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Biomedical subjects

P Hauer

Publications and source records attributed to P Hauer.

17 recordsLinked to original sources

Antiretroviral use and other risks for HIV-associated neuropathies in an international cohort.

OBJECTIVE: To explore the association between specific nucleoside reverse transcriptase inhibitors and sensory neuropathies (SNs) and define the modifying roles of hepatitis C (HCV), vitamin B12 deficiency, and impaired glucose tolerance. METHODS: The authors conducted a prospective cohort study of 147 HIV-infected adults at two sites chosen to emphasize demographic differences. Standardized assessments included detailed antiretroviral histories, neurologic examinations, skin biopsies for epidermal nerve quantitation, and quantitative sensory testing. RESULTS: There were significant differences between subjects at Johns Hopkins University (JHU) and Monash University (MU) in gender, race, HIV transmission route, and HCV seroprevalence. Symptomatic SN was present in 49% at JHU and 55% at MU (chi2 = 4.02, p = 0.134) and was significantly more common in those at least age 40 than younger patients (odds ratio [OR] = 2.87, 95% CI = 1.27, 6.49). After adjusting for site, age, and CD4 cell count, exposure to didanosine (ddI) or stavudine (d4T) was associated with an significantly increased likelihood of symptomatic SN (ddI: OR = 3.21, 95% CI: 1.56, 6.60; d4T: OR = 7.66, 95% CI: 2.89, 20.33). Plasma HIV RNA, lactate, and HCV were not associated with SN. Quantitative vibratory testing identified neuropathy with a positive predictive value of 76% and epidermal nerve fiber densities 59%. CONCLUSIONS: Exposure to stavudine and didanosine was significantly associated with a heightened risk for symptomatic sensory neuropathy. Reduced vibration thresholds and epidermal nerve fiber densities had the highest diagnostic efficiency of the laboratory indicators of neuropathy examined, but were relatively insensitive in isolation.

Adult↗

Factors influencing nerve regeneration in a trial of timcodar dimesylate.

The authors assessed the ability of the neurophilin compound, timcodar dimesylate, to accelerate the return of epidermal nerve fiber density (ENFD) after a standardized nerve injury in a randomized double blind, placebo controlled trial. While there was no difference in the regeneration rate between the treatment and placebo arms, the baseline ENFD (p = 0.006), height (p = 0.02), and race (p = 0.03) were associated with the regeneration rate.

Adult↗

Reduced intraepidermal nerve fiber density in HIV-associated sensory neuropathy.

OBJECTIVE: To explore the relationship between intraepidermal nerve fiber (IENF) density in HIV-associated sensory neuropathy (HIV-SN) to measurements of neuropathy severity and progression of HIV disease. BACKGROUND: SN affects 30% of individuals with AIDS, and treatment is often ineffective. Recombinant human nerve growth factor (rhNGF) has been proposed as a trophic factor for unmyelinated nerve fibers injured in HIV-SN, and a clinical trial has recently concluded. Skin biopsy with IENF density determination has emerged as a diagnostic test for patients with small-fiber sensory neuropathy. METHODS: Sixty-two of the 270 patients with HIV-SN who participated in the trial of rhNGF were included in a substudy examining epidermal nerve fibers. IENF density was compared with neuropathic pain intensity (measured with the Gracely Pain Scale), patient and physician global pain assessments, quantitative sensory testing, CD4 counts, and plasma HIV RNA levels both at baseline and at conclusion of the placebo-controlled phase. RESULTS: IENF density was inversely correlated with neuropathic pain as measured by patient (p = 0.004) and physician (p = 0.05) global pain assessments, but not using the Gracely Pain Scale. Decreased IENF density at the distal leg was associated with lower CD4 counts and higher plasma HIV RNA levels. IENF density measurements were stable over time. CONCLUSIONS: IENF loss at the distal leg is associated with increased neuropathic pain, lower CD4 counts, and higher plasma viral load in HIV-SN. The robustness of the longitudinal measurement of IENF density supports its use in future longitudinal studies and clinical trials.

Acquired Immunodeficiency Syndrome↗

Subclinical sensory neuropathy in late-onset restless legs syndrome.

OBJECTIVE: To determine the prevalence of different forms of peripheral neuropathy in patients with restless legs syndrome (RLS) and correlate the findings with other clinical characteristics. BACKGROUND: RLS is characterized by a desire to move the extremities, often associated with paresthesias or dysesthesias, motor restlessness, worsening of symptoms with rest with relief by activity, and worsening of symptoms in the evening or night. The association between RLS and peripheral neuropathy remains controversial. The observation that many patients with small-fiber neuropathy also complain of RLS prompted this prospective case series. METHODS: Twenty-two consecutive patients with RLS were evaluated for evidence of large-fiber neuropathy (LFN) and small sensory fiber loss (SSFL). RESULTS: In eight of the 22 (36%) patients, neuropathy was identified. Three patients had pure LFN; two had mixed LFN and SSFL; and three had isolated SSFL. The SSFL group had a later onset of RLS (p < 0.009), reported pain in their feet with RLS more frequently (p < 0.001), and tended to have no family history of RLS (p < 0.078). Patients with LFN did not have similar associations with age at onset, family history status, or presence of pain. CONCLUSION: The results suggest that two forms of RLS exist: one is triggered by painful dysesthesias associated with SSFL, has later onset, and no family history; and one without involvement of SSF, with an earlier onset age, positive family history for RLS, and no pain. The authors hypothesize that patients with the SSFL subtype of RLS will preferentially respond to neuropathic pain medications.

Adult↗

Epidermal nerve fiber density and sural nerve morphometry in peripheral neuropathies.

OBJECTIVE: To study intraepidermal nerve fiber (IENF) density in distal leg skin biopsies, sural nerve morphometry, electrophysiology, and clinical features in patients with peripheral neuropathies. METHODS: We studied 26 patients with neuropathic complaints who had undergone clinical evaluation, nerve conduction studies, distal leg skin biopsy, and sural nerve biopsy. We quantified densities of IENF and of myelinated and unmyelinated fibers in the sural nerve. Associations among skin and sural nerve morphometric measures and sensory nerve action potential (SNAP) amplitudes were examined nonparametrically. Morphometric measures were examined with respect to diagnostic category of neuropathy. RESULTS: IENF density correlated with the densities of sural nerve total myelinated (r = 0.57, p = 0.0011), small myelinated (r = 0.53, p = 0.0029), and large myelinated fibers (r = 0.49, p = 0.0054). There was a trend toward an association between IENF and sural nerve unmyelinated fiber densities (r = 0.32, p = 0.054). Sural SNAP amplitude and large myelinated fiber densities were highly correlated (r = 0.87, p < 0.0001). IENF density and sural nerve small fiber measures were concordant in 73% of patients. Reduced IENF density was the only indicator of small fiber depletion in 23% of cases. It was usually normal in acquired demyelinating neuropathies and where clinical suspicion for neuropathy was low. CONCLUSIONS: Distal leg Intraepidermal nerve (IENF) density may be more sensitive than sural nerve biopsy in identifying small fiber sensory neuropathies. Assessments of IENF density and large fiber measures on biopsy and electrophysiology are both useful for characterizing sensory and sensorimotor neuropathies.

Action Potentials↗

Epidermal innervation: changes with aging, topographic location, and in sensory neuropathy.

In previous work we demonstrated little effect of aging on the density and spatial pattern of epidermal innervation, however, this was restricted to two sites proximal and distal in the leg. To expand on these observations, we used punch skin biopsy in ten healthy controls to examine the variation in intra-epidermal nerve fiber (IENF) density at multiple specific sites in the leg. There was a consistent gradient in IENF from proximal to distal sites in all subjects, but minimal effect of age was noted. In the older age group (> or =70 years), the IENF densities ranged from 28.6+/-1.9 IENF/mm at the trunk to 15.5+/-1.5 at the distal leg. In a group of six patients with painful sensory neuropathy, we confirmed a length-dependent reduction in IENF. We observed what may be a predegenerative change, namely increased branching of epidermal nerve fibers at clinically unaffected sites. These data suggest little age-related change in IENF, at least up to age 75 years, in healthy normals. The increased branching complexity noted in unaffected sites in patients with sensory neuropathies implies that this may be a predegenerative change, preceding the actual loss of nerve fibers. Skin biopsy may be a useful tool for assessing the topographic extent and degree of nerve fiber damage in sensory neuropathies and its quantitative interpretation should be little affected by aging changes.

Adult↗

Epidermal nerve fiber density: normative reference range and diagnostic efficiency.

BACKGROUND: The sensitivity of neuron-specific antibodies permit the identification of the small unmyelinated nerve fibers within the skin. OBJECTIVES: To develop a reference range of epidermal nerve fiber density in humans, and to evaluate their diagnostic efficiency for sensory neuropathies. METHODS: Ninety-eight normal controls (age range, 13-82 years) were examined with both directed neurologic examinations and quantitative sensory testing. The diagnostic utility was examined in 20 patients with sensory neuropathies. Each subject had 2 punch biopsies performed at each site in the thigh and distal part of the leg (total of 392 biopsies). After formalin fixation, 50-microm-thick free-floating sections were stained with a polyclonal antibody to neuron-specific ubiquitin hydrolase, anti-protein gene product 9.5. We enumerated intraepidermal nerve fibers per millimeter to derive a "linear density." The linear density technique was validated against a stereological technique that used the fractionator to measure the total length of intraepidermal nerve fibers per 3-mm punch. RESULTS: The biopsy technique was well tolerated, with no notable complications. The linear density quantitation was rapid and had high intraobserver and interobserver reliability. We determined that the density of intraepidermal fibers in normal controls was 21.1+/-10.4 per millimeter (mean +/- SD) in the thigh (fifth percentile, 5.2 per millimeter), and was 13.8+/-6.7 per millimeter at the distal part of the leg (fifth percentile, 3.8 per millimeter). Significantly higher intraepidermal fiber densities were seen in the youngest group (P = .004), and we observed no significant effect of race, sex, height, or weight. The density at the thigh was significantly correlated with that at the distal part of the leg (P = .01) and was consistently higher by about 60%, a reflection of the normal proximal-distal gradient. The results obtained with stereology and the linear density correlated significantly (P=.001), providing internal validation for the technique. Epidermal nerve fiber density was significantly reduced (P = .001) in patients with sensory neuropathies. With a cutoff derived from the fifth percentile of the normative range for the distal part of the leg, the technique had a positive predictive value of 75%, a negative predictive value of 90%, and a diagnostic efficiency of 88%. CONCLUSIONS: We have established a reference range for intraepidermal nerve fiber density in normal humans by means of a simple quantitation method based on enumeration of individual intraepidermal nerve fibers on vertical sections of punch skin biopsy specimens stained with the sensitive panaxonal marker anti-protein gene product 9.5. The utility of the density measurement was confirmed for sensory neuropathy with a diagnostic efficiency of 88%. Skin biopsies may be useful to assess the spatial distribution of involvement in peripheral nerve disease and the response to neurotrophic and other restorative therapies.

Adolescent↗

Small-fiber sensory neuropathies: clinical course and neuropathology of idiopathic cases.

We describe the clinical features, natural history, and neuropathology of 32 patients presenting with "burning feet," for whom no specific cause was identified. All had neuropathic pain in the feet and morphological abnormalities of cutaneous innervation in skin obtained using punch biopsy. Most (29) had an abnormal sensory examination. All had normal strength, proprioception, tendon reflexes, and nerve conductions. Two clinical patterns were apparent, based on natural history and spatial distribution of cutaneous denervation. Most (28) patients presented with neuropathic pain initially restricted to the feet and toes but extending more proximally to involve the legs and hands with time. Intraepidermal nerve fiber (IENF) density was most severely reduced distally, with more normal IENF densities in skin from proximal sites. In contrast, a minority (4) presented with the abrupt onset of generalized cutaneous burning pain and hyperesthesia. In these patients, IENF densities were reduced in skin from both proximal and distal sites. Absolute IENF densities in calf skin were reduced below the lower limit of normal (5th percentile) in 26 (81%). Of the 6 who underwent sural nerve biopsy, 4 had selective loss of small myelinated and/or unmyelinated axons and 2 had normal histology and fiber densities despite reduced IENF densities in skin biopsy specimens. Punch skin biopsy from proximal and distal sites is a useful means of assessing these distinctive patients and may provide further insight into pathophysiology.

Adult↗

Unilateral postherpetic neuralgia is associated with bilateral sensory neuron damage.

Shingles can cause chronic neuropathic pain (postherpetic neuralgia) long after skin lesions heal. To investigate its causes, we quantitated immunolabeled sensory neurites in skin biopsies from 18 subjects with and 16 subjects without postherpetic neuralgia after unilateral shingles. Subjects rated the intensity of their pain. Punch skin biopsies were evaluated from the site of maximum pain or shingles involvement, the homologous contralateral location, and a site on the back, distant from shingles involvement. Sections were immunostained with anti-PGP9.5 antibody, a pan-axonal marker, and the density of epidermal and dermal neurites determined. The group with postherpetic neuralgia had a mean density of 339 +/- 97 neurites/mm2 in shingles-affected epidermis compared with a density of 1,661 +/- 262 neurites/mm2 for subjects without pain. Neurite loss was more severe in epidermis than dermis. Unexpectedly, the group with pain had also lost half of the neurites in contralateral epidermis. Contralateral damage occurred despite the lack of contralateral shingles eruptions or pain, correlated with the presence and severity of ongoing pain at the shingles site, and did not extend to the distant site. Thus, the pathophysiology of postherpetic neuralgia pain may involve a new bilateral mechanism.

Aged↗

Intraepidermal nerve fiber density in patients with painful sensory neuropathy.

Despite prominent symptoms of neuropathic pain, patients with small-fiber sensory neuropathies have few objective abnormalities on clinical examination and routine electrodiagnostic studies. We quantified intraepidermal nerve fiber (IENF) density in sections of skin obtained by punch skin biopsy, and found it to be significantly reduced in patients with painful sensory neuropathies compared with age-matched control subjects. In addition, IENF density correlated with clinical estimates of neuropathy severity, as judged by the extent of clinically identifiable sensory abnormalities. IENF density at the calf was lower than that obtained from skin at more proximal sites, indicating the length dependency of small-fiber loss in these neuropathies.

Adult↗

Cutaneous innervation in sensory neuropathies: evaluation by skin biopsy.

OBJECTIVE: To use punch skin biopsies to evaluate the loss of intra-epidermal nerve fibers in sensory neuropathies. BACKGROUND: Previous assessments of epidermal nerve fibers have been constrained by relatively insensitive staining techniques and variability in quantification. METHODS: Punch skin biopsies were performed on the heel and leg of HIV-seronegative controls, HIV-seropositive individuals without neuropathy, and patients with sensory neuropathies, including HIV-seronegative and HIV-positive individuals. After formalin fixation, 50-microns free-floating sections were stained with a monoclonal antibody to neuron-specific ubiquitin hydrolase, PGP9.5. The number of intraepidermal fibers/mm in at least three sections from each patient was counted by one observer blinded to site and clinical status. RESULTS: Dermal and epidermal nerve fibers were readily identified and quantified. The immunostaining technique reliably demonstrated a dermal plexus of myelinated and unmyelinated fibers parallel to the surface of the skin. In the epidermis, unmyelinated fibers ascended vertically between the keratinocytes to reach the stratum corneum. The number of intra-epidermal fibers/mm in the distal leg (mean +/- SEM) was 17.84 +/- 3.03 in seven HIV-seronegative controls. Epidermal fiber number was significantly reduced (p = 0.01) in five HIV-infected patients with sensory neuropathies associated with didanosine or zalcitabine therapy (1.07 +/- 0.40) and in eight HIV-seronegative patients with sensory neuropathies (3.1 +/- 3.1). Four of five neurologically normal HIV-seropositive subjects had reduced numbers of epidermal fibers, suggesting a subclinical neuropathy. Serial biopsies in one individual demonstrated the evolution of degenerating epidermal fibers after development of zalcitabine-induced sensory neuropathy. CONCLUSION: Skin biopsies stained with the sensitive panaxonal marker anti-PGP9.5 demonstrated significant reduction in intraepidermal fibers in sensory neuropathies. This simple and repeatable technique is a reliable method for quantitation of small cutaneous sensory fibers. In addition, skin biopsies may be useful in assessing the course and spatial distribution of involvement in peripheral nerve disease.

Adult↗

Polarization of myelinating Schwann cell surface membranes: role of microtubules and the trans-Golgi network.

Schwann cells polarize their surface membranes into several biochemically and ultrastructurally discrete regions of the myelin internode. To form these membrane domains, Schwann cells must sort, transport, and target membrane proteins appropriately. In this study, microtubule disassembly, confocal microscopy, and electron microscopic immunocytochemistry were used to investigate mechanisms involved in targeting P0 protein (P0), the myelin-associated glycoprotein (MAG), and laminin to different plasma membrane domains in myelinating Schwann cells from 35-d-old rat sciatic nerve. After microtubule disassembly by colchicine, all three proteins accumulated in Schwann cell perinuclear cytoplasm, indicating that microtubules are necessary for their transport. The distributions of Golgi membranes, endoplasmic reticulum, and intermediate filaments were also altered by colchicine treatment. Electron microscopic immunocytochemical studies indicated that P0 and MAG are sorted into separate carrier vesicles as they exit the trans-Golgi network. Following microtubule disassembly, P0-rich carrier vesicles fused and formed myelin-like membrane whorls, whereas MAG-rich carrier vesicles fused and formed mesaxon-like membrane whorls. Microtubule disassembly did not result in mistargeting of either P0 or MAG to surface membranes. These results indicate that following sorting in the trans-Golgi network, certain carrier vesicles are transported along the myelin internode on microtubules; however, microtubules do not appear to target these vesicles selectively to specific sites. The targeting of P0-, MAG-, and laminin-rich carrier vesicles to specific sites most likely occurs by ligand receptor binding mechanisms that permit fusion of carrier vesicles only with the appropriate target membrane.

Animals↗

Axonal regulation of myelin protein mRNA levels in actively myelinating Schwann cells.

Upon transection of a peripheral nerve, axons distal to the transection degenerate. As a consequence of this axonal degeneration, myelin-forming Schwann cells cease biosynthesis of new myelin membrane, contribute to phagocytosis of previously formed myelin, and markedly down-regulate expression of myelin-specific markers. Among the most prominent of these down-regulated markers are the major structural proteins of peripheral myelin, Po and myelin basic protein (MBP). We have used slot blot and in situ hybridization techniques to demonstrate that for actively myelinating Schwann cells, down-regulation of the Po and MBP genes occurs primarily at the level of mRNA expression. Together with other recent data, these findings strongly argue for axonal modulation of Po and MBP gene transcription during active myelination.

Animals↗

[Trauma to the axillary artery in shoulder dislocations. Apropos of a case].

The authors have observed one case of injury to the axillary artery complicating anterior dislocation of the shoulder. It produced a marked haematoma of the axilla and ischaemia of the upper limb. At operation, avulsion of a posterior branch was associated with thrombosis of the trunk of the axillary artery. The result was good after saphenous vein grafting. This complication is very rare. Similar complications could arise from an excessively forceful reduction.

Adult↗

Measurement of Clostridium perfringens beta-toxin production by surface plasmon resonance immunoassay.

A rapid and sensitive assay using surface plasmon resonance (SPR) immunoassay has been developed for the detection of Clostridium perfringens beta-toxin. The SPR immunoassay was conducted off-line by passing fermentation broth by a sensor chip coated with a monoclonal antibody specific for C. perfringens beta-toxin. Quantitation of toxin using SPR immunoassay was achieved by mass transport analysis; results were obtained within 20 min. The SPR immunoassay was compared with an ELISA and the traditional bioassay for C. perfringens beta-toxin. The SPR immunoassay and ELISA detected at least twofold differences in toxin levels at 95% confidence over a broad range of toxin concentrations. The traditional bioassay did not produce the resolution observed with the immunoassays. The SPR immunoassay allows for real-time monitoring of beta-toxin accumulation during production and permits the bioengineer to harvest C. perfringens fermentations when toxin is most concentrated. The SPR methodology may be applied to other fermentations to enhance and optimize toxin yields.

Animals↗