Aim. To study in comparison immunoregulatory properties of dominant and associative microsymbionts metabolites in human large intestine’s eubiosis and dysbiosis. Materials and methods. 260 strains of bifidobacteria used as dominant microbiota, 132 cultures of conditionally pathogenic bacteria and fungi used as associative microsymbionts from 122 intestinal microsymbiocenoses. The cytokines production was studied in cultures of mononuclear cells co-cultivated with microsymbionts’ supernatants. The results were processed statistically (Statistica 10.0). Results. In eubiosis, dominant and associative microsymbionts showed immuno regulatory properties heterogeneity. In the case of phlogogenic cytokines, the associates equally exhibited stimulation / suppression / no effect on cytokines, except for enterococci and bacteroids, stimulating IL-8 secretion, and lactobacilli, inducing IFNy. Dominants were characterized by a unidirectional effect: IL-10 secretion stimulation and TNFa, IFNy and IL-17suppression, while retaining the induction of IL-10 in dysbiosis. In contrast, supernatants of the associates combined the opposing cytokines production: the early proinflammatory cytokine TNFa, the immunoregulatory cytokine IFNy and the antiinflammatory cytokine IL-10. Conclusion. Intestinal homeostasis in eubiosis is supported by differentiated effects of microsymbionts’ metabolites on the production of antiinflammatory, immunoregulatory cytokines with the formation of an optimal balance, limiting inflammatory and autoimmune reactions. The dominance of the immunoregulatory properties remains intact in the conditions of dysbiosis, and the variety of effects on pro-/antiin-flammatory cytokines is limited in the associates.
The aim of the study was to comprehensively assess histological parameters of the hypothalamic neurosecretory and immune systems in pregnant rats exposed to passive smoking and their offspring.Material and methods. We studied morphological and immunological parameters of pregnant Wistar rats exposed to passive smoking and those of the control group, as well as their offspring. The obtained material was processed using histological, immunohistochemical, morphometric and immunological methods.Results. The results obtained demonstrated that in rats exposed to passive smoking, the sizes of neurosecretory cells (NSCs) of the supraoptic (SO) and paraventricular (PV) nuclei of the hypothalamus increased, the number of p53 positive NSCs increased, and bcl-2 protein expression decreased. Tobacco smoking caused formation of a proaptotic dominant in the neurosecretory cells of the supraoptic and paraventricular nuclei of the hypothalamus. Passive smoking led to a decreased body weight, a decreased number of thymocytes and myelokaryocytes in pregnant rats. In young rats born from the animals exposed to passive smoking, there was a slowdown in the processes of postnatal differentiation of the adrenal cortex (fascicular zone) with preservation of the extended zone of the fetal cortex. Notably, histo- and morphogenesis both in the organs of the primary (thymus) and secondary (spleen, lymph nodes) links of immunogenesis were delayed. In such young rats, a decreased body weight, thymus, number of thymocytes and splenocytes were recorded.Conclusion. Total results of the study evidence that passive smoking causes immunosuppressive changes in pregnant rats and their offspring combined with delayed postnatal histogenesis and proapoptotic manifestations in the nonapeptide-dergic hypothalamicpituitary adrenocortical system, which can be regarded as an unfavorable factor in the implementation of the neuroendocrine regulative mechanisms of adaptogenesis processes.
Вве дение Одним из перспективных способов немедикаментозного лечения бронхиальной астмы (БА) является использование адаптации к периодиче-ской гипобарической гипоксии (АПГГ) с формированием структурного следа долговременной адаптации [1]. Одним из критериев, отражающих тяжесть воспаления у больных БА, могут служить взаимодействия продукции цитокинов и гиперпродукции IgE [4, 5]. Особый интерес представляют исследования роли плейотропного провоспалительного цитокина IL-18 при БА у детей [6, 7]. Целью исследования явилось изучение клиникоиммунологической эффективности гипобаротерапии у детей с БА.
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