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Biomedical subjects

Z Lu

Publications and source records attributed to Z Lu.

At least 379 records · Page 21Linked to original sources

Radiofrequency catheter ablation of ventricular tachycardia in 26 patients.

Electrophysiology study and radiofrequency catheter ablation (RFCA) were performed in 26 patients with refractory sustained ventricular tachycardia (VT). After induction of VT, 12-lead electrocardiogram (ECG) was recorded and QRS morphology and axis of induced VT were studied to identify the origin of VT. The precise site of VT origin were localized by pace mapping and activation mapping carefully. RF energy was delivered through a big-tip deflectable electrode catheter when the earliest site of endocardial activation and a high-frequency and low-amplitude potential of Purkinje fiber, preceding surface QRS by more than 25 ms, were identified and/or a pace map was obtained showing identical QRS complexes in at least 11 of 12 ECG leads. VTs were ablated successfully in 24 of 26 patients (success rate was 92%). For successful ablation, it is essential that the pace map QRS morphology in 12 leads should be identical with that in spontaneous or induced VT as far as possible in performing pace mapping. Pace mapping is safe, simple and has no unfavourable effect hemodynamics although it takes longer time. Activation mapping takes shorter time and has a high success rate. QRS configuration in spontaneous VT can help to localize the site of VT origin. Deliberate mapping at the site suggested to bo the origin of VT by surface ECG can shorten the duration of mapping and increase the success rate of RFCA. RFCA of VT in patients without structural heart disease is effective, safe, and has a high success rate, so it may be considered as an early therapy for these patients.

Adolescent↗

Harmful effects of MSG on function of hypothalamus-pituitary-target gland system.

It has been demonstrated that neonatal administration of monosodium glutamate (MSG) results in a clearly defined lesion of the arcuate nucleus (AN) of the hypothalamus. The present study shows that fat was accumulated in the abdomen of male rats treated with MSG; weights of the body, pituitary and testis were lower; beta-EP content in hypothalamus decreased while L.EnK content increased; serum LH, FSH, TSH, GH and TS levels all decreased in varying degrees while serum PRL level significantly increased. The cAMP content lowered in pituitary, but nor in testes; clear histological changes occurred in testicular tissue; Se-GSH-Px activity in both testis and adrenal gland lowered while LPO level significantly increased. Both Se-GSH-Px activity and LPO level in liver increased. These results indicate that MSG is harmful to the function of the hypothalamus-pituitary-target system of neonatal rats.

Adrenal Glands↗

Geographical distribution of Pseudomonas pseudomallei in China.

1,366 samples of soil and water from southern China coastal provinces were examined for Pseudomonas pseudomallei. Data showed that 58 samples were positive for this bacteria, which is primarily distributed in Hainan Province and the coastal region of mainland. This paper confirmed the environmental presence of P. pseudomallei in China and showed that the distribution of this pathogen has at least reached a latitude of 25.5 degrees north.

Agriculture↗

[Clinical application of silica ball implant enclosed by an autologous reversal sclera in patients with enucleation].

PURPOSE: To observe the effects of improved silica ball implantation enclosed by autologous reversal sclera. METHODS: After the enucleation of eye balls, we reversed, cleared the autologous sclera, enclosed the silica ball and implanted it in the operative eye. RESULTS: 30 cases with enucleation were implanted the prosthetic eyes. The follow-up period was 6 months to 3 years. The prosthetic eyes had the motility of 10 degrees to 25 degrees and the empty socket syndrome was effectively prevented. CONCLUSION: The sargical method can overcome the defect that prosthetic eyes cannot rotate after being implanted and has got satisfactory cosmetic effects.

Adolescent↗

In vivo imaging of the interior of Tradescantia zebrina leaves by optical cross-correlation interferometry.

Using optical correlation interferometry, a novel method for plant sciences, we in imaged in vivo the z-direction, perpendicular to the leaf surface, through Tradescantia zebrina leaves. Non-invasively we determined number of major cell layers, followed the time sequence of decrease in cell z-axis after exposure of tissues to high salt, and observed disruption of cells caused by freezing and thawing.

Interferometry↗

Electrostatic tuning of Mg2+ affinity in an inward-rectifier K+ channel.

Inward-rectifier potassium channels conduct K+ across the cell membrane more efficiently in the inward than outward direction. This unusual conduction property is directly related to the biological action of these channels. One basis for inward rectification is voltage-dependent blockade by intracellular Mg2+ (refs 1, 7-9): strong inward-rectifier channels are so sensitive to intracellular Mg2+ that no outward K+ current is measurable under physiological conditions; weak inward rectifiers are less sensitive and allow some K+ to flow outwards. Background K1 channels and acetylcholine-regulated K+ channels from the heart are examples of strong inward rectifiers and ATP-sensitive K+ channels are weak rectifiers. Here we show that mutations at one position in the second transmembrane segment can alter the Mg2+ affinity and convert a weakly rectifying channel (ROMK1) into a strong rectifier. The amino acid at this position exposes its side chain to the aqueous pore and affects Mg2+ blockade as well as K+ conduction through an electrostatic mechanism.

Amino Acid Sequence↗

Specific inhibition of expression of a human collagen gene (COL1A1) with modified antisense oligonucleotides. The most effective target sites are clustered in double-stranded regions of the predicted secondary structure for the mRNA.

A series of antisense oligonucleotides (ASOs) were synthesized and tested to define the best target sites within an RNA transcript of collagen for effective inhibition of expression. The test system consisted of mouse NIH 3T3 fibroblasts that were stably transfected with a human minigene for procollagen I so that the cells simultaneously synthesized full-length mouse pro alpha 1 (I) chains and internally deleted human pro alpha 1 (I) chains. The sequences of the transcripts from both genes were compared, and a series of 28 ASOs were designed to target sites in which there were at least two base differences within a 20-nucleotide sequence between the human and mouse transcripts. Six of the ASOs specifically decreased the levels of pro alpha 1 (I) chain synthesized from the human gene without a decrease in the levels of pro alpha 1 (I) chains from the mouse endogenous gene. The most effective ASOs reduced the intracellular levels of human pro alpha 1 (I) chains relative to the mouse pro alpha 1 (I) chains to 37-67% of the control values. Combined addition of two effective ASOs or a second administration of the same effective ASO did not produce any additive effect. The results did not support previous suggestions that the best target sites for ASOs were sequences around initiation codons for translation, at intron-exon boundaries, or in single-stranded loops in hairpin structures. Also, the results did not support previous suggestions that the most effective ASOs are those with the highest affinities for their target sequences. Instead, the most consistent pattern in the data was that the most effective ASOs were those targeted to sequences that were predicted to form clustered double-stranded structures in RNA transcripts.

3T3 Cells↗

Two novel multigene families, 530 and 300, in the terminal variable regions of African swine fever virus genome.

Here, we describe two novel multigene families (MGF) present in the terminal variable regions of the African swine fever virus (ASFV) genome. MGF530 includes at least six related ORFs (averaging 530 amino acids) containing four well-conserved domains and amino acid identities ranging from 24 to 55%. MGF300 is composed of three ORFs (averaging 300 amino acids) containing three highly conserved domains and amino acid identities ranging from 25 to 46%. Amino terminal regions of predicted MGF530 and 300 proteins share significant similarity with each other and with the comparable regions of previously characterized MGF360 ORFs. Members of both MGF530 and 300 are transcribed in ASFV-infected porcine macrophages. These results indicate that the composition and organization of MGF in the terminal variable region of the ASFV genome are more complex than previously recognized.

African Swine Fever Virus↗

Genetic variability for stomatal conductance in Pima cotton and its relation to improvements of heat adaptation.

Responses of stomata to environment have been intensively studied, but little is known of genetic effects on stomatal conductance or their consequences. In Pima cotton (Gossypium barbadense L.), a crop that is bred for irrigated production in very hot environments, stomatal conductance varies genetically over a wide range and has increased with each release of new higher-yielding cultivars. A cross between heat-adapted (high-yielding) and unadapted genotypes produced F2 progeny cosegregating for stomatal conductance and leaf temperature. Within segregating populations in the field, conductance was negatively correlated with foliar temperature because of evaporative cooling. Plants were selected from the F2 generation specifically and solely for differing stomatal conductance. Among F3 and F4 populations derived from these selections, conductance and leaf cooling were significantly correlated with fruiting prolificacy during the hottest period of the year and with yield. Conductance was not associated with other factors that might have affected yield potential (single-leaf photosynthetic rate, leaf water potential). As breeders have increased the yield of this crop, genetic variability for conductance has allowed inadvertent selection for "heat avoidance" (evaporative cooling) in a hot environment.

Journal Article↗

Pandas, people and policy.

Panda conservation in China has been plagued by controversy and cultural and political differences. But international cooperation, together with new studies identifying the main threats, offer renewed hope for the species' survival.

Animals↗

Microevolution of Sabin 1 strain in vitro and genetic stability of oral poliovirus vaccine.

Mutants consistently accumulating in Sabin 1 poliovirus during serial passaging in vitro were identified by sequence heterogeneity assay and quantitated using mutant analysis by PCR and restriction enzyme cleavage (MAPREC). Only four unstable genomic sites were identified in virus passaged 10 times in African green monkey kidney (AGMK) cells, and eight sites in virus passaged in Vero cells. Mutations accumulated both in untranslated regions of RNA (nucleotides 480, 525 and 7441) and in coding sequences, as missense (nucleotides 1449, 4944, and 6203) or silent (nucleotides 1123 and 1141) mutations. The most prominent selectable mutations were found at complementary nucleotides 480 and 525 of the 5'-untranslated region (5'-UTR) of the Sabin strain, changing the G:U pair in F-domain to either A:U or G:C variants. These two variants have been shown previously to have an increased neurovirulence in monkeys. The G:C variant accumulated during passage in Vero cells, while A:U variant accumulated in CV-1 cells. Virus passaged in AGMK cells accumulated both variants. Higher temperature (37 instead of 34 degrees) strongly favored selection of mutants in Vero cells, had a smaller effect on mutant accumulation in AGMK cells, and had no effect in CV-1 cells. Monopools of type 1 oral poliovirus vaccine (OPV) made by seven manufacturers were found to contain both 480-A and 525-C revertants at a combined level of 1.1-2.7%. Viral samples with increased amounts of these revertants had higher neurovirulence in monkeys. Our results suggest that quantitation of these reversions by MAPREC may be prognostic for results of the monkey neurovirulence test (MNVT) and can be used for monitoring type 1 OPV consistency.

Animals↗

Cholecystokinin gene expression in rat amygdaloid neurons: normal distribution and effect of morphine tolerance.

Previous studies have shown that repeated opioid administration induces a tolerance to opioid, presumably due in part to an opioid-mediated compensatory increase in brain cholecystokinin (CCK) synthesis and/or release. In this study, in situ hybridization histochemistry was used to examine the effect of morphine tolerance on CCK gene expression in the amygdala of rat brains, by using a 35S-labeled synthetic oligonucleotide probe. CCK mRNA-positive neurons in normal rats were seen throughout the amygdaloid complex, with the most heavily labeled neurons in lateral, basal, and cortical nuclei, followed by the medial nucleus. Only a few labeled neurons were found in central and intercalated nuclei. The development of morphine tolerance in the rat was associated with increased hybridization signals for CCK mRNA in each subnucleus of the amygdala. Increases were seen in the numbers of positively labeled neurons and/or the numbers of hybridization grains per positively labeled neuron. Furthermore, differential patterns of increase in CCK mRNA in morphine tolerant rats occurred in different subnuclei of the amygdala, with the highest magnitude of increase in the cortical nucleus, followed in order by the medial, central, basal, intercalated and lateral nuclei. The present study demonstrated that repeated administration of morphine increased CCK gene expression in the amygdaloid complex, and suggested that the development of the tolerance to morphine analgesia is due, in part, to an increase in CCK activity in the amygdaloid complex. These findings substantiate the hypothesis that long-term administration of opioid may induce a compensatory increase in CCK synthesis and/or release, which then results in a progressive antagonism of opioid analgesia.

Amygdala↗

Mutations in the K+ channel signature sequence.

Potassium channels share a highly conserved stretch of eight amino acids, a K+ channel signature sequence. The conserved sequence falls within the previously defined P-region of voltage-activated K+ channels. In this study we investigate the effect of mutations in the signature sequence of the Shaker channel on K+ selectivity determined under bi-ionic conditions. Nonconservative substitutions of two threonine residues and the tyrosine residue leave selectivity intact. In contrast, mutations at some positions render the channel nonselective among monovalent cations. These findings are consistent with a proposal that the signature sequence contributes to a selectivity filter. Furthermore, the results illustrate that the hydroxyl groups at the third and fourth positions, and the aromatic group at position seven, are not essential in determining K+ selectivity.

Amino Acid Sequence↗

A conductance maximum observed in an inward-rectifier potassium channel.

One prediction of a multi-ion pore is that its conductance should reach a maximum and then begin to decrease as the concentration of permeant ion is raised equally on both sides of the membrane. A conductance maximum has been observed at the single-channel level in gramicidin and in a Ca(2+)-activated K+ channel at extremely high ion concentration (> 1,000 mM) (Hladky, S. B., and D. A. Haydon. 1972. Biochimica et Biophysica Acta. 274:294-312; Eisenmam, G., J. Sandblom, and E. Neher. 1977. In Metal Ligand Interaction in Organic Chemistry and Biochemistry. 1-36; Finkelstein, P., and O. S. Andersen. 1981. Journal of Membrane Biology. 59:155-171; Villarroel, A., O. Alvarez, and G. Eisenman. 1988. Biophysical Journal. 53:259a. [Abstr.]). In the present study we examine the conductance-concentration relationship in an inward-rectifier K+ channel, ROMK1. Single channels, expressed in Xenopus oocytes, were studied using inside-out patch recording in the absence of internal Mg2+ to eliminate blockade of outward current. Potassium, at equal concentrations on both sides of the membrane, was varied from 10 to 1,000 mM. As K+ was raised from 10 mM, the conductance increased steeply and reached a maximum value (39 pS) at 300 mM. The single-channel conductance then became progressively smaller as K+ was raised beyond 300 mM. At 1000 mM K+, the conductance was reduced to approximately 75% of its maximum value. The shape of the conductance-concentration curve observed in the ROMK1 channel implies that it has multiple K(+)-occupied binding sites in its conduction pathway.

Animals↗

P2u purinoceptor stimulation of surfactant secretion coupled to phosphatidylcholine hydrolysis in type II cells.

ATP is known to stimulate surfactant phospholipid secretion in type II cells, and there is evidence that this effect is mediated by a P2 purinoceptor. At least five subtypes of the P2 receptor have been reported, but it is not clear which one exists on the type II cell. To determine whether it is the P2u subtype, at which UTP is equipotent with ATP, we have compared the effects of ATP and UTP on phosphatidylcholine secretion and second messenger formation in primary cultures of rat type II cells. ATP and UTP were equally potent in stimulating phosphatidylcholine secretion and phospholipase D activation. The potency order, UTP = ATP > ADP > 2-methylthio-ATP, was the same as that reported for the P2u receptor. UTP stimulated diacylglycerol and phosphatidic acid formation to the same extent as ATP. ATP also increased choline formation. Formation of diacylglycerol was biphasic, and the first peak in response to ATP was previously shown to be associated with inositol trisphosphate formation. Northern analysis showed that the P2u receptor gene was expressed to a greater extent in type II cells than in whole lung. These data suggest that ATP and UTP act via a P2u receptor that is coupled to phosphoinositide-specific phospholipase C with subsequent activation of phospholipase D acting on phosphatidylcholine. ATP has also been reported to act at an additional type II cell receptor coupled to adenylate cyclase. In contrast, UTP did not promote adenosine 3',5'-cyclic monophosphate formation and therefore does not act at that receptor.

Adenosine Triphosphate↗