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Depressed levels of dehydroepiandrosterone sulphate in postmenopausal women with rheumatoid arthritis but no relation with axial bone density.

The sex hormones dehydroepiandrosterone sulphate (DHEAS), oestradiol, and sex hormone binding globulin (SHBG) were measured in 185 postmenopausal women (aged 45-65 years) with rheumatoid arthritis (RA) and related to assessments of bone mineral density at the spine and proximal femur. Compared with 518 postmenopausal control women (aged 45-65 years), DHEAS levels were below normal in the 120 patients with RA who had never taken corticosteroids and levels were further depressed in 39 patients currently using steroids. Twenty six patients who had completed steroid treatment also had lower DHEAS levels, suggesting a delayed recovery of adrenal androgen secretion. Oestradiol and SHBG levels were similar in all groups. There was no correlation between sex hormones and disease activity. Oestradiol correlated with bone mineral density at all sites. Although oestradiol correlated with DHEAS, there was no relation between DHEAS and bone mineral density. The cause of below normal levels of DHEAS in RA is unclear, whether a consequence of chronic illness, immune dysfunction, or a defect of adrenal androgen synthesis.

Aged↗

Increased polymorphonuclear leucocyte rigidity in HIV infected individuals.

AIM: Individuals with human immunodeficiency virus (HIV) infection were evaluated for evidence of abnormal polymorphonuclear leucocyte (PMN) rigidity, which can alter capillary blood flow. METHODS: The transit time of individual PMN through 8 microm pores in a cell transit analyser was used as a measure of cell rigidity. PMN transit time was compared between HIV infected individuals (n=45) with and without CMV retinitis and HIV negative controls (n=17). RESULTS: Transit times were longer for PMN from HIV infected individuals than for PMN from controls (p<0.001). PMN from HIV infected individuals with CMV retinitis (n=13) had longer transit times than PMN from those without CMV retinitis (n=32, p<0.001). Transit times were longer in HIV infected individuals with lower CD4+ T lymphocyte counts (p<0.001). Regression analysis indicated that the relation between transit times and the presence of CMV retinitis could not be explained solely on the basis of low CD4+ T lymphocytes. In HIV infected individuals, mean transit time was not correlated with age, blood pressure, or serum creatinine, cholesterol, or triglycerides. CONCLUSIONS: HIV infected individuals appear to have increased PMN rigidity, a cellular change that might be involved in the pathogenesis of HIV related retinal microvasculopathy. PMN rigidity appears to be related to severity of immune dysfunction. PMN rigidity may remain high in patients with CMV retinitis after elevations of CD4+ T lymphocyte counts that result from potent antiretroviral therapy.

Adult↗

Impaired antipneumococcal antibody production in patients without spleens.

Fifteen splenectomised and 15 normal subjects were studied, in absence of any intentional immunisation, for pokeweed mitogen induced synthesis of antipneumococcal capsular polysaccharide antibodies in vitro by peripheral blood mononuclear cells. Results showed that removal of the spleen had caused a persistent immune deficiency of circulating B cells capable of synthesising IgM antipneumococcal capsular polysaccharide. In vitro synthesis of polyclonal IgM and IgG by peripheral blood mononuclear cells of subjects without spleens was also depressed. These defects were due to an abnormality of the B cell compartment. These data are evidence of the major role of the spleen in the control and production of a consistent part of pokeweed mitogen responsive circulating B cells and add another facet to the complex immune dysfunction of splenectomised subjects. The findings, moreover, may help in understanding the susceptibility of splenectomised people to pneumococcal sepsis and the delayed and impaired antibody response to pneumococcal vaccine.

Adult↗

Early impairment of hepatitis C virus specific T cell proliferation during acute infection leads to failure of viral clearance.

BACKGROUND AND AIMS: Cellular mediated immunity (CMI) is thought to play a key role in resolution of primary hepatitis C virus (HCV) infection. However, CD4+ and CD8+ T cell responses are also generated during acute infection in individuals who become chronic, suggesting that they developed a defective CMI. The aim of this study was to verify if and when such immune dysfunction is established by measuring the breadth, magnitude, function, and duration of CMI in a large cohort of subjects during the natural course of acute HCV infection. METHODS: CMI was comprehensively studied by prospective sampling of 31 HCV acutely infected subjects enrolled at the onset of infection and followed for a median period of one year. RESULTS: Our results indicated that while at the onset of acute HCV infection a measurable CMI with effector function was detected in the majority of subjects, after approximately six months less than 10% of chronically infected individuals displayed significant CMI compared with 70% of subjects who cleared the virus. We showed that progressive disappearance of HCV specific T cells from the peripheral blood of chronic patients was due to an impaired ability to proliferate that could be rescued in vitro by concomitant exposure to interleukin 2 and the antigen. CONCLUSION: Our data provide evidence of strong and multispecific T cell responses with a sustained ability to proliferate in response to antigen stimulation as reliable pharmacodynamic measures of a protective CMI during acute infection, and suggest that early impairment of proliferation may contribute to loss of T cell response and chronic HCV persistence.

Acute Disease↗

Abnormalities of B-cell activation and immunoregulation in patients with Crohn's disease.

We have studied B-lymphocyte function in 39 patients with Crohn's disease and 35 normal individuals using a reverse haemolytic plaque assay as the effector system. Ten patients had active Crohn's disease, the others being in an inactive state of the disease. Compared with normal individuals, the Crohn's disease patients - especially those in the active state of the disease - had markedly raised numbers of spontaneous immunoglobulin secreting cells and severely decreased responses to the polyclonal activator pokeweed mitogen. The differences between the reactivity of patients with active disease and those with inactive disease were statistically significant. These findings indicate an in vivo polyclonal B-cell activation in Crohn's disease patients, possibly due to antigen(s) or infectious agent(s). In vitro experiments were performed with separated lymphocytes in order to characterise the mechanism responsible for the altered immune reactivity in Crohn's disease. These revealed an intrinsic B-cell defect as well as an impaired T-helper cell capacity in patients with Crohn's disease. Findings supporting the hypothesis of an increased suppressor activity in Crohn's disease patients could not be observed, and marker analyses revealed normal proportions with the exception of raised Leu 7 positive cells that mediate 'natural killer' and 'killer' cytolysis. We conclude that immune dysfunction in peripheral blood lymphocytes of Crohn's disease patients involves B-cells as well as T-helper cells.

Adult↗

Protracted enteric cryptosporidial infection in selective immunoglobulin A and saccharomyces opsonin deficiencies.

Chronic cryptosporidial infection in man usually occurs in those who are immunocompromised. We report a patient with a one year history of bowel symptoms resulting from persistent cryptosporidial infection of the colon. Investigations showed underlying selective IgA and saccharomyces opsonin deficiencies but no evidence of cell mediated immune dysfunction. Both selective immunoglobulin A and opsonin deficiencies are relatively common in the general population and may be a cause of susceptibility to persistent cryptosporidial infection.

Chronic Disease↗

Association of chronic fatigue syndrome with human leucocyte antigen class II alleles.

BACKGROUND: A genetic component to the development of chronic fatigue syndrome (CFS) has been proposed, and a possible association between human leucocyte antigen (HLA) class II antigens and chronic fatigue immune dysfunction has been shown in some, but not all, studies. AIMS: To investigate the role of HLA class II antigens in CFS. METHODS: Forty nine patients with CFS were genotyped for the HLA-DRB1, HLA-DQA1, and HLA-DQB1 alleles and the frequency of these alleles was compared with a control group comprising 102 normal individuals from the UK. All patients and controls were from the same region of England and, apart from two patients, were white. RESULTS: Analysis by 2 x 2 contingency tables revealed an increased frequency of HLA-DQA1*01 alleles in patients with CFS (51.0% v 35%; odds ratio (OR), 1.93; p = 0.008). HLA-DQB1*06 was also increased in the patients with CFS (30.2% v 20.0%; OR, 1.73, p = 0.052). Only the association between HLA-DQA1*01 and CFS was significant in logistic regression models containing HLA-DQA1*01 and HLA-DRQB1*06, and this was independent of HLA-DRB1 alleles. There was a decreased expression of HLA-DRB1*11 in CFS, although this association disappeared after correction for multiple comparisons. CONCLUSIONS: CFS may be associated with HLA-DQA1*01, although a role for other genes in linkage disequilibrium cannot be ruled out.

Adult↗

Aortitis as a manifestation of myelodysplastic syndrome.

Aortitis is the inflammation of the wall of the aorta and can occur from an infection or autoimmune disease. Myelodysplastic syndrome (MDS) is characterised by abnormal haematopoiesis and a dysfunctional immune system. Autoimmune manifestations have been described in MDS. Here a case of a patient with aortitis and MDS is presented and discussed. All possible aetiologies were ruled out. The patient's symptoms resolved after she received steroids.

Aortitis↗

Thymus metallothionein: regulation of zinc-thionein in the aging mouse.

The presence of a zinc-inducible metallothionein in mouse thymus tissue has been shown, together with an age-related modulation of zinc, metallothionein, and thymus mass. Metallothionein (MT) and zinc concentrations were found to be maximum prior to completion of thymic growth and to be at a minimum when development of the thymus had ceased. Subsequent transient outgrowths of the thymus during involution showed similar associated fluctuations of MT and zinc levels. A marked difference in the latter parameters was found on comparison with New Zealand Black mice known for development of early onset autoimmunities. These findings provide a new avenue for both investigation of the regulation of zinc in thymus tissue, as well as the possible elucidation of the molecular basis for certain age-related immune dysfunctions.

Aging↗

Src family kinases regulate p38 MAPK-mediated IL-6 production in Kupffer cells following hypoxia.

Tissue hypoxia is a common sequel of trauma-hemorrhage but can occur even without blood loss under hypoxic conditions. Although hypoxia is known to upregulate Kupffer cells (KC) to release cytokines, the precise mechanism of release remains unknown. We hypothesized that Src family kinases play a role in mediating KC mitogen-activated protein kinase (MAPK) signaling and their cytokine production after hypoxia. Male C3H/HeN mice received either Src inhibitor PP1 (1.5 mg/kg body wt) or vehicle 1 h before hypoxia. KCs were isolated 1 h after hypoxia, lysed, and immunoblotted with antibodies to Src, p38, ERK1/2, or JNK proteins. In addition, KCs were cultured to measure interleukin-6 (IL-6) and monocyte chemoattractant protein-1 (MCP-1) production. Hypoxia produced a significant increase in KC Src and MAPK (p38, ERK, JNK) activity compared with normoxic controls. This was associated with an increase in IL-6 and MCP-1 production. Treatment with PP1 abolished the increase in KC Src activation as well as p38 activity. However, PP1 did not prevent the increase in KC ERK1/2 or JNK phosphorylation. Furthermore, administration of PP1 prevented the hypoxia-induced increase in IL-6 but not MCP-1 release by KC. Additional in vitro results suggest that p38 but not ERK1/2 or JNK are critical for KC IL-6 production. In contrast, the production of MCP-1 by KC was found to be independent of MAPK. Thus hypoxia increases KC IL-6 production by p38 MAPK activation via Src-dependent pathway. Src kinases may therefore be a novel therapeutic target for preventing immune dysfunction following low-flow conditions in trauma patients.

Animals↗

Neutrophil activation is modulated by sex hormones after trauma-hemorrhagic shock and burn injuries.

Recent literature indicates that females are more resistant to shock-, trauma-, and sepsis-induced immune dysfunction and organ injury than are males. Consequently, using trauma-hemorrhagic shock (T/HS) and burn models, we tested whether the neutrophil response to trauma occurred in a sexually dimorphic fashion and, if so, the role of sex hormones. Neutrophil activation, as reflected by CD11b expression and respiratory burst activity, was increased to a greater extent in male rats than in female rats after T/HS or burn injury. Testosterone appeared to potentiate neutrophil activation, because castration reduced neutrophil activation, whereas ovariectomy had little effect. Mechanistically, this sexually dimorphic neutrophil response appeared to be due to both cellular and humoral factors. Evidence for a cellular difference between male and female neutrophils is based on the observation that naive female neutrophils were more resistant to activation by burn or T/HS plasma and lymph than naive male neutrophils and that this resistance varied over the estrus cycle. Additionally, the humoral environment was more neutrophil activating in male rats, because burn and T/HS plasma and lymph from male rats activated naive male neutrophils to a greater extent than comparable samples from females. Last, on the basis of in vitro experiments examining the effects of estrogen on calcium signaling, it appears that estrogen limits trauma-induced neutrophil activation, at least in part, by limiting the entry of calcium into the cell via store-operated calcium entry mechanisms. In conclusion, there is a striking sexual dimorphism in neutrophil responses after trauma, and these changes reflect both cellular resistance to activation as well as a less activating humoral environment.

Animals↗

Does a general alteration in nitric oxide synthesis system occur in spontaneously hypertensive rats?

Immune dysfunction has been reported in spontaneously hypertensive rats (SHR). The current study investigated interactions between macrophages or vascular smooth muscle cells (VSMC) and lymphocytes in SHR and examined the role of nitric oxide (NO) in this interaction. SHR macrophages significantly inhibited the proliferation of lymphocytes from SHR and the genetic control, Wistar-Kyoto rats (WKY). This inhibition was reversed by a NO synthase inhibitor, NG-monomethyl-L-arginine (L-NMMA). SHR VSMC also significantly inhibited the proliferation responses of lymphocytes from SHR and WKY. The inhibition was cell density dependent. In addition, L-NMMA fully reversed the inhibition by SHR VSMC. Upon stimulation, the macrophages and VSMC from SHR produced a significantly higher amount of NO compared with those from WKY. These results suggest that the overproduction of NO was involved in the interaction between macrophages or VSMC and lymphocytes in SHR. Increased NO synthase activity in macrophages and VSMC may indicate a general activation of the NO synthesis system in SHR. The alteration of the NO synthesis system may be an important factor contributing to the lymphocyte depression in hypertension.

Animals↗

Androgen-mediated modulation of macrophage function after trauma-hemorrhage: central role of 5alpha-dihydrotestosterone.

Androgens have been implicated as the causative factor for the postinjury immune dysfunction in males; however, it remains unknown whether androgens directly affect macrophages. To study this, male mice were sham operated or subjected to trauma (i.e., midline laparotomy) and hemorrhagic shock (mean arterial pressure, 30 +/- 5 mmHg for 90 min and then resuscitated). The mice received the 5alpha-reductase inhibitor 4-hydroxyandrostenedione (4-OHA) before resuscitation. Plasma TNF-alpha, IL-6, and IL-10 levels were elevated after trauma-hemorrhage and normalized by 4-OHA. TNF-alpha and IL-6 production by splenic macrophages was decreased after injury, whereas Kupffer cell production of these mediators was enhanced. 4-OHA normalized cytokine production. Androgens suppressed cytokine production by splenic macrophages from hemorrhaged mice, whereas it enhanced TNF-alpha and IL-6 production by Kupffer cells. The addition of 4-OHA in vitro normalized cytokine production by cells treated with testosterone, but it had no effect on dihydrotestosterone-treated cells. These results indicate that androgens directly affect macrophage function in males after trauma and hemorrhagic shock and that the intracellular conversion of testosterone to dihydrotestosterone is of particular importance in mediating the androgen-induced effects.

Androgens↗

Utility of the blood for gene expression profiling and biomarker discovery in chronic fatigue syndrome.

Chronic fatigue syndrome (CFS) is a debilitating illness lacking consistent anatomic lesions and eluding conventional laboratory diagnosis. Demonstration of the utility of the blood for gene expression profiling and biomarker discovery would have implications into the pathophysiology of CFS. The objective of this study was to determine if gene expression profiles of peripheral blood mononuclear cells (PMBCs) could distinguish between subjects with CFS and healthy controls. Total RNA from PBMCs of five CFS cases and seventeen controls was labeled and hybridized to 1764 genes on filter arrays. Gene intensity values were analyzed by various classification algorithms and nonparametric statistical methods. The classification algorithms grouped the majority of the CFS cases together, and distinguished them from the healthy controls. Eight genes were differentially expressed in both an age-matched case-control analysis and when comparing all CFS cases to all controls. Several of the differentially expressed genes are associated with immunologic functions (e.g., CMRF35 antigen, IL-8, HD protein) and implicate immune dysfunction in the pathophysiology of CFS. These results successfully demonstrate the utility of the blood for gene expression profiling to distinguish subjects with CFS from healthy controls and for identifying genes that could serve as CFS biomarkers.

Adult↗

Risk of multiple myeloma following medication use and medical conditions: a case-control study in Connecticut women.

BACKGROUND: Certain commonly used drugs and medical conditions characterized by chronic immune dysfunction and/or antigen stimulation have been suggested to affect important pathways in multiple myeloma tumor cell growth and survival. We conducted a population-based case-control study to investigate the role of medical history in the etiology of multiple myeloma among Connecticut women. METHODS: A total of 179 incident multiple myeloma cases (21-84 years, diagnosed 1996-2002) and 691 population-based controls was included in this study. Information on medical conditions, medications, and medical radiation was obtained by in-person interviews. We calculated odds ratios (OR) as measures of relative risks using logistic regression models. RESULTS: A reduced multiple myeloma risk was found among women who had used antilipid statin therapy [OR, 0.4; 95% confidence interval (95% CI), 0.2-0.8] or estrogen replacement therapy (OR, 0.6; 95% CI, 0.4-0.99) or who had a medical history of allergy (OR, 0.4; 95% CI, 0.3-0.7), scarlet fever (OR, 0.5; 95% CI, 0.2-0.9), or bursitis (OR, 0.4; 95% CI, 0.2-0.7). An increased risk of multiple myeloma was found among women who used prednisone (OR, 5.1; 95% CI, 1.8-14.4), insulin (OR, 3.1; 95% CI, 1.1-9.0), or gout medication (OR, 6.7; 95% CI, 1.2-38.0). CONCLUSIONS: If our results are confirmed, mechanistic studies examining how prior use of insulin, prednisone, and, perhaps, gout medication might promote increased occurrence of multiple myeloma and how antilipid statins, estrogen replacement therapy, and certain medical conditions might protect against multiple myeloma may provide insights to the as yet unknown etiology of multiple myeloma.

Adult↗

Activation-induced apoptosis in T cells from young and old Fischer 344 rats.

BACKGROUND: Activation-induced apoptosis is believed to limit cell proliferation and eliminate the high number of activated cells during an immune response. METHODS: Activation-induced apoptosis was investigated in splenic T cells isolated from young (6 months) and old (24 months) male Fischer 344 rats. The cells were incubated with anti-CD3, concanavalin A or staphylococcal enterotoxin B (primary stimulus) for 72 h, followed by restimulation with anti-CD3 or concanavalin A (secondary stimulus). Apoptosis was assessed by DNA fragmentation assay and DNA gel electrophoresis. The expression of the apoptotic marker CD95 was analyzed by flow cytometry and the relative levels of CD95 ligand, Bcl-2 and Bax protein were measured by immunoblotting. RESULTS: It was shown that DNA fragmentation was very low in the unstimulated T cells from both young and old rats. However, the level of DNA fragmentation was 45-55% greater in the activated T cells from old rats than in the activated T cells from young rats. The increase in DNA fragmentation was paralleled by an increase in the proportion of cells expressing the CD95 molecule. The proportion of CD95+ cells was approximately 40% higher in T cells from old rats than in T cells from young rats. In addition, it was found that the expression of CD95 ligand and Bax increased and Bcl-2 decreased in the activated T cells from old rats compared to the activated T cells from young rats. CONCLUSION: Our data suggest that the increase in sensitivity of T cells to apoptosis with age may contribute to age-associated immune dysfunction and disorders.

Animals↗

Immunological evaluation of patients with beta-thalassemia major.

Abnormalities in the immune system and zinc homeostasis in patients with beta-thalassemia major (TM) have been reported. Since zinc ion is essential for the efficiency of the immune system and is required to induce biological activity to thymulin (Zn-FTS), a biochemically defined thymic hormone, we investigated the plasma levels of zinc and both active thymulin (Zn-FTS) and total zinc saturable thymulin (Zn-FTS+FTS) in 18 patients with TM aged between 2 and 31 years and 22 normal controls of the same age. Inhibitory molecules anti-thymulin and the distribution of lymphocyte subsets were also analyzed. Patients with TM presented significantly lowered plasma zinc and thymulin levels when compared to normal subjects. The significant enhancement of the active form of the hormone after zinc addition in vitro suggests that low thymulin values found in TM are due not to a thymic failure in synthesizing and secreting the thymic hormone, but a defect in zinc saturation of the hormone. An impairment of cell subset distribution was also demonstrated. This study shows that zinc and thymulin deficiency contribute to the complex mechanisms underlying immune dysfunction in TM.

Adolescent↗

Aberrant Fas ligand expression in lymphocytes in patients with Behçet's disease.

BACKGROUND: Defects in immune responses have been reported in patients with Behçet's disease (BD). To further characterize the immune dysfunction and its contribution to the pathogenesis, we have studied Fas ligand (FasL) expression in peripheral blood lymphocytes (PBL) and mononuclear cells in the skin lesions in patients with BD. METHODS: FasL expression in PBL was studied with RT-PCR and immunoblotting with rabbit anti-human FasL antibody. We studied the expression of FasL in cryostat sections of biopsy specimens of erythema nodosum lesions from 4 patients with BD and of a genital ulcer lesion in another patient using immunohistochemical staining. Apoptotic cell death was detected with the terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) method. RESULTS: We found that FasL mRNA and FasL protein expression was detected marginally in the unstimulated PBL, and was induced upon activation in normal individuals. PBL from patients with BD exhibited an enhanced expression of FasL mRNA and FasL protein without in vitro stimulation. Moreover, mitogen stimulation failed to augment FasL expression of their lymphocytes, suggesting a dysregulation of FasL expression of PBL in patients with BD. The skin biopsy specimens revealed that cells infiltrating into skin lesions expressed FasL and there were several TUNEL staining-positive cells in the lesions, suggesting that Fas/FasL-mediated apoptosis is involved in the development of the skin lesion and thus may be associated with the pathogenesis. CONCLUSIONS: We found an excessive expression of FasL in circulating as well as skin-infiltrating lymphocytes and the presence of apoptotic cells in the skin lesions, suggesting that lymphocytes expressing FasL aberrantly may play a role in the development and pathogenesis of BD.

Adult↗