PubMed Health⌕ Search

Biomedical subjects

R Sehmi

Publications and source records attributed to R Sehmi.

23 records · Page 2Linked to original sources

Identification of guinea pig eosinophil chemotactic factor of anaphylaxis as leukotriene B4 and 8(S),15(S)-dihydroxy-5,9,11,13(Z,E,Z,E)-eicosatetraenoic acid.

We have purified and characterized the guinea pig eosinophil chemotactic factor of anaphylaxis (ECF-A), an activity previously described in diffusates from sensitized lung challenged with specific Ag that appeared to selectively attract eosinophils from mixed leukocyte populations. Time course studies showed that the release of ECF-A from challenged presensitized guinea pig lung fragments closely paralleled the release of immunoreactive leukotriene B4 (iLTB4) and histamine. However, the majority of ECF-A (greater than 80%) and iLTB4 (greater than 79%) was extractable with the lipid fraction from the methanol wash of Sep-Pak-extracted diffusate, whereas histamine remained in the aqueous phase. A comparable neutrophil chemotactic activity was also found in the methanol extracts of the anaphylactic diffusates. By using a combination of HPLC and specific RIA, greater than 60% of ECF-A was attributable to LTB4. A second eosinophil chemotactic activity was also identified and coeluted (on both reverse phase and straight phase HPLC) with the synthetic standard 8(S),15(S)-dihydroxy-5,9,11,13(Z,E,Z,E)eicosatetraenoic acid (8(S),15(S)-diHETE). This was confirmed as 8(S),15(S)-diHETE by gas chromatography-mass spectrometry. Platelet-activating factor and histamine had negligible activity for guinea pig eosinophils, compared with synthetic LTB4 (p less than 0.05, 10(-9) and 10(-8) M; p less than 0.01, 10(-7) to 5 x 10(-6) M). In addition, synthetic 8(S),15(S)-diHETE had 3 times less activity than LTB4 at optimal chemotactic concentrations (10(-6) and 10(-7) M, respectively). Thus, guinea pig ECF-A appears to be largely attributable to lipoxygenase products of arachidonic acid, namely LTB4 and 8(S),15(S)-diHETE. Because guinea pig ECF-A was equally active on neutrophils (greater than 96% purity), it can no longer be considered a selective eosinophil chemoattractant.

Anaphylaxis↗

The accumulation of 111In-eosinophils induced by inflammatory mediators, in vivo.

Eosinophils are implicated in the pathogenesis of a variety of allergic inflammatory diseases such as asthma. Several substances have been shown to be chemotactic for eosinophils in vitro, but the inflammatory mediators involved in the accumulation of eosinophils in vivo are as yet unidentified. In this study we have developed a system to measure the accumulation of 111In-eosinophils in guinea-pig skin in vivo. Horse serum-induced guinea-pig peritoneal eosinophils were radiolabelled with 111In and injected intravenously into recipient animals. 125I-albumin was also injected intravenously in order to measure local oedema formation simultaneously. A range of putative mediators was injected intradermally and responses measured for up to 2 hr. Of the mediators tested, guinea-pig C5a des Arg in zymosan-activated plasma was the most active. Recombinant human C5a (rHC5a) was also highly active, but less than the guinea-pig material. C5a des Arg in maximally activated plasma induced a 1500% increase in eosinophil accumulation, while rHC5a (10(-10) mol dose) induced a 600% increase. Platelet-activating factor (PAF) and leukotriene B4 (LTB4) were also tested for comparison. With respect to 111In-eosinophil accumulation, the order of potency of the mediators tested was as follows: guinea-pig C5a des Arg greater than LTB4 greater than PAF. In contrast, the order of potency of the mediators with respect to oedema formation was: PAF greater than guinea-pig C5a des Arg greater than LTB4. The techniques described will facilitate analysis of the mechanisms involved in eosinophil accumulation in defined inflammatory reactions.

Albumins↗

Regulation of IL-5 and IL-5 receptor expression in the bone marrow of allergic asthmatics.

BACKGROUND: Following consistent demonstrations of the clinical relevance of fluctuations in eosinophil-basophil (Eo-B) progenitors in the blood of patients with a variety of allergic airway disorders, we have turned our attention recently to hemopoietic events occurring in the bone marrow of allergic asthmatic subjects, utilizing a model of airway allergen challenge. METHODS: Flow-cytometric analyses of CD34/45+ progenitors for coexpression of surface alpha-receptor subunits for IL-3, IL-5 and GM-CSF, as well as in situ hybridization and in situ PCR methodologies to detect mRNA for IL-5 and GM-CSF in developing Eo-B in colony and liquid culture assays were employed before and after in vivo allergen challenge. RESULTS: An early, specific upregulation of IL-5R alpha expression on CD34/45 progenitors was observed after allergen challenge, concomitant with the development of the late-phase asthmatic response. Protein and mRNA for both GM-CSF and IL-5 were expressed in a time-dependent manner ex vivo, in developing (beta 7-integrin-positive), colony-derived Eo-B after allergen challenge in vivo. Both retinoic acid and corticosteroids were able to downregulate IL-3- and IL-5-induced expression of IL-5R on cord-blood-derived as well as HL-60 cloned Eo-B progenitors. CONCLUSION: These studies indicate the critical involvement of IL-5 and IL-5R in the induction of Eo-B differentiation and eosinophilic airway inflammation in allergic asthmatics, and point to these events as potential targets for long-term therapy of atopic disease.

Asthma↗

Regulation of IL-5 receptor on eosinophil progenitors in allergic inflammation: role of retinoic acid.

We and others have shown that IL-5 plays a central role in eosinophil and basophil differentiation, exerting its effects through the IL-5 receptor (IL-5R). Little is currently known concerning regulation of IL-5Ralpha gene transcription in the context of commitment of hemopoietic progenitor cells to the eosinophil and basophil lineages; recent studies have indicated that IL-5 itself can regulate IL-5Ralpha expression on mature eosinophils. We now provide evidence to indicate that IL-5 can upregulate IL-5Ralpha on bone marrow CD34+ progenitors in vitro, as we have demonstrated in vivo in atopic asthmatics. Given that all-trans retinoic acid (ATRA) is known to modulate some granulopoiesis, causing neutrophilic differentiation, we examined the effects of ATRA on eosinophil/basophil differentiation and IL-5Ralpha expression. In cultures of normal human bone marrow, ATRA selectively suppressed eosinophil/basophil differentiation. Similarly, ATRA inhibited eosinophil/basophil differentiation of cord blood CD34+ cells, while neutrophil differentiation proceeded without impediment. Most importantly, these effects of ATRA on CD34+ cells were associated with selective, dose-dependent inhibition of membrane-bound IL-5Ralpha, upregulation of soluble IL-5Ralpha transcription, but no change in GM-CSF receptor expression. These findings indicate that retinoids can differentially regulate membrane and soluble isoforms of IL-5Ralpha, and that these effects have functional consequences in vitro on eosinophil and basophil differentiation. ATRA may be of therapeutic benefit in allergic inflammatory disorders in which eosinophil differentiation and membrane-bound IL-5R are upregulated.

Asthma↗

Bone marrow progenitors in allergic airways diseases: studies in canine and human models.

In a canine model of Ascaris suum-inducible bronchial hyperresponsiveness, we previously demonstrated that bone marrow-derived myeloid progenitors rise within 24 h of allergen inhalation; this effect is abolished by pretreatment with inhaled budesonide. We now report that this allergen-induced bone marrow response is observable in human asthmatics, and involves increases in both neutrophil-macrophage and eosinophil-basophil progenitors, within 6 h of allergen inhalation, as measured either by hematopoietic colony assays or by flow cytometric analyses of CD34+, IL-3R alpha+, and/or IL-5-responsive cell populations. In dogs, but not in humans, a transferrable serum hematopoietic activity accounts for the marrow response to inhaled allergen. These findings suggest that allergen-induced increases in bone marrow progenitor formation depend either on a serum hematopoietic factor(s) released after allergen challenge, or upon constitutive marrow upregulation of specific progenitors in allergic airway disease. Further studies to characterize the serum hematopoietic factor(s) and to determine the nature of any atopy-related progenitor profile are in progress.

Animals↗