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S Sun

Publications and source records attributed to S Sun.

At least 271 records · Page 15Linked to original sources

[The anatomy of the maxillary ostium and the middle meatus antrostomy].

Serial cadaver dissections were performed and the anatomy of the natural ostium of the maxillary sinus and its adjacent structures observed. The results showed obvious anatomic variations. In most cases, the maxillary ostium was located in the infundibulum, directly under the orbit. The average distance was 1.1 cm from the maxillary ostium to the anterior maxillary wall, showing the anatomic relationship of the maxillary ostium with the nasolacrimal duct. The close anatomic relationship between the antronasal channel and orbit was demonstrated by radiography. A retrospective review of 70 middle meatal antrostomies was conducted and discussed. The anatomy of the antronasal channel should be well understood by an endoscope sinus surgeon in order to perform the middle meatal antrostomy without injuring the orbit and nasolacrimal duct.

Endoscopy↗

Rapid kinetics of the EPR-active species formed during initial iron uptake in horse spleen apoferritin.

The molecular mechanism of oxidative deposition of iron in ferritin is incompletely understood. In this study, EPR-active species produced during ferritin reconstitution (10-50 Fe/protein) from the apoprotein, Fe2+, and O2 have been investigated using rapid-mixing freeze-quench techniques and EPR spectroscopy. Species studied include a monomeric Fe(3+)-protein complex (g' = 4.3), a mixed-valent Fe(2+)-Fe3+ complex (g' = 1.87), and a newly observed radical with axial symmetry (g parallel = 2.042, g perpendicular = 2.0033), all apparent intermediates formed during the first second of iron oxidation. The monomeric Fe(3+)-protein complex is the principal EPR-observable product of iron(II) oxidation and is produced quantitatively in the first phase of the reaction with the mixed-valent species and the radical formed at slower rates. The initial rate of formation of the monomeric complex (and the radical) is first-order in Fe2+ concentration, consistent with a mechanism in which iron oxidation occurs in a one-electron step(s) with H2O2 being the final product of O2 reduction. A 1:1 relationship between the disappearance of the monomeric Fe(3+)-protein complex and the formation of the mixed-valent Fe(2+)-Fe3+ species was observed in the early phase of the reaction, indicating that the latter is derived from the former and not from the one-electron oxidation of a preformed Fe(2+)-Fe2+ dimer. The g-factors and rapid EPR relaxation properties of the transient radical suggest that it is associated with an Fe2+ (or Fe3+) center but its identity and possible functional role in iron oxidation are unknown.

Animals↗

RNA editing of transcripts of a chimeric mitochondrial gene associated with cytoplasmic male-sterility in Brassica.

The orf224 gene is a chimeric open reading frame associated with the Polima or pol cytoplasmic male sterility of Brassica napus. The first 58 codons and 5' upstream region of orf224 are derived from a conventional mitochondrial gene, orfB, while the origin of the remaining portion of the gene is unknown. Transcripts of the orf224 gene were found to be edited at a single site in the region of the gene that does not correspond to a known sequence. Oligonucleotides corresponding to the edited and unedited forms were shown to hybridize specifically to respective in vitro orf224 transcripts. Analysis of floral mtRNA by this method indicated that virtually all orf224 transcripts of both sterile and fertile, nuclear-restored pol cytoplasm plants are edited. Our results indicate that transcripts of novel, CMS-associated genes may be edited, but that, at least in this case, the degree of editing does not appear to be directly related to the male-sterile phenotype.

Amino Acid Sequence↗

Prolonged use of cyclosporine (CsA) produces reversible hemodynamic and absorptive alterations in the transplanted rat small intestine.

Cyclosporine (CsA)-induced alterations in organ blood flow (BF) and function have been studied in kidney and pancreatic transplants. In this study, we assessed the effect of prolonged CsA administration on graft tissue BF and absorption from transplanted rat small intestine (SI). Isogeneic SI transplantation was performed in Lewis rats. Animals were grouped based upon the following treatment schedules: no treatment for 1 week in group 1; 0.15 ml/kg/day im olive oil for 1 week in group 2; 0.15 ml/kg/day olive oil for 1 week and then 0.1 ml/kg/day for 5 weeks in group 3; 15 mg/kg/day im CsA for 1 week in group 4; and 15 mg/kg/day CsA for 1 week and then 10 mg/kg/day for 5 weeks in group 5. Group 6 was the same as group 5 but CsA was withdrawn for 1 week prior to assessment. Maltose absorption was measured to evaluate graft absorptive function. BF and its intramural distribution to mucosal and serosal/muscularis layers were determined using the radioactive microsphere technique. Perfusion pressure was measured to calculate vascular resistance (VR). One week of CsA of administration in group 4 resulted in a significant increase in mucosal VR (68.4 +/- 15.5 versus 46.9 +/- 8.7 U/g, P < 0.01) and significant decreases in mucosal BF (1.21 +/- 0.25 versus 1.80 +/- 0.38 ml/g/min, P < 0.01) and maltose absorption 30 min after loading (168.9 +/- 21.1 versus 214.4 +/- 28.4 glucose mg/dl, P < 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Protein sequence and structure relationship ARMA spectral analysis: application to membrane proteins.

If it is assumed that the primary sequence determines the three-dimensional folded structure of a protein, then the regular folding patterns, such as alpha-helix, beta-sheet, and other ordered patterns in the three-dimensional structure must correspond to the periodic distribution of the physical properties of the amino acids along the primary sequence. An AutoRegressive Moving Average (ARMA) model method of spectral analysis is applied to analyze protein sequences represented by the hydrophobicity of their amino acids. The results for several membrane proteins of known structures indicate that the periodic distribution of hydrophobicity of the primary sequence is closely related to the regular folding patterns in a protein's three-dimensional structure. We also applied the method to the transmembrane regions of acetylcholine receptor alpha subunit and Shaker potassium channel for which no atomic resolution structure is available. This work is an extension of our analysis of globular proteins by a similar method.

Amino Acid Sequence↗

Inhibition of neointimal hyperplasia by blocking alpha V beta 3 integrin with a small peptide antagonist GpenGRGDSPCA.

PURPOSE: Neointimal hyperplasia is a leading cause of restenosis after vascular procedures. Recent findings showed that smooth muscle cell (SMC) migration from the media into the neointima is a critical step in the development of the hemodynamically compromising neointimal lesion. Moreover, integrins are believed to play a role in SMC motility. Therefore we studied the role of one ubiquitous integrin, alpha V beta 3, in SMC migration. METHODS: Transwell assay was used to study in vitro migration of human and rabbit SMCs after stimulation with platelet-derived growth factor (PDGF). A neutralizing monoclonal antibody to alpha V beta 3, LM609, and a specific arginine-glycine-aspartic acid (RGD) antagonist, GpenGRGDSPCA, were used in the migration assay to inhibit alpha V beta 3-mediated SMC migration. In addition, GpenGRGDSPCA was administered locally to rabbit carotid artery after balloon angioplasty to determine the effect of blocking alpha V beta 3 on neointimal hyperplasia. RESULTS: We showed that PDGF-induced human SMC migration is mediated by the alpha V beta 3 integrin by use of LM609 to inhibit migration and that SMC migration is RGD dependent by use of GpenGRGDSPCA to inhibit migration. We have also inhibited rabbit SMC migration with GpenGRGDSPCA to demonstrate the cross-species preservation of the RGD peptide sequence in SMC mortality. Finally, when we administered GpenGRGDSPCA locally to rabbit carotid artery after balloon angioplasty, there was a statistically significant reduction in neointimal lesion formation compared with arteries administered an inactive peptide or saline solution. CONCLUSIONS: We have demonstrated the important role of the alpha V beta 3 integrin in SMC migration in vitro and in neointimal hyperplasia in vivo.

Amino Acid Sequence↗

An antigenic recombinant fusion protein from Trichinella spiralis induces a protective response in BALB/c mice.

A previously reported recombinant lambda Ts39 fusion protein (FP) derived from Trichinella spiralis larvae was purified by affinity chromatography using an anti-beta-galactosidase antibody conjugated column and the effect of FP on induction of a protective response in mice was studied. BALB/c mice were injected three times at weekly intervals with FP emulsified in an equal volume of Freund's complete adjuvant and one week after the last injection mice were each challenged with a lethal dose of 1200 L1 larvae of Trichinella spiralis. As a result, the FP induced significant protection. Mice were also infected orally with 250 L1 larvae each after injection of the FP. On the 35th day of infection, immunized mice with the FP harboured 78% fewer muscle larvae than saline controls. Also, the numbers of adult worms in the small intestine were smaller in FP injected mice than saline controls on day 6 and 9 of the infection. These results suggest that the recombinant lambda Ts39 FP is a potentially valuable antigen for vaccine development.

Animals↗

Complete structure of the gene encoding an immunodominant antigen of Dirofilaria immitis and larva-specific synthesis of primary transcript.

The complete gene encoding an immunodominant antigen of Dirofilaria immitis was isolated from a Charomid 9-36 genomic DNA library. This genomic DNA clone termed 'Dg2' was characterized by restriction mapping, DNA sequencing of the 5' flanking region, the exon/intron boundaries and the polyadenylation addition site. The Dg2 with 4872 bp in length consisted of five exons interspersed with four introns. These exons reveal a single open reading frame followed by a long 3' non-coding region of 1383 bp. The open reading frame of 969 bp encodes a polypeptide of 322 amino acids with a molecular weight of 34,400. The ATG translation initiation codon starts 22 nucleotides downstream from the 5' end of the first exon. The polyadenylation signal sequence. AATAAA, is located at the 3' end of the last exon. The transcription initiation site was determined by primer extension technique. S1 nuclease mapping analysis demonstrated that the primary transcript derived from Dg2 is synthesized in microfilariae but not in male or female adult worms. The result suggests that the stage-specific expression of Dg2 is regulated at the level of primary transcript.

Amino Acid Sequence↗

Gastric intramural PCO2 as monitor of perfusion failure during hemorrhagic and anaphylactic shock.

Indirect measurement of gastric intramural pH (pHG) utilizing a luminal tonometer in the stomach has been proposed for monitoring the severity and progression of perfusion failure. In the present study, we investigated gastric PCO2 and pHG as indicators and quantitators of the severity of perfusion failure in the experimental rodent model of both hemorrhagic and anaphylactic shock. Gastric intramural PCO2 (PGCO2) and pHG were directly measured with miniaturized sensors inserted into the anterior wall of the stomach. In hemorrhagic shock, animals were bled into a reservoir maintained at a pressure of 35 mmHg. pHG decreased from 7.39 +/- 0.08 to 6.67 +/- 0.11 (P < 0.01), and PGCO2 increased from 53 +/- 4 to 136 +/- 3 Torr (P < 0.01). Anaphylactic shock was induced in animals that had been sensitized 21 days before with crystallized ovalbumin. Antigen challenge produced an immediate reduction in mean aortic pressure from 144 to 60 mmHg. pHG decreased from 7.40 +/- 0.05 to 6.99 +/- 0.07 (P < 0.01), and PGCO2 increased from 48 +/- 5 to 133 +/- 9 Torr (P < 0.01). The increases in PGCO2 were highly correlated with decreases in gastric blood flow in both hemorrhagic (r = 0.96) and anaphylactic shock (r = 0.92). The correlations with pHG were more moderate. These experiments demonstrated prominent increases in PGCO2 and H+ during both hemorrhagic and anaphylactic shock. We further noted that the estimation of pHG based on the assumption that HCO3-concentrations of the stomach wall and arterial blood are the same was not fully sustained.

Anaphylaxis↗

Spontaneous gasping during cardiopulmonary resuscitation without mechanical ventilation.

Spontaneous gasping is frequently observed during cardiac arrest, especially when mechanical ventilation is withheld during precordial compression. We related spontaneous gasping to pulmonary gas exchange and cardiac resuscitability in a rodent model of cardiac arrest. Ventricular fibrillation was electrically induced in 15 Sprague-Dawley rats. After 4 min untreated ventricular fibrillation, precordial compression was initiated. Coronary perfusion pressure was maintained between 25 and 30 mm Hg. Oxygen was supplied at the tracheal tube port coincident with start of precordial compression in 10 animals. Five additional control animals were identically treated except they were mechanically ventilated coincident with start of precordial compression. After 6 min precordial compression, defibrillation was attempted and five of 10 nonventilated animals, and all control animals, were resuscitated by direct current countershock. In the successfully resuscitated, nonventilated animals, the frequency of spontaneous gasping during precordial compression progressively increased to an average of 19 gasps/min but it was < 6 gasps/min in nonresuscitated animals. More frequent gasping was associated with correspondingly greater arterial PO2 (110 versus 51 mm Hg, p < 0.01) and lesser PCO2 (55 versus 91 mm Hg, p < 0.01). In control animals, no spontaneous gasping was observed during precordial compression. Arterial PO2 and PCO2 of mechanically ventilated animals was more like that of spontaneously gasping rats. According, the frequency of spontaneous gasping in absence of mechanical ventilation is predictive of cardiac resuscitation success and associated with improved arterial oxygenation and CO2 removal.

Analysis of Variance↗

Cardiopulmonary resuscitation by precordial compression but without mechanical ventilation.

It is widely held that mechanical ventilation is essential for cardiopulmonary resuscitation (CPR). However, cardiac output and therefore pulmonary blood flow is reduced to less than one-third of normal during CPR. We therefore reasoned that ventilatory requirements are correspondingly reduced and postulated that gas exchange may be maintained during precordial compression with oxygen passively delivered to the airway in the absence of mechanical ventilation. After tracheal intubation, Sprague-Dawley rats were randomized. Fifteen animals were maintained on positive-pressure ventilation with room air and an additional 15 animals breathed spontaneously. Cardiac arrest was induced by electrical fibrillation. The inspired gas concentration of oxygen was then increased to 100% in both groups. Precordial compression was begun after 4 min of untreated ventricular fibrillation. After an additional 6 min of precordial compression, resuscitation was attempted by DC countershock. During cardiac resuscitation, there were no significant differences in coronary perfusion pressure between mechanically ventilated and spontaneously breathing animals, but arterial PO2 was significantly lower and arterial PCO2 was significantly higher in the absence of positive-pressure ventilation. However, neither resuscitability nor 24-h survival were affected. Postresuscitation myocardial contractility, reflected in the maximally generated dP/dt40, was also not adversely affected. In the unventilated group, only resuscitated animals developed spontaneous gaspings at an average frequency of 17 +/- 2/min-1. The current emphasis on mechanical ventilation as the highest priority for cardiopulmonary resuscitation is therefore not fully supported under the experimental conditions of this study.

Animals↗

Hypertension-related coronary thrombosis: prothrombic role of angiotensin II.

Although hypertension is a major risk factor in acute myocardial infarction, concomitant hypercoagulability causing thrombosis leading to myocardial infarction remains unproven for lack of an appropriate coagulation test. This study was devised to determine whether a modified recalcification time (MRT) test can demonstrate that angiotensin II, a potent vasoconstrictor, also accelerates coagulation to promote thrombosis. The MRT incorporates blood cells and chemical coagulants for maximizing sensitivity. Four groups (A, B, C, and D) of aliquots of citrated human blood were incubated for 2 hours at 37 degrees C after adding to A--20 microL saline, to B--10 micrograms Escherichia coli endotoxin, to C--20 micrograms angiotensin II, and to D--a combination of E coli endotoxin and angiotensin II. The experiment was repeated with nonincubated aliquots. Modified recalcification time values +/- standard deviation in minutes were: A--5.5 +/- 1.5, B--4.6 +/- 1.1, C--4.9 +/- 1.0, and D--3.9 +/- 1.0. Significance (Student's t test) was as follows: B versus A P < .001; C versus A, P < .05; C versus D, P < .001; B versus C, P < .05; and B versus D, P < .001. No significant changes occurred in nonincubated blood. We conclude that angiotensin II has a hypercoagulable effect, as does endotoxin. The hypercoagulability in concert with vasospasm can explain the role of hypertension in acute myocardial infarction. This in vitro study excludes the role of other in vivo mechanisms in the development of angiotensin II-induced hypercoagulability.

Angiotensin II↗

Ventricular fibrillation voltage as a monitor of the effectiveness of cardiopulmonary resuscitation.

Ventricular fibrillation (VF) voltage was previously identified as a predictor of the success of cardiopulmonary resuscitation. In the present study we investigated the mechanism by which VF voltage predicts the success of cardiac resuscitation in a well-established rodent model of cardiac arrest. After 4 minutes of untreated VF, precordial compression was initiated and maintained for 6 minutes. Increases in coronary perfusion pressure during precordial compression were associated with concomitant increases in VF voltage (r = 0.61, p = 0.013). Significantly greater coronary perfusion pressure (24 vs 17 mm Hg) and VF voltage (0.17 vs 0.12 mV) were observed in resuscitated animals. To obviate electrical artifacts produced by precordial compression, boluses of oxygenated blood were injected into the ascending aorta in another 5 animals as an alternative method of cardiac resuscitation. This restored myocardial perfusion before defibrillation. Increases in VF voltage from 0.04 mV to 0.47 mV during aortic infusions were again correlated with coronary perfusion pressure (r = 0.62, p < 0.01) and predicted the success of cardiac resuscitation. Greater VF voltages after initiation of cardiac resuscitation were associated with increases in myocardial creatine phosphate, from 0.23 to 0.70 mmol/kg wet weight, and significant decreases in lactate content, from 22.8 to 13.9 mmol/kg wet weight. Increases in creatine phosphate were highly correlated with increases in VF voltage (r = 0.99, p < 0.01). Accordingly, increases in VF voltage during cardiac resuscitation reflect increases in myocardial perfusion and favorable changes in myocardial energy metabolism. As such, VF voltage, like coronary perfusion pressure, serves as a quantitative predictor of the success of cardiopulmonary resuscitation.

Action Potentials↗

Cardiac resuscitation by retroaortic infusion of blood.

Current methods of closed-chest cardiac resuscitation generate coronary perfusion pressures that rarely exceed one fourth of normal, and this decreases with prolongation of cardiac arrest. The resuscitation effort is therefore almost uniformly unsuccessful when precordial compression is initiated after 8 minutes of untreated cardiac arrest. This report introduces a new option for cardiac resuscitation by infusion of oxygenated blood into the ascending aorta such as to transiently increase the pressure gradient for coronary perfusion. Thirty-six anesthetized, mechanically ventilated normovolemic rats were investigated. Cardiac arrest was induced with an alternating current delivered through an electrode catheter advanced into the right ventricle. Ventricular fibrillation was untreated for 4, 6, or 8 minutes, after which resuscitation was attempted without blood infusion, with infusion of oxygenated blood, or with infusion of oxygenated blood containing 30 mg/kg epinephrine. The boluses of blood were delivered through a catheter advanced from the right carotid artery into the ascending aorta. Except for mechanical ventilation and direct current precordial countershock for electrical defibrillation, no other mechanical resuscitation intervention, and specifically no precordial compression, was administered. None of six control animals that received either no retroaortic infusion or right atrial infusion was resuscitated after 4 minutes of untreated ventricular fibrillation. Each of five animals was successfully resuscitated by retroaortic infusion after 4 minutes of untreated cardiac arrest; one was resuscitated after 6 minutes, and none was resuscitated after 8 minutes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Chemistry, binding affinities, and behavioral properties of a new class of "antineophobic" mitochondrial DBI receptor complex (mDRC) ligands.

The mitochondrial DBI receptor complex (mDRC; previously called the peripheral benzodiazepine receptors) is linked to the production of neurosteroids such as pregnenolone sulfate, dehydroepiandrosterone sulfate, and others. In order to gain further information as to the function of the mDRC in the brain, we have constructed and tested both in vitro and in vivo a novel series of ligands, 2-arylindole-3-acetamides. The SAR studies detailed herein delineate some of the structural features required for high affinity binding to the mDRCs. In most cases the new ligands were prepared by use of the Fischer indole synthesis. Variations in the length and number of the alkyl groups on the amide nitrogen were probed together with the effects of halogen substituents on one or both of the aryl rings. Some ligands were also synthesized for study which represent conformationally constrained versions of the parent structure. Broad screening studies revealed these indoleacetamides to be highly selective for the mDRC, since they failed to bind with any significant affinity to other receptor systems. Some of the ligands were found to exhibit Ki values in the low nanomolar range for the mDRC as measured by the displacement of [3H]4'-chlorodiazepam. A subset of these ligands was also shown to stimulate pregnenolone formation from the mitochondria of C6-2B glioma cells with an EC50 of about 3 nM. In animal experiments ligands selected for further study were found to exhibit antineophobic effects, in spite of the fact that they exhibit no direct action on GABAA receptors. Consequently, it is postulated that these ligands owe their action to an indirect modulation of GABAA receptor function, presumably by stimulation of neurosteroid production and release from glial cells, followed by neurosteroid modulation of GABA's action on the chloride ion channel conductance of GABAA receptors.

Acetamides↗

Ferroxidase kinetics of human liver apoferritin, recombinant H-chain apoferritin, and site-directed mutants.

A detailed study of the kinetics of iron(II) oxidation by molecular oxygen in natural and recombinant human apoferritins has been carried out using electrode oximetry to better understand the ferroxidase activity of the protein shell. A comparative study of recombinant L-chain ferritin (rLF), recombinant H-chain ferritin (rHF), and variants has shown that (1) rLF lacks a ferroxidase activity, confirming the results of previous studies; (2) the ferroxidase site of rHF involves Glu-62 and His-65, presumably as Fe2+ ligands, since mutation of these residues abolishes most of the oxidase activity, in agreement with previous studies; and (3) mutation of both the putative ferroxidase and nucleation site ligands in rHF renders the protein totally incapable of catalyzing the oxidation of Fe2+ whereas mutation of nucleation site ligands alone (Glu-61, Glu-64, and Glu-67) decreases the activity only slightly. Analysis of the kinetics of rHF and natural human liver ferritin (HLF) (4% H-chain, 96% L-chain) gave the following apparent parameters at pH 7: Km,O2 = 6 +/- 2 microM, Km,Fe = 80 +/- 10 microM, and kcat = 201 +/- 14 min-1 for rHF and Km,O2 = 60 +/- 12 microM, Km,Fe = 50 +/- 10 microM, and kcat = 31.2 +/- 0.6 min-1 for HLF. Furthermore, Zn2+ was shown to be a noncompetitive inhibitor of Fe2+ oxidation in rHF but a mixed inhibitor in HLF. These different forms of Zn2+ inhibition in the two proteins and the higher activity of HLF than expected, based on its H-chain composition as well as differences in their enzyme kinetic parameters, suggest that H- and L-chains cooperate in modulating the ferroxidase activity of the apoferritin even though the L-subunit lacks a ferroxidase site itself.

Apoferritins↗