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Biomedical subjects

F Takei

Publications and source records attributed to F Takei.

At least 55 records · Page 3Linked to original sources

Carbohydrate recognition by a natural killer cell receptor, Ly-49C.

Ly-49 represents a family of type II transmembrane proteins containing C-type lectin domains. At least two members of the Ly-49 family, namely Ly-49A and Ly-49C, are expressed by distinct subsets of natural killer cells and bind to class I major histocompatibility complex antigens on the surface of target cells. In this report we have established that Ly-49C mediates carbohydrate recognition. The sulfated glycans fucoidan, lambda-carrageenan, and dextran sulfate were found to be potent inhibitors of Ly-49C-mediated cell adhesion, whereas other polysaccharides of similar size, charge, or sulfate content were noninhibitory. All of the polysaccharides which inhibited Ly-49C adhesion also blocked the binding of the antibody 5E6 to Ly-49C-expressing COS cells, confirming the direct protein-carbohydrate interaction. The enzymatic removal of specific carbohydrates from the target cell surface has shown that Ly-49C-mediated adhesion is not sialic acid-dependent, but is significantly decreased following fucosidase treatment. These results suggest an important role for carbohydrate recognition by natural killer cell receptors.

Animals↗

Regulation of ICAM-1 mRNA stability by cycloheximide: role of serine/threonine phosphorylation and protein synthesis.

Cycloheximide is a protein synthesis inhibitor that superinduces the expression of many genes by preventing the degradation of otherwise labile mRNAs. In some genes this depends on the presence of the AUUUA destabilizing multimers in the 3'UTR. We examined the effect of cycloheximide on the murine intercellular adhesion molecule-1 (ICAM-1; CD54) gene expression in several cell lines including A20 (B cell lymphoma), T28 (T cell hybridoma), P388D1 (monocytic cell), SVEC4-10 (lymphoid endothelial cell), and ICAM-1-transfected murine fibroblast L cells. Cycloheximide was indeed able to dramatically increase the accumulation of ICAM-1 mRNA in all the cell lines examined except T28, and this seemed to be due to the stabilization of the ICAM-1 mRNA as indicated by the half-life analysis. To determine whether this effect is dependent on the 3'UTR containing the AUUUA sequences, L cells were transfected with either the full-length ICAM-1 cDNA or a truncated form lacking the AUUUA sequences in the 3'UTR (ICAM-1Delta3). There was no discernible difference in the effect of cycloheximide on ICAM-1 mRNA accumulation or half-life between the two types of transfected cells. The effect of cycloheximide on ICAM-1 mRNA was markedly suppressed by serine/threonine (ser/thr) kinase inhibitors, H-7 and staurosporine, whereas the ser/thr phosphatase inhibitor, okadaic acid, augmented the cycloheximide effect. Inhibitors of protein tyrosine kinases and phosphatases had no effect. Unexpectedly, the level of cell surface ICAM-1 as well as de novo synthesis of ICAM-1 in SVEC4-10 and the ICAM-1-transfected L cells were also upregulated by cycloheximide, whereas the overall protein synthesis in these cells was profoundly inhibited, suggesting that ICAM-1 protein synthesis in these cells escapes the translational inhibition by cycloheximide. These results suggest that the stabilization of ICAM-1 mRNA by cycloheximide is independent of its translational inhibition and that ser/thr phosphorylation of unidentified protein(s) seems to play a crucial role in this effect.

Animals↗

Low ICAM-1 expression in the epidermis of depigmenting C57BL/6J-mivit/mivit mice: a possible cause of muted contact sensitization.

The depigmenting C57BL/6J-mivit/mivit) (mivit/mivit) mouse, a congenic mutant of the C57BL/6 strain, exhibits an isolated, single immune deficiency. It is unable to mount a normal immune/inflammatory response upon epicutaneous application of DNFB or TNCB, although it does respond normally to oxazalone. The present investigations have been carried out to further study this deficiency. In vivo, C57BL/6 mice could be sensitized by the epicutaneous application of the hapten TNCB, the subcutaneous injection of hapten(TNBS)-conjugated C57BL/6, and hapten conjugated mivit/mivit epidermal cells. In the mivit/mivit mice, however, only subcutaneous injection of haptenized C57BL/6 epidermal cells caused an immune response. The response of these mivit/mivit mice could be documented only by adoptive transfer of splenic lymphocytes into naive C57BL/6 animals which then reacted to challenge doses of TNCB. These observations suggest that mivit/mivit epidermal cells can process and present and mivit/mivit T lymphocytes can react to the antigen. We postulated the presence of a deficient in vivo interaction between epidermal cells and T lymphocytes in the mivit/mivit mice. ICAM-1 is an important adhesion signal regulating epidermal cell/T-lymphocyte interaction. Its expression in mivit/mivit mice was studied using YN1/1 antibody against MALA-2, the murine counterpart of human ICAM-1. In contrast to C57BL/6 animals, the mivit/mivit epidermis essentially did not stain with the antibody after hapten challenge. In vitro after stimulation with TPA or IFN-gamma, the mivit/mivit epidermal cells expressed significantly lesser amounts of ICAM-1 than the C57BL/6 epidermal cells. Lower expression of ICAM-1 by mivit/mivit epidermal cells has also been demonstrated both by direct staining and by flow cytometry. The binding of lymphocytes to mivit/mivit epidermal monolayers, which were stimulated to express ICAM-1 by IFN-gamma, was decreased compared to that of C57BL/6 epidermal cells. We conclude that the muted contact sensitization response detected in vivo in the mivit/mivit mice at least partly results from lower expression of ICAM-1 and thus defective epidermal cell/T-lymphocyte interaction.

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Morphological analysis of progressive hydrocephalus and shunt-dependent arrested hydrocephalus. An experimental study.

This experimental study was performed to determine if surgically treated feline hydrocephalus could produce any morphological and physiological changes in the periventricular tissue. The result was analyzed with clinical outcome, comparing two differently prepared models in which the biomechanical characteristics of the container property of the brain were altered. Craniectomies were performed in adult mongrel cats and the dura mater was left untouched in group A, while the dura was incised in crucial fashion in group B. Thirty-four animals underwent ventriculopleural shunt surgery 6-8 weeks after kaolin induction into the cisterna magna. In 19 animals, no shunt was implanted; they served as sham controls. These and 10 normal animals were subjected to transmission electron microscopic study or measurement of white matter water content. The regions studied were divided into three sections according to their depth from the ventricular surface (W1, W2 and W3). Considering the efficacy of shunting, the increased water content observed in preshunt animals decreased and was almost identical to normal controls after effective diversion surgery. On the other hand, the animals with ineffective shunt failed to normalize the water content and the figures were similar to the time-matched sham animals. These trends were preserved in groups A and B, but water content was much higher in group B. On histological observation, the chronological profile of subependymal extracellular space (W1, W2) in chronic condition did not correspond to the chronological changes in water content, while both changes observed after successful shunt were apparently linked. Subependymal glial proliferation was increased in volume as a function of time in all animals observed, but this was much more marked in group A than group B. Furthermore, gliosis was more evident in shunted animals than in the other group and was more prominent in cats with effective shunts than in those with ineffective shunts. These histological changes and clinical outcome were not closely related in this study. These results indicated that: (1) The shunting procedure itself could promote subependymal gliosis and this progresses unexpectedly even if CSF pressure is low enough after effective shunting. (2) This histological change is not necessarily a sufficient explanation for clinical improvement after successful shunting. (3) A biomechanical characteristic of the differently treated container property of the brain exerts an influence on the histological change and change in CSF dynamics in periependymal tissue mostly at an early stage of hydrocephalus rather than at a later stage. Therefore early treatment should be considered while avoiding an overindication for shunting.

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Interferon-gamma- and phorbol myristate acetate-responsive elements involved in intercellular adhesion molecule-1 mRNA stabilization.

Treatment of cells with interferon (IFN)-gamma or phorbol myristate acetate (PMA) induces up-regulation of the level of intercellular adhesion molecule-1 (ICAM-1; CD54) mRNA by stabilization of an otherwise labile mRNA. Here, we have generated various deletion mutants of ICAM-1 and stably transfected them into the murine fibroblast Ltk- cells that express no endogenous ICAM-1 or -2 (CD102) in an effort to define the regions within ICAM-1 mRNA responsive to IFN-gamma or PMA. Induction of ICAM-1 mRNA in the transfected L cells by the treatment with IFN-gamma revealed that the truncation of the region of ICAM-1 mRNA encoding the cytoplasmic domain made it non-responsive to IFN-gamma whereas all other regions were dispensable. In contrast, PMA-induced accumulation of ICAM-1 mRNA required the 3'-untranslated region (UTR). To further elucidate the role of these regions in mRNA destabilization and responsiveness to IFN-gamma and PMA, ICAM-2 mRNA that is stable and not responsive to IFN-gamma or PMA was used as a reporter gene. The putative IFN-gamma-responsive region of ICAM-1 mRNA encoding its cytoplasmic domain rendered it unstable and responsive to IFN-gamma but not PMA. Conversely, the 3'-UTR of ICAM-1 fused with ICAM-2 mRNA also made it unstable and responsive to PMA but not IFN-gamma. Half-life analysis showed that the induction of these chimeric mRNAs by IFN-gamma and PMA was due, at least in part, to the prolongation of their turnover rate. These results taken together demonstrate that two distinct regions of ICAM-1 mRNA regulate its stability, one encoding the cytoplasmic domain and responsive to IFN-gamma and the other in the 3'-UTR and responsive to PMA.

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Expression of different members of the Ly-49 gene family defines distinct natural killer cell subsets and cell adhesion properties.

The murine Ly-49 antigen belongs to a family of type II transmembrane molecules containing lectin-like domains. The original member of this family, Ly-49A, has been demonstrated to be expressed by a subpopulation of natural killer (NK) cells, bind certain class I major histocompatibility complexes (MHC), and act as a negative regulator of lytic activity. The expression patterns and functional activities of the other Ly-49s, however, is unknown. We extended the study of this family by isolating cDNAs encoding two new Ly-49 molecules. The reactivity of these and previously identified Ly-49 molecules with NK antibodies was tested in a COS cell expression system. YE1/32 and YE1/48 bound Ly-49A specifically, and 5E6 reacted only with Ly-49C. Three-color flow cytometric analysis demonstrated Ly-49A and Ly-49C expression defines complex, but distinct subsets within NK1.1+ cells. Some NK1.1-CD3+ as well as NK1.1-CD3- cells expressing Ly-49A or C were also detected. Analysis of MHC congenic strains of mice demonstrated that YE1/32+ and YE1/48+ NK cells are not deleted, as has been shown with the Ly-49A mAb A1. Furthermore, COS cells transfected with Ly-49A bound H-2d and H-2k cell lines, whereas Ly-49C transfectants bound H-2d, H-2k, H-2b, and H-2s. The antibodies 5E6 and 34-1-2S (anti-class I MHC) inhibited the binding of Ly-49C to an H-2s cell line. These results imply that the NK cell antigens Ly-49A and C bind to different repertoires of class I MHC molecules.

Amino Acid Sequence↗

Characterization of the activation-associated isoform of CD43 on murine T lymphocytes.

A rat mAb termed 1B11 recognizes a 130-kDa cell surface glycoprotein expressed on T lymphocytes. Transfection studies using the Cd43 gene transfected into murine L cells, and immunoblots using anti-peptide Abs specific for the CD43 polypeptide identified the 1B11 Ag as the 130-kDa isoform of murine CD43. mAb 1B11 fails to recognize the other major CD43 isoform, 115-kDa CD43, either by Western blotting or by FACS analysis, thus differing from the previously characterized anti-CD43 mAb S7 that recognizes only the CD43 115-kDa isoform and not the CD43 130-kDa isoform. CD43 130-kDa recognized by mAb 1B11 is differentially expressed on T lymphocytes. Whereas most CD4-8-, CD4+8+, and CD4-8+ thymocytes express 130-kDa CD43 constitutively, the Ag is expressed by less than 20% of CD4+ T cells in immature and mature populations. On activation, expression of 130-kDa CD43 is up-regulated dramatically on CD4+ T lymphocytes, and to a lesser extent on CD8+ T lymphocytes. In contrast, T cell activation resulted in only minor up-regulation of 115-kDa CD43. CD43 130-kDa contains sialylated O-linked carbohydrate; however, recognition by mAb 1B11 is not dependent on the presence of sialic acid. Interestingly, removal of sialic acid by neuraminidase treatment of 1B11-negative CD4+ T lymphocytes or 1B11-negative EL4 cells confers 1B11 reactivity, suggesting that the 1B11 epitope is masked by sialic acid residues on the CD43 115-kDa isoform. The isoelectric point (pl) of 130-kDa CD43 was determined to be 6.0, which is higher than the pl reported for 115-kDa CD43. Different molecular properties of 115-kDa and 130-kDa CD43 and their differential expression in T cell subsets may indicate specific roles for these CD43 isoforms in T cell ontogeny and/or T cell function.

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Regulation of intercellular adhesion molecule-1 gene expression involves multiple mRNA stabilization mechanisms: effects of interferon-gamma and phorbol myristate acetate.

Although the intercellular adhesion molecule-1 (ICAM-1) is constitutively expressed at a low level on a subpopulation of hematopoietic cells, on vascular endothelium, on fibroblasts, and on certain epithelial cells, it is dramatically increased at sites of inflammation. Interferon-gamma (IFN-gamma) and phorbol myristate acetate (PMA) are known to increase the expression of ICAM-1 on many cell types. Because both human and murine ICAM-1 mRNAs contain putative destabilizing AUUUA sequences in their 3' untranslated regions (UTRs), we examined the role of mRNA stability in the regulation of ICAM-1 gene expression. The treatment of the murine monocytic cell line P388D1, which constitutively expresses ICAM-1 mRNA at a low level, with IFN-gamma or PMA rapidly enhanced the level of ICAM-1 mRNA and dramatically prolonged its half-life. To determine whether the putative destabilizing sequences are responsible for this effect of IFN-gamma and PMA, fibroblast L cells were transfected with either the full-length ICAM-1 cDNA or a truncated form (ICAM-1 delta 3) lacking the putative destabilizing AUUUA sequences. Although ICAM-1 delta 3 mRNA was more stable than the full-length ICAM-1 mRNA, IFN-gamma treatment induced the accumulation of both mRNA species and prolongation of their half-lives. The transplantation of the ICAM-1 delta 3' UTR into a stable ICAM-2 mRNA rendered it unstable, and it was unresponsive to IFN-gamma. Therefore, the treatment with IFN-gamma stabilizes the otherwise labile ICAM-1 mRNA, but the IFN-gamma-responsive sequence may at least in part reside within the protein coding region. PMA also upregulated ICAM-1 gene expression by mRNA stabilization. However, unlike IFN-gamma, PMA treatment only increased the level of the full-length, but not of the truncated, ICAM-1 mRNA. This shows that the PMA-responsive element is located within the 3'UTR. Furthermore, the effect of PMA on ICAM-1 delta 3 mRNA was recovered by ligating multiple AUUUA sequences derived from a heterologous gene fragment. The stability of this chimeric mRNA and the full-length ICAM-1 mRNA was markedly increased by PMA treatment, indicating that the AUUUA multimers in the 3'UTR are important in the PMA-induced upregulation of ICAM-1 mRNA.

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Quantitation of ICAM-1 expression in mouse lung during pneumonia.

In the systemic circulation, neutrophil emigration into sites of acute inflammation is mediated through the leukocyte adhesion complex, CD11/CD18. ICAM-1 is an inducible endothelial ligand for CD11a/CD18 and CD11b/CD18. Streptococcus pneumoniae elicits neutrophil emigration through a CD18-independent mechanism whereas Escherichia coli endotoxin elicits emigration through a CD18-dependent mechanism in rabbit lungs. To determine whether ICAM-1 is up-modulated in the lung during CD18-independent and CD18-dependent emigration, ultrastructural immunogold-labeling studies were performed on BALB/c mice given airway instillates of S. pneumoniae or E. coli endotoxin. Ultrathin cryosections of frozen lung tissue were immunogold labeled with the mAb YN1/1.7.4 against the murine homologue of human ICAM-1. Gold particles on the plasma membranes of alveolar endothelial and epithelial cells were quantitated by transmission electron microscopy. Capillary endothelial ICAM-1 expression did not change during neutrophil emigration toward S. pneumoniae, a CD18-independent pathway in rabbits. In contrast, ICAM-1 expression increased 4.2-fold in response to E. coli endotoxin (known to elicit CD18-dependent emigration in mice), suggesting that the mechanism of adhesion may be regulated by the expression of endothelial rather than neutrophil adhesion molecules. Constitutive expression of ICAM-1 on alveolar epithelial cells was 22-fold greater than on capillary endothelium. Epithelial expression was mainly restricted to type I pneumocytes, whereas type II pneumocytes, the precursors of type I cells, expressed little or no ICAM-1. However, during pneumonia, type II but not type I pneumocytes showed increased ICAM-1 expression, suggesting that ICAM-1 expression represents an early differentiation even in response to epithelial injury.

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Cell surface distribution of high-avidity LFA-1 detected by soluble ICAM-1-coated microspheres.

Murine recombinant soluble ICAM-1 (sICAM-1) was immobilized on polystyrene microspheres. The binding of sICAM-1-coated microspheres to splenic T cells required previous activation of the cells and was inhibited by antibody to LFA-1 (CD11a/CD18), indicating that sICAM-1-coated microspheres bind exclusively to high-avidity LFA-1. The cytoskeleton inhibitor cytochalasin B did not inhibit the binding of sICAM-1-coated microspheres to PMA-activated splenic T cells, whereas their adhesion to sICAM-1 immobilized on microtiter wells was almost completely inhibited. The murine T hybridoma T28 cells on activation with PMA also bound sICAM-1-coated microspheres, and the binding sites on the cell surface seemed localized on some of the cells, whereas fluorescence staining showed an even distribution of LFA-1 on the cell surface. In contrast, the murine B cell line A20A8 and monocytic line P388 showed a more even distribution of sICAM-1 binding sites. To further investigate the distribution of high-avidity LFA-1, murine fibroblast L cells expressing LFA-1 were generated by gene transfer. The transfected L cells constitutively expressed high-avidity LFA-1 and bound sICAM-1-coated microspheres without previous activation. Interestingly, the binding sites seemed highly localized on most cells. In contrast, the binding sites for anti-LFA-1 Ab-coated microspheres were randomly distributed on the transfected L cells. Furthermore, fluorescence staining also revealed a uniform punctate distribution of LFA-1 on the surfaces of these cells. These results show that 1) sICAM-1-coated microspheres represent a useful tool in identifying high-avidity LFA-1, 2) the binding of sICAM-1-coated microspheres to high-avidity LFA-1 does not require an intact cytoskeleton, and 3) the cell surface distribution of high-avidity LFA-1 can be different from that of LFA-1 in general, and the former seems highly localized on some cells.

Animals↗

Defective development of thymocytes overexpressing the costimulatory molecule, heat-stable antigen.

Heat-stable antigen (HSA) is a small, glycosyl phosphatidylinositol-anchored protein that can act as a costimulatory molecule for antigen-dependent activation of helper T cells. In addition to being expressed on antigen-presenting B cells, HSA is also expressed during the initial stages of T cell development in the thymus. HSA levels are very high on immature CD4-, CD8- double negative thymocytes, but are reduced on CD4+, CD8+ double positive cells undergoing selection in the thymus, and are entirely eliminated when these cells differentiate into immunologically competent CD4+ or CD8+ single positive T cells. To examine the potential roles of this molecule in T cell development and selection, we generated transgenic mice in which HSA was highly expressed on all classes of thymocytes. The consequence of deregulated HSA expression was a pronounced reduction in the numbers of double positive and single positive thymocytes, whereas the numbers of their double negative precursors were largely unaffected. These results demonstrate that downregulation of HSA expression at the double positive stage is a critical event in thymocyte development. The depletion of thymocytes resulting from HSA overexpression begins at the same time as the onset of negative selection, suggesting that HSA may provide signals that contribute to determining the efficiency of this process.

Animals↗

The efficacy of shunting the hydrocephalic edema.

The efficacy of shunting the hydrocephalic edema was evaluated by means of transmission electromicroscopical observation (TEM) comparing ultrastructural alterations seen in either valid or invalid shunted feline hydrocephalus. Owning to shunt placement, deteriorated clinical symptoms recovered and one of the observed morphological alterations such as gliosis developed chronologically after the initiation of hydrocephalus. On the other hand, so called hydrocephalic edema observed in the region of periependymal tissue after shunt placement was improved not only in both valid and invalid shunted but also even in sham group however the extent of these alterations were different from each other. Among such observation, a distinct chronological linkage between the morphological alterations and clinical outcome was not noted. Our conclusions in present study were 1) shunt implantation results in the promotion of gliosis in the region of periventricular tissue in spite of the expected efficacy of shunt, 2) recovery of hydrocephalic edema was influenced not only by effective shunt implantation but also by the processes in chronological tissue reconstructions occurred in the natural course of hydrocephalus, and 3) early treatment of periventricular edema in hydrocephalus through shunting corrects the ill-fated neuro axis environments and reforming the intracranial conditions such as normalizing ICP and relieving hemodynamic distress seems to be more important than morphological recovery in treating hydrocephalus.

Animals↗

Hydrocephalus: is impaired cerebrospinal fluid circulation only one problem involved?

Hydrocephalus is a complex disease of the brain as a whole, and imbalance between cerebrospinal fluid (CSF) formation and absorption is not the sole mechanism involved in its pathophysiology. In the absence of a lymphatic system in the central nervous system, open communication between CSF and interstitial fluid (ISF) of the brain may contribute to maintaining homeostasis of the brain, keeping the microchemical environment in good balance. Membranes or cell layers separating CSF from ISF of the brain do not provide impermeability, so the CSF communicates with ISF across the ependymal layer and the pial surface of the brain. In contradiction of the classical theory, the CSF one may obtain at the cisterna magna, for instance, is different from the newly formed CSF out of the choroid plexus, because it has been modified by the free communication between CSF and ISF spaces as the CSF descends along the neural axis. Free flow of water and some smaller molecules provides a bidirectional movement of water and other materials, and this must play an important role in brain volume control. The significance of this role should not be overlooked in regard to the pathophysiology of hydrocephalus.

Animals↗

Alterations in lymphopoiesis after hematopoietic reconstitution with IL-7 virus-infected bone marrow.

Murine bone marrow was infected with a helper-free recombinant retrovirus expressing the mIL-7 gene and used to reconstitute lethally irradiated hosts. Twenty-three percent of mIL-7 retrovirus-infected recipients became moribund within 4-16 wk posttransplant with splenomegaly and hyperplastic lymph nodes, elevated white blood cell counts, plus other noticeable abnormalities including, in one animal, lymphocytic ascites. FACS analysis of hematopoietic tissue in diseased mice revealed marked alterations in T cell subsets of spleen and lymph nodes. These differences in extrathymic tissues compared with control animals included increases in CD4(-)-CD8+ lymphocytes and most strikingly the appearance of large numbers of an unusual CD4(+)-CD8+ T cell population with other characteristics of immature thymocytes (CD3lo-Thy1(+)-HSAhi). 3H-thymidine incorporation assays performed on extrathymic lymphocytes from a lymph node or ascites of two affected mice showed high levels of proliferation in the absence of either CD3 cross linking or exogenous IL-7 stimulation. Interestingly, in contrast to the effects noted on peripheral lymphoid tissues, no alteration in thymic size was noted and the proportion of CD4(+)-CD8+ cells was generally decreased with corresponding increases in CD4+ or CD8+ or CD4(-)-CD8- cells. These results provide further evidence of the involvement of IL-7 in the development and proliferation of early T cells in vivo and point to the possibility of IL-7 involvement in extrathymic expansion of a primitive class of T cells, the functional nature of which remains to be elucidated.

Animals↗

Inhibition of cell adhesion by microspheres coated with recombinant soluble intercellular adhesion molecule-1.

Murine recombinant soluble intercellular adhesion molecule-1 (sICAM-1) was produced and characterized. When immobilized on plastic microtiter wells, sICAM-1 efficiently mediated LFA-1-dependent cell adhesion, indicating that the purified protein retained the ability to bind to LFA-1. However, sICAM-1 in solution, at concentrations up to 100 micrograms/ml, was incapable of inhibiting the phorbol ester-induced homotypic aggregation of lymphocytes, the adhesion of T cells to plastic immobilized sICAM-1, and CTL effector function, all of which are mediated by intercellular adhesion molecule-1:LFA-1 interaction. In contrast, uniform polystyrene microspheres coated with sICAM-1 bound specifically to LFA-1+ cells and efficiently inhibited the adhesion of T cells to immobilized sICAM-1. The sICAM-1-coated microspheres also inhibited CTL function, but the inhibition was only partial. These results suggest that although monomeric sICAM-1 cannot competitively inhibit cell adhesion mediated by intercellular adhesion molecule-1 and LFA-1, microspheres coated with sICAM-1 can inhibit such cell adhesion.

Animals↗

Inducible accessory function of a macrophage cell line.

Costimulatory molecules in addition to occupancy of the T-cell antigen receptor, are required to induce T-cell proliferation. Previous work suggested that membrane molecules responsible for costimulatory activity were not constitutively expressed on the antigen presenting cell (APC) surface. In the present study, we have identified a cloned macrophage cell line (FLJ2) with inducible APC function. The unactivated FLJ2 line could not induce T-cell proliferation. FLJ2 could present alloantigen, and stimulate proliferation of either a T-cell clone or normal resting T cells following activation with IFN gamma or unexpectedly with lipopolysaccharide (LPS)-Activated FLJ2 cells could be fixed and APC function was preserved. The relevant inducible molecules required for APC function appeared distinct from Ia and IL1. The expression of ICAM-1 and LFA-1 was increased during activation and anti-LFA-1 antibody blocked APC function. This suggests that one important feature of the activation process may be improvement of cellular adhesion.

Animals↗

Monoclonal antibody to MALA-2 (ICAM-1) reduces acute autoimmune nephritis in kdkd mice.

Hereditary tubulointerstitial nephritis is a prominent cause of renal failure in humans. A variety of animal models utilizing immunologically induced nephritis have been developed. The kdkd congenic variant of the CBA/Ca mouse has normal kidneys at birth but develops progressive, lethal autoimmune nephritis beginning at approximately Week 8. The destruction of renal tubular epithelium in mediated by a population of antigen-specific, H-2Kk-restricted, Lyt-2+, L3T4- T cells. The present experiments demonstrate that systemic treatment with anti-ICAM-1 monoclonal antibody reduces kidney disease in kdkd mice. Anti-ICAM-1 mab localizes to inflammatory sites in the kidney and effects a significant reduction in leukocyte infiltration. Concomitantly, urine protein levels of anti-ICAM-1-treated mice are significantly reduced. The use of anti-adhesion molecule monoclonal antibodies that alter leukocyte activity and/or trafficking may be useful therapies for certain autoimmune disorders.

Animals↗

Adhesion molecules on murine brain microvascular endothelial cells: expression and regulation of ICAM-1 and Lgp 55.

The mechanisms for the initiation of immune reactions in the central nervous system are poorly understood. In this report, we describe the presence of intercellular adhesion molecule-1 (ICAM-1) and Lgp 55 (suggested mouse homologue of human intercellular adhesion molecule-2, ICAM-2) on the surface of brain microvessel endothelium (EN) cells and show in vitro induction of ICAM-1 molecules on EN cells with pro-inflammatory cytokines. ICAM-1 expression was detected using flow cytometry analysis with biotinylated anti-ICAM-1 antibody (YN1/1.7.4). Lgp 55 expression was characterized using PA3 monoclonal antibody. According to our results, 30-40% of the non-activated brain EN cells expressed ICAM-1 and 15-20% expressed Lgp 55 molecules. The ICAM-1 molecule expression was increased after the activation of the cells with recombinant murine gamma interferon (IFN-gamma), tumor necrosis factor (TNF-alpha), and interleukin-1 alpha (IL1-alpha) in a dose-dependent manner. The increased ICAM-1 expression was detected as early as 2 h following the cytokine treatment and reached its maximum after 24 h. Transforming growth factor-beta (TGF-beta) did not influence the expression of ICAM-1 molecule. Lgp 55 molecule does not seem to be regulated by pro-inflammatory cytokines. ICAM-1 and Lgp 55 expression was found to be polarized on the luminal surface of EN by confocal laser microscopy suggesting accessibility for leukocytes. Inducible ICAM-1 expression may play a critical role in formation of inflammatory reactions inside the central nervous system.

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