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Biomedical subjects

T Olsson

Publications and source records attributed to T Olsson.

At least 145 records · Page 8Linked to original sources

Increased fibrinogen levels and acquired hypofibrinolysis in young adults with ischemic stroke.

BACKGROUND AND PURPOSE: Elevated fibrinogen levels and abnormalities in the fibrinolytic system are related to the occurrence of cardiovascular events. However, the role of these factors in the evolution of cerebrovascular disease has received less attention, in particular in young stroke patients. The aim of this study was to evaluate possible abnormalities in plasma fibrinogen levels and the state of the fibrinolytic system in young adults with a first-ever ischemic stroke. METHODS: This study is based on 102 consecutive patients aged 18 to 44 years admitted between January 1991 and May 1996 as a result of a first ischemic stroke. Forty-one healthy controls were recruited. Evaluations of anthropometric/metabolic variables, plasma fibrinogen levels, and the fibrinolytic system were undertaken >/=3 months (mean, 5.4+/-2.0 months) after admission. RESULTS: Patients had lower tissue plasminogen activator activity and increased plasminogen activator inhibitor type 1 activity at baseline, as well as increased tissue plasminogen activator mass concentration both at baseline and after a venous occlusion test. Overall, there were no significant differences between the main etiologic subgroups regarding plasma fibrinogen levels and fibrinolytic variables. Baseline fibrinolytic variables were strongly correlated with body mass index, serum triglycerides, and cholesterol levels. After adjustments in multivariate models, fibrinogen levels and tissue plasminogen activator mass concentration both at baseline and after venous occlusion test remained significantly increased in patients. Logistic multiple regression analyses indicated that plasma fibrinogen was a strong predictor of ischemic stroke (odds ratio, 11.25; 95% CI, 3.27 to 38. 69). CONCLUSIONS: Increased fibrinogen levels and tissue plasminogen activator mass concentration are independently associated with ischemic stroke in young adults. Metabolic perturbations are closely interrelated with aberrations in tissue plasminogen activator and plasminogen activator inhibitor type 1 activity in these patients, findings consistent with an acquired hypofibrinolysis.

Adolescent↗

Cognitive impairment in young adults with infratentorial infarcts.

OBJECTIVE: To describe cognitive functions and functional outcome in young patients with isolated infratentorial infarcts. BACKGROUND: Contemporary knowledge implies a cerebellar contribution to cognitive behavior. Neuropsychological examination of patients with selective cerebellar lesions provides an opportunity to document the existence and nature of clinically relevant cognitive manifestations from lesions of the cerebellum. METHODS: Prospective case series. The patients were assessed acutely and at 4 and 12 months after onset. Twenty-four patients from a consecutive series of 105 patients aged 18 to 44 years with cerebral infarction had a brain stem or cerebellar infarction. Fourteen age-matched controls were used for neuropsychological comparisons. Evaluation included MRI, angiography, and transesophageal echocardiography. Disability and neurologic dysfunction were assessed by the modified Rankin scale, NIH stroke scale, and maximal working capacity. A comprehensive neuropsychological battery was performed at baseline in 20 of the 24 patients. RESULTS: Eighteen patients had a cerebellar infarct. Two patients had lateral medullary infarcts, and two isolated pontine infarcts. Twenty-two patients had a favorable outcome according to the modified Rankin scale (grade 0-2) and the NIH scale. In contrast, 12 patients were granted full or partial sick leave at the 4 months follow-up, and 10 patients at 12 months. Patients generally performed worse than controls in various aspects of cognitive function, especially in tasks concerning working memory, the temporary storage of complex information, and cognitive flexibility. Measures of verbal IQ (r = -0.74) and performance IQ (r = -0.78) were related to the size of the infarct. The block design task performance in the early poststroke period predicted maximal working capacity at 12 months. CONCLUSIONS: Cerebellar damage impairs central aspects of attention and visuospatial skills. In contrast, intelligence and episodic memory remain unchanged. When the lesion involves large portions of the cerebellar hemispheres, changes concerning broad areas of intelligence may occur. The prognosis is favorable for neurologic dysfunction, but cognitive deficits may prevent return to work.

Adolescent↗

The paternal allele of the H19 gene is progressively silenced during early mouse development: the acetylation status of histones may be involved in the generation of variegated expression patterns.

Transcriptional silencing can reflect heritable, epigenetic inactivation of genes, either singly or in groups, during the life-time of an organism. This phenomenon is exemplified by parent-of-origin-specific inactivation events (genomic imprinting) for a subset of mammalian autosomal genes, such as H19. Very little is known, however, about the timing and mechanism(s) of silencing of the paternal H19 allele during mouse development. Using a novel in situ approach, we present evidence that the silencing of the paternal H19 allele is progressive in the trophectodermal lineage during early mouse development and generates variegated expression patterns. The silencing process apparently involves recruitment of histone deacetylases since the mosaic paternal-specific H19 expression reappears in trichostatin A-treated mouse conceptuses, undergoing in vitro organogenesis. Moreover, the paternal H19 alleles of PatDup.d7 placentas, in which a region encompassing the H19 locus of chromosome 7 is bipaternally derived, partially escape the silencing process and are expressed in a variegated manner. We suggest that allele-specific silencing of H19 share some common features with chromatin-mediated silencing in position-effect variegation.

Acetylation↗

Transient inhibition of histone deacetylation alters the structural and functional imprint at fission yeast centromeres.

Histone acetylation may act to mark and maintain transcriptionally active or inactive chromosomal domains through the cell cycle and in different lineages. A novel role for histone acetylation in centromere regulation has been identified. Exposure of fission yeast cells to TSA, a specific inhibitor of histone deacetylase, interferes with repression of marker genes in centromeric heterochromatin, causes chromosome loss, and disrupts the localization of Swi6p, a component of centromeric heterochromatin. Transient TSA treatment induces a heritable hyperacetylated state in centromeric chromatin that is propagated in lineages in the absence of drug. This state is linked in cis to the treated centromere locus and correlates with inheritance of functionally defective centromeres and persistent chromosome segregation problems. Thus, assembly of fully functional centromeres is partly imprinted in the underacetylated or transcriptionally silent state of centromeric chromatin.

Acetylation↗

The gene for a T lymphocyte triggering factor from African trypanosomes.

An early and essential event in the protective immune response against most viruses and protozoa is the production of interferon-gamma (IFN-gamma). In contrast, during infection with African trypanosomes, protozoan parasites that cause human sleeping sickness, the increased levels of IFN-gamma do not correlate with a protective response. We showed previously that African trypanosomes express a protein called T lymphocyte triggering factor (TLTF), which triggers CD8(+) T lymphocytes to proliferate and to secrete IFN-gamma. Here, we isolate the gene for TLTF and demonstrate that the recombinant version of TLTF specifically induces CD8(+), but not CD4(+), T cells to secrete IFN-gamma. Studies with TLTF fused to the green fluorescent protein show that TLTF is localized to small vesicles that are found primarily at or near the flagellar pocket, the site of secretion in trypanosomes. TLTF is likely to be only the first example of a class of proteins that we designate as trypanokines, i.e., factors secreted by trypanosomes that modulate the cytokine network of the host immune system for the benefit of the parasite.

Amino Acid Sequence↗

Hypercortisolism after stroke--partly cytokine-mediated?

Increased activity of the hypothalamic-pituitary-adrenal (HPA) axis is common early after stroke. Hypercortisolism is a prominent manifestation. Normally the secretion of cortisol is regulated by adrenocorticotrophic hormone (ACTH), but recently an ACTH/cortisol dissociation after stroke was reported. Cytokines may influence the HPA axis, and plasma IL-6 levels are elevated following stroke. We investigated correlations between cortisol, ACTH, and cytokines, and between blood pressure and blood hormone levels early after stroke in seven stroke patients. All had neurological symptoms secondary to brain infarctions. Blood samples for analysis of cortisol, ACTH, IL-6, TNF alpha, norepinephrine, and epinephrine were collected four times daily, and 24-h blood pressure was measured. Plasma IL-6, but not ACTH, correlated significantly to serum cortisol. Catecholamine levels correlated with cytokine and cortisol levels. This study suggests that several routes for HPA-axis dysregulation is present early after stroke. Cytokine release may play an important role in this situation.

Adrenocorticotropic Hormone↗

Expression of MHC class II CD4+ and ED1 molecules in association with selective hippocampal neuronal degeneration after long-term adrenalectomy.

The neuroendocrine and the immune systems are interconnected. Monoclonal antibodies against major histocompatibility complex (MHC) class I, class II, CD4, CD8, pan T cells, and macrophages were used for immunostaining brains from adrenalectomized (ADX) and shamoperated rats to investigate the potential involvement of the immune/inflammatory mechanisms in the neurodegeneration of hippocampus after ADX. Our results demonstrate upregulation of MHC class II, CD4 antigens and activated microglial marker-ED1 expression selectively in the hippocampus after ADX. The absence of CD5 reactivity precludes that these activated cells were T lymphocytes. The activated microglial cells may either be instrumental in the hippocampal neuronal loss or activated secondarily to the neuronal degeneration after long-term adrenalectomy.

Adrenalectomy↗

Major histocompatibility complex-controlled protective influences on experimental autoimmune encephalomyelitis are peptide specific.

The myelin basic protein (MBP) peptide 63-88-induced experimental autoimmune encephalomyelitis (EAE) and its associated T cell cytokine profile are influenced by the rat major histocompatibility complex (MHC). There is an allele-specific protective influence of the MHC class I region, whereas the MHC class II region display either disease-protective or -promoting effects. To investigate if the MHC-associated protection is dependent on certain combinations of MBP peptide and MHC molecules, we have now used another peptide (MBP 89-101). A broader and different set of rat MHC alleles were associated with EAE induced with MBP 89-101 as compared to MBP 63-88. All EAE-susceptible strains mounted peptide-specific strong T helper (Th) 1-like immune responses in vitro. Immunization of rats with an extended peptide (MBP 87-110) induced EAE associated with the same MHC haplotypes as the 89-101 peptide, except in LEW.1N (RT1 pi) rats which were relatively resistant. Only this strain responded with additional Th2-like and transforming growth factor-beta responses to the peptide in vitro. In vivo depletion of CD8+ cells aggravated the disease in this strain. We conclude that both MHC-controlled promoting and protective influences on EAE are dependent on certain MHC/MBP peptide combinations, and that the 87-110 region of MBP contains a major MHC-associated encephalitogenic epitope in the rat.

Alleles↗

Glutamate induced astroglial swelling--methods and mechanisms.

Glutamate (Glu) plays an important role in the early development of brain injuries caused by ischemia, i.e. stroke, or brain trauma. Glu induces a rapid astroglial swelling which, in turn, deranges the composition of neuroactive substances in the extracellular space. We report that Glu can induce astroglial cell swelling by interaction with metabotropic Glu receptors (mGluRs). Furthermore, the Na(+)-K(+)-2Cl- cotransporter, a Na(+)-K(+) ATPase, and the Na(+)-dependent electrogenic Glu carrier seem to be involved in this Glu-induced astroglial cell swelling. Two methods for studying cell swelling arc described. One is based on variations in the signal emitted by the fluorescent probe fura-2/AM when excited at its isosbestic point. These variations were shown to be directly proportional to variations in intracellular volume. Relative changes in cell volume and intracellular calcium concentration could be detected simultaneously in single astroglial cells. The other method used permits the cell volume to be calculated in relative terms with the aid of image processing techniques.

Animals↗

The lymphopenia (lyp) gene controls the intrathymic cytokine ratio in congenic BioBreeding rats.

The lymphopenia gene (lyp) on rat chromosome 4 is closely linked to autoimmune diabetes in the BioBreeding (BB) rat. Lyp controls the number of peripheral lymphocytes by reducing T cells of the RT6+ phenotype by almost 90%. Following nine cycle of marker-assisted cross-intercross breeding we have developed congenic lyp/lyp, lyp/+ and +/+ (wildtype) rats on the background of DR rats. Prediabetic and insulitis free lyp/lyp, lyp/+ and +/+ rats were used to determine the effect of lyp on cytokine expression in the thymus. In situ hybridization of thymus cryosections showed that the interferon gamma (IFN gamma) mRNA expression was highest in lyp/lyp rats and the hybridization signal was restricted to the medullary compartment. The frequency of IFN gamma and interleukin (IL)-10 mRNA expressing cells in isolated thymocytes determined by quantitative image analysis, demonstrated an increased IFN gamma: IL-10 ratio in thymocytes from lyp/lyp homozygotes compared to lyp/+ and +/+ rats. This confirmed a lyp gene dose-dependent segregation of the IFN gamma high phenotype. Recombinant human glutamic acid decarboxylase (GAD65) increased the number of IFN gamma and IL-10 mRNA expressing thymocytes after in vitro culture. We conclude that the quantitative ratio of cytokine producing thymocytes is associated with the lyp genotype. These potentially autoreactive thymocytes may explain the establishment of beta-cell directed autoimmunity in the BB rat despite peripheral lymphopenia.

Animals↗

Genetic analysis of inflammation, cytokine mRNA expression and disease course of relapsing experimental autoimmune encephalomyelitis in DA rats.

Genetic analysis of experimental autoimmune encephalomyelitis (EAE) can provide clues to the etiology of multiple sclerosis (MS). Identifying the susceptibility genes of DA rats may be particularly rewarding since they are prone to develop a remarkably MS-like chronic and demyelinating disease. As a first step in this direction, we investigated the role of DA genes within and outside the major histocompatibility complex (MHC) for susceptibility to severe protracted and relapsing EAE (SPR-EAE). This form of EAE developed in DA rats but not in LEW. ACI and BN rats after immunization with syngeneic spinal cord and complete Freund's adjuvant. Studies of crosses between DA and BN rats revealed that non-MHC genes determine susceptibility to SPR-EAE. A role for MHC-genes was also established using MHC-congenic rat strains, in which the DA MHC haplotype (av1) associated with relapsing EAE. Again, non-MHC genes were decisive since a high incidence of SPR-EAE only occurred in rats with DA non-MHC genes. Analysis of cytokine mRNA expression and infiltrating cells in the spinal cords of congenic strains revealed that the av1 haplotype associated with a high CD4/CD8 ratio and expression of mRNA for interferon-gamma (IFN-gamma), but not for transforming growth factor-beta (TGF-beta) or interleukin-10 (IL-10). In contrast, the other MHC haplotypes (h, l, u) associated with low CD4/CD8 ratios and mRNA expression for TGF-beta and IL-10, but not for IFN-gamma. DA non-MHC genes determined the intensity of inflammation since the number of cells expressing MHC class II, CD4 and interleukin-2 receptor (IL-2R) was higher in DA rats than in LEW.1AV1 and PVG.1AV1 rats which also carry the av1 haplotype. We conclude that the MHC haplotype of DA rats favors a prolonged proinflammatory autoimmune response associated with relapses, while the DA background intensifies inflammation correlating with a high incidence of relapsing disease.

Animals↗

Ketanserin selectively blocks acute stress-induced changes in NGFI-A and mineralocorticoid receptor gene expression in hippocampal neurons.

Serotonin and glucocorticoids interact at the hippocampus to alter neuronal function. Serotonin and antidepressant drugs increase glucocorticoid receptor and mineralocorticoid receptor gene expression in hippocampal neurons over a few days. The effects of serotonin are mediated via ketanserin-sensitive "serotonin-2 type" receptors and induction of cyclic AMP, although the subsequent molecular mechanisms are unclear. Recently, we have shown that chronic environmental manipulations which induce glucocorticoid receptor gene expression in specific hippocampal subfields of the rat are associated with congruent induction of the transcription factor NGFI-A (zif268, krox24, egr-1) and repression of AP-2; both factors may bind to the glucocorticoid receptor gene promoter. However, any relationship between serotonin and these transcription factors is unknown. Here, we show that acute restraint stress, which causes serotonin release at the hippocampus, induces hipppocampal NGFI-A, but represses activator protein-2 and mineralocorticoid receptor gene expression within 90 min. These changes are sustained for 4 h, but not 12 h. Ketanserin attenuates the stress-induced rise in NGFI-A and fall in mineralocorticoid receptor gene expression, and partly also the fall in AP-2 messenger RNA expression. These data suggest that restraint stress, acting via serotonin release and ketanserin-sensitive serotonin receptors, produces rapid, transient and specific changes in transcription factor gene expression in hippocampal neurons. Any link between these effects and the control of glucocorticoid and mineralocorticoid receptor expression with chronic serotonin or antidepressant treatment remains to be elucidated.

Animals↗

Tyrosine kinases are required for interferon-gamma-stimulated proliferation of Trypanosoma brucei brucei.

The tyrosine kinase activity of Trypanosoma brucei brucei upon stimulation with interferon-gamma (IFN-gamma) was investigated. IFN-gamma induced a rapid and strong increase of tyrosine phosphorylation of several cellular proteins that reached maximum after 5 min and was followed by a decrease to control levels after 120 min. The tyrosine kinase-specific inhibitor tyrphostin A47 at a concentration of 10(-6) M reduced IFN-gamma-induced protein phosphorylation. In vitro application of 10(-6) M tyrphostin A47 to the trypanosome cultures caused a significant reduction of [3H]thymidine uptake by IFN-gamma-stimulated trypanosomes. In animals, 2 x 0.5 mg of tyrphostin A47 (injected intraperitoneally) caused a significant reduction of parasite growth compared with the vehicle dimethyl sulfoxide or the inactive compound tyrphostin A1. In conclusion, tyrosine kinases are strongly up-regulated in IFN-gamma-stimulated T. b. brucei, and specific tyrosine kinase inhibitors can prevent trypanosome growth in vitro and in vivo.

Animals↗

Epidemiology and etiology of ischemic stroke in young adults aged 18 to 44 years in northern Sweden.

BACKGROUND AND PURPOSE: The aim of this study was to conduct a population-based epidemiological survey among young adults aged 18 to 44 years in Northern Sweden and furthermore to gain further insight into the etiology of ischemic stroke in this age group. METHODS: Two studies were done. In the first part, epidemiological data were collected to calculate incidence and mortality from 1991 through 1994. This was based on the World Health Organization Northern Sweden MONICA register of acute stroke events. Eighty-eight first-ever ischemic stroke patients were identified during that period. In the second part, 107 consecutive patients aged 18 to 44 years with ischemic stroke referred to a university hospital were studied prospectively during a 5-year period and were extensively evaluated according to a standardized protocol. On the basis of modified Trial of ORG 10172 in Acute Stroke Treatment (TOAST) criteria, the patients were classified into eight subtypes of ischemic stroke. RESULTS: The average population-based annual incidence rate for ischemic stroke (cases per 100,000 per year) was 11.3 (95% confidence interval, 6.7 to 16.1). The case-fatality rate was 5.7%. According to the modified TOAST criteria, a probable cause of ischemic stroke was identified in 36% and remained unexplained in 21% of cases. Spontaneous cervical arterial dissection was the leading probable etiology (13%). Patent foramen ovale or atrial septal aneurysm was a possible cause of stroke in 28% of cases. The percentages of ischemic stroke attributed to IgG anticardiolipin antibodies (4.7%), atherothrombotic vasculopathy (3.7%), oral contraceptive use (7%), and migraine (1%) were lower than reported in recent clinical series. CONCLUSIONS: The incidence rate for ischemic stroke was higher than previously reported from most countries in Western Europe. The higher incidence was not explained by a higher prevalence of premature atherosclerotic vasculopathy. Without the additional diagnostic information derived from advanced cardiac imaging, the proportion of indeterminate cases would have constituted 37% of the patients.

Adolescent↗

Effect of volume recruitment on response to surfactant treatment in rabbits with lung injury.

We determined if surfactant treatment effect can be enhanced by mechanical volume recruitment during surfactant administration by measuring functional residual capacity, tidal volume, the alveolar portion of tidal volume, dynamic compliance of the respiratory system, a/A ratio, and PaCO2 by measuring before and after surfactant administration to rabbits with lung injury induced by airway lavage. There was improvement in all lung function indices when surfactant was given with volume recruitment, but when surfactant was given without volume recruitment, the only index to show significant improvement was a/A ratio of oxygenation. These results support the hypothesis that mechanical recruitment of terminal airspaces from a previously unventilated compartment will enhance the effectiveness of surfactant replacement by facilitating the distribution of instilled surfactant to this compartment.

Animals↗