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Biomedical subjects

J D England

Publications and source records attributed to J D England.

18 recordsLinked to original sources

Muscle denervation in peripheral arterial disease.

Muscle function is often severely impaired in peripheral arterial disease (PAD), but the effects of repeated ischemic events upon nerve and muscle are incompletely characterized. We performed comprehensive electrophysiologic studies and skeletal muscle histologic analysis in six patients with unilateral PAD and five control subjects matched for age and activity level. In the PAD patients, all ischemic legs showed both electrophysiologic and histologic evidence of chronic partial denervation-reinnervation restricted to distal muscles. Two of the PAD patients had evidence of milder distal denervation in the nonischemic legs. Two of the controls had denervation in at least one leg, but in each case electrophysiologic findings were pathognomonic of L-5 and S-1 radiculopathies. All other control legs and nonischemic legs were normal. These results suggest that recurrent ischemia associated with PAD may cause muscle denervation, which may be one of the mechanisms responsible for decreased exercise performance in these patients.

Action Potentials

Affinity binding assay of glycohemoglobin by two-dimensional centrifugation referenced to hemoglobin A1c.

We describe an automated assay of glycohemoglobin performed with the Abbott Vision analyzer. The assay is based on batch affinity-extraction with 3-aminophenylboronic acid-derivatized agarose beads. Reagents are packaged in a disposable test pack. Whole-blood specimens are hemolyzed with saponin within a glass capillary tube inserted into the test pack. The sample is automatically diluted with, mixed with, and separated from the solid-phase reagent. Bichromatic absorbance readings are used to calculate the percentage of hemoglobin bound. Based on the linear correlation between affinity-measured glycohemoglobin and HPLC-measured hemoglobin A1c, the percentage of hemoglobin bound is converted to a "standardized %HbA1c" result by use of regression parameters stored during a calibration run. The combination of affinity methodology with standardization by reference to HPLC produces values directly comparable with those obtained by methods specific for HbA1c. The method produces 10 results within 15 min. The assay operates with CVs < 5%, and the results correlate highly with those by ion-exchange and affinity minicolumn methods, and by ion-exchange HPLC.

Autoanalysis

Interlaboratory standardization of measurements of glycohemoglobins.

The diversity of methods used to measure glycohemoglobins (GHb) makes it difficult to compare patients' results among laboratories. We reported previously the feasibility of providing comparable results from different assays by use of common calibrators. We here compare results from seven different GHb methods calibrated by use of hemolysates assayed by a precise ion-exchange high-performance liquid-chromatographic (HPLC) method for hemoglobin A1c (HbA1c). Thus, regardless of the GHb species measured by the seven methods, results were referenced to the HbA1c content of the calibrators. Without this calibration, GHb values for single samples varied, e.g., from 4.0% to 8.1% and from 10% to 14.2% in the normal and high ranges, respectively. Calibration decreased between-method variability (single sample ranges of, e.g., 4.8% to 5.4% and 9.4% to 10.2% in the normal and high ranges, respectively) and improved interassay precision. We conclude that this approach to calibration of GHb measurements allows direct comparison of results obtained by different methods and improves precision.

Calibration

Increased numbers of sodium channels form along demyelinated axons.

Sodium channels, which are largely localized to the nodes of Ranvier in myelinated axons, appear to form new distributions along demyelinated axons. In this study a sensitive radioimmunoassay (RIA) was used to examine the changes in the total number of sodium channels that occur in nerves experimentally demyelinated in vivo with doxorubicin (adriamycin). The results clearly illustrate the development of an increased number of sodium channels during demyelination, suggesting that this process is associated with the formation of new sodium channels.

Animals

Dynamic F waves in neurogenic claudication.

Serial F waves were elicited before and after ambulation in 2 patients with neurogenic claudication. In both patients dynamic changes in F wave parameters consisting of either unelicitability or increased latencies occurred postexercise. The time course of these changes and their subsequent rapid reversibility over 15 minutes suggest ischemic-induced conduction block and slowing in proximal motor axons. These physiological changes may account for some of the dynamic neurological symptoms of this disorder. Moreover, F wave exercise testing may provide corroborative information for the diagnosis of neurogenic claudication.

Blood Circulation

Interlaboratory comparison of glycohemoglobin results: College of American Pathologists Survey data.

We describe recent changes in the College of American Pathologists Glycohemoglobin (gHb) Survey, made to improve the assessment of interlaboratory variability and the accuracy of results reported. The questionnaire portion of the survey was revised to include an updated list of current methods, and results for survey specimens were grouped according to the component measured (Hb A1, Hb A1c, or total gHb). The survey specimen material was changed to a material thought to give more reliable results with all available methods. After these changes, instituted in 1989, between-laboratory CVs decreased for some methods. Furthermore, gHb values between method types were more consistent with results obtained from fresh blood samples under very controlled laboratory conditions. However, these recent data also show that the interlaboratory variability is still quite high for some methods and that the variability within and between method types is still very great. We describe a pilot standardization program for gHb measurement.

Chromatography, Affinity

A computer simulation of conduction block: effects produced by actual block versus interphase cancellation.

A reduction in compound muscle action potential (CMAP) amplitude and area following proximal versus distal stimulation is the accepted clinical hallmark of conduction block; however, quantitative criteria for determining conduction block remain ambiguous. In this study, digitized records of individual motor unit action potentials (MUAPs) elicited by incremental stimulation in vivo were arithmetically combined in a computer simulation of CMAP generation. Through simulation of possible phase interaction patterns of individual MUAPs, we have shown that abnormal temporal dispersion alone can produce reductions in CMAP area of up to 50%, values that are commonly thought to represent conduction block. Furthermore, by simulating conduction block without excessive temporal dispersion in defined subpopulations of axons, we have demonstrated the importance of the fastest conducting (largest MUAP) axons in determining CMAP amplitude and area. In conclusion, measurements of CMAP amplitude and area in determining conduction block may be misleading if there is significant abnormal temporal dispersion, and quantitation of the degree of conduction block is difficult without knowledge of which subpopulations of axons are affected.

Action Potentials

Changed distribution of sodium channels along demyelinated axons.

Voltage-gated sodium channels are largely localized to the nodes of Ranvier in myelinated axons, providing a physiological basis for saltatory conduction. What happens to these channels in demyelinated axons is not known with certainty. Experimentally demyelinated axons were examined by using a well-characterized, polyclonal antibody directed against sodium channels. Immunocytochemical and radioimmunoassay data were consistent with the distribution of an increased number of sodium channels along segments of previously internodal axon. These findings affirm the plasticity of sodium channels in demyelinated axolemma and may be relevant to understanding how axons recover conduction after demyelination.

Animals

Guillain-Barré syndrome.

Guillain-Barré syndrome is an acute inflammatory demyelinative neuropathy usually presenting as a symmetric areflexic paralysis. An immunologic pathogenesis is likely. Early diagnosis is important since good supportive care and plasmapheresis can decrease morbidity and hasten recovery.

Humans

Schwann cell degeneration induced by doxorubicin (adriamycin).

Doxorubicin is an anthracycline antineoplastic antibiotic that acts at the cell nucleus by intercalating between base pairs of DNA, thus inhibiting DNA-directed mRNA synthesis. Intraneural micro-injection of 0.19-0.38 micrograms of this substance into rat sciatic nerve results in a delayed subacute demyelination that is secondary to focal Schwann cell degeneration. Remyelination eventually occurs but is not complete until at least days 60-75 postinjection. Toxic Schwann cell disorders produced by agents such as doxorubicin may serve as useful models in understanding the pathogenesis of human demyelinative neuropathies.

Action Potentials

Lethal retrograde axoplasmic transport of doxorubicin (adriamycin) to motor neurons. A toxic motor neuronopathy.

Doxorubicin (Adriamycin) is an autofluorescent anthracycline antibiotic that acts as a DNA intercalator. Following intraneural microinjection of 3 micrograms of doxorubicin into rat tibial nerve, fluorescence microscopy indicated that it is transported retrogradely to anterior horn cell bodies. Subsequently, these motor neurons underwent a progressive subacute degeneration that occurred over a period of 35-39 days. Combined electrophysiological and neuropathological methods indicated that dorsal root ganglion cells were relatively unaffected by this dose of toxin. The selective motor neuron degeneration produced by this agent raises the possibility that abnormalities of nucleic acid metabolism may be involved in the aetiology of motor neuron diseases.

Action Potentials

beta-Adrenoreceptor-blocking agents and lipid metabolism.

1. Chlorothiazide twice a day plus atenolol, metoprolol, pindolol and propranolol in single daily doses administered to patients with essential hypertension achieved effective control of blood pressure. 2. Each beta-adrenoreceptor-blocking drug was associated with small, but significant, increases in plasma triglyceride concentrations and suppression of fasting immuno-reactive glucagon concentrations.

Adolescent

Quantitative effects of timolol and hydrochlorothiazide on blood pressure, heart rate and plasma renin activity: results of a double-blind factorial trial in patients with essential hypertension.

1. The anti-hypertensive actions of timolol and hydrochlorothiazide were analysed in a double-blind 2 x 2 factorial trial in twenty patients with essential hypertension. Each patient went through four phases of 8 weeks in randomized order, receiving timolol alone, hydrochlorothiazide alone, timolol plus hydrochlorothiazide, and placebo. 2. Supine mean arterial pressure fell from 119 mmHg in the placebo phase, to 110 mmHg during the thiazide phase, 106 mmHg during the timolol phase, and to 101 mmHg during the combined timolol plus hydrochlorothiazide phase. 3. Factorial analysis revealed that the hypotensive actions of the beta-receptor-blocking drug and the diuretic were additive, without any synergism or antagonism. 4. Plasma renin activity measured in ng 3 h-1 ml-1 rose from 5-02 in the placebo phase to 9-54 in the diuretic phase, but fell to 1-79 in the beta-receptor blockade. It was unchanged in the combined therapy phase, despite the greater drop in blood pressure. These results suggest that the fall in plasma renin activity during beta-receptor blockade is of little importance in the hypotensive action of beta-receptor-blocking drugs.

Adult