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Distribution and characterization of tumor necrosis factor‐α‐like immunoreactivity in the murine central nervous system
Author(s) -
Breder Christopher D.,
Tsujimoto Masafumi,
Terano Yoshitake,
Scott Donald W.,
Saper Clifford B.
Publication year - 1993
Publication title -
journal of comparative neurology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.855
H-Index - 209
eISSN - 1096-9861
pISSN - 0021-9967
DOI - 10.1002/cne.903370403
Subject(s) - stria terminalis , biology , hypothalamus , central nervous system , zona incerta , solitary tract , nucleus , central nucleus of the amygdala , neuroscience , tumor necrosis factor alpha , endocrinology , dorsal raphe nucleus , vasopressin , medicine , serotonin , biochemistry , receptor , serotonergic
Tumor necrosis factor‐α (TNFα) is a protein released from macrophages during infection and inflammation. Recent studies suggest that it has several effects within the central nervous system, including generation of fever, enhancement of slow wave sleep, and stimulation of pituitary hormone secretion. We have proposed that TNFα may be synthesized by neurons in the CNS and used as a neuromodulator in the pathways involved in the central control of these activities. To test this hypothesis, we have used an antiserum raised against recombinant murine (rm) TNFα with an indirect immunoperoxidase technique to stain the murine CNS immunohistochemically. Western blot analysis of mouse brain homogenates revealed one band with electrophoretic mobility identical to that of rmTNFα. We identified TNFα‐like immunoreactive (ir) neurons in the hypothalamus, in the bed nucleus of the stria terminalis, in the caudal raphe nuclei, and along the ventral pontine and medullary surface. TNFαir innervation was widespread within the CNS, particularly in areas involved in autonomic and endocrine regulation, including the hypothalamus, amygdala, bed nucleus of the stria terminalis, parabrachial nucleus, dorsal vagal complex, nucleus ambiguus, and thoracic sympathetic preganglionic cell column. Our data suggest that TNFα may serve as a neuromodulator in central pathways involved in the regulation of the autonomic, endocrine and behavioral components of the acute‐phase response to inflammation and infection. © 1993 Wiley‐Liss,Inc.

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