laminaran and Opportunistic-Infections

laminaran has been researched along with Opportunistic-Infections* in 4 studies

Reviews

3 review(s) available for laminaran and Opportunistic-Infections

ArticleYear
Invasive mould infections in the ICU setting: complexities and solutions.
    The Journal of antimicrobial chemotherapy, 2017, 03-01, Volume: 72, Issue:suppl_1

    Infections caused by filamentous fungi represent a major burden in the ICU. Invasive aspergillosis is emerging in non-neutropenic individuals with predisposing conditions, e.g. corticosteroid treatment, chronic obstructive pulmonary disease, liver cirrhosis, solid organ cancer, HIV infection and transplantation. Diagnosis is challenging because the signs and symptoms are non-specific, and initiation of additional diagnostic examinations is often delayed because clinical suspicion is low. Isolation of an Aspergillus species from the respiratory tract in critically ill patients, and tests such as serum galactomannan, bronchoalveolar lavage 1-3-β-d-glucan and specific PCR should be interpreted with caution. ICU patients should start adequate antifungal therapy upon suspicion of invasive aspergillosis, without awaiting definitive proof. Voriconazole, and now isavuconazole, are the drugs of choice. Mucormycosis is a rare, but increasingly prevalent disease that occurs mainly in patients with uncontrolled diabetes mellitus, immunocompromised individuals or previously healthy patients with open wounds contaminated with Mucorales. A high proportion of cases are diagnosed in the ICU. Rapidly progressing necrotizing lesions in the rhino-sinusal area, the lungs or skin and soft tissues are the characteristic presentation. Confirmation of diagnosis is based on demonstration of tissue invasion by non-septate hyphae, and by new promising molecular techniques. Control of underlying predisposing conditions, rapid surgical resection and administration of liposomal amphotericin B are the main therapeutic actions, but new agents such as isavuconazole are a promising alternative. Patients with mucormycosis receive a substantial part of their care in ICUs and, despite advances in diagnosis and treatment, mortality remains very high.

    Topics: Antifungal Agents; Aspergillosis; Aspergillus; beta-Glucans; Critical Illness; Galactose; Humans; Immunocompromised Host; Intensive Care Units; Invasive Fungal Infections; Lung Diseases, Fungal; Mannans; Mucor; Mucormycosis; Nitriles; Opportunistic Infections; Pyridines; Respiratory System; Triazoles; Voriconazole

2017
[Current status of invasive fungal infections. New diagnostic techniques and antifungal agents].
    Enfermedades infecciosas y microbiologia clinica, 2008, Volume: 26 Suppl 14

    In the last few years, major advances in the treatment of transplant recipients, with hemato-oncological diseases or admitted to the intensive care unit, has been accompanied by an increase in classical fungal infections and by the emergence of uncommon fungal infections. Despite the development of new diagnostic techniques such as galactomannan detection and the availability of new antifungal agents, these opportunistic infections continue to pose a diagnostic challenge, prolong length of hospital stay, and increase costs. In addition, mortality from these infections is high. The present chapter provides a brief review of the epidemiology of these infections, diagnostic advances, and the new antifungal agents that have been developed in the last few years.

    Topics: Anidulafungin; Antifungal Agents; Aspergillosis; beta-Glucans; Candidiasis; Clinical Trials as Topic; Critical Care; Diabetes Complications; Disease Susceptibility; Echinocandins; Fungemia; Galactose; Hematologic Diseases; Humans; Immunocompromised Host; Mannans; Meta-Analysis as Topic; Mycoses; Neoplasms; Opportunistic Infections

2008
Management of invasive pulmonary aspergillosis in non-neutropenic critically ill patients.
    Intensive care medicine, 2007, Volume: 33, Issue:10

    During recent years, a rising incidence of invasive pulmonary aspergillosis (IPA) in non-neutropenic critically ill patients has been reported. Critically ill patients are prone to develop disturbances in immunoregulation during their stay in the ICU, which render them more vulnerable for fungal infections. Risk factors such as chronic obstructive pulmonary disease (COPD), prolonged use of steroids, advanced liver disease, chronic renal replacement therapy, near-drowning and diabetes mellitus have been described. Diagnosis of IPA may be difficult and obtaining histo- or cytopathological demonstration of the fungus in order to meet the gold standard for IPA is not always feasible in these patients. Laboratory markers used as a non-invasive diagnostic tool, such as the galactomannan antigen test (GM), 1,3-beta-glucan, and Aspergillus PCR, show varying results. Antifungal therapy might be considered in patients with persistent pulmonary infection who exhibit risk factors together with positive cultures or sequentially positive GM and Aspergillus PCR in serum, in whom voriconazole is the drug of choice. The benefit of combination antifungal therapy lacks sufficient evidence so far, but this treatment might be considered in patients with breakthrough infections or refractory disease.

    Topics: Antifungal Agents; Antigens, Fungal; Aspergillosis; Aspergillus; beta-Glucans; Critical Illness; DNA, Fungal; Drug Therapy, Combination; Galactose; Humans; Intensive Care Units; Lung Diseases, Fungal; Mannans; Opportunistic Infections; Polymerase Chain Reaction; Risk Factors

2007

Other Studies

1 other study(ies) available for laminaran and Opportunistic-Infections

ArticleYear
Difficulties in using 1,3-{beta}-D-glucan as the screening test for the early diagnosis of invasive fungal infections in patients with haematological malignancies--high frequency of false-positive results and their analysis.
    Journal of medical microbiology, 2010, Volume: 59, Issue:Pt 9

    We have evaluated the contribution of the 1,3-beta-d-glucan (BG) assay for the screening of invasive fungal infections (IFIs) in patients with haematological malignancies. Serum samples from patients at risk of IFI were collected twice a week and retrospectively tested using the BG assay. BG screening was performed on 1143 samples from 91 patients during 104 anticancer treatment cycles. Proven and probable cases of IFI occurred in 9 (8.7 %) treatment cycles. Depending on the criterion of positivity used (1x >60 pg ml(-1), 1x >80 pg ml(-1), 2x >60 pg ml(-1) or 2x >80 pg ml(-1)) the sensitivity and specificity were 89, 89, 67 and 44 %, and 20, 48, 33 and 56 %, respectively. Although the test was marked as positive in 82, 68, 54 and 45 % of all the treatment cycles, in the majority of cases, these positivities were probably false. The major limit of the BG test was an extremely low positive predictive value (10 to 12 %). We have analysed mucositis, candida colonization, bacteraemia, use of antimicrobials, erythrocyte and thrombocyte filtered blood products, collecting tubes or sampling via venous catheters. Even though no factor is a major source of BG, it could at least partially influence BG assay performance. Thus, BG detection has a limited usefulness as a screening method for IFIs in patients with haematological malignancies.

    Topics: Antineoplastic Agents; beta-Glucans; Female; Hematologic Neoplasms; Humans; Immunoassay; Immunocompromised Host; Male; Mycoses; Opportunistic Infections; Predictive Value of Tests; Sensitivity and Specificity

2010