74 resultados para Atypical Mycobacteria

em Deakin Research Online - Australia


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Objective : The aim of this article is to present a current discussion related to the nursing care of clients treated with atypical antipsychotic medicines and who have a risk of developing metabolic instability and/or Type 2 diabetes. The importance of such a discussion is to provide both the novice and the experienced nurse with additional knowledge of this current health issue with which to inform their nursing practice.

Discussion : The potential for psychosis to be a chronic condition is very high, and often people require antipsychotic medicine for lengthy periods throughout their lives. Sometimes, treatment is for life. The second generation of antipsychotic medicines was greeted with much enthusiasm since it was better tolerated than the first generation. However, each medication has desired and adverse effects and, when taken for lengthy periods, these effects may produce physical illness. Studies show that the prevalence of Type 2 diabetes and the metabolic syndrome was significantly higher in clients with a chronic psychiatric disorder, particularly schizophrenia.

Conclusions : Metabolic instability, especially weight gain, is associated with some psychotropic medicines. Nursing interventions need to include care assessment, planning, intervention, and evaluation for clients treated with antipsychotic medicines in terms of risk minimization strategies in routine nursing care.

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Bipolar disorder is a severe and recurrent disorder. Atypical antipsychotics have emerged as both an alternative and adjunct to conventional mood stabilisers. The manic phase of the illness is the best studied, and it appears that a class effect with regards to efficacy is present in both monotherapy and augmentation studies. Evidence for efficacy of atypical antipsychotics in depression is emerging. At this stage controlled data are available for both olanzapine and quetiapine. Maintenance data demonstrating efficacy are available for olanzapine. Atypical antipsychotics have utility in treating acute agitation and aggression in manic episodes of bipolar disorder. Subgroup analyses from trials treating manic phase bipolar disorder, and an open-label study of rapid cycling, have suggested that atypical antipsychotics may be useful for the treatment of mixed states and rapid cycling. Several studies have suggested that atypical antipsychotics may be useful in treatment-refractory episodes of bipolar disorder. The current available data suggest greater efficacy of the atypical antipsychotics in mania than in depression, although the data are fairly clear that induction of depression is not an issue with the atypical antipsychotics. A number of trials are underway that will hopefully address many of the questions still pending.

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Objective: To assess the potential role of atypical antipsychotics as mood stabilizers.

Method: A MedLine, PsychLIT, PubMed, and EMBASE literature search of papers published up to December 2004 was conducted using the names of atypical antipsychotics and a number of key terms relevant to bipolar disorder. Additional articles were retrieved by scrutinizing the bibliographies of review papers and literature known to the authors. Data pertinent to the objective was reviewed according to the various phases of bipolar disorder.

Results: The data is most substantive for the use of atypical antipsychotics in mania, to the extent that an argument for a class effect of significant efficacy can be made. This does not extend to bipolar depression, however, good data is now emerging for some agents and will need to be considered for each individual agent as it accumulates. As regards mixed states and rapid cycling the evidence is thus far sparse and too few maintenance studies have been conducted to make any firm assertions. However, with respect to long-term therapy the atypical antipsychotics do have clinically significant side-effects of which clinicians need to be aware.

Conclusion: Based on the evidence thus far it is perhaps premature to describe the atypical antipsychotics as mood stabilizers. Individual agents may eventually be able to claim this label, however, much further research is needed especially with respect to maintenance and relapse prevention.

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Objective:Developments in the pharmacological treatment of bipolar disorder are of much interest, as the chronicity and disability of the disorder become better understood, and as treatment goals have shifted to emphasise early control of illness course and maintenance of euthymia in addition to acute episodic remission. Atypical antipsychotics have emerged as treatment options, and this paper aims to review the evidence for their role in bipolar disorder.

Methods:A MEDLINE search was conducted for publications up till October 2006.

Results:The search yielded a number of randomised, controlled clinical trials of various atypical antipsychotics as monotherapy or adjunctive therapy in bipolar disorder. The majority of such trials have investigated their efficacy in acute mania, with fewer studies devoted to acute bipolar depression or maintenance treatment. There are no specific trials on mixed states, which have mainly been studied together with bipolar mania. The most robust evidence supports a class effect of atypical agents in the treatment of mania.

Conclusions:
There are placebo-controlled trials that support the efficacy of olanzapine and quetiapine in bipolar depression, and of olanzapine and aripiprazole as maintenance treatment. There is strong support for the role of atypical antipsychotics in bipolar disorder management despite a relatively narrow literature base, chiefly for the treatment of mania. However, these findings need to be replicated, and further investigation is warranted to clarify their spectrum of efficacy in bipolar disorder.

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Progress in psychiatric genetics has been slow despite evidence of high heritability for most mental disorders. We argue that greater use of early detectable intermediate traits (endophenotypes) with the highest likely aetiological significance to depression, rather than complex clinical phenotypes, would be advantageous. Longitudinal data from the Western Australian Pregnancy Cohort (Raine) Study were used to identify an early life behavioural endophenotype for atypical hypothalamic-pituitaryadrenocortical function in adolescence, a neurobiological indicator of anxiety and depression. A set of descriptors representing rigid and reactive behaviour at age 1 year discriminated those in the top 20% of the free salivary cortisol exposure at age 17 years. Genetic association analysis revealed a male-sensitive effect to variation in three specific single nucleotide polymorphisms within selected genes underpinning the overall stress response. Furthermore, support for a polygenic effect on stress-related behaviour in childhood is presented.

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Background Chromosomal translocations resulting in alternative fusions of the human TEL (ETV6) and JAK2 genes have been observed in cases of acute lymphoblastic leukemia and chronic myelogenous leukemia, but a full understanding of their role in disease etiology has remained elusive. In this study potential differences between these alternative TEL-JAK2 fusions, including their lineage specificity, were investigated.

Design and Methods TEL-JAK2 fusion types derived from both T-cell acute lymphoblastic leukemia and atypical chronic myelogenous leukemia were generated using the corresponding zebrafish tel and jak2a genes and placed under the control of either the white blood cell-specific spi1 promoter or the ubiquitously-expressed cytomegalovirus promoter. These constructs were injected into zebrafish embryos and their effects on hematopoiesis examined using a range of molecular approaches. In addition, the functional properties of the alternative fusions were investigated in vitro.

Results Injection of the T-cell acute lymphoblastic leukemia-derived tel-jak2a significantly perturbed lymphopoiesis with a lesser effect on myelopoiesis in zebrafish embryos. In contrast, injection of the atypical chronic myelogenous leukemia-derived tel-jak2a resulted in significant perturbation of the myeloid compartment. These phenotypes were observed regardless of whether expressed in a white blood cell-specific or ubiquitous manner, with no overt cellular proliferation outside of the hematopoietic cells. Functional studies revealed subtle differences between the alternative forms, with the acute lymphoblastic leukemia variant showing higher activity, but reduced downstream signal transducer and activator of transcription activation and decreased sensitivity to JAK2 inhibition. JAK2 activity was required to mediate the effects of both variants on zebrafish hematopoiesis.

Conclusions This study indicates that the molecular structure of alternative TEL-JAK2 fusions likely contributes to the etiology of disease. The data further suggest that this class of oncogene exerts its effects in a cell lineage-specific manner, which may be due to differences in downstream signaling.

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Individuals infected with mycobacteria are likely to experience episodes of concurrent infections with unrelated respiratory pathogens, including the seasonal or pandemic circulating influenza A virus strains. We analyzed the impact of influenza A virus and mycobacterial respiratory coinfection on the development of CD8 T cell responses to each pathogen. Coinfected mice exhibited reduced frequency and numbers of CD8 T cells specific to Mycobacterium bovis bacille Calmette-Guérin (BCG) in the lungs, and the IFN-γ CD8 T cell response to BCG-encoded OVA was decreased in the lungs of coinfected mice, when compared with mice infected with BCG alone. Moreover, after 2 wk of infection, mice coinfected with both pathogens showed a significant increase in the number of mycobacteria present in the lung compared with mice infected with BCG only. Following adoptive transfer into coinfected mice, transgenic CD8 T cells specific for OVA257–264 failed to proliferate as extensively in the mediastinal lymph nodes as in mice infected only with BCG-OVA. Also noted was a reduction in the proliferation of BCG-specific CD4 transgenic T cells in mice coinfected with influenza compared with mice infected with BCG alone. Furthermore, phenotypic analysis of CD11c+ dendritic cells from mediastinal lymph nodes of the infected mice showed that coinfection was associated with decreased surface expression of MHC class II and class I. Thus, concurrent pulmonary infection with influenza A virus is associated with decreased MHC expression on dendritic cells, reduced activation of BCG-specific CD4 and CD8 T cells, and impaired clearance of mycobacteria.