Biomedical subjects
M Pollock
Publications and source records attributed to M Pollock.
Exercise training-induced alterations in skeletal muscle oxidative and antioxidant enzyme activity in senescent rats.
Limited data exist concerning exercise training-induced alterations in skeletal muscle oxidative and antioxidant enzyme activity in senescent animals. Therefore, the purpose of this study was twofold: 1) to examine the exercise training-induced changes in oxidative and antioxidant enzyme activity in skeletal muscle of old rats; and 2) to critically analyze the relationship between oxidative and antioxidant enzyme activities in skeletal muscle in both trained and untrained senescent rats. Female Fischer-344 rats (approximately 24-mo-old) were divided into 1) exercised trained (ET; n = 10) and 2) sedentary (S; n = 6) groups. The ET rats performed a 10-week training program of treadmill exercise (approximately 60 min, 5 days/wk). Training significantly (p less than 0.05) improved VO2max (delta 22.8%) in the ET rats above their age-matched controls. Further, the ET group had significantly elevated (p less than 0.05) activities of succinate dehydrogenase (SDH) in the soleus and red gastrocnemius (RG) muscles as well as greater (p less than 0.05) 3-hydroxyacyl-CoA dehydrogenase (HADH) activity in the RG when compared to the S group. However, training did not alter (p greater than 0.05) HADH activity within the white gastrocnemius (WG) or soleus muscles. Activity of the antioxidant enzyme, glutathione peroxidase (GPX) was higher (p less than 0.05) in the soleus and RG in ET rats when compared to the S rats; in contrast, training did not alter (p less than 0.05) GPX activity in the WG. Finally, the correlation coefficients between SDH and GPX activities (combined ET and S groups) for the RG, WG, and soleus muscles were r = .73, .17 and .36, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)
Mycobacterium fortuitum pneumonia--treatment with enoxacin and cotrimoxazole.
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Sensory nerve pathology in amyotrophic lateral sclerosis.
A detailed morphometric study was performed on sural nerve biopsies to determine the consistency of sensory nerve pathology in amyotrophic lateral sclerosis (ALS) and to seek a correlation between the severity of peripheral nerve pathology and disease duration. Nerve biopsies from patients with ALS consistently showed evidence of early axonal atrophy, increased remyelination and a shift in the diameter distributions curve towards smaller fiber diameters. Importantly, the severity of sensory nerve pathology in ALS patients correlated with disease duration. The peripheral nerve sodium pump concentration of patients was not reduced. It is concluded that an ingravescent dorsal root ganglion neuronopathy is seen in the incipient stages of ALS, preferentially affecting the largest neurons and resulting in turn in progressive axonal atrophy, secondary demyelination-remyelination and finally in nerve fiber degeneration. Etiologically, a parallel involvement of motor and sensory neurons suggests a more widespread metabolic disturbance in ALS than simply "sick" motor neurons.
An intragenic suppressor of a calmodulin mutation in Paramecium: genetic and biochemical characterization.
We describe a suppressor of the calmodulin mutant cam1 in Paramecium tetraurelia. The cam1 mutant, which has a SER----PHE change at residue 101 of the third calcium-binding domain, inhibits the activity of the Ca(2+)-dependent K+ current and causes exaggerated behavioral responses to most stimuli. An enrichment scheme, based on an increased sensitivity to Ba2+ in cam1 cells, was used to isolate suppressors. One such suppressor, designated cam101, restores both the activity of the Ca(2+)-dependent K+ current and behavioral responses of the cells. We show that the cam101 mutant is an intragenic suppressor of cam1, based on genetic and microinjection data. The cam101 calmodulin is shown to be similar to wild-type calmodulin in terms of its ability to stimulate calmodulin-dependent phosphodiesterase at low concentrations of free calcium. However, the cam101 calmodulin has a reduced affinity for a monoclonal antibody to wild-type Paramecium calmodulin, as does the parental cam1 calmodulin, and a different mobility on acid-urea gels relative to both wild-type and cam1 calmodulin. We have been able to demonstrate that the isolation of intragenic suppressors of a calmodulin mutation is possible, which allows for the further genetic analysis of structure-function relationships in the calmodulin molecule.
Reversal of foot drop in sciatic nerve endometriosis.
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Geriatric stress testing and physical conditioning of the aged.
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Gene testing in the childhood spinal muscular atrophies.
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Benign hereditary cerebellar ataxia with extensive thermoanalgesia.
A New Zealand family with 3 members affected by late onset hereditary cerebellar ataxia is reported, distinguished by the development of near global thermoanalgesia. Because proprioception and autonomic function were preserved, and ataxia only slowly worsened, this proved to be a benign syndrome. The pattern of sensory loss indicated a 'length-dependent' neuropathy. Evaluation of sural nerve biopsy revealed a marked loss of axons, especially of those with diameters 1-7 microns and 0.2-1.5 microns. It therefore seemed likely that impairment of pain and temperature in the syndrome resulted from a loss of primary sensory afferents. It is concluded that this family represents a previously unrecognized variant and that the spectrum of hereditary ataxias needs to be widened to include an associated severe but selective loss of pain and temperature sensation.
Developmental regulation of the heat-shock response.
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Is ischemia implicated in chronic multifocal demyelinating neuropathy?
We describe a patient with chronic multifocal demyelinating neuropathy associated with persistent conduction block. Multifascicular lesions in sural nerve included a complete loss of myelinated fibers, demyelination, remyelination, onion bulb formation, and axonal attenuation. On the basis of these morphometric results we hypothesize that nerve ischemia may be involved in the pathogenesis of chronic multifocal demyelinating neuropathy.
High-dose intravenous human immunoglobulin in chronic inflammatory demyelinating polyneuropathy.
We treated nine consecutive patients with chronic inflammatory demyelinating polyneuropathy (CIDP) with high-dose intravenous human immunoglobulin (HIG), and clinical recovery rapidly followed. Disability that had persisted for months or years was often reversed in days. There were no major adverse reactions to HIG infusions.
Cognitive and motor dysfunction in Parkinson's disease. Clinical, performance, and computed tomographic correlations.
The neuropathologic and pathophysiological relationship of specific to more generalized cognitive dysfunction in Parkinson's disease (PD) remains incompletely understood. This issue was examined in a study of 39 patients with PD, utilizing standardized clinical measures, computerized neuropsychological tests, and quantitative computed tomography. Disorders of visuospatial discrimination and perceptual-motor function closely paralleled motor scores, suggesting a common neuropathologic basis. Caudate nuclear and mesocortical dopamine depletion play a role in this context. More generalized cognitive dysfunction occurred in older patients with a somewhat longer disease duration, more advanced parkinsonism, and computed tomographic evidence of subcortical and frontal cortical atrophy but without significant cerebral atrophy when compared with age-matched controls. Further prospective clinicopathologic studies will be required to clarify the relative contribution of the primary dopaminergic dysfunction, age-related changes, Alzheimer-type pathologic condition, and other coexisting neurotransmitter deficits to the dementia seen in PD.
Collagenosis in wallerian degeneration depends on peripheral nerve type.
In the mature rat we determined the extent of peripheral nerve collagenosis in response to Wallerian degeneration and examined whether or not nonfibroblastic elements such as Schwann cells were important. Collagen was estimated as the hydroxy-proline content of normal and axotomized nerve fascicles after single or double crush lesions of both myelinated and unmyelinated nerves. Crushed unmyelinated nerve produced two to four times more collagen relative to control nerve than did the sciatic nerve. The nature of the interaction between two successive crushes was different in the two nerves. These results suggest that the degree of collagen fibrillogenesis occurring in Wallerian degeneration is dependent on peripheral nerve type and that the presence of myelin is not necessary for collagen fibrillogenesis.
Neuropathy in multiple symmetric lipomatosis. Madelung's disease.
With increasing age, peripheral neuropathy becomes more common in multiple symmetric lipomatosis (MSL) and the principal cause of severe disability. High alcohol consumption is frequently associated and the peripheral neuropathy of MSL is often attributed to alcoholism. In this study, sural nerve biopsies from MSL patients revealed an absence of acute axonal degeneration, a significant shift to the left of myelinated fibre diameter distributions, reduced indices of axonal and nerve fibre circularity, and an increase in myelin periodicity. This pathology supports the view that the neuropathy of MSL is not alcohol-induced but that a chronic distal axonopathy is an integral part of the MSL syndrome. Biochemical observations suggest a defect in catecholamine-stimulated lipolysis in MSL at a membrane level, possibly in the amount or function of Gs membrane protein or in the catalytic unit of adenylate cyclase. Evidence is presented that the frequent association of MSL with alcoholism is on the basis of an additional ethanol-induced membrane lesion involving beta-adrenergic receptors.
Peripheral neuropathy in elderly CBA mice.
A late-onset peripheral neuropathy in a mouse with a wider progressive neurological disorder is morphologically characterized for comparison with late life human neuropathies. Preliminary studies indicate the presence of a proximal, predominantly motor, axonopathy in the mouse model.
The effect of heat shock on primary cultures of brain capillary endothelium: inhibition of assembly of zonulae occludentes and the synthesis of heat-shock proteins.
Subjecting primary cultures of bovine brain microvessel endothelial cells to thermal stress (heat shock) results in: (1) an inhibition of further tight junction assembly, (2) the disappearance and/or disassembly of tight junctions, (3) a 30-fold increase in the number of plasmic fracture (PF)-face intramembrane particles, and (4) the new and/or enhanced synthesis of at least three heat-shock polypeptides (HSPs) with molecular masses of approximately 100,000, 90,000 and 70,000. Endothelial cells which are heat-shocked and allowed to recover at 37 degrees C exhibit, within the first 2 h, a marked depression in the synthesis of HSPs and the new and/or enhanced synthesis of a 47,000 dalton "recovery" polypeptide. In later periods of recovery (2-4 h), the synthesis of this polypeptide is even more pronounced and is accompanied by the new and/or enhanced synthesis of a polypeptide(s) with a molecular mass of 35 to 37,000. The appearance of these "recovery protein(s)" in the endothelial cells is concomitant with a decrease in the number of PF-face intramembrane particles and the resumption of tight junction assembly. Results of this study suggest that some of the HSPs synthesized by thermally-stressed cultures of brain endothelial cells may activate or be directly involved in a mechanism(s) to ensure survival of these cells by decreasing membrane fluidity and stabilizing the plasma membrane of these cells. Moreover, our results also suggest that the recovery of these cells from the stress of heat shock is accompanied by the synthesis of "recovery" proteins which, in some manner, may be directly involved in, or necessary for, rapidly reversing the membrane-stabilizing effect of heat shock by promoting membrane fluidity and the apparent amplified synthesis and assembly and/or reassembly of tight junctions.
Therapeutic and direct neurotoxic effects of gold therapy.
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