Aim. To identify the features of the subpopulation composition of blood monocytes and tumor macrophages in relation to the plasma concentration and intratumoral expression of galectins 1 and 3 in patients with colorectal cancer.Materials and methods. A total of 23 patients with colorectal cancer (ICD C18-20) were examined – 5 men and 18 women (average age 63.8 ± 9.4 years). The control group consisted of healthy volunteers; the comparison group encompassed age- and sex-matched patients with colon adenomas. The study materials included whole blood and tumor biopsies. The concentration of galectins 1 and 3 in the blood was determined by enzyme-linked immunosorbent assay, the content of tumor galectin-1+ and galectin-3+ cells – by immunohistochemistry. Subpopulations of blood monocytes were evaluated by flow cytometry; the macrophage immunophenotypes M1 (CD68+ CD80+ ) and M2d (CD68+ CD206+ ) in tumor tissues were determined using immunofluorescence staining. Statistical processing of the research results was performed by the Jamovi 2.3.21 software package for Windows.Results. In patients with colorectal cancer (CRC), a positive relationship was identified between high plasma concentrations of galectins 1 and 3 and an imbalance of blood monocytes manifested by a decrease in the relative count of classical CD14++CD16- monocytes and, conversely, an increase in the number of non-classical CD14+CD16++ and intermediate CD14+ CD16- cells. The relative numbers of M1 (CD68+CD80+) and M2d (CD68+CD206+) macrophages in CRC tissue samples turned out to be comparable and did not depend on the level of galectins 1 and 3 in the blood and tumor. In patients with colon adenomas, the M2d subpopulation of tumorassociated macrophages was predominant (p = 0.031).Conclusion. In patients with CRC, galectins 1 and 3 have a modulating effect on the ratio of non-classical CD14+CD16++, intermediate CD14+CD16- , and classical CD14++CD16- monocytes in the blood and do not affect the M1/M2d expression profile of tumor-associated macrophages.
Background. In the pathogenesis of ischemic cardiomyopathy (ICMP), angiopoiesis remains unexplored.The aim. To describe the vasculature of the heart and the imbalance of angiogenesis mediators in the coronary circulation in association with the number of endothelial progenitor cells (EPC) and desquamated endothelial cells (DEC) in the blood of patients with coronary heart disease (CHD), suffering and not suffering from ICMP.Methods. Fifty-two patients with CHD (30 patients with ICMP, 22 patients without ICMP), 15 healthy donors were examined. The content of EPC (CD14+CD34+VEGFR2+) in the blood from the cubital vein and DEC (CD45–CD146+) in the blood from the coronary sinus and the cubital vein was determined by flow cytometry. The concentrations of VEGF-A (vascular endothelial growth factor A), PDGF (platelet-derived growth factor), and SDF-1 (stromal cell-derived factor 1) in blood plasma were recorded using immunofluorescence assay; the angiopoietin-2, MMP-9 (matrix metallopeptidase 9) were recorded using enzyme immunoassay. In myocardial biopsies the specific area of vessels and the expression of αSMA (smooth muscle alpha-actin) were determined by morphometric and immunohistochemical methods.Results. In the peripheral blood of patients with CHD, regardless of the presence of ICMP, the DEC content exceeded the physiological level, and the VEGF-A, PDGF, angiopoietin-2, and MMP-9 corresponded to the norm. In CHD patients without cardiomyopathy, there was an excess of SDF-1 and EPC in the blood from the cubital vein, and in ICMP, their physiological significance was noted. In the coronary blood flow in patients with CHD without cardiomyopathy, an increase in the concentration of PDGF was found, which was not determined in patients with ICMP, who had an increased content of DEC, angiopoietin-2 and MMP-9. The specific area of the vessels in the patients of the two groups was comparable; the expression of αSMA in ICMP was 6.2 times lower than in patients with CHD without cardiomyopathy.Conclusion. The development of ICMP is accompanied by impaired maturation of vessels in the myocardium, associated with the absence of a compensatory reaction of activation of cellular and humoral factors of angiogenesis.
Aim of the study. To investigate the effect of recombinant galectin-3 on the cytokines secretion of various subpopulations of helper-lymphocytes (Th1, Th2, Th17, Treg) in culture in vitro. Material and methods. The material for the study was peripheral blood from healthy people (n=17), from which lymphocytes were isolated by gradient centrifugation. Lymphocytes were cultured for 72 hours in a CO2-incubator with recombinant galectin-3 and activating antibodies (antiCD3/antiCD28). The concentration of cytokines (IL-10, IL-13, IL-17A, IL-22, IFN, TNF, TGF1) in the supernatants of lymphocyte cultures was determined by enzyme immunoassay. Results. Recombinant galectin-3 in vitro enhanced the secretion of IL-17A, IL-22 by lymphocytes, acting at a dose of 0.5 g/ml; IL-13, TNF and IFN at doses of 0.5 g/ml and 1 /ml (more pronounced when acting at a dose of 0.5 g/ml) and inhibited the production of IL-17, IL-22 at a dose of 1 g/ml and IL-10, TGF1 when testing both concentrations. Conclusion: Galectin-3 has a dose-dependent modulating effect on the cytokine-producing function of healthy donors lymphocytes in vitro. Functional imbalance in blood lymphocytes under the action of recombinant galectin-3 is manifested by induction of pro-inflammatory (IFN, IL-17, IL-22, TNF) and anti-inflammatory (interleukin-13) cytokines secretion, against the background of oppression of the suppressor cytokines (IL-10 and TGF1) production. A detailed study of the immunotropic effects of galectin-3 in relation to individual lymphocytes subpopulations is relevant from the view point of development new approaches to the treatment of tumor and autoimmune diseases accompanied by excessive production of this lectin.
Introduction. The relationship of the violation of the subpopulation composition of blood monocytes in ischemic cardiomyopathy (ICMP) with changes in monocytopoiesis, as well as the effect of colony-stimulating factor of macrophages (M-CSF) and cytokines on the differentiation of monocytes of various immunophenotypes in the bone marrow is of great relevance. Aim – to study the role of cytokines in the mechanisms of local and distant regulation of differentiation of classical, intermediate, non-classical and transitional bone marrow monocytes in combination with the content of VEGFR2 + -monocytes and hypoxia-induced factor-1a (HIF-1a) in the blood of patients with ischemic heart disease (IHD), suffering and not suffering from ischemic cardiomyopathy. Materials and methods. Seventy-four patients with IHD, suffering and not suffering from ICMP (30 and 44 people, respectively) were examined. The number of subpopulations of classical (CD14 ++ CD16 – ), intermediate (CD14 ++ CD16 + ), nonclassical (CD14 + CD16 ++ ) and transitional (CD14 + CD16 – ) monocytes (in bone marrow samples) and CD14 + VEGFR2 + -monocytes (in blood and bone marrow) was determined by flow cytofluorimetry; the concentration of cytokines IL-10, IL-13, TNF-α, IFN-γ, M-CSF in bone marrow and blood, as well as HIF-1a in the blood, was determined by ELISA. Results. Content of hematopoietins IL-10, IL-13, TNF-α, M-CSF in the bone marrow, as well as the ability of M-CSF to activate and IL-13 to inhibit the differentiation of classical monocytes from transitional cell forms were comparable between groups of patients with IHD. In the blood of patients with ICMP the concentration of IL-10 was higher, and the content of HIF-1α and CD14 + VEGFR2 + -cells was lower than in patients with IHD without ICMP (IL-10 – 30.00 (26.25–34.50) pg/ mL vs. 0 (23.0–28.0) pg/mL, p < 0.05; HIF-1α – 0.040 (0.029–0.053) ng/mL vs. 0.063 (0.054–0.122) ng/mL, p < 0.05; CD14 + VEGFR2 + – 7.00 (5.67–7.15) % vs. 7.80 (7.23–8.17) %, p < 0.05). A feature of monocytopoiesis in ICMP compared with patients with IHD without ICMP is a high concentration of IFN-γ in the BM and a low ratio of M-CSF/IL-13 (10.00 (0.65–18.23) and 0.02 [0–0.15) pg/mL, p < 0.001; 1.02 (0.41–2.00) and 9.00 (2.13–22.09), p < 0.05, respectively), in association with a decrease in the number of classical, intermediate monocytes and an increase in the number of transitional cells in the BM in patients with ICMP relative to patients without cardiomyopathy (21.0 (19.5–23.0) and 47 (41–61.5) %, p < 0.001; 0.3 (0.0–1.2) and 18.5 (6.5–28.0) %, p < 0.01; 76.2 (73.0–78.5) and 30.5 (13.0–41.5) %, p < 0.001, respectively). At the same time, regardless of the clinical form of IHD, IL-10 and IL-13 are distant hematopoietins, TNF-α is local hematopoietin. Conclusion. An increase in the concentration of IFN-γ and a low ratio of M-CSF/IL-13 in the bone marrow, as well as an excess of IL-10 and a lack of HIF-1a and CD14 + VEGFR2 + -cells in the blood of IHD patients, are associated with inhibition of differentiation of mature forms of monocytes and the development of ICMP.
The aim of the study was to evaluate the expression of scavenger receptors (CD163, CD204, CD206) on macrophages in patients with pulmonary tuberculosis, depending on the clinical form of the disease and sensitivity of the pathogen to anti-tuberculosis drugs. Materials and methods. 64 patients with pulmonary tuberculosis (TB) were examined: 26 patients with disseminated pulmonary tuberculosis (DTB) and 38 patients with infiltrative pulmonary tuberculosis (ITB). Of these, 42 patients secreted Mycobacterium tuberculosis (MBT) sensitive to basic antituberculosis drugs (ATBD), and 22 patients secreted MBT resistant to first-line anti-TB drugs. Material for the study was venous blood. To isolate monocytes from the whole blood in order to transform them into macrophages, Ficoll density gradient centrifugation with a density of 1.077 g / cm 3 was used followed by immunomagnetic separation of CD14+ cells. Monocytes were cultured in the X-VIVO 10 medium with gentamicin and phenol red with the addition of macrophage colony-stimulating factor (M-CSF) (5 ng / ml) at a concentration of 1×10 6 cells / ml with stimulators: interleukin (IL)-4 (10 ng / ml) and interferon (IFN) γ (100 ng / ml). Immunophenotyping of macrophages was performed using monoclonal antibodies to CD163, CD204, and CD206 on the Beckman Coulter CytoFLEX LX Flow Cytometer. The analysis of the obtained data was carried out using the CytExpert 2.0 software. The results were analyzed using statistical methods. Results. Switching the phenotype of macrophages from the M1-like proinflammatory phenotype to M2-like antiinflammatory one contributes to the chronic course of pulmonary TB, dissemination, and persistence of infection. In the present study, we analyzed the features of the expression of CD163, CD204, and CD206 scavenger receptors on macrophages in patients with pulmonary TB. An increase in the number of macrophages carrying markers of the M2 subpopulation (CD163, CD204, and CD206) on their surface was noted, regardless of the clinical form of pulmonary TB and drug resistance of M. tuberculosis . Conclusion. Studying the mechanisms underlying M1 or M2 activation of macrophages is necessary for a deeper understanding of the immunopathogenesis of TB and the role of innate immunity cells in protecting the body from mycobacteria. The analysis of the expression of scavenger receptors CD163, CD204, and CD206 on macrophages allowed to conclude that, in pulmonary TB, especially in patients with drug resistant M. tuberculosis and infiltrative TB, regulatory mechanisms that suppress the activation of innate immunity are implemented together with polarization of macrophage differentiation towards the M2 phenotype. It may be the cause of immune deficiency induced by the pathogen.
Aims: To identify an imbalance of cardiac remodeling mediators and monocytes subpopulation in blood, distribution of myocardium macrophages in patients with ischemic cardiomyopathy (ICMP). Methods: The study engaged 30 patients with ICMP, 26 patients with coronary heart disease (CHD) without ICMP, 15 healthy donors. Concentrations of TGF beta, MMP-9, MCP-1, galectin-3 were measured in plasma of blood from the coronary sinus and peripheral blood in CHD patients, as well as in peripheral blood in healthy donors, by enzyme immunoassay method. The ration of classical, intermediate, non-classical, transitional monocytes in peripheral blood of patients and healthy donors was assessed by flow cytometry (expression CD14, CD16); the content of CD68+ macrophages in myocardium - by immuno-histochemistry method. Results: In both samples of blood, the content of galectin-3 in patients with ICMP was higher than in CHD patients without ICMP and the level of TGF beta was comparable between the groups. At ICMP, the concentration of MMP-9 in sinus blood was higher than that in CHD patients without ICMP in whom an excess of MCP-1 in the general blood flow was determined. The density of distribution of CD68+ cells in the myocardium in patients with ICMP was higher in the perianeurysmal zone than in the right atrium appendage. ICMP was characterized by a deficiency of non-classical monocytes, and CHD without ICMP - by an excess of intermediate cells in peripheral blood. Conclusion: Myocardium remodeling at ICMP is mediated by not so much TGF beta but intracardiac galectin-3, which determines the subpopulation composition of blood monocytes. (C) 2021 The Authors. Published by Elsevier B.V.
The intensive development of reconstructive surgery and traumatology provides a stable demand for new materials for implants. Of particular interest are materials based on hydroxyapatite, which are chemically close to the elemental composition and structure of bone and have similar bioactive properties. The aim of this work was to obtain porous composite materials based on hydroxyapatite and a copolymer of lactide and glycolide with properties suitable for use as a material for bone implants. The phase and elemental composition of composites was investigated by infrared spectroscopy, X-ray diffraction, and X-ray photoelectronic spectroscopy methods, and it was established how the production process affects the composition of materials. Regularities of the formation of porosity by the methods of low-temperature adsorption of nitrogen, immersion in a liquid (determination of the pore space volume), measurement of the diffusion coefficient through the material (Franz cell), and surface properties of composite materials by the Hammett indicator method, by the lying drop method were revealed. Regularities were established between the surface properties and the composition of materials and their biocompatibility determined using monocytes isolated from human peripheral blood.
We examined expression pattern of CD80 and HLA-DR pro-inflammatory molecules on the monocytes in patients with pulmonary tuberculosis (TB), depending on the clinical form of the disease and susceptibility of the pathogen to anti-tuberculosis drugs. The study involved forty-five patients with newly diagnosed pulmonary TB (25 men and 20 women aged 18 to 55 years, average age — 44.0±12.4 years). The control group included 15 healthy donors with similar socio-demographic characteristics as in TB patients. Venous blood was used as biomaterial for assays. Studies of the monocyte immunophenotype were carried out by flow cytometry of whole blood cells using Cytoflex flow cytometer (Beckman Coulter, USA) with specific monoclonal antibodies (eBioscience, USA). We determined the content of cells expressing surface markers of monocytes, i.e., CD14, CD45, CD80, and HLA-DR. The results of this study were evaluated using SPSS Statistics 17.0 standard software package and Microsoft Excel. In the course of the study, we have suggested a working hypothesis that the monocytes in TB patients, still being in circulation, can express activation markers during their migration to inflammation focus, especially CD80 and HLA-DR molecules. Analysis of the total CD14+ monocyte number showed its decrease in all forms and variants of clinical course of pulmonary tuberculosis compared with the control group. Assessment of pro-inflammatory markers expressed on CD14 positive monocytes, i.e., HLA-DR activation marker and CD80 co-stimulatory molecule, showed that the number of monocytes with HLA-DR expression in all TB patients was higher than in healthy donors. HLA- DR expression on CD14+ monocytes in the group of patients with infiltrative TB proved to be 15% higher than in patients with disseminated TB. The expression of CD80 on CD14+ monocytes in TB patients showed no differences between the groups and varied within the normal range. Hence, an imbalance within monocyte population in patients with pulmonary tuberculosis, regardless of its clinical form and drug sensitivity of the pathogen is developed, due to decrease in total number of CD14+ cells, along with increased relative number of monocytes expressing HLA-DR activation marker (pro-inflammatory phenotype). Meanwhile, expression of the CD80 co-stimulatory molecule on monocytes was within normal values.
The aim of this study was to identify features of the expression of pro-inflammatory and co-stimulatory molecules on the surface of macrophages in vitro in patients with pulmonary tuberculosis, depending on the clinical form of the disease and sensitivity of the pathogen to anti-TB drugs. Materials and methods . 40 patients (36 men and 4 women) with pulmonary tuberculosis (TB) were examined: 18 patients (16 men and 2 women, average age (44.56 ± 8.10) years) with disseminated tuberculosis (DTB) and 22 patients (20 men and 2 women, average age (46.54 ± 5.24) years) with infiltrative tuberculosis (ITB). Of those, 30 patients secreted Mycobacterium tuberculosis (MBT) sensitive to the basic anti-TB drugs (ATBD), and 10 patients secreted MBT resistant to first-line anti-TB drugs. Venous blood was the study material. To isolate monocytes from the whole blood in order to transform them into macrophages, ficoll density gradient centrifugation with gradient density of 1.077 g/cm 3 was used followed by immunomagnetic separation of CD14 + cells. Monocytes were cultured in a complete culture medium X-VIVO 10 with gentamicin and phenol red with the addition of the macrophage colony-stimulating factor (M-CSF) (5 ng/ml) at a concentration of 1×10 6 cells/ml with the following stimulators: interleukin (IL) 4 (10 ng/ml) and interferon (IFN) γ (100 ng/ml). Immunophenotyping of macrophages was performed using monoclonal antibodies to CD80, CD86, and HLA-DR on a Beckman Coulter CytoFLEX LX flow cytometer (Beckman Coulter, USA). The analysis of the obtained data was carried out using the CytExpert 2.0 software application. The results were analyzed using statistical methods. Results . The number of intact and cytokine-stimulated (IL-4 and IFNγ) CD80-positive macrophages in patients with ITB and drug-resistant TB (DR TB) exceeded their number not only in healthy donors, but also in patients with DTB and drug-sensitive TB (DS TB), respectively. In addition, an increase in CD86 expression on the surface of macrophages was registered in patients with ITB and DR TB after adding IFNγ (M1-activation inducer) to the suspension culture. In contrast, in patients with DTB and DS TB, the number of macrophages with expression of B7 family co-stimulating molecules decreased or remained within the normal values in the absence of a reaction to cytokines during cytokine induction. Deficiency of HLA-DR-positive macrophages was found in all TB patients. The minimal number of macrophages expressing HLA-DR was found in patients with DTB and DS TB after cell incubation with IL-4 (M2-activation inducer). Conclusion . Evaluation of the expression of B7 (CD80/86) and HLA-DR membrane molecules on macrophages in TB patients allows to conclude that anti-TB immune response is impaired at stages of antigen presentation (in all examined patients with TB) and co-stimulation (in DTB and DS TB). An increase in the expression of macrophage surface molecules CD80 (with M1- and M2-stimulation) and CD86 (with M1-stimulation) in patients with ITB and DR TB indicates an increase in cell reactivity in these forms of TB. In addition, deficit of expression of HLA-DR (a key marker of pro-inflammatory cell activation) on the surface of macrophages in TB can be considered as a general (independent of the clinical form of the disease and drug sensitivity of the pathogen) pathogenetic factor of immune imbalance in pulmonary tuberculosis.
Введение. При клинической манифестации туберкулеза легких альвеолярные макрофаги накапливают микобактерии и перестают выполнять свои эффекторные функции. Это связано с конверсией их провоспалительного фенотипа М1 в противовоспалительный М2, что способствует хронизации инфекции. Научная гипотеза исследования предполагает влияние цитокинового статуса организма на поляризацию моноцитов в крови в процессе их миграции к очагу воспаления, определяя дифференцировку и пути активации макрофагов в тканях. Цель исследования - оценка иммунофенотипа моноцитов крови и исследование in vitro уровня секреции иммунорегуляторных цитокинов мононуклеарными лейкоцитами периферической крови у больных с различными клиническими формами туберкулеза легких. Методика. Обследовано 65 пациентов с впервые выявленным туберкулезом легких. Материалом исследования служили венозная кровь и мононуклеарные лейкоциты периферической крови. Исследование иммунофенотипа моноцитов проводили методом проточной цитометрии (цитофлуориметр Cytoflex, Becman Coulter, США) в цельной крови с использованием моноклональных антител («eВioscience», США). Обработку полученных данных проводили с помощью программы «CytExpert 2.0». Определяли количество клеток экспрессирующих поверхностные маркеры: CD14, CD163, CD204 и HLA-DR. Содержание цитокинов (IL-2, IL-10, TGFβ) в супернатантах клеточных культур оценивали с помощью твердофазного иммуноферментного анализа (ELISA). Результаты. Полученные результаты позволяют предположить, что при общем снижении численности циркулирующих CD14-позитивных моноцитов крови у больных туберкулезом легких, независимо от его клинической формы сохраняется высокая экспрессия маркеров активации клеток как по провоспалительному фенотипу М1 (HLA-DR-позитивные моноциты), так и противовоспалительному фенотипу М2 (CD163-позитивные моноциты). При диссеминированной форме заболевания повышается количество противовоспалительных CD204-позитивных моноцитов, предшественников М2-макрофагов, что свидетельствует о доминировании супрессорного типа иммунного ответа. Анализ цитокинового статуса in vitro показал, что течение болезни сопровождается угнетением эффекторных иммунных реакций и повышением уровня противовоспалительных цитокинов. Выявленные изменения в равной степени могут быть как причиной, так и следствием дефицита секреции IL-2. Показано также, что уровень секреции медиаторов с супрессорными эффектами (IL-10, TGFβ) меняется в зависимости от клинической формы заболевания и чувствительности возбудителя к противотуберкулезным препаратам: гиперсекреция IL-10 отмечается у больных с инфильтративным лекарственно-чувствительным, а TGFβ - при диссеминированном лекарственно-устойчивом туберкулезе легких. Заключение. Особенности дифференциации моноцитов крови у больных туберкулезом легких позволили прийти к заключению, что предшественники макрофагов - моноциты, уже в кровотоке начинают экспрессировать маркеры, характерные для разных по функциям М1- и М2-макрофагов, c поляризацией в направлении М2-иммунофенотипа. Следовательно, при развитии туберкулеза легких реализуются механизмы цитокиновой регуляции, подавляющие активацию врожденного иммунитета, что, возможно, является причиной хронизации воспалительного процесса в легких и формирования иммунодефицита индуцированного Mycobacterium tuberculosis. In clinical manifestation of pulmonary tuberculosis, alveolar macrophages perform as a reservoir where they accumulate mycobacteria and lose their effector functions due to the pathological conversion of macrophage pro-inflammatory M1 phenotype to the anti-inflammatory M2 phenotype, which provides transition to chronic infection. The study hypothesis suggested that the cytokine status, as evaluated by leukocyte secretion of cytokines in vitro, influences the monocyte polarization in the blood during their migration to the inflammatory focus, thereby determining differentiation and pathways of macrophage activation in tissues. The aim of this work was to assess the immunophenotype of blood monocytes and the in vitro secretion of immunoregulatory cytokines by mononuclear peripheral blood leukocytes from patients with different clinical forms of pulmonary tuberculosis taking into account the pathogen sensitivity to major anti-tuberculosis drugs. Methods. 65 patients with newly diagnosed pulmonary tuberculosis were evaluated. The study material was venous blood and peripheral blood mononuclear leukocytes. Monocyte immunophenotype was determined in whole blood by flow cytometry on a Cytoflex flow cytometer (Becman Coulter, USA) with monoclonal antibodies (eBioscience, USA). Results were processed with a CytExpert 2.0 software. The number of cells expressing surface markers, CD14, CD163, CD204 and HLA-DR, was determined. Content of cytokines (IL-2, IL-10, TGFβ) in supernatants of cell cultures was measured by enzyme-linked immunosorbent assay (ELISA). Results of the study were processed with a SPSS v.11.0 standard software package. Results. The study results suggested that with an overall decrease in the number of circulating CD14-positive blood monocytes in patients with pulmonary tuberculosis regardless of its clinical form, high expression of cell activation markers remained both for the pro-inflammatory M1 phenotype (HLA-DR-positive monocytes) and the anti-inflammatory M2 phenotype (CD163-positive monocytes). In disseminated tuberculosis, the number of anti-inflammatory CD204-positive monocytes, M2 macrophage precursors, increases indicating predomination of the immunosuppressive response. In vitro analysis of the cytokine status showed that tuberculosis progression is accompanied by inhibition of effector immune responses and increases in anti-inflammatory cytokine concentrations in vitro. These changes may be equally either a cause or a consequence of deficient IL-2 secretion. We also found that the secretion of mediators with suppressor effects (IL-10, TGFβ) varied depending on both the clinical form of tuberculosis and the pathogen sensitivity to anti-TB drugs; IL-10 hypersecretion was observed in patients with drug-sensitive, infiltrative tuberculosis whereas TGFβ hypersecretion was observed in disseminated, drug-resistant tuberculosis. Conclusion. Features of blood monocyte differentiation in patients with pulmonary tuberculosis allowed us to conclude that monocytes, the macrophage precursors, start expressing markers for different functions of M1 and M2 macrophages with polarization toward the M2 immunophenotype already in the bloodstream. Therefore, in the development of pulmonary tuberculosis, cytokine regulation mechanisms become involved in suppressing the activation of innate immunity, which possibly causes chronic inflammation in the lungs and formation of Mtb-induced immunodeficiency.
15 patients with infiltrative pulmonary tuberculosis (TB), 16 patients with chronic obstructive pulmonary disease (COPD) and 12 healthy donors were examined. Amount of CD14 hi CD16 – , CD14 hi CD16 lo , CD14 lo CD16 lo and CD14 lo CD16 – monocytes in the blood was evaluated by flow-cytometry, and galectin-2 and -9 concentration was measured by ELISA. Increase in the number of CD14 hi CD16 lo monocytes, differentiated from the CD14 hi CD16 – cells, and decrease in the content of galectin-2 and CD14 lo CD16 – monocytes in the blood were characteristic of TB. In COPD, an increase in the concentration of galectin-9 and the proportion of CD14 hi CD16 – monocytes against the background of deficiency of other their subpopulations in the blood was noted.
In the present time, incidence of pulmonary tuberculosis (TB) becomes broader, due to spreading resistance of Mycobacterium tuberculosis (MBT) to anti-tuberculosis drugs and infection with highly virulent strains of M. tuberculosis. The MBT antigens can cause dysfunction of the receptors and modulate the cytokine secreting function of immunocompetent cells. Polymorphic genes of pro-inflammatory cytokines involved in the mechanisms of defense responses of innate immunity, determine the degree of resistance to individual mycobacterial infection, as well as severity and duration of the disease in cases of clinical manifestations. The aim of the study was to investigate the connections between allelic polymorphisms of IL2, IFNG and TNFA genes and changes in secretion of the corresponding pro-inflammatory cytokines IL-2, IFNγ, and TNFα in vitro in patients with the newly diagnosed pulmonary tuberculosis (TB), depending on the clinical form of the disease.A total of 334 patients (220 men and 114 women) aged 23 to 50 years with newly diagnosed infiltrative and disseminated TB were enrolled into the study. The control group consisted of 183 healthy donors (130 men and 53 women) of corresponding age. The material of the research included DNA extracted from the whole blood and supernatants of culture suspensions of mononuclear leukocytes isolated from venous blood in healthy volunteers and patients with TB. The evaluation of cytokines secretion was performed by measuring their concentration in the blood mononuclear cell culture supernatants. using enzyme-linked immunosorbent assay (ELISA). To study polymorphic regions of cytokine genes, a polymerase chain reaction (PCR) was applied. Analysis of the obtained data was carried out by means of the program Statistica for Windows Version 6.0 (StatSoft Inc., USA).It was found that the imbalance of secretion of pro-inflammatory cytokines in TB patients was associated with the polymorphic variants of genes of these cytokines. It was found that the hypo-secretion of IL-2 is determined by the carriage of the G allele and genotype GG (T-330G) of the IL2 gene in both the control group and in patients with TB, regardless of the clinical form. In patients with DTB carriers of the homozygous genotype TT (T-330G) of the IL2gene, increased protein secretion was established. The maximum secretion of TNFб was recorded in patients with the AA genotype (G-308A) of the TNFA gene in the control group and in ITB patients; the minimum concentration of TNFα was associated with the carrier of the homozygous GG genotype (G-308A) of the TNFA gene in all the examined groups. In patients with ITB and DTB, an increase in IFNγ secretion by mononuclear blood leukocytes is not associated with the carrier of polymorphism +874A/T of the IFNG gene.Reduced secretion of IL-2 and TNFα in TB patients is associated with polymorphisms of their genes – (T-330G) of IL2 gene and (G-308A) of TNFA gene, respectively. The polymorphism (+874A/T) of the IFNG gene does not have a modulatory effect on the secretion of IFNγ in patients with TB, regardless of clinical form of the disease.
The aim of the work is to establish general regularities and features of differentiation of blood monocytes into 4 subpopulations in diseases associated with circulatory and respiratory hypoxia. Materials and methods. 18 patients with ischemic heart disease (IHD), 12 patients with ischemic cardiomyopathy (ICMP), 14 patients with chronic obstructive pulmonary disease (COPD), 15 patients with newly diagnosed infiltrative pulmonary tuberculosis (PTB) and 12 healthy donors were examined. In whole blood, we determined the relative number of different subpopulations of monocytes by flow cytometry. The results were analyzed by statistical methods. Results. It is shown that an increase in the number of classical (80.56 [77.60; 83.55]%) and the deficit of intermediate (10.38 [9.36; 11.26]%), non-classical (6.03 [5.24; 6.77]%) and transitional (2.14 [1.41; 3.92] %) monocytes in the blood is determined in patients with COPD when compared with the group of healthy donors ( p < 0.05). In groups of patients with PTB and IHD, an increase in the number of intermediate monocytes (26.24 respectively [22.38; 42.88] % and 25.27 [15.78; 31.39]%) and the lack of transitional cells (1.77 [1.36; 3.74]% and 2.68 [2.63; 4.0]%) at the normal content of classical and non-classical forms of monocytes ( p < 0.05) is detected. In patients with ICMP, a decrease in the number of non-classical monocytes (up to 5.05 [4.08; 6.58]%) is combined with the normal cell content of other subpopulations ( p < 0.05). The interrelation between the number of classical and intermediate monocytes in patients with COPD ( r = –0.63; p < 0.05), PTB ( r = –0.72; p < 0.01), IHD ( r = –0.59; p < 0.05), ICMP ( r = –0.58; p < 0.05) was established. Conclusion. In COPD associated with generalized hypoxia, an increase in the number of classical monocytes is combined with a deficiency of their other subpopulations in the blood. In PTB and IHD, antigenic stimulation of the immune system mediates accelerated differentiation of monocytes from classical to intermediate forms with a decrease in the number of transitional cells regardless of the etiology of the disease (infectious or non-infectious) and the type of hypoxia (respiratory or circulatory).
Proinflammatory cytokines are known to play a crucial role in the pathogenesis of tuberculosis, and gene polymorphisms in the promoter regions of cytokine genes were shown to substantially influence the secretory capacity of immune cells. In the present study, we analyzed the association between polymorphisms of the IL12B, IL18, and IL27 genes and the secretion of the proinflammatory cytokines IL-12р70, IL-18, and IL-27 by myeloid dendritic cells (mDCs) in pulmonary tuberculosis (PTB) patients. The study enrolled 334 patients with newly diagnosed infiltrative and disseminated PTB. Cultivation of mDCs was performed from non-proliferating progenitors of CD14+ blood monocytes. Cytokine secretion was evaluated by measuring cytokine concentration in the mDC culture supernatants using enzyme-linked immunosorbent essay (ELISA). To study cytokine gene polymorphisms, a polymerase chain reaction (PCR) and restriction fragment length polymorphism analysis (RFLP) were performed. Reduced secretion of IL-18 and IL-27 by mDCs in PTB patients was associated with 105A/C polymorphisms of the IL18 gene, and 2905T/G, 4730T/С, and −964A/G of the IL27 gene, respectively. Polymorphism IL12B/insertion had a bidirectional influence on the secretion of IL-12p70, being associated with decreased levels of the cytokine in infiltrative PTB and increased levels in disseminated PTB patients.
This literature review is devoted to the analysis of the role of macrophages in the immunopathogenesis of infectious lung diseases of bacterial etiology. The article summarizes information about the origin of macrophages, their phenotypic and functional heterogeneity. The mechanisms of impaired protective function of innate immunity are associated with the polarization of the program of maturation and activation of macrophages in the direction to tolerogenic or immunoregulatory cells with phenotype of M2. Alveolar macrophages perform a variety of functions (from pro-inflammatory to regenerative) in the development of inflammation in the respiratory organs. Their inherent plasticity suggests that the same macrophages can change their phenotype and function depending on the microenvironment in the inflammatory focus at different stages of the disease. Understanding the mechanisms that regulate macrophage plasticity will be an important step towards realizing the potential of personalized immunomodulatory therapy.
The study of subpopulation structure of IFNγ-producing T cells in patients with pulmonary tuberculosis revealed a decrease in the number of CD3+ IFNγ+ cells against the background of significantly increased IFNγ secretion in vitro irrespective of the clinical form of the disease and drug sensitivity of M. tuberculosis, most strongly expressed in case of the disseminated tuberculosis. In patients with infiltrative drug-sensitive and drug-resistant pulmonary tuberculosis, increased number of Th1/Th17 lymphocytes (CD4+ IFNγ+IL-17A+) and, conversely, decreased number of blood γδT cells was detected.
The aim of the investigation was to determine the characteristics of the immune response regulation for pulmonary tuberculosis (TB) and to analyze the role of regulatory T cells in the immunopathogenesis of TB with eosinophilia in the blood, depending on the clinical form of the disease and sensitivity of Micobacterium tuberculosis to anti-TB drugs. Materials and methods. 157 patients who were initially diagnosed with infiltrative and disseminated TB were examined. The material of the study was venous blood and culture of mononuclear leukocytes isolated from venous blood. The content of interleukin (IL) 4, IL-10 and transforming factor beta (TGFβ) in culture suspensions of mononuclear leukocytes in vitro and IL-5 in the blood was determined by enzyme-linked immunosorbent assay (ELISA) test. The expression of surface molecules CD4, CD20, CD25 and intracellular transcription factor Foxp3 by lymphocytes of the blood was evaluated by flow cytometry. The obtained results were analyzed by statistical methods. Results. It is shown that excessive generation of regulatory T cells in patients with TB is associated with eosinophilia of the blood and imbalance of immune response regulation mechanisms. In TB with eosinophilia, an increase in the number of Foxp3-positive regulatory T cells in the blood is combined with in vitro hypersecretion of anti-inflammatory cytokines TGFβ, IL-10, IL-4 and an increase in the content of CD20+ B lymphocytes and IL-5 in the blood. These changes are most pronounced in the disseminated form of TB in combination with drug resistance. Conclusion. Characteristics of immunoregulation at TB with blood eosinophilia are associated with activation of immunosuppression mechanisms and polarization of immune response towards Th2-dependent pathway.
The phase composition, structure parameters, morphology and the basic magnetic characteristics of BaFe12O19 hexaferrites obtained by the method of soft mechanochemical synthesis with the following annealing in air for one hour at temperatures in the range from 800 to 1100 °C were studied. The influence of the reagent type on the phase composition and structural characteristics of hexaferrites are analyzed. It has been established that for the synthesis of a single-phase barium hexaferrite a reaction when only water-containing reagents are used is advantageous. In addition, the participation of water in the mechanochemical synthesis leads to an increase in the rate of reagent interaction. The saturation magnetization and the anisotropy fields were determined. The specific saturation magnetization of the sample obtained using the initial hydrous reagents (FeCl3·6H2O and BaCl2·2H2O) is higher than that of the sample obtained using the anhydrous barium chloride (BaCl2). Magnetocrystalline anisotropy of the synthesized materials is investigated by the ferromagnetic resonance method. Along with the high-anisotropic ВаM phase the samples contain the traces of a phase with a small field of magnetocrystalline anisotropy. It is caused by the presence of the X-ray amorphous phase in the samples. Another source of this phase is the superparamagnetic Ba-M hexaferrite nanoparticles.
The aimof the investigation was to determine the characteristics of the immune response regulation for pulmonary tuberculosis (TB) and to analyze the role of regulatory T cells in the immunopathogenesis of TB with eosinophilia in the blood, depending on the clinical form of the disease and sensitivity of Micobacterium tuberculosis to anti-TB drugs.Materials and methods.157 patients who were initially diagnosed with infiltrative and disseminated TB were examined. The material of the study was venous blood and culture of mononuclear leukocytes isolated from venous blood. The content of interleukin (IL) 4, IL-10 and transforming factor beta (TGFβ) in culture suspensions of mononuclear leukocytes in vitro and IL-5 in the blood was determined by enzyme-linked immunosorbent assay (ELISA) test. The expression of surface molecules CD4, CD20, CD25 and intracellular transcription factor Foxp3 by lymphocytes of the blood was evaluated by flow cytometry. The obtained results were analyzed by statistical methods.Results.It is shown that excessive generation of regulatory T cells in patients with TB is associated with eosinophilia of the blood and imbalance of immune response regulation mechanisms. In TB with eosinophilia, an increase in the number of Foxp3-positive regulatory T cells in the blood is combined with in vitro hypersecretion of anti-inflammatory cytokines TGFβ, IL-10, IL-4 and an increase in the content of CD20+ B lymphocytes and IL-5 in the blood. These changes are most pronounced in the disseminated form of TB in combination with drug resistance.Conclusion.Characteristics of immunoregulation at TB with blood eosinophilia are associated with activation of immunosuppression mechanisms and polarization of immune response towards Th2-dependent pathway.