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Biomedical subjects

R Seger

Publications and source records attributed to R Seger.

158 records · Page 9Linked to original sources

On the influence of age on immunity in Down's syndrome.

In 23 subjects of different ages with Down's syndrome a number of parameters of non-specific defense of humoral and cellular immunity were investigated. While in all age groups complement factors C3, C4 and C5 as well as phagocytosis and NBT indices were in the normal range, a dysgammaglobulinaemia increasing with age with a hyperglobulinaemia of the IgG, IgA and IgD types was found, sparing immunoglobulins IgM and IgE. In addition the transformation capacity of peripheral blood lymphocytes decreased with age. This is understood as the consequence of premature aging of the thymus-dependent immune system.

Adolescent↗

Immunologic defense in bacterial and viral meningitis in children.

The investigation of a number of parameters of nonspecific and specific defense in 13 purulent and 18 mumps meningitides gave no indication of underlying primary immunodeficiencies. Only in the acute phase of mumps meningitis did we find a temporary suppression of cellular immune reactions measured as diminished rate of incorporation of thymidine by phytohemagglutinin-stimulated peripheral blood lymphocytes.

Humans↗

Defects in granulocyte function in various chromosome abnormalities (Down's-, Edwards'-, Cri-du-chat syndrome).

In five infants with autosomal aberrations and diminished resistance to infection (in spite of intact humoral and cellular immune mechanisms) several granulocyte functions (chemotaxis, phagocytosis, intracellular killing and metabolism of killing) were measured. A serum-dependent or a cell-dependent disturbance of phagocytosis of Candida albicans was found in two infants with cat-cry syndrome and one with trisomy 18. In one of these children there was an additional serum dependent defect of the killing of Candida albicans and of Staphylococcus aureus, serum levels of opsonins (IgG, IgM, CH50 and C3) being within normal range. An infant with trisomy 21 showed, in addition to a cellular defect of chemotaxis, a reduced cellular ability of the killing of Staphylococcus aureus and of Escherichia coli in autologous and AB-pool-serum. Phagocytosis of these bacteria remained normal.

Blood Bactericidal Activity↗

Intracellular signaling pathways mediated by the gonadotropin-releasing hormone (GnRH) receptor.

The hypothalamic gonadotropin-releasing hormone (GnRH) is a key regulator of the reproductive system, triggering the synthesis and release of LH and FSH in the pituitary. GnRH transmits its signal via two specific serpentine receptors that belong to the large group of G-protein coupled receptors (GPCRs). Here we review the intracellular signaling pathways mediated by the GnRH receptor (GnRHR). In pituitary-derived alpha T3-1 cells, a widely used model for GnRH action, GnRHR signaling includes activation of mitogen-activated protein kinase (MAPK) cascades, which provide an important link for the transmission of signals from the cell surface to the nucleus and play a role in the regulation of gonadotropin transcription. Activation of ERK--one of the MAPK cascades--by GnRH in these cells depends mainly on the phosphorylation of Raf1 by PKC, supported by a pathway involving c-Src, dynamin, and Ras. On the other hand, the activation of JNK, another MAPK cascade, involves PKC, c-Src, CDC42/Rac1, and probably MEKK1. The GnRHR is also expressed in non-pituitary cells and was found to be involved in the inhibition of cell proliferation in certain cells. Therefore, GnRHR represents a potential target for GnRH-analogs used for cancer treatment. Interestingly, the signaling mechanism of the GnRHR in other cell types significantly differs from that in pituitary cells. Studies conducted in GnRHR-expressing COS7 cells have shown that GnRHR transmits its signals mainly via Gi, EGF receptor, c-Src, and is not dependent on PKC. Understanding the signaling mechanisms elicited by GnRHR can shed light on the mechanism of action of GnRH in pituitary and extra-pituitary tissues.

Animals↗

Cervical abscess due to Capnocytophaga ochracea.

A case of a cervical lymph node abscess in a child is reported from which a pure culture of C. ochracea was isolated. This is the first reported case of such an infection due to this organism. The patient, who was not leukopenic and did not receive antibiotics, was cured following excision.

Abscess↗