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Biomedical subjects

T Olsson

Publications and source records attributed to T Olsson.

At least 199 records · Page 11Linked to original sources

Glucocorticoids, hippocampal corticosteroid receptor gene expression and antidepressant treatment: relationship with spatial learning in young and aged rats.

The emergence of cognitive deficits in a subgroup of aged rats is associated with increased hypothalamic-pituitary-adrenal axis activity, decreased hippocampal mineralocorticoid and/or glucocorticoid receptor gene expression and neuronal loss. Short-term treatment with antidepressant drugs in young rats increases hippocampal corticosteroid receptor gene expression. In this study, the effects of chronic antidepressant administration on hippocampal mineralocorticoid and glucocorticoid receptor gene expression and spatial memory in young and aged rats were investigated. Young (eight months) and old (22 +/- 1 months) Lister-hooded rats were ranked according to watermaze performance. Matched pairs of rats were treated with amitriptyline (10 mg/kg) or saline daily for nine weeks, then reassessed in the watermaze. Amitriptyline significantly improved spatial memory in the young rats (33% increase in transfer test time) and increased hippocampal mineralocorticoid, but not glucocorticoid receptor messenger RNA expression. By contrast, in aged rats, amitriptyline had no effect on spatial memory or hippocampal corticosteroid receptor gene expression, either in cognitively unimpaired or cognitively-impaired animals. In aged rats, basal plasma corticosterone levels, which were significantly higher than in young animals, correlated negatively with spatial memory, while hippocampal glucocorticoid receptor mRNA expression correlated negatively with plasma corticosterone levels and positively with spatial memory. Amitriptyline had no significant effect on basal morning plasma corticosterone levels in either young or aged rats, but significantly decreased evening corticosterone levels in aged rats. Our data support the notion that corticosterone exerts a concentration-dependent biphasic influence, via selective activation of hippocampal mineralocorticoid and glucocorticoid receptor, on spatial memory. Amitriptyline improves spatial memory in young rats and increases hippocampal mineralocorticoid receptor gene expression. The lack of amitriptyline effect on spatial memory in aged rats may reflect decreased plasticity of both the synaptic processes underlying spatial memory and the regulation of hippocampal mineralocorticoid/glucocorticoid receptor expression, with mineralocorticoid receptors fully occupied due to elevated basal plasma corticosterone levels (in part a consequence of inadequate glucocorticoid receptor function).

Aging↗

A subtle disturbance in the feedback regulation of the hypothalamic-pituitary-adrenal axis in the early phase of Alzheimer's disease.

In an attempt to find if a disturbance in the function of the feedback regulation of the hypothalamic-pituitary-adrenal axis is an early feature in Alzheimer's disease (AD), 35 outpatients (mean age 76.8 years) with a mild to moderate AD were compared to 20 controls (mean age 73.8 years) in their response to different doses of dexamethasone. After 0.5 mg dexamethasone, serum cortisol levels were significantly less suppressed in patients with early AD (p = .03) and these patients were significantly more often dexamethasone nonsuppressors (serum cortisol > or = 138 nmol/l) than controls (14/35 vs. 2/20; p = .03). Nonsuppression to 1 mg dexamethasone did not differ between groups (2/35 vs. 0/20). Plasma adrenocorticotropin levels were significantly lower in patients with Alzheimer's disease (n = 16) after 0.5 mg as well as after 1.0 mg dexamethasone (p = .01 and p < .001, respectively). The relationship between cortisol resistance to dexamethasone suppression and pathophysiology of AD is discussed.

Adrenocorticotropic Hormone↗

Abnormalities in adrenal androgens, but not of glucocorticoids, in early Alzheimer's disease.

In an attempt to evaluate possible adrenal abnormalities in Alzheimer's disease (AD), prestimulus levels and ACTH-stimulated serum levels of steroid hormones, corticosteroid-binding globulin (CBG), and insulin-like growth factor I (IGF-I) were measured in 18 patients with early AD (8 men, 10 women; 74.6 +/- 6.5 years, mean +/- SD) and 19 healthy controls (10 men, 9 women; 74.2 +/- 7.6 years, mean +/- SD). Steroid hormone levels were measured before and after an intravenous bolus injection of 250 micrograms ACTH. AD per se had an independent influence on hormone levels when evaluated in MANOVA models. AD patients had significantly higher prestimulus levels of dehydroepiandrosterone and androstenedione (p = .04 and p = .003, respectively) with accentuated differences after ACTH (p = .02 and p < .001 for peak responses, respectively). Serum levels of cortisol, CBG, free cortisol, 17 alpha-hydroxyprogesterone (17 alpha-OHP), and IGF-I did not differ between groups. These abnormalities may have implications for neuronal degeneration as well as for behavioural symptoms in AD.

Adrenal Glands↗

Axotomy of rat facial nerve induces TGF-beta and latent TGF-beta binding protein.

Transforming growth factor-beta (TGF-beta) has been found to be abundantly and specifically expressed in the nervous system. However, the function of TGF-beta during nerve regeneration is still unknown. We have examined the expression of TGF-beta isoforms and the latent TGF-beta binding protein (LTBP) by immunohistochemistry in the rat facial nuclei after unilateral axotomy. An increased immunoreactivity for all the TGF-beta isoforms and the LTBP was observed in the facial nuclei of the injured side during the regeneration period examined until Day 24. These differences were tested statistically by nominal logistic regression analysis. When the intensity of the immunoreactivity in the injured side was compared to that of the contralateral side, significantly increasing differences were found for TGF-beta 2 (p < 0.003) and LTBP (p < 0.002). Strong immunostaining was detected in the neuronal perikarya and their axons. No clear immunoreactivity was seen in either microglia or astrocytes. The enhanced immunoreactivity was seen in the operated side already at Day 3, remaining at high level with some fluctuations until Day 12 or 24 after axotomy. These findings suggest that TGF-beta might play a functional role in the regeneration of motor neurons.

Amino Acid Sequence↗

Increased levels of antibodies to IFN-gamma in human and experimental African trypanosomiasis.

In African trypanosomiasis the occurrence of antibodies to interferon-gamma (IFN-gamma) was studied in both humans and experimental rats. Sera from patients infected with Trypanosoma brucei gambiense showed increased levels of antibodies to IFN-gamma as compared with controls from the same regions in Africa. In Sprague-Dawley rats infected with Trypanosoma brucei brucei an early appearance of IFN-gamma-producing spleen cells was observed, followed by an increase in levels of antibodies against IFN-gamma in the sera. Previously, IFN-gamma has been found to play a crucial role in trypanosome infections in rats by promoting proliferation of Trypanosoma brucei brucei. The appearance of antibodies to IFN-gamma in humans, as in rats, indicates that this cytokine is produced also in the human infection. Its parasitic growth-stimulating and pathophysiological effects on the organism may be reduced by the antibodies.

Animals↗

Increased mRNA expression of IL-10 in mononuclear cells in multiple sclerosis and optic neuritis.

The inflammatory nature of multiple sclerosis (MS) implicates the participation of immunoregulatory cytokines, including the Th2 related IL-10. We describe the use of in situ hybridization with cDNA oligonucleotide probes to detect and enumerate mononuclear cells (MNC) expressing mRNA for IL-10, which is known to down-regulate Th1 cell related cytokines such as interferon-gamma. Expression of IL-10 was studied in blood MNC of MS and blood and cerebrospinal fluid (CSF) MNC of optic neuritis (ON) patients without culture and after culture in the presence of myelin basic protein (MBP), the control antigen acetylcholine receptor (AChR), and without antigen. Numbers of IL-10 mRNA expressing MNC were elevated in the MS patients' blood both when enumerated without culture and after culture with MBP. Control patients with myasthenia gravis had elevated numbers of AChR-reactive IL-10 mRNA expressing cells, while numbers of MBP-reactive IL-10 positive cells did not differ from numbers registered in cells without antigen. Patients with ON, in many instances representing early MS, had IL-10 positive blood MNC that were elevated to the same extent as in clinically definite MS, and further increased in the CSF. ON patients examined within 1 month after onset had lower numbers of MBP induced IL-10 mRNA expressing blood MNC compared with patients examined later suggesting that IL-10 is related to the degree of inflammation and outcome in ON.

Adolescent↗

Suppression of experimental autoimmune myasthenia gravis after CD8 depletion is associated with decreased IFN-gamma and IL-4.

CD8+ T cells can perform both Th1- and Th2-like functions by producing cytokines such as interferon-gamma (IFN-gamma) and interleukin-4 (IL-4), as well as the immune response down-regulating transforming growth factor-beta (TGF-beta), which are all involved in the development of experimental autoimmune myasthenia gravis (EAMG), a model for human MG. We have reported that depletion of CD8+ T cells results in the suppression of EAMG accompanied by the down-regulation of AChR-specific B cell responses and AChR-reactive IFN-gamma secreting Th1-like cells. To identify the involvement of IFN-gamma, IL-4 and TGF-beta in the development of EAMG after CD8+ T cell depletion, the expression of mRNA for these cytokines was studied in mononuclear cells from popliteal, inguinal and mesenteric lymph nodes, spleen and thymus by adopting in situ hybridization with complementary DNA oligonucleotide probes. Depletion of CD8+ T cells resulted in decreased levels of IFN-gamma and IL-4 mRNA expressing cells in different lymphoid organs except thymus, but no change in the numbers of TGF-beta mRNA expressing cells. The results imply that the suppression of EAMG after depletion of CD8+ T cells is caused by decreasing the effector factors but not by increasing the suppressor factor(s).

Animals↗

Critical influences of the cytokine orchestration on the outcome of myelin antigen-specific T-cell autoimmunity in experimental autoimmune encephalomyelitis and multiple sclerosis.

In EAE/MS, effector molecules are produced as a result of the interaction between T lymphocytes and antigen-presenting cells and the spectrum of cytokines produced is likely to decisively influence the disease outcome. These events may be more important, or at least more easily accessible to therapeutic intervention, than particular autoantigen specificities. Data from EAE suggest that cytokines connected to the Th1 phenotype of lymphocytes, especially IFN-gamma but also TNF-beta, TNF-alpha and IL-12, may promote inflammation while cytokines connected to the Th2 subset, IL-4, IL-10 and TGF-beta, may potentially have a role in disease limitation. It will be important to accurately study cytokines during immunotherapeutic interventions and in relation to immunogenetic variables in order to aim at immunotherapeutically intervening in the Th1, Th2 balance as well as counteracting disease-promoting cytokines such as IFN-gamma and TNF-alpha or promoting the action of downregulatory cytokines such as IL-10 and TGF-beta.

Animals↗

Cytokine-producing cells in experimental autoimmune encephalomyelitis and multiple sclerosis.

In both multiple sclerosis (MS) and experimental autoimmune encephalomyelitis, the regulation of the cytokine spectrum and production is likely to have a decisive influence on disease outcome. Studies of cytokines, however, are hampered by the autocrine or paracrine nature of cytokines. Studies of cellular production by messenger RNA detection or cellular secretion are therefore necessary. Collective data suggest that certain cytokines associated with the TH1 phenotype or lymphocytes, such as tumor necrosis factor alpha, lymphotoxin, interleukin-12, and interferon gamma, may promote disease, while cytokines produced by the TH2 subset, such as interleukin-10, may limit disease. In addition, transforming growth factor beta is a putative disease downregulator. Increased knowledge in this field will likely lead to improved therapy for MS patients.

Cytokines↗

Influence of ion channel modulation on in vitro interferon-gamma induced MHC class I and II expression on macrophages.

The in vitro effect of K+ channel blockers quinidine and verapamil, anion channel blocker SITS and K+ channel openers diazoxide, pinacidil, and BRL 38227 on interferon-gamma (IFN-gamma) induced MHC class I and II expression of Lewis rat peritoneal macrophages was investigated by cell ELISA assay. MHC class I expression was significantly enhanced by diazoxide at concentrations of 10(-5)M to 10(-6)M and by pinacidil and BRL 38227 at the concentration of 10(-6)M. MHC class II expression was enhanced by pinacidil and BRL 38227 at concentrations of 10(-5)M to 10(-6)M. The enhancing effect of pinacidil could be blocked by inhibitors of the protein kinases PKA and PKC suggesting that activation of both is required for optimum induction of MHC molecule expression. K+ and anion channel blockers were less active in modulation of MHC molecule expression. Verapamil had no influence, quinidine suppressed MHC class I expression at concentrations of 10(-4)M to 10(-5)M, and SITS suppressed MHC class I expression at the concentration of 10(-3)M. Since MHC class II expression is essential for efficient antigen presentation to T helper cells and MHC class I expression is required for target cell lysis by cytotoxic T cells, ion channel modulating drugs may be potential candidates for immunopharmacological intervention in inflammatory diseases.

Animals↗

Intrathecal interferon-gamma facilitates the spinal nociceptive flexor reflex in the rat.

The effect of intrathecal (i.t.) injection of the cytokine interferon-gamma) (IFN-gamma) on the spinal nociceptive flexor reflex was examined in decerebrate, spinalized, unanesthetized rats. IFN-gamma elicited an initial intense, brief facilitation of the flexor reflex followed by a sustained reflex facilitation lasting 40 +/- 5 min (range 20-65 min). The initial and prolonged reflex facilitations by IFN-gamma were partially and totally blocked, respectively, by i.t. pretreatment with nitro-L-arginine-ester, an inhibitor of nitric oxide synthase, at doses which did not influence spinal cord blood flow. Spinal application of IFN-gamma produced powerful and prolonged facilitation of the flexor reflex, possibly reflecting a hyperalgesic action of this cytokine. The facilitatory effect of IFN-gamma was mediated, at least in part, by the activation of the L-arginine-nitric oxide pathway. Thus, IFN-gamma released in the CNS may participate in eliciting pain and hyperalgesia in infectious or neuroinflammatory diseases where there is increased production of this cytokine.

Animals↗

Protective influences on experimental autoimmune encephalomyelitis by MHC class I and class II alleles.

Experimental autoimmune encephalomyelitis (EAE) is influenced by polymorphism of the MHC. We have previously found that Lewis rats with certain MHC haplotypes are susceptible to disease induced with the myelin basic protein (MBP) peptide 63-88, whereas Lewis rats with other MHC haplotypes are resistant. Interestingly, rats with the MHC u haplotype develop an immune response to the MBP 63-88, but do not get EAE. In this study we have used intra-MHC recombinant rat strains to compare the influences of the MHC u with the a haplotype. We discovered the following: 1) The class II region of the MHC a haplotype permits EAE and a Th1 type of immune response as measured by IFN-gamma production after in vitro challenge of in vivo-primed T cells with MBP 63-88. 2) The class II region of the u haplotype is associated with a disease-protective immune response characterized by production of not only IFN-gamma, but also of IL-4 mRNA expression by the MBP 63-88-activated cells. 3) The class I region upstream of the class II region of the u haplotype is associated with a disease-protective effect and the expression of mRNA for TGF-beta after MBP 63-88-induced activation. Thus, such a TGF-beta response occurs in all strains expressing the class I Au allele. Treatment with Abs to CD8+ cells abrogates peptide-induced TGF-beta mRNA expression, and aggravates disease in strains with the class I Au allele.

Alleles↗

Interferon-gamma and a factor derived from trypanosomes cause behavioural changes in the rat.

A newly isolated interferon-gamma (IFN-gamma) immunoreactive molecule, "neuronal IFN-gamma", and recombinant lymphocyte-derived IFN-gamma were injected intracerebroventricularly (i.c.v.) through a previously implanted cannula into adult male rats during both the light and the dark phases of the light/dark cycle. The two molecules caused a reduction in both frequency and duration of rearing and locomotion during the dark, but not the light, phase. A molecule isolated from Trypanosoma brucei brucei, a parasite of the same subspecies of trypanosomes which causes African sleeping sickness, can induce production and release of IFN-gamma and "neuronal IFN-gamma" from lymphocytes and neurons, respectively. I.c.v. injection of this factor also reduced rearing during the dark period, but to a less extent. Thus, "neuronal IFN-gamma" appears to have effects on animal behaviour in common with lymphocyte-derived IFN-gamma. This study highlights the potential role of these cytokines in behaviour disturbances.

Animals↗

Anti-myelin basic protein and anti-proteolipid protein antibody-secreting cells in the cerebrospinal fluid of patients with acute optic neuritis.

OBJECTIVE: To study the intrathecal synthesis of anti-myelin basic protein (MBP) and anti-proteolipid protein (PLP) antibodies in patients in the early stages of multiple sclerosis. DESIGN AND SETTING: A study of consecutive patients with acute optic neuritis (ON) who were undergoing lumbar punctures in an ambulatory unit. PATIENTS: Eleven patients with acute idiopathic ON and 14 patients with acute ON as a symptom of definite multiple sclerosis (the diagnosis of which was supported by clinical or laboratory findings). Nineteen patients with other neurological diseases (10 with inflammatory diseases) served as controls. MAIN OUTCOME MEASURES: Numbers of anti-MBP and anti-PLP antibody-secreting cells in peripheral blood and cerebrospinal fluid samples that were enumerated with an immunospot assay. RESULTS: Cerebrospinal fluid cells that secreted anti-MBP or anti-PLP antibodies were detected in 10 of 15 and in 21 of 23 patients with acute ON, while they were detected in nine of 18 and in six of 18 patients with other neurological diseases, respectively. Patients with ON had significantly more anti-PLP-secreting cells than did patients with other neurological diseases (P < .01). No difference was observed for anti-MBP-secreting cells. A significant correlation between the time from onset and the number of anti-PLP-secreting cells was found in patients with idiopathic ON (P < .02). CONCLUSIONS: These data suggest that anti-PLP antibodies are a more specific finding in demyelinating disease than anti-MBP antibodies. Furthermore, they suggest that anti-PLP antibodies may arise as a consequence of the demyelinating process.

Acute Disease↗

Organ-specific autoantigens induce transforming growth factor-beta mRNA expression in mononuclear cells in multiple sclerosis and myasthenia gravis.

Multiple sclerosis (MS) is characterized by patchy accumulations of inflammatory cells combined with demyelination. There are mononuclear cells in blood and cerebrospinal fluid of patients with MS that produce interferon-gamma and interleukin-4 in response to myelin basic protein (MBP) and proteolipid protein (PLP). Here we describe autoantigen-induced production of transforming growth factor-beta (TGF-beta). This multifunctional cytokine has inhibitory effects on the growth, differentiation, and effector functions of activated T cells. Blood and cerebrospinal fluid cells were exposed in short-term cultures to MBP and PLP and, after hybridization with complementary DNA oligonucleotide probes, they were evaluated for TGF-beta mRNA expression. Patients with MS had higher numbers of MBP- and PLP-responsive TGF-beta mRNA expressing cells in blood compared with control patients with other neurological diseases or myasthenia gravis and a five- and threefold further increment in their cerebrospinal fluid. In blood of patients with myasthenia gravis, where the acetylcholine receptor (AChR) is a target for autoaggressive immunity, there were increased levels of AChR-responsive TGF-beta mRNA expressing cells. Thymectomized myasthenia gravis patients showed higher levels of TGF-beta mRNA expressing cells compared with patients not thymectomized. Numbers of cells responding to AChR in MS and MBP in myasthenia gravis did not differ from numbers found in absence of antigen. Patients with other neurological diseases showed infrequent and low responses to MBP, PLP, and AChR. Diseases with presumed autoimmune pathogenesis are associated with organ-specific autoantigen-induced TGF-beta production, which is increased after thymectomy.

Adult↗