The medical and social significance of cardiovascular diseases remains high. One of the factors that determine cardiovascular risks is metabolic syndrome. As a result of excessive accumulation of lipid and carbohydrate metabolism products in metabolic syndrome, oxidative (oxidative) stress develops. The article considers both domestic and foreign scientific studies, which highlight various aspects of the influence of reactive oxygen and nitrogen species, as well as other free radicals on the formation of oxidative stress in pathological conditions that are part of the metabolic syndrome complex. This describes the mechanisms of the formation of chronic inflammation through excessive secretion of pro-inflammatory cytokines and adipokines, activation of the transcription factor NF-kB, as well as damage to the antioxidant system in obesity. Separately, a number of mechanisms of the stimulating effect of adipokines: leptin, adiponectin, chimerine, omentin 1, resistin, on the formation of oxidative stress have been noted. The ways of activating the polyol pathway, as well as diacyl-glycerol — protein kinase C — the signaling pathway of oxidative stress, the formation of mitochondrial dysfunction is described. As a result of which there is an excessive production of free radicals in insulin resistance, diabetes mellitus and macroand microvascular complications of diabetes. In addition, the influence of oxidative stress directly on the formation of cardiovascular diseases of atherosclerotic genesis, as well as arterial hypertension, has been shown.
Primary immunodeficiency is a rare congenital pathology associated with failure of immune system, manifested by disturbances of its functions. These defects lead to increased susceptibility of patients to various infectious agents, as well as the development of autoimmune, malignant and other diseases. Primary immunodeficiency is classified as a rare disease, which was previously associated with a poor prognosis with a high risk of mortality in childhood. To date, the emergence of highly effective treatment methods has changed the course and prognosis of these diseases. Clinicians of various specialties increasingly meet with this pathology in everyday practice, including adult age cohorts. In this regard, early diagnosis of primary immunodeficiency in adults becomes relevant, being associated with choosing optimal therapy, prevention of severe internal organ damage, determination of management strategy for the patient, as well as the need to identify inherited disorders and provide information to the patient’s family. Delayed verification of the diagnosis may cause disability of the patient and development of irreversible, often fatal complications. This article presents our own clinical case with a newly diagnosed clinical condition: Common variable immunodeficiency disorder (CVID), the most common form of primary immunodeficiency in adults. The symptoms of common variable immunodeficiency disorder appear in these patients in adulthood, but a high-quality collected history of the disease will allow you to trace symptoms in the patients even since early childhood. There is a common gap for several years between the onset of the disease and clinical diagnosis, since erroneous diagnosis is often made due to non-specific clinical symptoms that resemble other, more frequent diseases. The prognosis of patients with CVID depends on several factors: frequency of infections, structural disorders in the lungs, the occurrence of autoimmune diseases and the success of infection prevention. Thus, a variety of clinical forms of primary immunodeficiency, lack of awareness of doctors about this pathology, complexity of immunological examination in the general medical network lead to the fact that CVID is not diagnosed for long terms, and patients do not receive the necessary pathogenetic therapy. There is a need for drawing attention of doctors of various disciplines to the fact that the recurrent inflammatory processes of various localization, which are difficult to respond to adequate traditional therapy, may be caused by changes in the immune system, including congenital, genetically determined immunodeficiency.
The pandemic of coronavirus infection COVID-19 (Coronavirus Disease 2019), caused by a new strain of coronavirus SARSCoV-2 (severe acute respiratory syndrome coronavirus 2), has caused high mortality worldwide. The clinical manifestations of COVID-19 are nonspecific. Diagnostics includes clinical, laboratory and radiological data. The importance of introducing information systems into medical practice in order to improve the quality of medical care is noted. It is stated that the development of medical artificial intelligence is associated with the development of artificial intelligence programs designed to help the clinic in making a diagnosis, prescribing treatment, as well as predicting the outcome of the disease. Such systems include artificial neural networks, fuzzy expert systems, and hybrid intelligent systems. The article analyzes data from a number of studies on the use of artificial intelligence for diagnosing COVID-19, predicting the risk of mortality and studying risk factors for severe course and lethal outcome in various groups. Using clusters of predictors, models have been developed to predict mortality and understand the relationship of various characteristics and diseases with mortality from COVID-19. The article also summarizes the key factors that worsen the prognosis for COVID-19. Scales for detecting or predicting the development of COVID-19-induced “cytokine storm” are marked as a separate item.
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