Search PubMed⌕ Search

Biomedical subjects

J Kips

Publications and source records attributed to J Kips.

21 records · Page 2Linked to original sources

Demonstration of the therapeutic potential of non-anaphylactogenic anti-IgE antibodies in murine models of skin reaction, lung function and inflammation.

BACKGROUND: Allergies and allergic asthma are believed to be mediated by allergen-specific IgE antibodies. We have investigated the therapeutic potential of inhibiting endogenous IgE by a non-anaphylactogenic anti-mouse IgE antibody 1-5 with respect to its effects on antigen-induced skin reaction, lung function changes and lung inflammation in mice. METHODS: Mice were immunized with benzylpenicillinoyl-KLH or ovalbumin, and antigen-mediated skin reaction, bronchoconstriction, bronchopulmonary hyperresponsiveness (BHR) and lung eosinophilic inflammation determined in anti-IgE 1-5-treated versus untreated animals. RESULTS: Application of anti-IgE 1-5 inhibited (by 90%) the serum IgE and, 3-4 days after onset of treatment, blocked the antigen-induced skin reaction. Furthermore, the antibody also inhibited (by 90%) the antigen-induced infiltration of eosinophils into the lung. This latter effect seems to be mediated by blocking the IgE-CD23 interaction and indicates that lung eosinophilic inflammation also depends on IgE. Moreover, when applied to rats passively sensitized with mouse IgE, antibody 1-5 inhibited the antigen-induced bronchoconstriction. A similar effect could be seen in actively immunized mice, where antibody 1-5 was able to inhibit (by 70%) the ovalbumin-induced bronchoconstriction as well as BHR. CONCLUSIONS: In summary, non-anaphylactogenic anti-IgE antibodies can markedly inhibit IgE levels and IgE-mediated allergic reactions. Since bronchoconstriction, BHR and lung eosinophilic inflammation can be suppressed, such antibodies may be attractive principles for the treatment of allergic asthma.

Animals↗

Synergistic mechanisms in the adenosine- and neuropeptide-induced bronchoconstriction.

Neuropeptides and purines are possible neurotransmitters of the nonadrenergic noncholinergic nervous system of the airways. We investigated possible synergistic mechanisms between these two bronchoconstricting agents in a rat model. We observed that both adenosine and tachykinins enhance histamine release in the airways and that adenosine and neurokinin A act synergistically both on airway narrowing and histamine release.

Acetylcholine↗

The pathophysiology of lupus erythematosus.

Systemic lupus erythematosus disseminatus in addition to the more restricted, lupus-like syndromes, is the consequence of an attack by the immune system on the cellular and nuclear structures of the body. These disorders are also frequently associated with disturbances of the coagulation cascade. In this review paper, the factors that provoke or enhance these disturbances are considered, as well as the way by which this provocative effect is exerted. An intermutual relation between various elements is described, whereby congenital factors (heredity, race) and non-congenital factors (sex hormones, pregnancy, environment, ultraviolet light, drugs, infection) play a role. These factors induce the activation cascade of the disease, via two different axes: on the one hand modifications in the DNA structure, on the other immune stimulation. This eventually results in tissue damage.

Causality↗