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Biomedical subjects

D Hough

Publications and source records attributed to D Hough.

At least 19 recordsLinked to original sources

A suicide prevention advisory group at an academic medical center.

During a 15-month period, there were seven suicides among patients who were in active treatment or who had been seen recently by providers in the Department of Psychiatry of Tripler Army Medical Center, Honolulu, Hawaii. As a result, a Suicide Prevention Advisory Group was formed to identify possible causes and make recommendations aimed at improving the identification and treatment of suicidal patients. The group made 11 specific recommendations. No known suicides occurred during the 22 months after the implementation of the Suicide Prevention Advisory Group's recommendations.

Academic Medical Centers↗

The nuclear receptor superfamily has undergone extensive proliferation and diversification in nematodes.

The nuclear receptor (NR) superfamily is the most abundant class of transcriptional regulators encoded in the Caenorhabditis elegans genome, with >200 predicted genes revealed by the screens and analysis of genomic sequence reported here. This is the largest number of NR genes yet described from a single species, although our analysis of available genomic sequence from the related nematode Caenorhabditis briggsae indicates that it also has a large number. Existing data demonstrate expression for 25% of the C. elegans NR sequences. Sequence conservation and statistical arguments suggest that the majority represent functional genes. An analysis of these genes based on the DNA-binding domain motif revealed that several NR classes conserved in both vertebrates and insects are also represented among the nematode genes, consistent with the existence of ancient NR classes shared among most, and perhaps all, metazoans. Most of the nematode NR sequences, however, are distinct from those currently known in other phyla, and reveal a previously unobserved diversity within the NR superfamily. In C. elegans, extensive proliferation and diversification of NR sequences have occurred on chromosome V, accounting for > 50% of the predicted NR genes.

Amino Acid Sequence↗

Effects of procainamide on wave-front dynamics during ventricular fibrillation in open-chest dogs.

BACKGROUND: There is increasing evidence that both functional reentrant wave fronts and multiple wavelets are present during ventricular fibrillation (VF). However, the effects of procainamide on the characteristics of activation waves during VF are poorly understood. METHODS AND RESULTS: Seven dogs were studied; six underwent subendocardial chemical ablation procedures. A plaque with 317 to 480 bipolar electrodes was sutured to the right ventricular free wall, and the patterns of activation were registered with a computerized mapping system. VF was electrically induced, and the patterns of activation were registered at baseline and during procainamide infusion (serum concentration, 9.3+/-1.9 microg/mL). Among the six dogs that had their subendocardium ablated, reentrant wave fronts were present in 6 of the 108 runs of VF at baseline and in 6 of the 100 runs of VF during procainamide infusion. By analyzing the wave fronts, we found that the cycle length, refractory period, conduction velocity, and wavelength at baseline were 101+/-9 ms, 54+/-5 ms, 0.93+/-0.21 mm/ms, and 51+/-16 mm, respectively, and during procainamide infusion, values became 125+/-11 ms (P<.001), 119+/-7 ms (P<.001), 0.42+/-0.02 mm/ms (P<.001), and 50+/-4 mm (P=.8), respectively. The vast majority of the activation waves do not form organized reentry. These activation waves broke up more frequently at baseline than during procainamide administration. The number of activation waves was 7.25+/-1.39 s(-1) x cm(-2) at baseline and 4.45+/-1.80 s(-1) x cm(-2) during procainamide administration (P<.001). The dog without subendocardial ablation had similar results. CONCLUSIONS: Procainamide decreases the number of wavelets during VF by preventing spontaneous wave breaks. This represents a novel mechanism of antiarrhythmic drug action.

Animals↗

Induction of meandering functional reentrant wave front in isolated human atrial tissues.

BACKGROUND: The purpose of this study was to test the hypothesis that a single meandering functional reentrant wave front can result in rapid and irregular electrogram activity in human atrial tissues. METHODS AND RESULTS: The study used the explanted hearts of five human cardiac transplant recipients. Three right and two left atrial tissue samples, 3.4+/-0.3 mm thick, were excised and trimmed to 3.5x3.0 cm. The isolated atrium was placed endocardial surface down in a chamber with a 477 bipolar recording electrode array built into the bottom of the tissue bath. The interelectrode distance was 1.6 mm. The tissue was constantly superfused with 36.5 degrees C oxygenated Tyrode's solution at a rate of 10 mL/min. After eight baseline stimuli (S1) delivered at 400- or 600-ms cycle length from the edge of the tissue, a single premature stimulus (S2) was given at the center of the tissue to induce reentry. A total of nine episodes of reentry were induced with S1-S2 coupling intervals of 232+/-29 ms (range, 190 to 290 ms) and an S2 strength of 10+/-3 mA (range, 5 to 15 mA). In all samples, a single meandering reentrant wave front was induced, causing irregular and rapid bipolar electrogram activity. These wave fronts had a mean cycle length of 229+/-45 ms (160 to 290 ms) and persisted for 1.1+/-0.3 seconds (0.6 seconds to 2.5 seconds), or 5.2+/-1.4 (3 to 9) cycles, before spontaneous termination. CONCLUSIONS: A single meandering functional reentrant wave front can be induced in human atrial tissues and produce rapid and irregular electrical activity.

Adult↗

Meandering and unstable reentrant wave fronts induced by acetylcholine in isolated canine right atrium.

The mechanism(s) by which acetylcholine (ACh) increases atrial vulnerability to reentry and maintains its activity for longer durations remains poorly defined. In the present study we used high-resolution activation maps to test the hypothesis that ACh promotes meandering of atrial reentrant wave fronts, resulting in breakup and the generation of new wave fronts that sustain the activity. Reentry was induced in 11 isolated canine right atrial tissues (3.8 x 3.2 cm) by a premature point stimulus (S2) before and after superfusion with ACh (15 x 10(-6) M). Endocardial isochronal activation maps were constructed with the use of 509 bipolar electrodes (1.6-mm spatial resolution), and the dynamics of the activation wave fronts were visualized with animation. A vulnerable period was found during which an S2 current strength > 4.4 +/- 2.5 mA [lower limit of vulnerability (LLV)] and < 26 +/- 13 mA [upper limit of vulnerability (ULV)] induced a single stationary reentrant wave front that lasted 3 +/- 2.5 s with a period of 159 +/- 17 ms (16 episodes). AC shortened the refractory period from 100 +/- 12 to 59 +/- 9 ms (P < 0.001) and increased vulnerability to reentry induction by simultaneous decrease in the LLV (0.7 +/- 0.2 mA, P < 0.001) and an increase in the ULV (82 +/- 24 mA, P < 0.01). ACh accelerated the rate (period of 110 +/- 16 ms, P < 0.001) and converted the stationary reentrant wave front to a nonstationary (meandering) reentrant wave front showing polymorphic electrograms, i.e., "fibrillation-like" activity (22 episodes). Rapid meandering of the reentry tip led to wave front breakup (18 episodes) and the generation of new wave fronts (19 episodes). These wave front dynamics also led to sustained (76 +/- 224 s, P < 0.001) fibrillation-like electrograms. We conclude that ACh increases the ULV and promotes meandering of a single reentrant wave front, leading to breakup and the generation of new wave fronts. Single meandering and complex wave front dynamics cause fibrillation-like activity and sustain the activity for longer duration.

Acetylcholine↗

Attachment of meandering reentrant wave fronts to anatomic obstacles in the atrium. Role of the obstacle size.

Acetylcholine chloride (ACh) induces nonstationary meandering reentrant wave fronts in the atrium. We hypothesized that an anatomic obstacle of a suitable size prevents meandering by causing attachment of the reentrant wave front tip to the obstacle. Eight isolated canine right atrial tissues (area, 3.8 x 3.2 cm) were mounted in a tissue bath and superfused with Tyrode's solution containing 10 to 15 mumol/L ACh. Holes with 2- to 10-mm diameters were sequentially created in the center of the tissue with biopsy punches. Reentry was induced by a premature stimulus after eight regular stimuli at 400-ms cycle length. The endocardial activation maps and the motion of the induced reentry were visualized dynamically before and after each test lesion using 509 bipolar electrodes. In the absence of a lesion (n = 8), the induced single reentrant wave front, in the form of a spiral wave, meandered irregularly from one site to another before terminating at the tissue border. Holes with 2- to 4-mm diameters (n = 6) had no effect on meandering. However, when the hole diameters were increased to 6 mm (n = 8), 8 mm (n = 8), and 10 mm (n = 6), the tip of the spiral wave attached to the holes, and reentry became stationary. Transition from meandering to an attached state converted the irregular and polymorphic electrogram to a periodic and monomorphic activity with longer cycle lengths (101 +/- 11 versus 131 +/- 9 ms for no hole versus 10-mm hole, respectively; P < .001). Regression analysis showed a significant positive linear correlation between the cycle length of the reentry and the hole diameter (r = .89, P < .01) and between the cycle length of the reentry and the excitable gap (r = .89, P < .05). We conclude that a critically sized anatomic obstacle converts a nonstationary meandering reentrant wave front to a stationary one. This transition converts an irregular "fibrillation-like" activity into regular monomorphic activity.

Acetylcholine↗

Mechanism of spontaneous termination of functional reentry in isolated canine right atrium. Evidence for the presence of an excitable but nonexcited core.

BACKGROUND: According to the spiral wave hypothesis of reentry, the core of functional reentry remains excitable but not excited. We sought to determine whether the core remains excitable and whether excitation of the core by an outside wave front leads to termination of the reentry in the atrium. METHODS AND RESULTS: In nine isolated canine right endocardial atrial tissues (3.8 by 3.2 cm wide), reentry was induced by a premature point stimulus (S2). The isochronal activation maps and dynamics of the activation patterns were visualized with the use of 509 bipolar electrodes (1.6-mm resolution). The S2 applied after 8 regular beats induced reentry with a mean cycle length of 162 +/- 20 ms (15 episodes). Reentry had a large excitable gap (93 +/- 26 ms) as determined by early capture with twice the level of threshold stimuli. The central area (core) around which the wave fronts rotated had a mean surface area of 12 +/- 3 mm2. The electrograms located in the core of the reentry registered no or very low amplitude potentials. In 13 of 15 episodes, reentry terminated when an outside new wave front merged with the original wave front and excited the core. Core excitation caused disruption of the original wave front, and the newly formed wave front(s) vanished at the tissue border within 77 +/- 18 ms. In 2 episodes, reentry terminated abruptly when an outside new wave front propagating in a direction opposite to the reentrant wave front collided with the leading edge of the reentrant wave front. CONCLUSIONS: Functional reentry in the atrium is compatible with a spiral wave of excitation with an excitable but nonexcited core and a large excitable gap. Reentry may be terminated either by direct excitation of the core that displaces the wave front to the tissue border or by collision with an outside new wave front.

Animals↗

In vitro hydrogen production by glucose dehydrogenase and hydrogenase.

A new in vitro enzymatic pathway for the generation of molecular hydrogen from glucose has been demonstrated. The reaction is based on the oxidation of glucose by Thermoplasma acidophilum glucose dehydrogenase with the concomitant oxidation of NADPH by Pyrococcus furiosus hydrogenase. Stoichiometric yields of hydrogen were produced from glucose with the continuous recycling of cofactor. This simple system may provide a method for the biological production of hydrogen from renewable sources. In addition, the other product of this reaction, gluconic acid, is a high-value chemical commodity.

Cloning, Molecular↗

Reentrant wave fronts in Wiggers' stage II ventricular fibrillation. Characteristics and mechanisms of termination and spontaneous regeneration.

The mechanisms of Wiggers' stage II ventricular fibrillation (VF) are poorly understood. Using computerized mapping techniques, we studied the patterns of activation during Wiggers' stage II VF in 13 open-chest dogs. In 7 of the 13 dogs, the right ventricular Purkinje fibers and adjacent subendocardial myocytes were ablated with Lugol solution. VF was induced electrically, and 3 to 5 seconds of data were obtained beginning approximately 2.5 seconds after the onset of VF. Dynamic displays of the activation patterns and isochronal maps revealed the presence of reentrant wave fronts in 17 of 33 runs of VF in ablated ventricles and in 12 of 45 runs of VF in intact ventricles. The incidence of reentry was not different between the subendocardium-ablated group versus the nonablated group (1.7 +/- 1.6 versus 1.2 +/- 1.6 rotations per episode of VF, P = .19). There were no differences in the core size (25 +/- 19 versus 29 +/- 18 mm2), life span (3.4 +/- 1.1 versus 3.2 +/- 1.2 rotations), or cycle length (111 +/- 12 versus 107 +/- 8 ms) in ablated ventricles versus intact ventricles, respectively. The core was unstable as it meandered within the mapped area displacing the entire reentrant wave front. In all episodes, the reentrant wave fronts were spontaneously initiated by an interaction between two propagating wave fronts roughly perpendicular to each other. The second wave front met the tail of the first wave front 69 +/- 11 ms (range, 40 to 90 ms) after its latest activation, indicating that the interaction occurred during a vulnerable period. The reentrant wave fronts terminated spontaneously (n = 7), as the result of interference by an invading wave front (n = 19 or meandered off the mapped region (n = 3). We conclude the following: (1) Reentrant activities with short life spans and meandering cores are present during Wiggers' stage II VF in dogs. (2) New reentrant wave fronts are generated when one wave front interacts with another wave front during its vulnerable period. (3) The reentrant wave fronts terminate spontaneously or as the result of interference. (4) Chemical subendocardial ablation does not affect the incidence, life span, cycle length, or core size of the reentrant wave fronts.

Animals↗

Interaction between strong electrical stimulation and reentrant wavefronts in canine ventricular fibrillation.

This study was designed to test the hypothesis that the effects of a strong electrical stimulus on reentrant wavefronts in ventricular fibrillation (VF) are dependent on the timing of the stimulus. We studied six open-chest dogs by computerized mapping techniques. A plaque electrode array with up to 509 bipolar electrodes was placed on the right ventricular epicardium. The interelectrode distance was 1.6 mm, and the interpolar distance was 0.5 mm. After eight baseline pacing stimuli (S1) with cycle lengths of 300 ms, a strong premature stimulus (S2) (73 +/- 10 mA) was given to induce VF. In subsequent episodes, a second strong premature stimulus (S3) was given at progressively longer S2-S3 intervals in 20-ms increments. The results showed that, at baseline, the S2 consistently induced figure-eight reentry and VF. The VF cycle length immediately after the S2 averaged 108 +/- 17 ms. The S3 resulted in one of the following responses: (1) termination of reentry and VF; (2) induction of different reentrant wavefronts or a focal pattern of repetitive activation; or (3) persistence of the same figure-eight reentry. The intervals between the S3 and the immediately preceding activation at the site of the S3 (the recovery intervals) were 39 +/- 12 ms (range, 20 to 60 ms) and 61 +/- 20 ms (range, 30 to 90 ms) for response patterns 1 and 2, respectively. The recovery intervals associated with response pattern 3 were either < or = 30 ms (22 +/- 8 ms) or > or = 80 ms (94 +/- 15 ms). The differences among these four intervals were significant (P < .001). We conclude that the effects of strong electrical stimulation on the reentrant wavefronts in VF are dependent on the recovery interval since the previous local activation. A protective zone occurred between 20 and 60 ms, during which time a strong electrical stimulus could terminate reentry and abort VF. This zone was followed by a vulnerable period during which new activation wavefronts could be induced. If a strong electrical stimulus was given shortly after or sufficiently long after the previous local activation, the same figure-eight reentrant pattern continued.

Animals↗

The association of primary biliary cirrhosis and systemic sclerosis is not accounted for by cross reactivity between mitochondrial and centromere antigens.

A proportion of patients with primary biliary cirrhosis (PBC) develop the CREST variant of systemic sclerosis (SSc) and in these individuals antimitochondrial antibodies (AMA) and anticentromere antibodies (ACA) coexist. Immunological cross-reactivity between mitochondrial and centromere-associated antigens might account for the clinical and serological overlap between these conditions. Therefore, antibodies were affinity purified from the 70 kD polypeptide corresponding to the E2 component of the pyruvate dehydrogenase complex (PDHC) and from CENP-C, a 140 kD centromere-associated protein, to examine this possibility. Although the purified antibodies reacted with their corresponding antigens, no evidence of shared determinants between the 70 kD protein and CENP-C could be detected whether the antibodies were prepared from monospecific sera or from sera containing both AMA and ACA. Therefore, AMA and ACA present discrete autoantibody populations which may coexist in the same patient and may influence the clinical picture but have both structural and immunologically independent antigenic targets.

Aged↗

Pronase and proteinase K digestion of human immunoglobulin M.

Human 19S IgM was digested with pronase and proteinase K. Proteolysis was relatively fast, producing Fab2 mu-like fragments (approx. mol. wt 114,000) and Fab mu-like fragments (approx. mol. wt 46,500) as major products. Immunochemical analysis indicated that the fragments produced by either enzyme are very similar and that they are produced by cleavage at the C mu 2-C mu 3 and C mu 1-C mu 2 domain junctions respectively. An intermediate species of mol. wt 74,300, immunologically identical to F(ab)2 mu, was also identified. This is thought to represent an F(ab)2 mu fragment with one Fab mu fragment removed. Fc mu-related fragments were not identified in the digestion mixture with either enzyme. Covalently linked and non-covalently linked 7S human IgM (IgMs and IgMr respectively) were digested with pronase and proteinase K. IgMs was degraded very rapidly by either enzyme, producing relatively stable F(ab)2 mu- and Fab mu-like fragments. These fragments were similar in mol. wt and immunochemical properties to those produced from 19S IgM. IgMr was also degraded rapidly by either enzyme, in this case producing Fab mu-like fragments with no detectable F(ab)2 mu-like fragments. The kinetics of digestion and nature of the products suggest that cleavage of 19S IgM by pronase or proteinase K proceeds via an initial attack at the C mu 2-C mu 3 junction, followed by further degradation at the Cmu 1-C mu 2 junction. The results obtained using 7S IgM show that the intersubunit disulphide bonds, and the associated pentameric structure, are responsible for the relative resistance of 19S IgM to proteolysis. The inter-heavy-chain disulphide bonds, in particular the bond at cys 337, are responsible for the limited susceptibility of F(ab)2 mu-like fragments to proteolysis.

Chemical Phenomena↗

Antibodies to nRNP, Sm, Ro(SSA) and La(SSB) detected by ELISA: their specificity and inter-relations in connective tissue disease sera.

The profile of autoantibodies to four soluble cellular ribonucleoproteins nRNP, Sm Ro(SSA) and La(SSB) was determined using ELISA with immuno-affinity-purified antigens in a connective tissue disease population. Compared with immunodiffusion, results using ELISA showed greater sensitivity but lower specificity and low titres of antibodies were frequently found in the sera of patients with connective tissue diseases other than systemic lupus erythematosus. This was true even for antibodies to Sm which have been considered highly specific for SLE. Antibodies to these antigens were predominantly of the IgG class and were capable of fixing complement irrespective of the clinical context. As previously demonstrated by immunodiffusion strong associations between anti-nRNP and anti-Sm and between anti-Ro(SSA) and anti-La(SSB) were detected by ELISA, while antibodies to nRNP and to Ro(SSA) identify distinctive serological groups. The observation that certain antibodies are closely linked suggests a relationship between the immune responses to particular antigens, and this might be explained by biological links between the antigens.

Antibody Specificity↗

Fractionation and further characterization of granulocytic and monocytic alpha-naphthyl acetate (ANAE) esterases.

Following characterization of myeloid nonspecific esterases by isoelectric focusing (IEF), two main groups of alpha-naphthyl acetate (ANAE) esterase isoenzymes were defined and fractionated from cytoplasmic extracts by chromato focusing techniques according to differences in their isoelectric points (pI). The first of these ANAE enzyme groups was common to leukocytes of both granulocytic and monocytic lineage, while the other, which characteristically comprised a group of isoenzymes within the pI range 5.5-6.1, was specifically associated with monocytic differentiation. The properties of the two purified ANAE enzyme fractions were compared by inhibition (heat and sodium fluoride) and further electrophoretic studies, and the results discussed in relation to the cytochemical characterization of these enzymes as markers of specific myeloid cell differentiation.

Carboxylic Ester Hydrolases↗

Granulocyte Fc-IgG and C3b receptor expression in the primary myelodysplastic syndromes (MDS): relationship with dysgranulopoiesis and evidence for heterogeneity of morphological subgroups.

The expression of Fc-IgG and C3b membrane receptors by granulocytes and their precursors was examined in 78 patients with primary myeloid dysplasia (MDS). The marrows were categorized into five morphological groups, broadly corresponding to those described by the FAB group, and further graded into mild and severe according to the severity of dysgranulopoiesis. Fractionated bone marrow and peripheral blood granulocyte receptors were assessed by rosette formation with optimally sensitized ox erythrocytes and the results compared with those found in 17 normal marrows and with those previously reported in megaloblastic anaemia. Fc-IgG and C3b receptor expression was generally increased in maturing granulocytes in all MDS diagnostic groups but premature expression was particularly marked in chronic myelomonocytic leukaemia and refractory cytopenia. Receptor patterns showed a better correlation with the severity of dysgranulopoiesis than with the morphological types. It is suggested that, as in megaloblastic anaemia, changes in membrane receptor expression reflect nuclear-cytoplasmic asynchrony. The results further indicate considerable immunological heterogeneity of granulocytes within individual MDS categories.

Granulocytes↗