Differences in the pools of 10 cytokine were found in blood samples from the caudal vein of mice with normal and abnormal heart rhythm. Both groups were albino mice bred by us and differing from mdx albino mice by the absence of mutation in muscular dystrophin gene. Mice with normal heart rhythm had low IL-17 content and elevated concentrations of proinflammatory cytokines IL-6 and IL-1α in comparison with the normal (according to published data). In mice with bradyarrhythmias, increased blood levels of IL-10, IL-6, IL-5, IL-2, IL-1α, IL-17, IL-4, TNF-α, and granulocyte-macrophage colony-stimulating factor were detected. The relative content of IL-4 and IL-17 in the total cytokine pool increased. The lifespan of mice with bradyarrhythmias and cytokine hyperexpression was shorter by 2-3 months in comparison with mice without heart rhythm disturbances and moderate changes in the cytokine pool.
In mdx mice, mutation in the muscle protein dystrophin gene results in the development of chronic degeneration of the muscle tissue. We performed a comparative analysis of blood cytokine levels in mdx mice, classical black mice and mice with additional genetic defect responsible for the manifestations of oculocutaneous albinism. In mdx albino mice, the total pool of cytokines (IL-10, IL-6, IL-5, IL-2, IL-1α, IL-4, IL-17, granulocyte-macrophage growth factor, TNF-α, and IFN-γ) was increased. This increase was not associated with selective release of one of the above cytokines into the blood. The fraction of pro-inflammatory cytokines (IL-6, IL-1α, TNF-α) was increased in the total pool and the percentage of antiinflammatory cytokines (IL-4) was reduced. Changes in cytokine pool probably reflect the differences in the severity of the pathological process in the muscle tissue of both genetic variations of mdx mice.
Human embryonic myogenic precursors were transplanted into muscles of mdx mice with hereditary dystrophin-deficient muscular dystrophy. Transplantation induced the synthesis of human dystrophin. The number of dystrophin-positive fibers progressively decreased, however, some of them were preserved even 5 months after transplantation. Our results indicate that xenogeneic transplantation of embryonic myogenic precursors compensates the genetic defect in dystrophin-deficient mice.
Genetic selection in a colony of mdx mice (suffering from X-chromosome-linked muscular dystrophy) resulted in generation of their new genetic variant. In this new variant, the genetic, biochemical, and histological markers of muscular dystrophy are combined with signs of oculocutaneous albinism (skin and fur depigmentation), transillumination of the iris, sharply reduced pigmentation of the retinal epithelium, and increase of the eyeball refraction). Two sensorimotor tests (negative geotaxis and wire back down hanging) detected other phenotypical characteristics of albino mdx mice carrying, in addition to the mutation in the dystrophin gene exon 23 (intrinsic of the "classical" black mdx mice), an extra mutation responsible for pigmentation disorders. Slow geotaxis, despite longer wire back down hanging capacity, was regarded as aggravation of the neurological dysfunction in albino mdx mice in comparison with black mdx mice.
Резюме. Ульцерогенез слизистой оболочки гастродуоденальной зоны является сложным много этапным процессом, фазы его контролируются взаимодействием и каскадной активацией про и про тивовоспалительных цитокинов. В данном обзоре представлен анализ научных данных о влиянии цитокинов на ульцерозный и репаративный процессы, определен спектр их диагностических и тера певтических возможностей. Исследование цитокинового статуса больных язвенной болезнью желуд ка и двенадцатиперстной кишки и, в ряде случаев, генов цитокинов позволит прогнозировать течение заболевания, эффективность базисной и эрадикационной терапии, проводить коррекцию лечения.
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