PubMed Health⌕ Search

PubMed · 3054217

Fever and fever syndrome--current problems.

Abstract

Research into the complex humoral and neurophysiological events of pyrogen-induced fever has proceeded rapidly to establish the thermal and non-thermal components of the fever syndrome. The major breakthroughs derive from the elucidation of the identity of the endogenous pyrogen interleukin 1 with the humoral factors responsible for the acute phase reaction and for the activation of lymphocytic, cellular, and immunological defence as host responses to infections. As a consequence, fever research is no longer concerned primarily with the changes in temperature regulation responsible for the febrile alteration of temperature regulation, but aims at the elucidation of the contributions that are made by both the thermal and non-thermal components of the fever syndrome to the defence of the host against the microbial intruder responsible for this syndrome. In order to account for this development in these introductory remarks to the current issues of fever research, this review has tried to pay particular attention to the following points: 1) The role of humoral factors in the generation of febrile hyperthermia, including endogenous pyrogens as well as mediators acting on the thermoregulatory center. 2) The "fever syndrome" with special consideration of its regulation and of the significance of its components from the viewpoint of fever as a host-defence reaction. 3) The assessment of the role of PG's in the generation of the fever syndrome, both as putative central mediators and as systemically released agents, with special consideration of the inhibitory action of the established antipyretic drugs on PG synthesis.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

M Iriki. 1988. Fever and fever syndrome--current problems.. https://doi.org/10.2170/jjphysiol.38.233

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Analysis of HLA class I specific antibodies in patients with failed allografts.

BACKGROUND: The goals of this study are first to determine the epitope specificity of donor specific antibody (DSA) in the serum of alloimmunized transplant patients with a failed renal graft; and second to understand the correlation between the development of DSA and nondonor specific antibody (NDSA). METHODS: The sera of 35 pretransplant panel reactive antibody (PRA)-negative patients with failed allografts were examined with single-antigen (SA) luminex beads to identify human leukocyte antigen (HLA)-A and -B antibodies. Potential HLA antibody epitopes were identified by using computer software and verified by absorption and elution from single-antigen cell lines. RESULTS: Twenty-seven patients developed donor-specific HLA-A and/or -B antibodies, while the remaining eight patients had only nondonor-specific HLA-A and/or -B antibodies. The DSA-positive patients also had a long list of NDSA. Sixty-eight percent of the reactions found in 27 recipients with DSA were attributable to 66 epitopes on the mismatched donor HLA molecule. All 39 NDSA in eight patients with only NDSA shared 17 epitopes within positive allele specificities. By absorption and elution using recombinant cell lines having a single HLA specificity, we confirmed the epitopes involved in three patients. CONCLUSION: Development of most NDSA in patients with failed allografts is likely due to sharing epitopes with DSA and/or other NDSA.

Antibody Formation↗

Human keratinocyte Toll-like receptors promote distinct immune responses.

It has been well established that Toll-like receptors (TLRs) are expressed by keratinocytes and respond to their respective ligands to initiate immune responses. However, it appears that keratinocytes, via differential activation of TLRs, may play a key role in determining the type of subsequent cutaneous immune response generated against a particular pathogen.

Antibody Formation↗