PubMed Health⌕ Search

PubMed · 16788621

Immunologic mechanisms in psoriasis.

Abstract

The demonstration of activated T lymphocytes, HLA-DR+ I-CAM 1+, gamma IP-10+ keratinocytes, and increased levels of lymphokines in active plaques suggests that immunologic mechanisms may play a role in the pathogenesis of psoriasis. Epidermal hyperplasia and inflammation in psoriasis may be linked by those cytokines many of which are produced by both keratinocytes and leukocytes. Epidermal acanthosis and keratinocyte mitoses have been observed in delayed-type hypersensitivity reactions and after the intradermal injection of gamma interferon. Gamma interferon and its induced proteins have been demonstrated in active psoriatic plaques. Increased levels of the keratinocyte autocrine cytokines, transforming growth factor (TGF)-alpha and interleukin (IL)-6, have been detected in active plaques. The apparent overexpression of IL-6 in hyperplastic psoriatic tissue may explain features of psoriasis that link keratinocyte proliferation with immune activation and tissue inflammation. Both IL-6 and gamma interferon increased TGF-alpha expression in normal cultured keratinocytes. Cytokines produced during immune activation and other inflammatory processes may lead to epidermal hyperplasia.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

A B Gottlieb. 1990. Immunologic mechanisms in psoriasis.. https://doi.org/10.1111/1523-1747.ep12505675

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

KEEP EXPLORING

Related citations

Elevated interleukin-12 and CXCL10 in subacute sclerosing panencephalitis.

Immunosuppression associated with measles virus (MV) can be demonstrated by cytokine production failure in subacute sclerosing panencephalitis (SSPE) and may have implications on the pathogenesis of the disease. Cytokines (IL-12, IL-10, IL-4, IL-17, IL-18, IFN-alpha, IFN-gamma) and chemokines (CXCL8, CXCL10, CCL2 and CCL5) were measured in the cerebrospinal fluid (CSF) and serum samples from 60 patients with SSPE, 36 patients with infectious and/or inflammatory (IN) and 28 with other non-inflammatory (NIN) neurological diseases by ELISA. IL-12 p70+p40 was elevated in CSF and sera of SSPE when compared to the NIN group. However, the CSF levels of IL-12 p70 alone were not increased, indicating an increase of p40. The CSF of SSPE patients also showed relatively higher levels of IL-10 than that of the NIN group. CXCL10 levels in CSF were significantly higher in SSPE, whereas CXCL8 was increased in sera compared to NIN. No difference was detected in IFN-gamma, IFN-alpha, IL-17, IL-18, IL-4 or CCL2 and CCL5 levels. These results demonstrate that immune response against MV in SSPE may be impaired, although some T cell/Th1 inducing stimulations are present.

Chemokine CXCL10↗

[Fusion expression, purification and bioassay of IFN-gamma inducible protein-10 and thioredoxin gene in E. coli].

Interferon gamma-inducible protein 10, a member of the family of CXC chemokines, is secreted by interferon gamma-stimulated, monocytes, endothelial cells and keratinocytes. Interferon gamma-inducible protein 10 plays an important role in recruiting activated T cells into sites of tissue inflammation. In this experiment, PCR products of Interferon gamma-inducible protein 10 were cloned into prokaryote expression vector pET 32(a) to generate recombinant pET-IP10 with S-Tag at the N-terminus, and expressed successfully in E. coli BL21 (DE3). The total expressed products amounted to 25.3% in all bacterion proteins. pET-IP10 mainly formed inclusion body in E. coli. Soluble recombinant protein accounted for 20% among IP-10 fusion protein. The soluble recombinant proteins were purified by using S-Tag affinity chromatography effectively with purity of over 90%. The chemotaxis biological activity of purified Interferon gamma-inducible protein 10 could specifically exhibit the directional migration of stimulated T cells at concentration of 100 ng/ml. The results indicated that the strategy we used in this experiment was effective for recombinant Interferon gamma-inducible protein 10 production with biological activity.

Chemokine CXCL10↗

Virally stimulated plasmacytoid dendritic cells produce chemokines and induce migration of T and NK cells.

The natural interferon (IFN)-producing cell is now known to be identical to the plasmacytoid dendritic cell (PDC). These are Lin-, CD123+, CD11c-, and human leukocyte antigen-DR+ cells that secrete large amounts of IFN-alpha (1-2 IU/cell) when stimulated by enveloped viruses such as herpes simplex virus. In the current study, we have evaluated chemokine expression by virally stimulated PDC. Up-regulation of mRNA for CCL4, CCL3, CCL5, CCL2, and CXC chemokine ligand (CXCL)10 in herpes simplex virus-stimulated PDC was detected by RNAse protection assays. In contrast, PDC-depleted peripheral blood mononuclear cells did not up-regulate these mRNA species upon viral stimulation. Enzyme-linked immunosorbent assay and/or intracellular flow cytometry confirmed production of these proteins, and studies indicated overlapping production of IFN-alpha and the other cytokines/chemokines by PDC. Endocytosis plays a critical role in chemokine induction, as disruption of the pathway inhibits the response. However, transcription of viral genes is not required for chemokine induction. Autocrine IFN-alpha signaling in the PDC could account for a portion of the CXCL10 and CCL2 production in virally stimulated PDC but was not responsible for the induction of the other chemokines. To evaluate the functional role of the chemokines, chemotaxis assays were performed using supernatants from virally stimulated PDC. Activated T cells and natural killer cells, but not naïve T cells, were preferentially recruited by these PDC supernatants. Migration was subsequently inhibited by addition of neutralizing antibody to CCL4 and CXCL10. We hypothesize that virally induced chemokine production plays a pivotal role in the homing of leukocytes to PDC.

Chemokine CXCL10↗