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Biomedical subjects

H Koenig

Publications and source records attributed to H Koenig.

At least 127 records · Page 7Linked to original sources

Hormone storage granules in the beef anterior pituitary. I. Isolation, ultrastructure, and some biochemical properties.

A method is described for isolation of relatively large quantities of large and small hormone storage granules from the beef adenohypophysis. The hormone storage granules are highly purified, as indicated by ultrastructural and biochemical criteria. The average size of large granules is 400 mmicro and of small granules is 220 mmicro. The large granules contain growth hormone and prolactin; the small granules contain high concentrations of follicle-stimulating, luteinizing, and thyroid-stimulating hormones. An alkaline protease with a pH optimum of 8.3 is associated with the small granule fraction.

Animals↗

Endogenous myelin basic protein-serum factors (MBP-SFS) and anti-MBP antibodies in a patient with post-herpes simplex virus acute disseminated encephalomyelitis.

The measurement of myelin basic protein serum factors (MBP-SFs) and anti-MBP antibodies in specimens from a patient with post-herpes simplex acute disseminated encephalomyelitis (ADE) is described. Transitory appearance of high affinity anti-MBP antibodies in the absence of detectable MBP-SFs was observed. This pattern was similar to that found previously in acute multiple sclerosis and experimental allergic encephalomyelitis. These findings are consistent with the hypothesis that a possible normal role of MBP-SFs is as neuroautotolerogens, preventing autoreactive lymphocyte clones from damaging myelin.

Acute Disease↗

Progesterone as a neurosteroid: synthesis and actions in rat glial cells.

The central nervous system (CNS) and the peripheral nervous system (PNS) are targets for steroid hormones where they regulate important neuronal functions. Some steroid hormones are synthesized within the nervous system, either de novo from cholesterol, or by the metabolism of precursors originating from the circulation, and they were termed 'neurosteroids'. The sex steroid progesterone can also be considered as a neurosteroid since its synthesis was demonstrated in rat glial cell cultures of the CNS (oligodendrocytes and astrocytes) and of the PNS (Schwann cells). Both types of glial cells express steroid hormone receptors, ER, GR and PR. As in target tissue, e.g. the uterus, PR is estrogen-inducible in brain glial cell cultures. In the PNS, similar PR-induction could not be seen in pure Schwann cells derived from sciatic nerves. However, a significant PR-induction by estradiol was demonstrated in Schwann cells cocultured with dorsal root ganglia (DRG), and we will present evidence that neuronal signal(s) are required for this estrogen-mediated PR-induction. Progesterone has multiple effects on glial cells, it influences growth, differentiation and increases the expression of myelin-specific proteins in oligodendrocytes, and potentiates the formation of new myelin sheaths by Schwann cells in vivo. Progesterone and progesterone analogues also promotes myelination of DRG-Neurites in tissue culture, strongly suggesting a role for this neurosteroid in myelinating processes in the CNS and in the PNS.

Animals↗