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Biomedical subjects

J D Pollard

Publications and source records attributed to J D Pollard.

At least 19 recordsLinked to original sources

Relationship between stress and relapse in multiple sclerosis: Part I. Important features.

OBJECTIVE: The aim of this two-year prospective study was to examine the relationship between multiple aspects of life-event stress and relapse in multiple sclerosis (MS) patients. BACKGROUND: Few studies have defined the critical features of this life-event stress; for example, stressor duration, frequency, severity, disease-dependency, valency, or stressor constructs, such as the propensity to cause emotional distress/threat or the frustration of life goals. METHODS: 101 consecutive participants with MS were recruited from two MS clinics in Sydney, Australia. Stressful life events were assessed at study-entry and at three-monthly intervals for two years. Patient-reported relapses were recorded and corroborated by neurologists or evaluated against accepted relapse criteria. RESULTS: Acute events, but not chronic difficulties (CDs), predicted relapse occurrence: acute stressor frequency counts predicted greater relapse risk, along with low disability score (EDSS) and being male. We also confirmed the bi-directional stress-illness hypothesis: stressors predicted relapse, and relapse separately predicted stressors. CONCLUSIONS: Life-event stress impacts to a small degree on MS relapse. The number and not the severity of acute stressors are most important; chronic stressors do not predict later relapse. Males and those with early stage disease are also at greater risk of relapse. MS patients should be encouraged to reduce acute stressors during times of high stress, and feel reassured that disease-related chronic stressors do not increase their relapse risk.

Acute Disease↗

Relationship between stress and relapse in multiple sclerosis: Part II. Direct and indirect relationships.

OBJECTIVE: The aim of this two-year prospective study was to determine which factors were: (i) directly related and/or (ii) indirectly related to multiple sclerosis (MS) relapse. These factors included life-event stressors, disease, demographic, psychosocial and lifestyle factors. BACKGROUND: Relatively little attention has been paid to the role of non-clinical relapse predictors (other than stressful life-events) in MS, or factors that indirectly impact on the stress-relapse relationship. METHODS: A total of 101 consecutive participants with MS were recruited from two MS clinics in Sydney, Australia. Stressful life-events, depression, anxiety and fatigue were assessed at study-entry and at three-monthly intervals for two years. Disease, demographic, psychosocial and lifestyle factors were assessed at baseline. Patient-reported relapses were recorded and corroborated by neurologists or evaluated against accepted relapse criteria. RESULTS: MS relapse was predicted by acute stressor frequency counts, coping responses that utilized social support, and being born in Australia, but not by chronic stressors, disease, demographic, psychosocial or lifestyle factors. No factors were found to indirectly impact on the stress relapse relationship. CONCLUSIONS: The number rather than severity of stressors was most important in relation to MS relapse risk, along with coping responses that utilized social support, suggesting that MS patients should avoid situations that are likely to generate multiple stressors or which provide few avenues for social support.

Adult↗

Gene expression and genotyping studies implicate the interleukin 7 receptor in the pathogenesis of primary progressive multiple sclerosis.

Multiple sclerosis (MS) is an enigmatic disease of the central nervous system resulting in sclerotic plaques with the pathological hallmarks of demyelination and axonal damage, which can be directly or indirectly orchestrated by cells from the peripheral circulation. The majority of patients with MS follow a relapsing-remitting course in the early stages of the disease (RRMS) but most ultimately enter a secondary progressive phase (SPMS). About 10% of patients follow a primary progressive course from the onset (PPMS). We measured gene expression in whole blood of people with and without chronic progressive MS (CPMS), PPMS and SPMS, to discover genes which may be differentially expressed in peripheral blood in active disease, and so identify pathologically significant genes and pathways; and we investigated genetic differences in the promoters of dysregulated genes encoded in genomic regions associated with MS. If SPMS and PPMS were independently compared to the controls, there was little overlap in the set of most dysregulated genes. Ribosomal protein genes, whose expression is usually associated with cell proliferation and activation, were dramatically over-represented in the set of most down-regulated genes in PPMS compared to SPMS (P < 10(-4), chi(2)). The T cell proliferation gene IL7R (CD127) was also underexpressed in PPMS, but was up-regulated in SPMS compared to the controls. One interleukin 7 receptor (IL7R) promoter single nucleotide polymorphism (SNP), -504 C, was undertransmitted in PPMS trios (P = 0.05, TDT), and carriers of this allele were under-represented in PPMS cases from two independent patient cohorts (combined P = 0.006, FE). The four known IL7R promoter haplotypes were shown to have similar expression levels in healthy controls, but not in CPMS (P < 0.01, t test). These data support the hypothesis that PPMS has significant pathogenetic differences from SPMS, and that IL7R may be a useful therapeutic target in PPMS.

Down-Regulation↗

A review of stress-relapse interactions in multiple sclerosis: important features and stress-mediating and -moderating variables.

Studies do not provide a consensus opinion of the relationship between stress and relapse in relapsing-remitting multiple sclerosis (RRMS). Few studies have defined the critical features of these stressful situations, or examined the role of stress-mediating and -moderating variables. Available evidence indicates that the relationship between life stress and relapse is complex, and is likely to depend on factors such as stressor chronicity, frequency, severity and type, and individual patient characteristics such as depression, health locus of control and coping strategy use. Little is known about how these factors, individually or in combination, are related to MS disease activity. Viral infections are also likely to precipitate relapse in MS, and significant life-stress may further enhance this relationship. The nature and strength of these interrelationships have strong clinical implications. MS patients are particularly vulnerable to a deteriorating cycle of stressful life events, illness episodes and disability. Timely multidisciplinary care interventions aimed at both minimizing psychological distress and physical symptoms may halt this downward reciprocal cycle. Little is known of the pathogenesis of these putative stress-induced changes in disease activity, and almost all stressor studies suffer from some biases or limitations.

Anxiety↗

A locus for hereditary sensory neuropathy with cough and gastroesophageal reflux on chromosome 3p22-p24.

Hereditary sensory neuropathy type I (HSN I) is a group of dominantly inherited degenerative disorders of peripheral nerve in which sensory features are more prominent than motor involvement. We have described a new form of HSN I that is associated with cough and gastroesophageal reflux. To map the chromosomal location of the gene causing the disorder, a 10-cM genome screen was undertaken in a large Australian family. Two-point analysis showed linkage to chromosome 3p22-p24 (Zmax=3.51 at recombination fraction (theta) 0.0 for marker D3S2338). A second family with a similar phenotype shares a different disease haplotype but segregates at the same locus. Extended haplotype analysis has refined the region to a 3.42-cM interval, flanked by markers D3S2336 and D3S1266.

Chromosome Mapping↗

P0 protein is a target antigen in chronic inflammatory demyelinating polyradiculoneuropathy.

Chronic inflammatory demyelinating polyradiculoneuropathy (CIDP) is widely regarded as an autoimmune disorder, although the autoantigen remains unknown. In this study, the sera of 21 CIDP patients were examined by immunofluorescence for antimyelin activity and by Western blotting for binding to myelin proteins. Six sera contained anti-P0 immunoglobulin G antibodies, and four of these caused conduction block and demyelination following intraneural injection in experimental animals. Absorption with P0 protein eliminated the demyelinating activity. These results show that P0 is an autoantigen in some patients with CIDP. Since P0 possesses powerful adhesion properties and is largely responsible for myelin compaction, the demonstration of demyelination by human anti-P0 antibodies provides new insight into this important and common immunopathological process.

Animals↗

Severe infantile axonal neuropathy with respiratory failure.

We describe 5 infants (4 male, 1 female) with a severe intractable form of motor-sensory axonal neuropathy. All became ventilator-dependent, 4 have since died and 1 remains static. Diaphragmatic paralysis was an early feature with generalized neuropathy evolving rapidly. Nerve conduction studies and biopsies were consistent with axonal disease. This disorder could be a new condition or part of the spectrum of inherited neuropathies of the axonal degenerative type. It may be that there is a "switching-off" in the infant's Schwann cell-axonal interactions in utero or in the early postnatal period, resulting in severe progressive deterioration and then a static period without recovery.

Biopsy↗

Hamster cardiac xenografts are protected against antibody mediated damage, early after transplantation to Lewis rats.

Antibodies play a crucial role in the rejection of xenografts. We tested the hypothesis that xenografts are protected against antibody-mediated attack early after transplantation in a concordant model. We investigated the role of xenoreactive antibodies as a stimulus for protection and the effects of a total blockade of the antibody response by the leflunomide analog malononitrilamide 279. Hamster cardiac xenografts were transplanted to Lewis rat recipients. Second transplants and retransplants of xenografts were performed to untreated rats that had a xenograft in place for 3 d. Untreated rats rejected hamster cardiac xenografts after 4.0 +/- 0.0 d. Significant levels of anti-donor IgM, as measured by flowcytometry, were present on day 3 after transplantation (11.2% +/- 2.8 vs. 1.2% +/- 0.0 on day 0, P < 0.001). 'Fresh' second xenografts transplanted to rats that had a first xenograft in place for 3 d and had anti-hamster antibodies, underwent hyperacute rejection. The first xenografts remained functioning. Xenografts that were removed on day 3 from untreated rats and then retransplanted remained functioning. Xenografts that were removed on d 3 from rats that had been treated with malononitrilamide 279, 15 mg/kg/d and were retransplanted underwent hyperacute rejection. IgM levels at the time of removal were 1.1% +/- 0.5 in these rats and not different from baseline (P = 0.96). We conclude that xenografts are protected against antibody-mediated damage early after transplantation. The presence of anti-donor antibodies might be an essential stimulus for the induction of protection. There seems to be a delicate balance between the injurious and protective effects of antibodies. Treatment strategies that are designed to block antibody formation completely might prevent the induction of protection.

Abdomen↗

A spontaneous novel XK gene mutation in a patient with McLeod syndrome.

A 29-year-old man with a history of elevated creatine kinase and necrotizing myopathy was reviewed. Prominent red cell acanthocytosis in association with reduced Kell antigen expression was present, findings consistent with the McLeod syndrome. Investigation of the patient's XK gene revealed a novel TGG- to-TAG transition at position 1023 in exon 3. This point mutation creates an in-frame stop codon (W314X), and predicts a truncated XK protein of 313 amino acids, compared with 444 amino acids in the normal XK protein. The mutation was not identified in the patient's mother or sister indicating that this mutation was spontaneous.

Adult↗

Dominance of autoreactive T cell-mediated delayed-type hypersensitivity or antibody-mediated demyelination results in distinct forms of experimental autoimmune neuritis in the Lewis rat.

The role of anti-myelin antibodies in the pathogenesis of experimental autoimmune neuritis (EAN) induced in the Lewis rat by immunization with peripheral nerve myelin has been assessed. Passive transfer with lymph node cells (LNC) or purified serum immunoglobulin from rats with EAN was employed to directly measure the contribution of B cells and anti-myelin antibodies to demyelination and disease. Lewis rats with EAN transferred by LNC or purified serum immunoglobulin from EAN donors in conjunction with a low dose of P2-specific CD4+ T cells demonstrated profound histopathological and neurophysiological evidence of demyelination during disease. In contrast, the classical adoptive transfer model of EAN in the Lewis rat induced by the injection of P2-specific CD4+ T cells was characterized by histopathological and neurophysiological evidence of axonal dysfunction and degeneration with limited demyelination. These findings demonstrate that the synergistic action of T cells and anti-myelin antibodies mediating demyelination or purely T cell mediated axonal dysfunction and degeneration are distinct pathways by which a specific autoimmune response in the peripheral nervous system can cause neurological disease.

Action Potentials↗

Chronic ophthalmoplegia with anti-GQ1b antibody.

Anti-GQ1b antibodies are typically found in patients with the Miller Fisher syndrome, all of whom will have, by definition, acute ophthalmoplegia. The authors describe three patients with chronic ophthalmoplegia in the presence of persistently high titers of immunoglobulin G anti-GQ1b antibody detected in an ELISA, one of whom improved with immunotherapy. Anti-GQ1b antibodies may be associated with some cases of chronic ophthalmoplegia of unknown cause.

Adult↗

Breakdown of the blood-retinal barrier induced by activated T cells of nonneural specificity.

The cellular and microvascular responses of JC Lewis rats to an intravenous injection of activated T cells specific for ovalbumin were examined with the retinal whole mount technique. The retina was examined at various times post-injection (pi) with the use of antibodies to the alphabeta T cell receptor (TCR) or to major histocompatibility complex class II (MHC II), the monoclonal antibody ED1, and intravascular tracers. By 12 hours pi, small numbers of TCR(+), ED1(+), and MHC II(+) cells were present within the lumen of retinal vessels, and minor breakdown of the blood-retinal barrier (BRB) and microglial activation were evident. The intensity of these responses had increased by 1 day pi, when small numbers of TCR(+) cells had also undergone extravasation. By 2 to 3 days pi, the numbers of TCR(+), ED1(+), and MHC II(+) cells in the retinal parenchyma had increased, but the BRB breakdown and microglial activation had subsided. Thus, in the absence of target antigen, activated T cells induced limited and transient breakdown of the BRB, microglial activation, and the extravasation of ED1(+), MHC II(+) monocytes. In contrast, the retina of rats that received an intraocular injection of ovalbumin in addition to the intravascular injection of T cells showed massive cellular recruitment and breakdown of the BRB. These results indicate that an increase in the number of activated T cells in the circulation, such as that which occurs during viral or bacterial infection, has the potential to result in transient breakdown of the BRB and a mild local microglial response.

Animals↗

Head and neck cancer in cardiothoracic transplant recipients.

INTRODUCTION: There is an increased incidence of cancer in patients after organ transplantation. We reviewed a large series of cardiothoracic transplant recipients to determine the incidence and natural history of head and neck malignancy. METHODS: A total of 1069 heart (n = 855), heart/lung (n = 111), and lung (n = 103) transplants were performed at Stanford University from January 1968 to February 1998. Demographic data, risk factors, and disease course were evaluated in patients who developed cancer. The mean length of follow-up was 8.9+/-5.2 years. RESULTS: One hundred twenty patients (11.2%) developed 547 non-lymphomatous malignancies. The mean number of malignancies per cancer patient was 4.6. The average time from transplantation to development of cancer was 63.1 months. A total of 50.5% of malignancies presented in the head and neck; 96.4% of these were cutaneous in origin and 3.6% were noncutaneous. Of cutaneous malignancies, 79.3% were squamous cell carcinoma and 15.9% were basal cell carcinoma Cutaneous malignancies most commonly presented on the scalp, cheek, lip, and neck. Noncutaneous malignancies involved the oral cavity (5), thyroid (4), and parotid (1). Thirteen percent of cutaneous head and neck cancers behaved aggressively, requiring extensive management including radical surgery, radiation, and/or chemotherapy. A total of 34.2% of cancer patients developed metastases and 54.9% of cancer patients died as a direct result of cancer. A total of 68% of cancer patients were smokers and 23.8% had significant alcohol use. CONCLUSION: Transplant recipients have an increased incidence of cancer presenting in the head and neck. Malignancies in transplant patients behave more aggressively than in the general population. Recognition of this aggressive biological behavior and heightened cancer surveillance should result in improved outcomes.

Adult↗

Clinical syndromes associated with tomacula or myelin swellings in sural nerve biopsies.

OBJECTIVES: To describe the neuropathological features of clinical syndromes associated with tomacula or focal myelin swellings in sural nerve biospies and to discuss possible common aetiopathological pathways leading to their formation in this group of neuropathies. METHODS: Fifty two patients with sural nerve biopsies reported to show tomacula or focal myelin swellings were reviewed, light and electron microscopy were performed, and tomacula were analysed on teased fibre studies. Molecular genetic studies were performed on those patients who were available for genetic testing. RESULTS: Thirty seven patients were diagnosed with hereditary neuropathy with liability to pressure palsies (HNPP), four with hereditary motor and sensory neuropathy type I (HMSN I) or Charcot-Marie-Tooth disease type 1 (CMT1), four with HMSN with myelin outfolding (CMT4B), three with IgM paraproteinemic neuropathy, three with chronic inflammatory demyelinating polyneuropathy (CIDP), and one with HMSN III (CMT3). CONCLUSIONS: Most of these syndromes were shown to be related to genetic or immunological defects of myelin components such as peripheral myelin protein 22 (PMP22), myelin protein zero (P0), or myelin associated glycoprotein (MAG). These proteins share the HNK-1 epitope which has been implicated in cell adhesion processes. Impaired myelin maintenance may therefore contribute to the formation of tomacula and subsequent demyelination.

Adult↗

Unusual muscle pathology in McLeod syndrome.

Muscle pathology in McLeod syndrome is usually mild; patchy necrotic or regenerating fibres, occasional internal nuclei, and the absence of an inflammatory cell infiltrate are the usual findings. We report on a 29 year old man presenting with chronic fatiguability and excessive sweating in whom an open quadriceps muscle biopsy demonstrated grouped necrotic fibres accompanied by striking patchy mononuclear cell infiltrates. The diagnosis of McLeod syndrome was made on the basis of red blood cell acanthocytosis, raised serum creatine kinase, and weak expression of Kell blood group antigens. The quadriceps muscle infiltrate consisted principally of histologically typical macrophages. These cells had prominent nucleoli, displayed numerous mitoses, and were strongly CD68+. A small population of typical CD3+, CD43+ lymphocytes was also present. In addition, a small population of large atypical CD3+ cells was noted. Immunoperoxidase stains for CD20, CD30, CD79a, and CD56 were negative. Immunocytochemical studies for the common muscular dystrophies were normal. The muscle biopsy findings highlight a potential for confusion of this condition with idiopathic polymyositis. The expanding range of muscle pathology reported in McLeod syndrome, to which this case adds, may reflect variable involvement of the XK gene on chromosome Xp21, or of the adjacent loci of Duchenne muscular dystrophy and chronic granulomatous disease.

Adult↗

Passive transfer of demyelination by serum or IgG from chronic inflammatory demyelinating polyneuropathy patients.

Chronic inflammatory demyelinating polyneuropathy (CIDP) is regarded as an autoimmune disorder, but no clearly defined autoimmune mechanism has been described. Although most patients respond to plasma exchange, no convincing role for autoantibodies has yet been demonstrated. In this study, we have successfully passively transferred disease using sera and purified IgG from 4 of 12 patients responsive to plasma exchange by bypassing the blood-nerve barrier by intraneural injection or opening it by activated T cells. The sera from CIDP patients or purified IgG produced marked conduction block and demyelination, but normal sera or IgG or that from patients with multiple sclerosis or other neuropathies did not. These observations strongly support an important role for anti-myelin/Schwann cell autoantibodies in the pathogenesis of CIDP at least in some patients.

Action Potentials↗

TNF alpha, IFN gamma and IL-2 mRNA expression in CIDP sural nerve biopsies.

Proinflammatory cytokines contribute to the regulation of the disease process in inflammatory neuropathies. Cellular localisation of cytokine expression in CIDP nerve biopsies should provide further insight into the pathogenic mechanisms of the disease and the individual cells involved. In this study in situ hybridisation was used to determine the exact localisation and identity of cells that express TNF alpha, IFN gamma and IL-2 mRNA within the CIDP nerve. Paraffin embedded and frozen sural nerve biopsies from three acute phase CIDP patients were used for the study. Sections of these samples were probed with digoxigenin labelled oligoprobes for TNF alpha, IFN gamma and IL-2. The results demonstrate localisation of cytokine expression to the inner rim of the perineurium, epineurial and endoneurial blood vessels and infiltrating inflammatory cells. In addition strong staining for TNF alpha. mRNA was widespread in the endoneurium in areas consistent with/suggestive of Schwann cells. Expression of cytokines in the perineurium and endoneurial blood vessels may have pertinent implications with respect to the breakdown of the blood nerve barrier associated with CIDP. In the very least the potential for an immunomodulatory role may be ascribed to these cells.

Autoimmune Diseases↗

Activated non-neural specific T cells open the blood-brain barrier to circulating antibodies.

Previous studies have shown that activated T cells can successfully cross endothelial barriers and will accumulate in tissue which contains their specific antigen. Myelin specific T cells (e.g. myelin basic protein specific) are recognized to play an important role in the induction of experimental autoimmune demyelinating disease of the CNS and have been shown to induce blood-brain barrier breakdown effectively. In this study we injected T cells reactive to a non-neural antigen (ovalbumin) systemically into Lewis rats and caused them to accumulate in the thoracic dorsal column by a prior injection of ovalbumin. Selected rats were given systemic demyelinating antibody, antimyelin oligodendrocyte antibody (anti-MOG antibody), to provide evidence of permeability changes to the blood-brain barrier. These animals were compared with control rats given systemic anti-P0 monoclonal antibody and to other rats given a direct micro-injection (3 microliters) of anti-MOG antibody into the thoracic dorsal column. All animals were monitored by serial neurophysiological studies and by histological examination. Direct anti-MOG antibody injection produced a focal block in conduction at the injection site and a large circumscribed area of primary demyelination with axonal preservation within the dorsal column. An even more profound conduction block and more extensive plaque-like region of demyelination were seen in animals given antigen, activated T cells and systemic antibody. However, animals given antigen and T cells without relevant antibody did not show conduction impairment or demyelination, except when very large numbers of T cells were given; such rats developed severe irreversible axonal damage. This study demonstrates the blood-brain barrier is disrupted by activated T cells of non-neural specificity and allows large plaque-like regions of demyelination to form in the presence of circulating antimyelin antibody. The relevance of this finding to multiple sclerosis is discussed.

Animals↗