. However, studies on the quality of PCR results with serum panels in a large number of diagnostic labs indicate the urgent need to standardize the RT-PCR techniques. Quantification of viral genomes during acute and chronic HCV infection seem to be of major importance to predict the response rat to IFN. Quantitative RT-PCR techniques using internal standards and the branched DNA technology have been established. Techniques for genotyping HCV isolates have been introduced which also seemed to be important for prediction of IFN response. Recently serotyping of HCV isolates has been evaluated and seems to correlate well with genotyping by RT-PCI and specific probes. The detection of quasispecies in the 5'NCR may, in the future, be an additional prospective test for the prognosis of IFN treatment.

Enzyme-Linked Immunosorbent Assay↗

[Accelerated streptokinase dose regimens for coronary thrombolysis].

Forty patients entering our hospital up to 12 hours (5.1 +/- 2.8 hours) after the onset of definite acute myocardial infarction were treated with accelerated streptokinase dose regimens (1.5 million U/30 min) intravenously. The reperfusion rate of infarct-related arteries determined by clinical evidence of reperfusion was 77.5% (31/40). There was significant difference in reperfusion rates: 89.3% (25/28) among patients within 6 hours versus 50% (6/12) among patients within 6-12 hours after the onset of chest pain. Five cases (12.5%) experienced mild bleeding complications. One patient had chill. Three patients (7.5%) had hypotension (BP < or = 10.7/6.67 kPa, 1 kPa = 7.5 mmHg). The 5 week mortality was 2.5% (1/40). In conclusion, intravenous accelerated streptokinase dose regimen for coronary thrombolysis seems to improve reperfusion rate markedly without increasing adverse events such as allergic reactions, severe bleeding and hypotension.

Adult↗

[Androgen receptor in hepatocellular carcinoma and the surrounding liver tissues in China].

To investigate the reasons why primary liver cancer (hepatocellular carcinoma, HCC) is prevalent in male, androgen receptors (AR) in cytoplasm and nucleus were quantitatively detected in tumor tissue and tumor-adjacent tissue of 23 patients with HCC and liver tissue of normal livers by means of receptor radio-ligand binding assay. The concentrations of AR in cytoplasm and nucleus were as follows: 0.20-5.30, 1.91-6.50 fmol/mg protein in normal liver tissue; 5.12-27.62, 10.73-47.18 fmol/mg protein in tumor tissue; and 3.18-14.98, 5.15-36.32 fmol/mg protein in tumor-surrounding tissue. The mean concentrations of AR in cytoplasm or nucleus decreased in the order of tumor tissue, tumor-surrounding tissue and normal liver tissue, and the differences among them were statistically significant. The concentration of AR in tumor tissue and tumor-adjacent tissue had no direct or indirect association with sex, age, abuse of alcohol, HBsAg, HBcAb, AFP, pathological type of tumor, differentiation degree of tumor cells and the underlying liver disease. The result suggests that the prevalence of HCC in male over in female in China may be somehow related to the expression of AR in tumor cells.

Adult↗

A comparative study of intravenous accelerated streptokinase dose regimen with conventional dose regimen for coronary thrombolysis.

The aim of this study is to test the patency rate and safety of the accelerated streptokinase dose regimen for coronary thrombolysis compared with the conventional one. One hundred and four patients entering three hospitals up to 12 hours after the onset of definite acute myocardial infarction were randomizely treated with intravenous accelerated streptokinase dose regimen (1.5 million units/30 min) (group A, 47 cases) and conventional dose regimen (1.5 million units/60 min) (group B, 57 casese). The reperfusion rate of infarct-related arteries determined by clinical evidence of reperfusion was 76.6% (36/47) in group A VS 61.4% (35/57) in group B. There was significant difference in reperfusion rates among patients within 6 hours after the onset of chest pain: 87.9% (29/33) in group A VS 67.4 (29/43) in group B (P < 0.05). The incidence of mild bleeding, allergic reaction, hypotension was 12.8% (6/47), 4.3% (2/47), 12.8 (6/47) respectively in group A vs 21.1 (12/57), 3.5 (2/57), 17.5% (10/57) respectively in group B. Compared to conventional dose regimen, intravenous accelerated streptokinase dose regimen for coronary thrombolysis seems to improve reperfusion rate markedly without increasing adverse events such as bleeding, allergic reaction and hypotension. It suggests that accelerated streptokinase therapy deserves more extensive investigation.

Aged↗

[Participate of nitric oxide participate in hypoxic regulation of cerebrovascular tension].

Making use of nitric oxide synthesase (NOS) inhibitor Nw-nitric-oxide-L-arginine (L-NNA), the effect of NO and the pressence of endothelial cell on hypoxia-induced vascular dilatation was studied with new-born calve basilar artery. The experimental results show that L-NNA can attenuate the hypoxia-induced vascular dilatation, but the magnitude of attenuation is smaller than that of constriction caused by L-NNA on normoxic calve basilar artery. Under hypoxia, the vascular dilatation of endothelial cell denuded artery is smaller than that of endothelial cell intact artery; the difference between them is approximate by the same as the change caused by L-NNA on endothelial call intact artery. After destroying the endothelial cell, L-NNA has no obvious effect on the vascular tension. These results suggest that NO and endothelial cell are involved in hypoxia-induced vascular dilaxation.

Animals↗