We studied the risk factors, etiology, clinical manifestations, and treatment outcomes of COVID-19-associated invasive candidiasis (COVID-IC) in adult patients admitted to six medical facilities in St. Petersburg. (November 2020–December 2022). In this retrospective study, we included 72 patients with COVID-IC with a median age of 61 years (range 29–96), 51% of whom were women. The predisposing factors for COVID-IC were a central venous catheter (CVC) for more than 10 days (the odds ratio (OR) = 70 [15–309]), abdominal surgical treatment performed in the previous 2 weeks (OR = 8.8 [1.9–40.3]), bacteremia (OR = 10.6 [4.8–23.3]), pulmonary ventilation (OR = 12.9 [5.9–28.4]), and hemodialysis (OR = 11.5 [2.5–50.8]). The signs and symptoms of COVID-IC were non-specific: fever (59%), renal failure (33%), liver failure (23%), and cardiovascular failure (10%). Candida albicans (41%) predominated among the pathogens of the candidemia. The multidrug-resistant Candida species C. auris (23%) and C. glabrata (5%) were also identified. Empirical therapy was used in 21% of COVID-IC patients: azole-93%, echinocandin–7%. The majority of COVID-IC patients (79%) received, after laboratory confirmation of the diagnosis of IC, fluconazole (47%), voriconazole (25%), echinocandin (26%), and amphotericin B (2)%. The 30 days overall survival rate was 45%. The prognosis worsened concomitant bacteremia, hemodialysis, and long-term therapy by systemic glucocorticosteroids (SGCs), bronchial colonization with Candida spp. The survival prognosis was improved by the early change/replacement of CVC (within 24 h), the initiation of empirical therapy, and the use of echinocandin. Conclusions: We highlighted the risk factors that predispose COVID-19 patients to candidiasis and worsen the survival prognosis. Their individual effects in patients with COVID-19 must be well understood to prevent the development of opportunistic co-infections that drastically lower chances of survival.
BACKGROUND: Despite the achievements of modern medicine, people's susceptibility to fungal infections is only increasing. In this regard, it is extremely important to understand which social factors are most characteristic of people suffering from mycoses of the skin, hair and nails. AIM: to study the socio-demographic status of immunocompetent and immunocompromised patients with mycoses of skin, hair and nails. MATERIALS AND METHODS: A multicenter prospective cohort observational study of the social and demographic characteristics of immunocompetent and immunocompromised individuals with mycoses of the skin of hair and nails was conducted. Four groups of patients were formed: immunocompetent persons, persons with diabetes mellitus, patients with autoimmune diseases while taking immunosuppressants, patients with infection human immunodeficiency virus (HIV). A total of 646 people were examined. To ensure the quality of research and information processing, questionnaires were developed to be filled in for each examined patient. At the time of inclusion in the study, data concerning the place of residence and living conditions of patients, their lifestyle, marital status, bad habits and profession were entered into the questionnaires. RESULTS: Significant differences (p 0.0001) were revealed between the studied socio- demographic characteristics in the study groups. The age of immunocompetent patients with mycoses of skin, hair and nails was 9–14 years lower than the age of immunocompromised. Female persons prevailed in the case of autoimmune diseases ― 71.1%. Harmful habits were registered in 60% of patients with superficial mycoses and HIV. 83.33% of autoimmune patients were married. Urban residents prevailed over rural residents in the case of diabetes mellitus and autoimmune pathology. Persons of manual work professions in 48.48% of cases were identified among patients with HIV infection, which was more than in other study groups. CONCLUSION: When studying the socio- demographic characteristics of patients with mycoses of skin, hair and nails, significant differences were revealed in all the factors studied. The obtained results indicate the need to develop a personalized approach to the diagnosis, prevention and treatment of these infections.
We present a case of fungal peritonitis in a patient secondary to intestinal perforation and repeated laparotomy. An analysis of data from the register of patients with invasive candidiasis is also presented. In the study were included 42 patients with candida peritonitis. The risk factors: antibiotics (100%), vascular catheters (95%), total parenteral nutrition (81%), repeated abdominal surgery (69%), sepsis (69%), bacteremia (50%), repeated perforations on the gastrointestinal tract (43%), oncopathology of the gastrointestinal tract (36%), infected pancreatic necrosis (26%). The etiology agents were C. albicans (50%), C. glabrata (14%), C. parapsilosis (7%). 45% of patients received prophylactic treatment (100% fluconazole). Empirical therapy was carried out by 52% of patients (triazoles – 38%, echinocandins – 14%). After receiving the results of the microbiological study, 3% of patients began to receive antifungal therapy (echinocandins). The 30 days overall survival rate was 66%.
РУБРИКА ОРИГИНАЛЬНЫЕ ИССЛЕДОВАНИЯ Синдром хронического кандидоза кожи и слизистых у детей с мутациями гена STAT 1 1 Федеральное государственное бюджетное образовательное учреждение высшего образования «Северо-Западный государственный медицинский университет имени И.И.Мечникова» Министерства здравоохранения Российской Федерации, 191015, г.Санкт-Петербург, Российская Федерация 2 Федеральное государственное бюджетное образовательное учреждение высшего образования «Санкт-Петербургский государственный педиатрический медицинский университет» Министерства здравоохранения Российской Федерации, 194100, г
Background: The coronavirus disease 2019 (COVID-19) pandemic has direct impact on patients with active hematological malignancies (HM), who are at a continuous risk for severe disease course and delay of chemotherapy. The COVID-19 study of the European Hematology Association (EPICOVIDEHA) was initiated in February 2020 by an international steering committee. As of November 2021, more than 4,500 adult cases from 35 countries in five continents have been registered. From January 2022, EPICOVIDEHA will broaden its target population, in order to include children too, establishing the EPICOVIDEHA Kids registry. Aims: The aim is to enhance the knowledge of the outcome and clinical management of these patients. The incidence of severe COVID-19, admission to intensive care units (ICU), estimation of pre-existing comorbidities, or associated mortality rate will also be evaluated. Methods: The EPICOVIDEHA Kids survey will be online accessible at www.clinicalsurveys.net. All data will be collected anonymously: demographics, underlying diseases, hematological malignancy, COVID-19 infection, and outcome. Inclusion criteria will be: age below 18 years, active HM within the last 5 years prior to COVID-19, and severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) positive test. Each documented patient will be reviewed for data completeness and coherence by a panel of experts. Results: A general publication with the data from all patients will be performed at the end of 2022. Additionally, subset analyses on specific cutting-edge topics might be run after the proposal of any participant with the previous approval of the steering committee of the survey. Summary/Conclusion: EPICOVIDEHA Kids is a ready-to-use survey, whose focal point is to gather epidemiological data from pediatric hematological populations and COVID-19. This study will help to better understand the features of these patients and to ameliorate their clinical management. Additionally, EPICOVIDEHA Kids will enable the partnership of international groups of hematologists and infectious diseases specialists, in order to improve the clinical management of HM patients with COVID-19.
We present the results of a prospective multicenter study of risk factors, etiology, clinical features, and treatment outcomes for mucormycosis in patients with COVID-19 (COVID-M) in the Russian Federation.The study included 60 adult patients with COVID-M. To analyze risk factors for COVID-M, we conducted a case-control study. The control group included 60 adult patients with COVID-19 without mucormycosis. To analyze the clinical manifestations of COVID-M, we created a control group of hematological patients with mucormycosis examined in 2011–2020.In patients with COVID-19, the risk of developing mucormycosis was significantly increased with diabetes mellitus (OR=49) and overweight (OR=4,75), as well as with the use of high (≥100 mg per day for prednisolone) doses of glucocorticosteroids (OR= 4,762), especially ≥10 days (OR=25,4). The main localization of mucormycosis in patients with COVID-19 was the paranasal sinuses (95%) and the orbit (68%). Involvement of ≥2 organs was identified in 70% of patients. The main causative agents of mucormycosis were Rhizopus arrhizus (43%) and unidentified mucormycetes (36%).90-days overall survival of patients with mucormycosis and COVID-19 – 71%. The stay in the ICU (p=0,01), the use of mechanical ventilation (p=0,0481), the presence of CVC (p=0,049), CNS damage (p=0,016) and ≥ 2 organs (p=0,048) significantly worsened the prognosis of the disease. The best prognosis was in patients who received antifungal therapy (p=0,03875) and surgical treatment (p=0,046).
Objective. To study the features of invasive aspergillosis (IA) due to A. non-fumigatus versus A. fumigatus in adult (≥ 18 years) recipients of allogeneic hematopoietic stem cell transplantation (allo-HSCT) in 2016-2021. Materials and methods. The study included 33 patients with IA caused by A. non-fumigatus (n = 20) and A. fumigatus (n = 13). A comparative analysis of cases of IA, the results of therapy and outcomes in patients after allo-HSCT in the RM Gorbacheva Research Institute was performed. Diagnostic criteria EORTC / MSGERC 2020 were used. Results. Invasive aspergillosis caused by A. non-fumigatus made up the majority (60.6 %) of IA cases with an identified pathogen registered in patients after allo-HSCT in the period from 2016 to 2021. The main etiological agents in the A. non-fumigatus group were A. niger in 13 (65 %) patients, A. flavus – in 4 (20 %). The median day of diagnosis of A. non-fumigatus IAwas + 110 days (17–2093), for A. fumigatus it was + 46 days (2–866) (p = 0.171). Overall 12-week survival was 55 % and 59.2 % in the A. non-fumigatus and A. fumigatus groups, respectively (p = 0.617). The majority of patients in both the A. fumigatus (n = 10, 77 %) and A. non-fumigatus (n = 16, 80 %) groups received voriconazole as initial antifungal therapy. Second-linetherapy was required in 2 (10 %) patients with A. non-fumigatus IA: liposomal amphotericin B and echinocandins with or with-out posaconazole, and 2 (15 %) patients in the A. fumigatus group: liposomal amphotericin B and voriconazole in combination with echinocandins. A comparative analysis showed that in patients from the two groups, none of the assessed signs (gender, age, underlying disease, disease status at the time of transplantation, time from diagnosis to allo-HSCT, source of hematopoietic stem cells, conditioning regimen, donor type, antifungal prophylaxis, cytomegalovirus reactivation, severe acute and chronic graft-versus-host disease) did not differ significantly. Conclusions. A. niger is the main causative agent of IA caused by A. non-fumigatus. Patients characteristics, their treatment and outcomes did not differ significantly between the A. non-fumigatus and A. fumigatus groups.
BACKGROUND:Trichoderma spp. are filamentous fungi causing invasive fungal diseases in patients with haematological malignancies and in peritoneal dialysis patients. OBJECTIVES:To analyse clinical presentation, predisposing factors, treatment and outcome of Trichoderma infections. METHODS:A systematic literature review was conducted for published cases of invasive Trichoderma infection in PubMed until December 2021 and by reviewing the included studies' references. Cases from the FungiScope® registry were added to a combined analysis. RESULTS:We identified 50 invasive infections due to Trichoderma species, including 11 in the FungiScope® registry. The main underlying conditions were haematological malignancies in 19 and continuous ambulatory peritoneal dialysis (CAPD) in 10 cases. The most prevalent infection sites were lung (42%) and peritoneum (22%). Systemic antifungal therapy was administered in 42 cases (84%), mostly amphotericin B (n = 27, lipid-based formulation 13/27) and voriconazole in 15 cases (30%). Surgical interventions were performed in 13 cases (26%). Overall mortality was 48% (n = 24) and highest for allogeneic HSCT and solid organ transplantation (SOT) recipients [80% (4/5) and 77% (7/9), respectively]. In patients treated with amphotericin B, voriconazole and caspofungin, mortality was 55% (15/27), 46% (7/15) and 28% (2/7), respectively. Three out of four patients treated with a combination therapy of voriconazole and caspofungin survived. CONCLUSIONS:Despite treatment with antifungal therapies and surgery, invasive Trichoderma infections are life-threatening complications in immunocompromised patients, especially after HSCT and SOT. In addition, Trichoderma spp. mainly affect the lungs in patients with haematological malignancies and the peritoneum in CAPD patients.
Introduction. Aspergillus fumigatus is able not only to sensitize patients with atopy, but also to colonize the respiratory tract, remaining a constant source of allergens due to the small spore size and thermal tolerance. Currently, the role of micromycetes in the immunopathogenesis of asthma has been poorly studied. The objective was to evaluate the features of the immune response regulation in patients with allergic bronchopulmonary aspergillosis (ABPA) or asthma with sensitization to A. fumigatus. Materials and methods. There were enrolled 15 patients with ABPA, 10 patients with asthma with sensitization to A. fumigatus, 16 patients with asthma without sensitization to A. fumigatus. The control group consisted of 16 apparently healthy volunteers. All patients underwent a clinical and functional examination. The subpopulations of blood lymphocytes were assessed by flow cytometry. The A. fumigatus allergen was added to peripheral blood samples to evaluate the production of IFN, IL-10 and IL-13. The serum cytokine levels in cell culture supernatants, as well as total IgE, A. fumigatus-specific IgE (sIgE) as well as thymus and activation-regulated chemokine (TARC) level were measured by enzyme-linked immunosorbent assay. Results. Significantly higher serum levels of total IgE, A. fumigatus-specific sIgE and TARC were found in patients with ABPA and asthma with sensitization to A. fumigatus compared to patients with asthma without sensitization to A. fumigatus. The results of lymphocyte immunophenotyping revealed significant excess of memory Th2 cells and T-regulatory cells in all patients with asthma compared to the control group. The count of Tfh2 was higher but memory Th17.1 cells were lower in patients with sensitization to A. fumigatus compared to those of apparently healthy volunteers. Patients with ABPA had significantly higher count of memory Th2 cells and TARC level compared to patients with asthma sensitized to A. fumigatus. The increased activity of memory Th2 cells is confirmed by increased secretion of IL-13 and IL-10 following along with decreased IFN production in response to specific fungal allergen stimulation of blood cells compared to the patients with asthma and the control group. A positive correlation was revealed between the count of memory Th2 cells and the levels of sIgE, IgE, TARC, a negative correlation with FEV1. Conclusion. Thus, exposure to A. fumigatus significantly enhances the activity of memory Th2 cells in patients with asthma which can lead to severe disease course and development of allergic bronchopulmonary aspergillosis. The features of the immune response identified dictate a need for a personalized approach to choose therapeutic tactics in such patients.
Critically ill patients with coronavirus disease 2019 (COVID-19) may develop COVID-19-associated pulmonary aspergillosis (CAPA), which impacts their chances of survival. Whether positive bronchoalveolar lavage fluid (BALF) mycological tests can be used as a survival proxy remains unknown.
Objective. To study risk factors, clinical and radiological features and effectiveness of the treatment of invasive aspergillosis (IA) in adult patients with COVID-19 (COVID-IA) in intensive care units (ICU). Materials and Methods. A total of 60 patients with COVID-IA treated in ICU (median age 62 years, male – 58%) were included in this multicenter prospective study. The comparison group included 34 patients with COVID-IA outside the ICU (median age 62 years, male – 68%). ECMM/ISHAM 2020 criteria were used for diagnosis of CAPA, and EORTC/MSGERC 2020 criteria were used for evaluation of the treatment efficacy. A case-control study (one patient of the main group per two patients of the control group) was conducted to study risk factors for the development and features of CAPA. The control group included 120 adult COVID-19 patients without IA in the ICU, similar in demographic characteristics and background conditions. The median age of patients in the control group was 63 years, male – 67%. Results. 64% of patients with COVID-IA stayed in the ICU. Risk factors for the COVID-IA development in the ICU: chronic obstructive pulmonary disease (OR = 3.538 [1.104–11.337], p = 0.02), and prolonged (> 10 days) lymphopenia (OR = 8.770 [4.177–18.415], p = 0.00001). The main location of COVID-IA in the ICU was lungs (98%). Typical clinical signs were fever (97%), cough (92%), severe respiratory failure (72%), ARDS (64%) and haemoptysis (23%). Typical CT features were areas of consolidation (97%), hydrothorax (63%), and foci of destruction (53%). The effective methods of laboratory diagnosis of COVID-IA were test for galactomannan in BAL (62%), culture (33%) and microscopy (22%) of BAL. The main causative agents of COVID-IA are A. fumigatus (61%), A. niger (26%) and A. flavus (4%). The overall 12-week survival rate of patients with COVID-IA in the ICU was 42%, negative predictive factors were severe respiratory failure (27.5% vs 81%, p = 0.003), ARDS (14% vs 69%, p = 0.001), mechanical ventilation (25% vs 60%, p = 0.01), and foci of destruction in the lung tissue on CT scan (23% vs 59%, p = 0.01). Conclusions. IA affects predominantly ICU patients with COVID-19 who have concomitant medical conditions, such as diabetes mellitus, hematological malignancies, cancer, and COPD. Risk factors for COVID-IA in ICU patients are prolonged lymphopenia and COPD. The majority of patients with COVID-IA have their lungs affected, but clinical signs of IA are non-specific (fever, cough, progressive respiratory failure). The overall 12-week survival in ICU patients with COVID-IA is low. Prognostic factors of poor outcome in adult ICU patients are severe respiratory failure, ARDS, mechanical ventilation as well as CT signs of lung tissue destruction.
Objective. To study risk factors, etiology, clinical signs and treatment outcomes of invasive aspergillosis (IA) and mucormycosis combination (IAM) in children. Materials and Methods. A retrospective review of Saint-Petersburg register (1998–2021) of patients with IA was done and children with IAM were included. EORTC/MSGERG 2019 criteria were used for diagnosing and treatment results evaluation of invasive mycosis. We presented a clinical case of IAM in a child with acute lymphoblastic leukemia relapse. Results. A total of 12 children with IAM were included. They accounted 8% of all pediatric patients with invasive aspergillosis (n = 152). IAM was diagnosed in children with hematological malignancies and solid tumors from 4 to 16 years (median age – 11.5 years), mostly in girls (83%). Main risk factors of IAM were prolonged lymphopenia (75%, median 22 days) and neutropenia (67%, median 30 days) due to chemotherapy, systemic corticosteroids and/or immunosuppressive therapy, as well as HSCT. The predominant etiological agents of IA were Aspergillus niger (33%), A. nidulans (33%) and A. fumigatus (17%), of mucormycosis – Lichtheimia corymbifera (50%) and Rhizomucor spp. (50%). Based on EORTC/MSGERG 2019 criteria, «proven» mucormycosis was diagnosed in 83% of patients, «probable» – in 17%. «Probable» IA was found in 100% of patients. The most common clinical sites of IAM were the lungs (75%) and paranasal sinuses (43%), multifocal involvement was revealed in 33% of patients. Mucormycosis developed during antifungal therapy of IA in 83% of patients. Antifungal therapy of mucormycosis received 75% of patients (amphotericin B lipid complex – 89%, posaconazole – 78%, caspofungin – 33%), combined antifungal therapy – 33%, surgery – 50%; combination of surgical and antifungal treatment was used in 42% of patients. The overall 12-week survival was 77.8%. The use of combined surgical and antifungal treatment significantly improved the survival of children with IAM (p = 0.023). Conclusions. Mucormycosis was diagnosed in 8% of children with IA. IAM developed mostly in patients with hematological malignancies (83%), prolonged lymphopenia (75%) and neutropenia (67%) against the background of chemotherapy, systemic corticosteroids and/or immunosuppressive therapy, as well as HSCT. In 83% of patients mucormycosis was diagnosed during antifungal therapy for IA. The development of IAM increased overall 12-week mortality (50%). The combination of antifungal therapy with surgical treatment significantly improved prognosis of IAM (p = 0.023).
Invasive fungal infections in various categories of patients remain one of the most urgent problems of modern medicine. This is complicated by the imperfection of diagnostic methods, as well as a small range of antimycotics for systemic use. The market launch in 2005 of posaconazole, a second-generation systemic antimycotic from the group of triazoles with a wide spectrum of activity in the form of an oral suspension, was an event in medical mycology. However, pharmacokinetic features of suspension have caused certain problems with its use. The suspension was replaced by a tablet form, largely devoid of these shortcomings, and then a solution for intravenous administration, which was registered in Russia at the end of 2021 (significantly later than in other countries of the world). Registration of an intravenous form of the drug with the possibility of using both for a stepdown approach and in patients who, for different reasons, cannot take posaconazole orally, had a positive impact on the problem of choosing antimycotics for the prophylaxis and treatment of invasive fungal infections. In this article, we will consider the features of the clinical pharmacology of the intravenous form and its place in the prophylaxis and treatment of invasive mycoses.
Strains of microorganisms characterized by resistance to antimicrobial drugs used in medical organizations continue to spread In most regions of the world including Russia. It is clear that it affects both the effectiveness of antimicrobial therapy and tactics and strategy of its use not only in adults patients but also in children. The pandemic of coronavirus infection, in addition, highlighted the growing problems in treatment of invasive mycoses, the dose adjustment of antibiotics during sorption and dialysis therapy methods. These circumstances made it necessary to make adjustments to Guidelines on Diagnostics and Antimicrobial Therapy of Infections Caused by Multiresistant Strains of Microorganisms, which were prepared by a group of leading Russian experts in 2020 [1]. The submitted version of the recommendations was approved on 25.03.2022 at a joint meeting of the working group with representatives of public organizations: Association of Anesthesiologists-Intensivists, the Interregional Non-Governmental Organization Alliance of Clinical Chemotherapists and Microbiologists, the Interregional Association for Clinical Microbiology and Antimicrobial Chemotherapy (IACMAC), and NGO Russian Sepsis Forum. These recommendations reflect an interdisciplinary consensus opinion on approaches to the diagnosis and antimicrobial therapy of infections caused by multiresistant microorganisms. They are based on data from publications obtained from randomized trials as well as based on international clinical guidelines with a high degree of evidence.It is rational to use the Guidelines for determining the tactics of empirical and etiotropic therapy of the most severe infections.
BACKGROUND:Voriconazole has been recommended as primary treatment for patients with invasive aspergillosis. Intravenous and tablet formulations of posaconazole that have improved systemic absorption could be an effective alternative to voriconazole. We aimed to assess non-inferiority of posaconazole to voriconazole for the primary treatment of invasive aspergillosis. METHODS:We did a randomised, prospective, double-blind, double-dummy, controlled trial comparing posaconazole (intravenous or oral posaconazole 300 mg twice on day 1, followed by 300 mg once a day for days 2-84) with voriconazole (6 mg/kg intravenous or 300 mg oral twice on day 1 followed by 4 mg/kg intravenously or 200 mg orally twice a day for days 2-84) for 12 weeks or less in the primary treatment of invasive aspergillosis. Participants were from 91 study sites in 26 countries, were aged 13 years or older, weighed at least 40 kg, and met criteria for proven, probable, or possible fungal disease. Participants were randomly assigned (1:1) via a computer-generated randomisation schedule with stratification by risk status. The primary endpoint was cumulative all-cause mortality up until day 42 in the intention-to-treat (ITT) population (defined as randomly assigned participants who received ≥1 dose of study drug), with a 10% non-inferiority margin. The ITT population was also evaluated for safety. This study is registered with ClinicalTrials.gov, NCT01782131, and EudraCT, 2011-003938-14. FINDINGS:Between Oct 25, 2013, and Sept 10, 2019, of 653 individuals assessed for eligibility, 575 ITT participants were randomly assigned and received one or more doses of study drug (n=288 [50%] posaconazole, n=287 [50%] voriconazole). Mortality up until day 42 was 15% (44 of 288) in the posaconazole group and 21% (59 of 287) in the voriconazole group (treatment difference -5·3% [95% CI -11·6 to 1·0]; p<0·0001). Mortality up until day 42 in the full-analysis-set subpopulation (ITT participants with proven or probable invasive aspergillosis) supported this conclusion: 31 (19%) of 163 participants in the posaconazole group and 32 (19%) of 171 participants in the voriconazole group (treatment difference 0·3% [95% CI -8·2 to 8·8]). The most frequently reported treatment-related adverse events (incidence >3%) were increased aspartate aminotransferase (AST) or alanine aminotransferase (ALT), nausea, hypokalaemia, and vomiting in the posaconazole group and increased ALT, AST, or alkaline phosphatase, hallucination, increased γ-glutamyltransferase peptidase, nausea, and blurred vision in the voriconazole group. The overall incidence of treatment-related adverse event rates in the ITT population was 30% for posaconazole and 40% for voriconazole (treatment difference -10·2% [95% CI -17·9 to -2·4]). INTERPRETATION:Posaconazole was non-inferior to voriconazole for all-cause mortality up until day 42 in participants with invasive aspergillosis. Posaconazole was well tolerated, and participants had fewer treatment-related adverse events than in the voriconazole group. This study supports the use of posaconazole as a first-line treatment for the condition. FUNDING:Merck Sharp & Dohme, a subsidiary of Merck & Co, Inc.
A retrospective analysis of the medical data of 12 patients with COVID-19 was performed. For the diagnosis of invasive aspergillosis the international criteria ECMM/ISHAM 2020 were used. We analyzed the scientific literature data on the diagnosis and treatment of invasive aspergillosis in patients with COVID-19.Results. Among the 12 examined patients with a severe course of COVID-19, invasive aspergillosis was diagnosed in 5 patients. Four patients (80%) were treated in the ICU. Steroids or interleukin-6 inhibitors were used in 80% patients. Severe lymphocytopenia was in 80% patients, neutropenia 20%. A fever refractory to antibiotic therapy was noted in 80% patients, an increase in respiratory failure – 60%, acute respiratory distress syndrome – 60%. All patients showed negative dynamics of changes in the chest CT scan. Invasive aspergillosis was confirmed with a positive test for galactomannan in bronchoalveolar lavage and / or serum in 100% of cases. All patients received antifungal therapy with voriconazole and/or caspofungin. The overall 12-week survival rate was 80%.Conclusion. In ICU patients with severe COVID-19 and progressive pulmonary symptoms invasive aspergillosis should be excluded. Examination of substrates from the lower respiratory tract (BAL, tracheal aspirate, or nonbronchoscopic lavage) is necessary. Laboratory examination should include microscopy, culture and test for galactomannan. Voriconazole and isavuconazole are drugs of choice for the treatment of invasive aspergillosis in patients with COVID-19.
BACKGROUND:Diagnosis of asthma with sensitization toAspergillusspp. is becoming increasingly important due to the severe, uncontrolled course of the disease and the possibility of the formation of allergic bronchopulmonary aspergillosis. AIM:To evaluate the possibility of using the basophil activation test using flow cytometry for the diagnosis of asthma with sensitization toAspergillusspp. MATERIALS AND METHODS:118 patients with asthma were examined. The levels of total IgE and specific IgE to aeroallergens were determined in the blood serum by the enzyme immunoassay. Basophil activation was studied by flow cytometry using the Allergenicity kit (Cellular Analysis of Allergy, Beckman-Coulter, USA). The allergenAspergillus fumigatus(Alcor Bio, Russia) was used to stimulate basophils. RESULTS:The first group consisted of 57 patients with asthma without sensitization toAspergillusspp. The second group included 36 patients with asthma with sensitization toAspergillusspp. The third group consisted of 25 patients with allergic bronchopulmonary aspergillosis. The number of basophils activated by theAspergillusfumigatusallergen in patients with asthma with sensitization toAspergillusspp. and allergic bronchopulmonary aspergillosis was significantly higher than in the asthma group and amounted to 8.1 [5.2; 20.9]% and 84.6 [75.7; 94.0]%, respectively (p 0.001). The stimulation index in the study groups ranged from 0.7 to 72.6. The optimal diagnostic point (cut off) for identifying patients with asthma withAspergillusspp. sensitization there was an stimulation index value of more than 2.4, and for patients with allergic bronchopulmonary aspergillosis 15.95. Among all patients with sensitization toAspergillusspp. a positive correlation was established between the level of specific IgE toAspergillusspp. and the percentage of basophils activated by the allergenAspergillusfumigatus(r= 0.792,p 0.001) and stimulation index (r= 0.796,p 0.05). CONCLUSIONS:The basophil activation test can be used as an additional diagnostic method for asthma with sensitization toAspergillusspp. and allergic bronchopulmonary aspergillosis.
The prevalence of invasive candidiasis (IC) in pediatric hospitals is from 4,3 to 15,2 per 10,000 hospitalized, in ICU – from 3,5 to 7 cases per 1,000, with HSCT – 2,9%. The average length of stay of a patient in the hospital before the development of IC varies from 21 to 56 days, in the ICU – more than 15 days. Knowledge of risk factors (ICU stay for ≥15 days, use of antibacterial drugs and parenteral nutrition, active malignant neoplasm, etc.) makes it possible to identify patients with a high (10-46%) risk of developing IC. Candida albicans remains the leading causative agent of IC in children, but infections with non-albicans Candida spp. have increased and an increase in the resistance of IC pathogens to azole antimycotics was noted. The main clinical variant of IC in children is candidemia, other forms include the central nervous system, abdominal organs, eyes, heart, bones and joints, kidneys, skin and subcutaneous tissue involvement, as well as chronic disseminated (hepatolienal) candidiasis. Blood culture, the main method of laboratory diagnostics of IC, is characterized by low sensitivity and requires a long time. Methods of noncultural diagnostics of IC (1,3-β-D-glucan, mannan and antimannan antibodies, T2 Candida etc) in children have not been sufficiently studied. The main drugs for the treatment of IC in children are echinocandins (anidulafungin, etc.), and CVC removal/replacement is necessary. The overall mortality rate in pediatric patients within 30 days after the diagnosis of IC is 37% to 44%.