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Biomedical subjects

Makoto Iida

Publications and source records attributed to Makoto Iida.

5 recordsLinked to original sources

TNF-alpha and IL-4 regulate expression of fractalkine (CX3CL1) as a membrane-anchored proadhesive protein and soluble chemotactic peptide on human fibroblasts.

The CX(3)C chemokine, fractalkine (FKN, CX(3)CL1), has multiple functions and exists as two distinct forms, a membrane-anchored protein and a soluble chemotactic peptide that cleaves from the cell surface FKN. In this study, we first demonstrated the expression of FKN in tumor necrosis factor (TNF)-alpha- and interleukin (IL)-4-stimulated human fibroblasts. The induction of FKN was observed for both forms. We also demonstrated monocyte chemotactic activity in the culture supernatant from the fibroblasts stimulated with these cytokines. These results suggest that TNF-alpha- and IL-4-stimulated fibroblasts may play an important role in accumulation of monocytes at inflammatory sites.

Cell Adhesion Molecules↗

TNF-alpha and IL-4 regulate expression of IL-13 receptor alpha2 on human fibroblasts.

Two interleukin 13 receptors (IL-13Rs) have been identified as IL-13Ralpha1 and IL-13Ralpha2. IL-13Ralpha1 is composed of a heterodimer consisting of IL-13Ralpha1 and IL-4 receptor alpha (IL-4Ralpha) as a signaling subunit. In contrast, IL-13Ralpha2 is known as a decoy receptor for IL-13. In this study, we investigated the expression of IL-13Rs on human fibroblasts. IL-13Ralpha2 was significantly up-regulated after stimulation with tumor necrosis factor-alpha (TNF-alpha) and/or IL-4. In contrast, IL-13Ralpha1 was constitutively detectable and was not up-regulated. After the induction of IL-13alpha2 by IL-4, STAT6 phosphorylation through IL-13Ralpha1 by IL-13 was inhibited. We also detected large intracellular pools of IL-13Ralpha2 in fibroblasts quantitatively. Furthermore, mobilization of the IL-13Ralpha2 protein stores from the cytoplasm to the cell surface was prevented by an inhibitor of protein transport, brefeldin-A. These results indicate that TNF-alpha and IL-4 synergistically up-regulate the expression of IL-13Ralpha2 decoy receptor on human fibroblasts by inducing gene expression and mobilizing intracellular receptors, and thus may down-regulate the IL-13 signaling.

Cell Line↗

Eosinophil degranulation during pregnancy and after delivery by cesarean section.

BACKGROUND: The physiological roles of eosinophils that accumulate in the uterus during pregnancy and of uterus-dwelling mast cells remain unknown. In the present study, we investigated the degranulation of eosinophils and mast cells within the normal course of pregnancy and after delivery by measuring the urinary concentrations of eosinophil-derived neurotoxin (EDN) and N-methylhistamine. METHODS: Spot urine samples from 65 pregnant women and 15 nonpregnant, age-matched women were examined. Urinary EDN and N-methylhistamine concentrations were measured by radioimmunoassay and standardized with urinary creatinine concentration. RESULTS: A significant increase in the urinary EDN concentration was observed until the second trimester in the normal pregnancies. The elevated urinary EDN levels decreased after the onset of labor in the third trimester and normalized within 1 month after normal vaginal delivery. In women who underwent a cesarean section, the urinary EDN concentration was significantly higher for up to 1 month after delivery, compared to that in women who underwent a vaginal delivery. In contrast, the urinary N-methylhistamine concentration did not change until the second trimester and was significantly decreased during the third trimester. No significant correlation between the peripheral blood eosinophil count and the urinary EDN concentration was observed in these subjects. CONCLUSIONS: Eosinophils appear to play a role in the progression of pregnancy and recovery after a cesarean section through the degranulation of eosinophils. In addition, mast cell degranulation does not appear to be related to the contraction of uterine smooth muscle during labor.

Adolescent↗

Effect of extracellular matrix proteins on platelet-activating factor-induced eosinophil chemotaxis.

BACKGROUND: Eosinophils accumulate in tissues during various allergic inflammatory processes. Selective eosinophil recruitment is the result of orchestrated events involving cell adhesion molecules and chemoattractants. However, the exact mechanism of the regulation of integrin avidity during interstitial migration is poorly understood. OBJECTIVE: The purpose of this study was to investigate whether extracellular matrix proteins might activate human eosinophil chemotaxis and, if so, to clarify the mechanism in terms of integrin avidity. METHOD: Eosinophils were purified from the peripheral blood of healthy donors. Eosinophil migration was measured using Boyden chambers with filter membranes coated with fibronectin (Fn), vitronectin (Vn), laminin (Ln), hyaluronic acid, collagen type IV, or bovine serum albumin (BSA) overnight. Platelet-activating factor (PAF) was introduced into the lower chamber of each well. Eosinophils were placed in the upper chamber after incubation with IL-5 for 15 min. The number of eosinophils that transmigrated into the lower chamber was calculated by measuring the eosinophil peroxidase activity. RESULTS: Fn, Ln and BSA enhanced PAF-induced chemotaxis of eosinophils. Inhibition experiments using blocking monoclonal antibodies showed that in the early phase of chemotaxis, Fn and Ln facilitated eosinophil chemotaxis that was mediated by alpha4 and alpha6 integrins, respectively. In the late phase of chemotaxis, BSA, but not other matrix proteins, facilitated both chemokinesis and chemotaxis that was mediated by beta2 integrin. CONCLUSION: Our data strongly suggest that during chemotaxis, matrix proteins might activate eosinophils via binding with integrins to facilitate PAF-induced chemotaxis, and that such a mechanism might participate in allergic inflammatory processes.

Animals↗