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Biomedical subjects

J Xiong

Publications and source records attributed to J Xiong.

At least 55 records · Page 3Linked to original sources

[Study on relative factors in endoscopic sinus surgical procedure].

OBJECTIVE: In order to investigate the factors which affect the operative treatment effect of FESS. METHOD: 215 cases suffered functional endoscopic sinus surgery (FESS) from May 1994 to December 1997 were analysed. RESULT: The clinical curative rate was 75.8% and the improving rate was 96.3%. CONCLUSION: The effect shows that surgical procedure is closely related to following factors: mechanic of operation, drugs taken in pre-operation, kinds of anesthsia, clinical stage of chronic sinusitis, nasal poplys and skill of surgeons.

Adolescent↗

[Study on bacterial strains in conjunctival sac before and after intraocular surgery].

PURPOSE: To investigate the changes of bacterial strains in the conjunctival sac before and after intraocular surgery, as well as clinical effects of preoperative antibiotic agents. METHODS: One hundred and thirty-three eyes with intraocular surgery included 68 eyes with cataract surgery, 39 eyes with glaucoma surgery, 20 eyes with retinal detachment surgery and 6 eyes with vitretomy. Bacterial culture and pharmacologic sensitivity test were performed on the conjunctival smear from the 133 eyes with intraocular surgery before and after the operation and the anterior chamber aspirate from the 68 eyes with cataract surgery after the operation. RESULTS: At the time of admission, 61 eyes(45.8%) of 133 eyes with intraocular surgery were culture-positive conjunctival smears with the following identified: Staphlococcus aureus: 23 eyes; Staphlococcus epidermidis: 25 eyes; Gram-positive rods: 13 eyes. 8 eyes(6%) had culture-positive conjunctival smears before disinfection, (Staphlococcus aureus: 3 eyes; Staphlococcus epidermidis: 5 eyes). One eye(1.5%) had culture-positive Staphylococcus epidermidis in anterior chamber aspirate of 68 eyes with cataract surgery at conclusion of surgery. Also, 4 eyes(3%) were culture-positive conjunctival smears after surgery. All the bacterial strains of the group were sensitive to Tobramycin, Gentamycin, Cephradinum(Velosel), Vancomycinum and Rifampin, but they were resistance to Tetracyclinum, Chloromycetin, Erythromycin and Ofloxacin. Eye Science 1999; 15: 267-269. CONCLUSION: In order to prevent bacterial endophthalmitis after intraocular surgery, installation of an useful antibiotic eye drop before the surgery is important.

Adult↗

Tracking molecular evolution of photosynthesis by characterization of a major photosynthesis gene cluster from Heliobacillus mobilis.

A DNA sequence has been obtained for a 35.6-kb genomic segment from Heliobacillus mobilis that contains a major cluster of photosynthesis genes. A total of 30 ORFs were identified, 20 of which encode enzymes for bacteriochlorophyll and carotenoid biosynthesis, reaction-center (RC) apoprotein, and cytochromes for cyclic electron transport. Donor side electron-transfer components to the RC include a putative RC-associated cytochrome c553 and a unique four-large-subunit cytochrome bc complex consisting of Rieske Fe-S protein (encoded by petC), cytochrome b6 (petB), subunit IV (petD), and a diheme cytochrome c (petX). Phylogenetic analysis of various photosynthesis gene products indicates a consistent grouping of oxygenic lineages that are distinct and descendent from anoxygenic lineages. In addition, H. mobilis was placed as the closest relative to cyanobacteria, which form a monophyletic origin to chloroplast-based photosynthetic lineages. The consensus of the photosynthesis gene trees also indicates that purple bacteria are the earliest emerging photosynthetic lineage. Our analysis also indicates that an ancient gene-duplication event giving rise to the paralogous bchI and bchD genes predates the divergence of all photosynthetic groups. In addition, our analysis of gene duplication of the photosystem I and photosystem II core polypeptides supports a "heterologous fusion model" for the origin and evolution of oxygenic photosynthesis.

Bacteria↗

Homozygous deletions at 3p12 in breast and lung cancer.

We have constructed a physical map of the region homozygously deleted in the U2020 cell line at 3p12, including the location of putative CpG islands. Adjacent to one of these islands, we have identified and cloned a new gene (DUTT1) and used probes from this gene to detect two other homozygous deletions occurring in lung and breast carcinomas: the smallest deletion is within the gene itself and would result in a truncated protein. The DUTT1 gene is a member of the neural cell adhesion molecule family, although its widespread expression suggests it plays a less specialized role compared to other members of the family.

Breast Neoplasms↗

Loss of inhibition by formate in newly constructed photosystem II D1 mutants, D1-R257E and D1-R257M, of Chlamydomonas reinhardtii.

Formate is known to cause significant inhibition in the electron and proton transfers in photosystem II (PSII); this inhibition is uniquely reversed by bicarbonate. It has been suggested that bicarbonate functions by providing ligands to the non-heme iron and by facilitating protonation of the secondary plastoquinone QB. Numerous lines of evidence indicate an intimate relationship of bicarbonate and formate binding of PSII. To investigate the potential amino acid binding environment of bicarbonate/formate in the QB niche, arginine 257 of the PSII D1 polypeptide in the unicellular green alga Chlamydomonas reinhardtii was mutated into a glutamate (D1-R257E) and a methionine (DQ-R257M). The two mutants share the following characteristics. (1) Both have a drastically reduced sensitivity to formate. (2) A larger fraction of QA- persists after flash illumination, which indicates an altered equilibrium constant of the reaction QA-QB<-->QA QB-, in the direction of [QA-], or a larger fraction of non-QB centers. However, there appears to be no significant difference in the rate of electron transfer from QA- to QB. (3) The overall rate of oxygen evolution is significantly reduced, most likely due to changes in the equilibrium constant on the electron acceptor side of PSII or due to a larger fraction in non-QB centers. Additional effects on the donor side cannot yet be excluded. (4) The binding affinity for the herbicide DCMU is unaltered. (5) The mutants grow photosynthetically, but at a decreased (approximately 70% of the wild type) level. (6) The Fo level was elevated (approximately 40-50%) which could be due to a decrease in the excitation energy transfer from the antenna to the PSII reaction center, and/or to an increased level of [QA-] in the dark. (7) A decreased (approximately 10%) ratio of F685 (mainly from CP43) and F695 (mainly from CP47) to F715 (mainly from PSI) emission bands at 77 K suggests a change in the antenna complex. Taken together these results lead to the conclusion that D1-R257 with the positively charged side chain is important for the fully normal functioning of PSII and of growth, and is specially critical for the in vivo binding of formate. Several alternatives are discussed to explain the almost normal functioning of the D1-R257E and D1-R257M mutants.

Animals↗

Evaluation of hemispheric dominance for language using functional MRI: a comparison with positron emission tomography.

The utility of a conventional (i.e., nonecho-planar) functional magnetic resonance imaging (fMRI) technique to determine hemispheric dominance for language was assessed using a semantic generation task in which subjects were presented with a series of nouns and generated aloud a verb for each one. A direct comparison of the fMRI results with positron emission tomography (PET), acquired from the same subjects, was also performed. When analyzed by group averaging, the results of this work were in concordance with those of previous PET studies, showing a left hemispheric dominance for language. Analyzed on a individual basis, 7 out of 9 subjects were left-hemisphere dominant and 2 subjects were right-hemisphere dominant; this applied with both PeT and fMRI methods. The direct comparison between PET and fMRI further demonstrated that fMRI can replicate PET findings. Of the total activation foci detected by PeT, 92% were observed by fMRI. On the other hand, fMRI reported 64% more activations than did PET. This may reflect differences in procedure, spatial resolution, sensitivity, and the underlying physiological mechanism between PET and fMRI. This study suggests that the fMRI technique, even using conventional MRI scanners, could be clinically useful in evaluating hemispheric dominance for language on an individual subject-by-subject basis.

Adult↗

The DUTT1 gene, a novel NCAM family member is expressed in developing murine neural tissues and has an unusually broad pattern of expression.

A new member of the NCAM family mapping to 3p12 has been isolated and predicted to be arranged in five immunoglobulin-like domains and three fibronectin-like domains which are particularly homologous to L1. There is a transmembrane domain and a long cytoplasmic region with no detectable homology to other sequences. Although less closely related to DCC, another family member, both share a loop of positively charged amino acids within the first immunoglobulin domain, unique to these two members of this very large gene family. Preliminary studies of expression in mouse embryos support an inferred role in neural development, but the observation of widespread gene expression in adult human tissues indicates that this protein has additional functions to those performed in neural cells.

Amino Acid Sequence↗

[The A1- and non A1-effects of N6-(5-hydroxy-2-pyridyl)-methyl-adenosine on rat vas deferens].

N6-(5-hydroxy-2-pyridyl)-methyl-adenosine (HPMA) is a novel N6-substituted adenosine analogue recently obtained from Armillaria mellea (an edible fungus on which depends the growth of the famous Chinese traditional drug Gastrodia elata). It has been shown to have some characters of A1 receptor agonists of purinergic nerve. In this study, we compared the effects of HPMA with that of N6-Cyclohexyladenosine(CHA), an A1 selective agonist, on rat vas deferens in vitro, and found remarkable differences between them. In our study, HPMA dose-dependently decreased the contraction responses to exogenous Phenylephrine (PE), Norepinephrine (NE) and Acetylcholine(ACh) on rat vas deferens, while CHA showed no effect on these responses. 8-Cyclopentyl-1,3-dipropylxanthine(DPCPX), an A1 selective antagonist, did not show any influence on these effects of HPMA, indicating that the depression effect of HPMA may be through a non-A1 mechanism. Using HPMA to decrease about 50% of the twitch responses evoked by field-stimulation on rat vas deferens, the responsiveness to exogenous ACh seemed to be similar to that without HPMA pretreatment. These indicate that HPMA at this dosage (IC50 dosage) preferentially acted on presynapse (may be the A1 receptor) to attenuate the release of neurotransmitters. At a high dosage (10(-5) mol.L-1), HPMA abolished the neurogenic twitch responses evoked by electrical field-stimulation, while the responsiveness of rat vas deferens to exogenous ACh was decreased showing both pre-synapse and post-synapse depression.

Adenosine↗

[Effect of dl-3-N-butylphthalide on the expression of hsp70 mRNA and c-fos in transient cerebral ischemic and reperfused rat brain].

Transient cerebral ischemia may cause striking changes in gene expression in rat brain. The induction of heat shock protein 70 (hsp70) mRNA is considered to be an important marker of cerebral ischemia injury, and c-fos may upregulate the expression of other genes related to the secondary injuries. dl-3-n-Butylphthaline(NBP) had been shown to have good anti-cerebral ischemic effect. Using the in situ hybridization and Northern blot technique, the effect of NBP on the expression of hsp70 mRNA and c-fos in transient middle cerebral artery occlusion (MCAo) rat caused by intraluminal thread was studied, and found that the expression of hsp70 mRNA was at the lesioned site at 1 h of reperfusion. It increased gradually with the duration of reperfusion time and peaked at 12 h at the lesioned site. With NBP treatment(i.p. 10 mg.kg-1 10 min before ischemia or 20 mg.kg-1 after ischemia), the expression of hsp70 mRNA attenuated significantly. For c-fos, the expression appeared at 0.5 h of reperfusion, peaked at 3 h, and decreased at 6 h. NBP pretreatment (10 mg.kg-1 10 min before ischemia) also decreased the c-fos expression. The same results were obtained with Northern blot technique. Since NBP had been shown to have good anti-cerebral ischemic effects, the attenuating effect on gene expression seemed to be the secondary effect after the alleviation of tissue injury.

Animals↗

[Ultrasensitive analysis of R6G and R110 in solution].

This paper describes the ultrasensitive detection of R6G and R110 in a flowing aqueous sample, based on laser-induced fluorescence (LIF) combined with mode-locked pulsed excitation and time-correlated single-photon counting. A high repetition rate mode-locked argon ion laser operated at 514.5 nm was used as the excitation source. The laser beam was found tightly into a thin wall capillary flow cell. The probe volume was about 12.6 x 10(-12)L. Fluorescence was collected at 90 degrees using a x 40 microscope objective, and was detected by a fast response PMT detector. A time-gate was used to discriminate Raman scattering light background. Using the criterion of 3 standard deviations above background, the detection limits obtained for R6G and R110 were 3.8 x 10(-14) mol/L and 1 x 10(-13) mol/L respectively, and the average probability was lower than 1 in the presence of a R6G or a R110 molecule in the detection volume.

Lasers↗

Transmission and natural regulation of infection with Ascaris lumbricoides in a rural community in China.

A longitudinal study on a cohort of 215 people who remained untreated from June 1993 to June 1994 was carried out using fecal egg counts to examine the course of transmission and aspects of the natural regulation of the infection with Ascaris lumbricoides. The results indicate that the parasite population remained relatively stable during the years since overall prevalence remained steady above 60%. About 40% of the people in the cohort retained their infection intensity status throughout the year, in terms of light, medium, and heavy infections. The regulation of infection in the population could be attributed to the tendency for the loss of worms from people with initial light infections and the movement to medium infection intensity status of people with both light and heavy infections. Compared with adults, children showed a stronger tendency of retaining initial medium infections but weaker tendencies for keeping initial light infections and clearing themselves of infection. Predisposition to light and medium infections was detected in people who had experienced an uninfected period of 4-12 mo before reinfection was established.

Adolescent↗

Modification of the photosystem II acceptor side function in a D1 mutant (arginine-269-glycine) of Chlamydomonas reinhardti.

Bicarbonate anions have a strong positive influence on the electron and proton transfers in photosystem II (PS II). It has been suggested that bicarbonate binds to the non-heme iron and the QB binding niche of the PS II reaction center. To investigate the potential amino acid binding environment of bicarbonate, an arginine residue (R269) of the D1 protein of PS II of Chlamydomonas reinhardtii was mutated into a glycine; our characterization of the resultant mutant (D1-R269G) shows that both the TyrD+ and QA- Fe2+ EPR signals are substantially reduced and assembly of the tetranuclear Mn is lost (R.S. Hutchison, J. Xiong, R.T. Sayre, Govindjee, Biochim. Biophys. Acta 1277 (1996) 83-92). In order to understand the molecular implications of this mutation on the electron acceptor side of PS II, we used chlorophyll (Chl) a fluorescence as a probe of PS II structure and function, and herbicide binding as a probe for changes in the QB binding niche of PS II. Chl fluorescence measurements with the heterotrophically grown D1-R269G mutant cells (or thylakoids), as compared to that of the wild type, show that: rate of electron transfer from QA to the plastoquinone pool, measured by flash-induced Chl a fluorescence decay kinetics, is reduced by - 17 fold; the minimum Chl a fluorescence yield when all QA- is oxidized, is elevated by 2 fold; the level of stable charge separation as inferred from variable Chl fluorescence is reduced by 44%; binary oscillation pattern of variable Chl a fluorescence obtained after a series of light flashes is absent, indicative of the loss of functioning of the two-electron gate on the PS II acceptor side; 77 K PS II Chl a fluorescence emission bands (F685 and F695) are reduced by 20-30% (assuming no change in the PS I emission band). Thermoluminescence data with thylakoids show the absence of the S2QA- and S2QB- bands in the mutant. Herbicide 14C-terbutryn binding measurements, also with thylakoids, show that the QB niche of the mutant is significantly modified, at least 7-8 fold increased terbutryn dissociation constant is shown (220 nM in the mutant versus 29 nM in the wild type); the PS II sensitivity to bicarbonate-reversible formate inhibition is reduced by 5 fold in the mutant, although the formate/bicarbonate binding site still exists in the mutant. This suggests that D1-R269 must play some role in the binding niche of bicarbonate. On the basis of the above observations, we conclude that the D1-R269G mutation has not only altered the structure and function of PS II (QB niche being abnormal), but may also have a decreased net excitation energy transfer from the PS II core to the reaction center and/or an increased number of inactivated reaction center II. We also discuss a possible scenario for these effects using a recently constructed three dimensional model of the PS II reaction center.

Animals↗

Isoflurane produces marked and nonlinear decreases in the vasoconstriction and shivering thresholds.

In summary, we present a new model for evaluating thermoregulatory effects of drug administration, pregnancy, illness, etc. Specifically, we experimentally manipulated both skin and core temperatures, and subsequently compensated for the changes in skin temperature using the relationships between skin and core contributions to thermoregulatory control. We thus were able to report our results for warm- and cold-responses in terms of calculated core-temperature thresholds at a single designated skin temperature. Advantages of this model include its being nearly noninvasive and requiring relatively little core temperature manipulation. Using this technique, we have shown that the shape and magnitude of thermoregulatory impairment produced by various anesthetic drugs differs. Propofol linearly increases the sweating threshold and linearly decreases the vasoconstriction and shivering threshold. In contrast, volatile anesthetics produce a nonlinear reduction in the major cold-response thresholds, reducing the vasoconstriction and shivering thresholds disproportionately at higher anesthetic concentrations. Midazolam not only produces a different magnitude of thermoregulatory impairment, but also a novel pattern of threshold changes. Anesthetic-induced thermoregulatory impairment thus depends both on anesthetic type and dose.

Anesthetics, Inhalation↗

Thermoregulatory vasoconstriction does not impede core warming during cutaneous heating.

Recent studies evaluating perioperative cutaneous-to-core heat transfer indicate that: Thermoregulatory vasoconstriction prevents further core cooling in anesthetized subjects during mild cooling. Thermoregulatory vasoconstriction only slightly decreases core cooling rates in anesthetized subjects during vigorous cooling. Thermoregulatory vasoconstriction does not impair vigorous core rewarming during anesthesia. Vigorous postanesthetic cutaneous warming increases core temperature much faster than passive insulation. Under conditions of mild thermal stress, thermoregulatory vasoconstriction is thus able to protect core temperature by reducing cutaneous heat transfer and functionally isolating the peripheral and core thermal compartment. Consequently, anesthetic-induced alterations in vasomotor tone is one of the major factors influencing core temperature in patients who are not actively cooled or warmed. In contrast, thermoregulatory tone is insufficient to prevent core temperature perturbations in patients undergoing vigorous cutaneous cooling or warming.

Body Temperature Regulation↗

Magnetization and diffusion effects in NMR imaging of hyperpolarized substances.

The special magnetization characteristics of hyperpolarized noble gases have led to an interest in using these agents for new MRI applications. In this note, the magnetization effects and NMR signal dependence of two noble gases, 3He and l29Xe, are modeled across a range of gradient-echo imaging parameters. Pulse-sequence analysis shows a wide variation in optimum flip angles between imaging of gas (e.g., 3He or 129Xe) in air spaces (e.g., trachea and lung) and in blood vessels. To optimize imaging of the air spaces, it is also necessary to reduce the otherwise substantial signal losses from diffusion effects by increasing voxel size. The possibility of using hyperpolarized 129Xe for functional MRI (fMRI) is discussed in view of the results from the blood flow analysis. The short-lived nature of the hyperpolarization opens up new possibilities, as well as new technical challenges, in its potential application as a blood-flow tracer.

Humans↗

Influence of thermoregulatory vasomotion and ambient temperature variation on the accuracy of core-temperature estimates by cutaneous liquid-crystal thermometers.

BACKGROUND: Recently, liquid crystal skin-surface thermometers have become popular for intraoperative temperature monitoring. Three situations during which cutaneous liquid-crystal thermometry may poorly estimate core temperature were monitored: (1) anesthetic induction with consequent core-to-peripheral redistribution of body heat, (2) thermoregulatory vasomotion associated with sweating (precapillary dilation) and shivering (minimal capillary flow), and (3) ambient temperature variation over the clinical range from 18-26 degrees C. METHODS: The core-to-forehead and core-to-neck temperature difference was measured using liquid-crystal thermometers having an approximately 2 degrees C offset. Differences exceeding 0.5 degree C (a 1 degree C) temperature range) were a priori deemed potentially clinically important. Seven volunteers participated in each protocol. First, core-to-peripheral redistribution of body heat was produced by inducing propofol/desflurane anesthesia; anesthesia was then maintained for 1 h with desflurane. Second, vasodilation was produced by warming unanesthetized volunteers sufficiently to produce sweating; intense vasoconstriction was similarly produced by cooling the volunteers sufficiently to produce shivering. Third, a canopy was positioned to enclose the head, neck, and upper chest of unanesthetized volunteers. Air within the canopy was randomly set to 18, 20, 22, 24, and 26 degrees C. RESULTS: Redistribution of body heat accompanying induction of anesthesia had little effect on the core-to-forehead skin temperature difference. However, the core-to-neck skin temperature gradient decreased approximately 0.6 degree C in the hour after induction of anesthesia. Vasomotion associated with shivering and mild sweating altered the core-to-skin temperature difference only a few tenths of a degree centigrade. The absolute value of the core-to-forehead temperature difference exceeded 0.5 degree C during approximately 35% of the measurements, but the difference rarely exceeded 1 degree C. The core-to-neck temperature difference typically exceeded 0.5 degree C and frequently exceeded 1 degree C. Each 1 degree C increase in ambient temperature decreased the core-to-fore-head and core-to-neck skin temperature differences by less than 0.2 degree C. CONCLUSIONS: Forehead skin temperatures were better than neck skin temperature at estimating core temperature. Core-to-neck temperature differences frequently exceeded 1 degree C (a 2 degrees C range), whereas two thirds of the core-to-forehead differences were within 0.5 degree C. The core-to-skin temperature differences were, however, only slightly altered by inducing anesthesia, vasomotor action, and typical intraoperative changes in ambient temperature.

Adult↗

Basic principles and neurosurgical applications of positron emission tomography.

Positron emission tomography (PET) is a technique for studying functional processes in the human body in vivo. The important clinical applications of PET in neurosurgery include localization of epileptic foci, diagnosis of brain tumors, preoperative brain mapping, and the study of plasticity of the brain following brain damage. The basic physics and neurosurgical applications of PET are presented.

Brain Neoplasms↗

[A four-box multi-function testing system of pharmacology reaction].

The organism position matrix method, a new method of testing pharmacology reaction is proposed. On the basis of the method, we have developed a four-box multi-function testing system which can test the spontaneous activity, analgesic effect, and learning and memory ability of 1 to 4 mice in three dimensions respectively. Four quantitative parameters, the total distance, the movement intensity, the vertical number and the jumping number are put forward to describe the spontaneous activity. The starting time of continuous jumping and the jumping number are used to describe the analgesic effect. The time from the electrical shock to escape onto a safety platform and the number of the electrical shock are used to describe the learning and memory ability. The system has the characteristics of good repeatability, high efficiency, quantitative and automatic control.

Animals↗