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Amino acid residues required for binding of vascular cell adhesion molecule-1 to integrin alpha 4 beta 7.

The homologous Ig-like domains 1 and 4 of vascular cell adhesion molecule (VCAM)-1 present binding sites to the leukocyte integrins alpha 4 beta 1 and alpha 4 beta 7 . In the present study, amino acid substitution mutants were used to identify sequence motifs mediating binding of integrin alpha 4 beta 7 to the first domain of VCAM-1. We demonstrate that binding of integrin alpha 4 beta 7 to VCAM-1 containing the D40A mutation located in the loop between beta strands C1 and D1 was completely abrogated and was not restored by activating integrin binding functions with Mn2+. Thus, the I(39)DSP motif functions as a central recognition site for integrin alpha 4 beta 7. Analysis of the E66A mutation demonstrated that the G(64)NEH sequence, which is exposed on the loop structure between beta strands E1 and F1, represents an additional recognition site for alpha 4 beta 7 integrin. However, the inhibitory effect of the E66A mutation on cell binding was not specific for alpha 4 beta 7 but was also observed for integrin alpha 4 beta 1. In contrast to the I(39)DSP and G(64)NEH sequences, the K(79)LEK motif present in beta strand G1 was involved in binding to alpha 4 beta 1 but not alpha 4 beta 7. The function of G(64)NEH and K(79)LEK motifs in alpha 4++-integrin interactions was confirmed by divalent cation titration assays and peptide inhibition studies. Integrin binding to E66A or E81A;K82A mutants was restored by activation with saturating concentrations of Mn2+. Binding of both alpha 4 beta 1 and alpha 4 beta 7 integrins was not affected by E29A, R36A, E50A or E87A mutations. Together, these results identify the I(39)DSP and G(64)NEH motifs as common recognition sites for both alpha 4 beta 1 and alpha 4 beta 7 integrins, whereas the K(79)LEK sequence appears to confer specificity for alpha 4 beta 1 binding.

Amino Acid Sequence↗

Levamisole effects on major histocompatibility complex and adhesion molecule expression and on myeloid cell adhesion to human colon tumor cell lines.

BACKGROUND: The drug levamisole has been successfully used in combination with fluorouracil to increase the disease-free interval and survival of patients who have undergone surgical resection of Dukes' stage C colon cancer. Levamisole is thought to affect the host immune response. Several recent studies have examined its effect on the expression of major histocompatibility complex (MHC) class I molecules, but the results have been inconsistent. An equally important requirement for a host cellular immune response is the adhesion of leukocytes to tumor cells. The latter may be required for cell-mediated antitumor cytotoxic responses. PURPOSE: We evaluated the ability of levamisole to affect the expression of MHC class I molecules and cell-adhesion molecules and determined whether levamisole could affect leukocyte adhesion to tumor cells that had been treated with the drug. METHODS: A panel of four human colon tumor cell lines (HT-29, SW-620, HCT-15, and LoVo), A-375 human melanoma cells, and human umbilical vein endothelial cells (HUVEC) were cultured in the presence of levamisole and examined by solid-phase enzyme immunoassay to determine the level of expression of MHC class I, intercellular adhesion molecule 1 (ICAM-1), vascular cell-adhesion molecule-1 (VCAM-1), leukocyte integrin VLA-4, and lymphocyte-functional antigen (LFA-1) molecules. Adhesion of HL-60 and THP-1 myeloid cells to tumor cells was also evaluated. Tumor necrosis factor (TNF) at 10 ng/mL was used as a positive control for increasing adhesion molecule expression and cell-cell adhesion. The statistical significance of differences in cell surface molecule expression and functional adhesion between treated and control cells were tested by use of analysis of variance and the two-tailed Dunnett's test. RESULTS: Treatment with levamisole (0.1 and 1 micrograms/mL) caused the levels of MHC class I expression to increase approximately threefold above control levels on HCT-15 and LoVo colon tumor cells (P < .05 in each case) compared with untreated cells, caused minimal increases on HT-29 cells (to 1.5 times control levels), but caused no significant increases on SW-620 colon tumor or A-375 melanoma cells. The HCT-15 and LoVo colon tumor cells had very low basal MHC expression Levamisole (1 micrograms/mL) increased VCAM-1 expression on HT-29 and SW-620 colon tumor cells to 4.3 and 2.4 times (P < .05 in each case) control levels, respectively, doubled ICAM-1 expression on HT-29 cells (P < .05), and increased LFA-1 expression on HT-29, LoVo, and A-375 cells to 2.1, 3.2, and 1.8 (P < .05 in each case) times control levels, respectively. TNF (10 ng/mL) was used as a positive control and yielded increased expression of MHC class I molecules on the HT-29, LoVo, SW-620, and HCT-15 cells (2.5, 7.8, 1.9, and 4.8 times control levels, respectively; P < .05 in each case). TNF increased VCAM-1 expression to 4.2 times the vehicle-treated control levels (P < .05) on HT-29 cells and increased ICAM-1 expression on HT-29, LoVo, and SW-620 cells (8.4, 1.8, and 1.9 times vehicle control levels, respectively; P < .05 in each case). THP-1 and HL-60 cells demonstrated increased adhesion to levamisole-treated HT-29 colon tumor cells. HL-60 cells also exhibited increased levamisole-mediated adherence to LoVo and HCT-15 cells. Adherence by THP-1 was significantly improved after levamisole treatment of the HUVEC, SW-620, and A-375 cells (P < .05 in each case). CONCLUSIONS: Levamisole can directly affect the expression and function of molecules that are engaged in cell-cell recognition and signaling on the surfaces of some tumor cell lines. However, no consistent pattern between cell-adhesion molecule expression, cell-cell adhesion, or levamisole concentration could be discerned.

Adjuvants, Immunologic↗

Inhibition of antigen-specific T cell trafficking into the central nervous system via blocking PECAM1/CD31 molecule.

Trafficking of antigen-specific T cells into the central nervous system (CNS) is an important initiating step in inflammation in the brain. In spite of the extensive knowledge about the role of adhesion molecules in T cell migration across peripheral vessels, the mechanism of the entry of antigen-specific T cells into the CNS is not known. This work was designed to study the regulatory roles of adhesion molecules in antigen-specific T cell migration into the CNS. Antigen-specific T cells were tracked in an in vivo migration assay using T cell receptor (TCR) transgenic mice having 95% of T cells specific for a defined antigen. pigeon cytochrome c (PCC). TCR transgenic mice were cannulated intraventricularly (IVT) for PCC antigen infusion and cerebrospinal fluid (CSF) sampling. Upon PCC infusion into the CNS, the number of alpha/beta TCR+ Vbeta3+ Mac1- cells in the CSF was characterized in the presence or absence of anti-adhesion molecule reagents. We found that antibodies against VCAM-1 (CD106), VLA-4 (CD49d/CD29), ICAM-1 (CD54), and LFA-1 (CD11a/CD18) did not influence the increased number of antigen-specific T cells in the CSF However, upon intravenous (i.v.) injection, anti-PECAM-1 (CD31) antibody or PECAM-Ig chimeric molecule inhibited the trafficking of alpha/beta TCR+ Vbeta3+ Mac1- cells into the CNS. The expression of PECAM-1 (CD31) was also up-regulated on antigen-specific T cells in a time-dependent manner in vitro upon antigenic stimulation. The antigen-induced activation of T cells in vivo was measured by CD44 and LFA-1 expression and found to be comparable between mPECAMIg-treated mice and wild-type serum control-treated groups. This indicates that CD31 inhibition of antigen-specific T cell accumulation in the CNS is probably not due to a functional inhibition of these cells. Finally, adoptive transfer of CFSE-labeled AND transgenic cells into naïve animals resulted in the accumulation of these cells in the CNS upon PCC IVT immunization that was also inhibited by mPECAMIg treatment. Hence, PECAM-1 (CD31) might play an important role in regulating antigen-specific T cells trafficking in CNS inflammatory diseases.

Animals↗

VCAM-1-positive microglia target oligodendrocytes at the border of multiple sclerosis lesions.

The distribution and lineage of vascular cell adhesion molecule-1 (VCAM-1)-positive cells was investigated in 43 lesions from the brain tissue of patients with multiple sclerosis (MS). Numerous VCAM-1-positive macrophages/microglia were detected at the edges of MS lesions. Quantitative analysis of 6 active, 7 chronic active, and 4 chronic inactive MS lesions identified most VCAM-1-positive cells at the actively demyelinating borders of active (102/mm3) and chronic active (29/mm3) lesions, but rarely in chronic inactive lesions (4/mm3). Further, approximately 17% of the VCAM-1-positive cells closely apposed or surrounded oligodendrocyte perikarya at the edges of active and chronic active lesions that were sites of ongoing demyelination. Endothelial cells were VCAM-1-negative in both lesion and non-lesion MS brain tissue. This report is the first to document direct microglial interaction with oligodendrocytes in MS.

Adolescent↗

Expression of VLA-4 on peripheral mononuclear cells in patients on chronic haemodialysis with carpal tunnel syndrome.

BACKGROUND: Carpal tunnel syndrome (CTS) is a major complication in long-term haemodialysis patients and is thought to be a form of haemodialysis-associated amyloidosis. CTS may be due to the deposition of amyloid as well as local inflammatory process in the carpal tunnel. Although macrophage-like cells infiltrating the tenosynovium of carpal tunnel are known to express mRNA for adhesion molecules, the level of expression of adhesion molecules on peripheral blood mononuclear cells (PBMC) in patients with CTS is unknown. METHODS: We compared the expression of very late activation antigen (VLA-4) on PBMC by flow cytometry in 14 patients on haemodialysis (6-21 years) with CTS, nine on haemodialysis (1-6 years) but without CTS and six patients on chronic ambulatory peritoneal dialysis (CAPD, 1-5 years) without CTS. RESULTS: The expression of VLA-4 on peripheral lymphocytes was not different among the groups. However, the FACScan fluorescence histogram of VLA-4 expression on peripheral monocytes showed a bimodal pattern in the CTS group, and the rate of the high intensity portion of the expressed VLA-4 on monocytes was significantly higher in CTS than other groups (P<0.05). The observed differences were not based on differences in the type of the dialysis membrane. We also examined the adhesion of PBMC to fibronectin-coated plates. The number of adherent PBMC was significantly higher in patients with CTS than in other groups (P<0.05). CONCLUSION: Our results suggest that increased expression of VLA-4 on peripheral monocytes and augmented adhesion capacity of PBMC to fibronectin may be involved in the development of CTS in haemodialysis patients.

Carpal Tunnel Syndrome↗

Cell-adhesive activity and receptor-binding specificity of the laminin-derived YIGSR sequence grafted onto Staphylococcal protein A.

Laminin contains multiple oligopeptide motifs to promote cell adhesion and migration. One of these motifs is YIGSR within the B1 chain. We reconstituted the cell-adhesive activity of YIGSR motif by grafting it onto a truncated form of the Staphylococcal protein A (designated tSPA) via cassette mutagenesis. When coated on a polystyrene surface, the YIGSR-grafted tSPA (YIGSR-tSPA) promoted attachment and spreading of mouse melanoma and human rhabdomyosarcoma cells, but not of hamster fibroblasts. The cell-adhesive activity of YIGSR-tSPA was abolished by amino acid substitution or scrambling of the inserted YIGSR sequence. Divalent cations Mn2+ and Mg2+, but not Ca2+, promoted the cell adhesion to YIGSR-tSPA. Interestingly, the YIGSR-tSPA-mediated cell adhesion was barely inhibited by the linear peptide CDPGYIGSR-NH2, but was strongly inhibited by the cyclic peptide CDPGYIGSRC and another peptide PEILDVPST, which is a specific inhibitor for integrin alpha 4 beta 1. Among various anti-integrin antibodies, anti-alpha 4 and anti-beta 1 antibodies specifically inhibited the cell adhesion to YIGSR-tSPA. In support of these observations, adhesion of rhabdomyosarcoma cells to intact laminin was also partially inhibited by synthetic PEILDVPST peptide and anti-alpha 4 antibody. These results, taken together, indicate that the YIGSR motif exerts its cell-adhesive activity through interaction with integrin alpha 4 beta 1.

Amino Acid Sequence↗

Reproductive condition and the low-dose endotoxin-induced inflammatory response in rats. Glomerular influx of inflammatory cells and expression of adhesion molecules.

These experiments were designed to study the increased sensitivity of pregnant rats to endotoxin. Pregnant (Pr), cyclic (C), and progesterone (P)-treated pseudopregnant rats with or without a decidualized uterus (PSP and DEC rats, respectively) received infusions of an ultra-low dose of endotoxin (1.0 microg/kg BW) and were killed 3 days later. Pr, PSP, and DEC rats were infused on Day 14, C rats on diestrus. Endotoxin-infused rats were compared with saline-infused rats in the same reproductive conditions. The inflammatory reaction of the glomeruli of the kidneys was studied by immunohistochemical methods using 4-microm cryostat sections stained with specific monoclonal antibodies against neutrophils (polymorphonuclear cells, PMNs) and monocytes (MOs), and against the adhesion molecules ICAM-1 and VCAM-1 on the endothelium, and LFA-1, MAC-1, and VLA-4 on the leukocytes. Endotoxin infusion increased glomerular PMN and MO number in Pr, PSP, and DEC rats, all of which have elevated P levels, but not in C rats, which do not. The endotoxin-induced expression of adhesion molecules, associated with this influx of inflammatory cells, varied with the reproductive condition. In C rats there was no increased adhesion molecule expression after endotoxin treatment, in Pr rats there was increased expression of both the combinations ICAM-1/LFA-1 and VCAM-1/VLA-4. DEC rats did not express either of these combinations (although there was expression of ICAM-1); PSP rats expressed the combination ICAM-1/MAC-1. Adhesion molecule expression thus seems to be regulated by ovarian (e.g., P) and placental factors (e.g., of trophoblastic and decidual origin). Because the different combinations of adhesion molecules in the various reproductive conditions after exposure to endotoxin led to more or less the same leukocyte influx under these conditions, the increased sensitivity to endotoxin of pregnant individuals cannot be reduced to differences in leukocyte influx into the glomeruli.

Animals↗

VLA-4 blockade suppresses endotoxin-induced uveitis: in vivo evidence for functional integrin up-regulation.

Leukocyte adhesion to the vascular wall is a critical early step in the pathogenesis of inflammatory diseases and is mediated in part by the leukocyte integrin, VLA-4, which binds to endothelial vascular cell adhesion molecule (VCAM) -1. Here, we investigate VLA-4's role in endotoxin-induced uveitis (EIU). At various time points (6-48 h) after EIU induction, the severity of the inflammation was evaluated by quantifying cell and protein content in the aqueous fluid, firm leukocyte adhesion in the retinal vessels, and the number of extravasated leukocytes into the vitreous. Functional activation of VLA-4 in vivo was investigated in our previously introduced autoperfused micro flow chamber assay. Firm adhesion of EIU leukocytes to immobilized VCAM-1 under physiological blood flow conditions was significantly increased compared with normal controls (P<0.05), suggesting an important role for VLA-4 in EIU. VLA-4 blockade in vivo significantly suppressed all uveitis-related inflammatory parameters studied, decreasing the clinical score by 45% (P<0.01), protein content in the aqueous fluid by 21% (P<0.01), retinal leukostasis by 68% (P<0.01), and leukocyte accumulation in the vitreous by 75% (P<0.01). Our data provide novel evidence for functional up-regulation of VLA-4 during EIU and suggest VLA-4 blockade as a promising therapeutic strategy for treatment of acute inflammatory eye diseases.

Animals↗

Integrin-associated protein (CD47/IAP) contributes to T cell arrest on inflammatory vascular endothelium under flow.

Integrin-associated protein (CD47/IAP) is a pentaspan molecule that regulates integrin functions. We prepared a CD47-deficient Jurkat T cell line to assess its role in the arrest of T cells on inflammatory endothelium. Under flow conditions, constitutive arrest of CD47-deficient cells is strongly decreased as compared to the original cell line, whereas reexpression of CD47 reestablishes their ability to stop. Moreover, cells transfected with a chimera made with the extracellular portion of CD47 and the transmembrane domain of CD7 or several truncated forms of CD47 show that the first transmembrane domain and a short cytoplasmic loop are sufficient for this process. CD47 effect is indirect and depends mainly on the alpha4beta1/VCAM-1 pathway, as shown by blocking antibodies. We detected on endothelium the two CD47 counter receptors known to date: thrombospondin and SIRP1alpha. Blocking experiments show that both are involved. Overall, CD47 participates in the constitutive arrest of T lymphocytes on inflamed vascular endothelium by up-regulating alpha 4beta1 integrins.

Antibodies, Monoclonal↗

Soluble TNF-alpha receptors are constitutively shed and downregulate adhesion molecule expression in malignant gliomas.

The regulation of adhesion molecule expression in malignant gliomas by tumor necrosis factor-alpha (TNF) and soluble TNF receptors (TNFR) was examined in the malignant glioma cell line A-172 and in 2 primary glioblastoma cell cultures (LA-492 and LA-567). A-172 cells expressed only the p55 TNF receptor transcripts and protein. The 2 primary cell cultures expressed both the p55 and p75 TNF receptors. In A-172 cells and in 1 of 2 primary glioma cell cultures, TNF upregulated the expression of ICAM-1 and VCAM-1, A-172 and both primary glioma cultures also shed their TNF receptors in the absence of activation by stimulating agents. Soluble p55 (sp55) receptors, but not soluble p75 (sp75) receptors, were found to reduce the TNF induced VCAM-1 and ICAM-1 expression in both the glioma cell line and the primary cell culture. Immunostaining of malignant glioma sections confirmed the presence of soluble TNFR and adhesion molecule expression in glioma cells in situ. These data suggest that soluble TNF receptors may play a role in the mechanism by which malignant gliomas downregulate the effects of infiltrating immune-competent cells.

Cell Adhesion Molecules↗

Function of porcine adhesion molecules in a human marrow microenvironment.

BACKGROUND: One way to circumvent the need for chronic immunosuppression in solid organ xenografting may be to induce donor-specific tolerance using bone marrow transplantation. If this approach is to succeed in the pig-to-human species combination, pig marrow must be capable of maturing into relevant tolerance-inducing cells and replenishing itself in host human marrow. One possible barrier is adhesion molecule incompatibility. We have studied the compatibility across the pig-human species barrier of two well-characterized ligands known to be important in hematopoiesis, CD44 and very late antigen (VLA)-4. METHODS: In vitro long-term bone marrow cultures were studied in which the effects of blocking antibodies were assessed by measuring cell numbers and colony-forming units. RESULTS: The blocking of CD44 had a comparable inhibitory effect on the hematopoiesis of human and pig marrow, even if the latter was maintained on a human stromal layer. Both cellular proliferation and colony-forming activity were inhibited by anti-CD44 monoclonal antibody. By contrast, a significant difference was observed in VLA-4 usage by hematopoietic cells of the two species. Blocking VLA-4 markedly inhibited human hematopoietic cellular proliferation but had no effect on pig hematopoiesis, on either porcine or human stroma. CONCLUSIONS: The data suggest that the incompatibility of either CD44 or VLA-4 is unlikely to limit the efficiency of porcine hematopoiesis in a human marrow environment. However, the difference in VLA-4 utilization between these species raises the possibility that other interactions may be important for effective porcine hematopoiesis and that their failure to function between species may contribute to the poor function of porcine hematopoietic cells in primate marrow microenvironments.

Animals↗

Cross-species interaction of porcine and human integrins with their respective ligands: implications for xenogeneic tolerance induction.

BACKGROUND: Organ transplantation is limited by the number of available donors. One possible solution would be the use of pigs as organ donors. However, current immunosuppressive protocols cannot prevent rejection of these organs. If donor-specific tolerance toward porcine antigens could be induced in recipients, subsequent implantation of porcine organs would be possible without further immunosuppression. Induction of tolerance can be achieved with a bone marrow transplant if donor antigen-presenting cells successfully differentiate in the recipient thymus to induce deletion of donor-reactive host cells. Migration of porcine progenitor cells to the host marrow and thymus and differentiation into tolerance-inducing antigen-presenting cells is likely to require successful interaction of porcine adhesion molecules with human ligands. In this study, we investigated whether very late antigen (VLA)4 and VLA-6 integrins, which play important roles in homing and differentiation of hematopoietic progenitor cells, function across the pig-to-human species barrier. METHODS: Static cell-to-cell and cell-to-extracellular matrix protein adhesion assays were used to examine the cross-species interaction of porcine adhesion molecules with human ligands. RESULTS: Our studies show that porcine cells adhere to various human endothelial cell monolayers and extracellular matrix proteins and demonstrate that porcine VLA-4 and VLA-6 appear to be fully cross-reactive to the human ligands vascular cell adhesion molecule-1 and laminin, respectively. CONCLUSIONS: It is likely that porcine hematopoietic progenitor cells will be able to successfully employ pVLA-4- and pVLA-6-human ligand interactions in a pig-to-human bone marrow transplantation model in order to induce donor-specific tolerance.

Animals↗

Characterization of cytokine profiles in corneal allograft with anti-adhesion therapy.

BACKGROUND: The cytokine profiles of specific immunosuppression after anti-adhesion molecule therapy are unknown in a mouse corneal transplantation model. METHODS: Orthotopic mouse corneal transplantation was performed using BALB/c (H-2d) mice as recipients and C3H/He (H-2k) mice as donors. Anti-mouse very late antigen-4 and anti-mouse lymphocyte function-associated antigen-1 monoclonal antibodies (each at a dose of 0.25/mg/day) were administered i.p. until day 7. A second corneal transplantation was performed 5 weeks after the first grafting. Delayed hypersensitivity was tested after the second grafting. Corneal cytokine expression was examined immunohistochemically. The cytokine gene transcription level was assessed in the corneas and splenocytes. RESULTS: All allografts with anti-adhesion molecule therapy survived for 5 weeks. Two weeks after the second grafts in the fellow eye (7 weeks after the first grafts), 50% of the mice with successful grafts bilaterally had low delayed hypersensitivity responses. Low helper T 1 (interferon-gamma and interleukin-2) cytokine gene and protein expression in corneas was observed in monoclonal antibody-treated mice 3 weeks after the first grafting. The mice with successful second grafts showed low corneal T helper 1 cytokine gene and protein expression. High interleukin-4 gene transcription levels in corneas and splenocytes was obtained in both groups in which the grafts were accepted and rejected after the second grafts. CONCLUSIONS: The cytokine profile to differentiate alloantigen-specific acceptance with anti-adhesion therapy to lymphocyte function-associated antigen-1 and very late antigen-4 molecules from rejection after the second grafting is local and systemic low T helper 1 cytokine in corneal transplantation. High interleukin-4 cytokine expression in corneas and splenocytes is not associated with achievement of tolerance induction.

Animals↗

Rat cytomegalovirus infection in kidney allograft recipients is associated with increased expression of intracellular adhesion molecule-1 vascular adhesion molecule-1, and their ligands leukocyte function antigen-1 and very late antigen-4 in the graft.

BACKGROUND: Cytomegalovirus (CMV) infection is suggested to be a risk factor for chronic rejection. We have recently shown that rat CMV (RCMV) increases the inflammatory response and accelerates chronic rejection in a model of rat kidney allograft. In this study, the early inflammatory response and time-related expression of intercellular adhesion molecule-1 (ICAM-1) and vascular cell adhesion molecule-1 (VCAM-1) and their ligands, leukocyte function antigen-1 (LFA-1) and very late antigen-4 (VLA-4), in the grafts were investigated in RCMV-infected rats and compared to noninfected rats developing chronic rejection. METHODS: Transplantations were performed in a rat strain combination of DA (RT1a)->BN (RT1n) receiving triple drug immunosuppression. One group of rats was infected with RCMV, and the other was left uninfected. The grafts were harvested at different time points after transplantation. The adhesion molecules, their ligands and activation markers, MHC class II antigens and interleukin-2-receptors (IL-2-R), were demonstrated by monoclonal antibodies and immunoperoxidase staining from frozen sections of the grafts. Graft histology was evaluated according to the Banff criteria. RESULTS: RCMV caused a significant, prolonged increase of VCAM-1 and ICAM-1 expression in the vascular endothelium compared to the noninfected grafts. Also, the number of cells expressing activation markers, LFA-1 and VLA-4 was significantly enhanced in these animals. Significantly enhanced histological changes of chronic rejection were seen in the RCMV-infected group. CONCLUSIONS: Prolonged, increased expression of ICAM-1 and VCAM-1, and increased numbers of inflammatory cells expressing their ligands in the CMV infected grafts, were associated with accelerated chronic allograft nephropathy.

Animals↗

Molecular basis of sickle cell-endothelial cell interactions.

Adherence of sickle erythrocytes to microvascular endothelium is posited to initiate or contribute to sickle cell vaso-occlusive pain episodes. Adherence and occlusion in vivo may depend on hemodynamics interacting with plasma, erythrocyte, and endothelial cell factors. Four receptor-mediated adherence pathways have been described to date: adherence mediated by high molecular weight von Willebrand factor multimers bridging glycoprotein lb-like and integrin receptors on sickle cells and similar receptors on endothelial cells; thrombospondin bridging CD36 on sickle reticulocytes and the alpha v beta 3 integrin on large-vessel endothelial cells or alpha v beta 3 and CD36 on microvascular endothelium; binding of sickle reticulocyte alpha 4 beta 1 receptors to vascular cell adhesion molecule 1 expressed on endothelial cells stimulated by cytokine or double-stranded RNA viruses; and binding of sickle cells to endothelial cell-associated fibronectin via sickle reticulocyte alpha 4 beta 1 activated by phorbol ester or interleukin-8. The significance of these adherence pathways in sickle cell vaso-occlusion is discussed.

Endothelium, Vascular↗

Role of adhesion molecules in synovial inflammation.

PURPOSE OF REVIEW: The ability of cells to adhere to other cells and extracellular matrix (ECM) through cellular adhesion molecules (CAMs) is central to tissue remodeling and inflammation. This review discusses the potential role of CAMs in development of synovial inflammation through regulating the recruitment of inflammatory cells via endothelial-leukocyte interactions, the organization and activation of leukocytes in the synovial sublining, and the formation and behavior of the hyperplastic synovial lining. RECENT FINDINGS: Over the past several years valuable insight has been gained into the role of cell-cell and cell-ECM adhesive interactions in synovial organization and inflammation. Recently, cadherin-11 was identified on fibroblast-like synoviocytes and has been demonstrated to play a central role in synovial lining organization. Furthermore, studies using animal models of inflammatory arthritis have demonstrated critical roles for E- and P-selectins, CD11a/CD18 [lymphocyte function-associated antigen (LFA)-1], alpha4beta1 integrin, and cadherin-11 in the development of synovial inflammation. SUMMARY: Cell-cell and cell-ECM interactions through CAMs play an important role in synovial inflammation. Future studies of CAMs are needed to define more thoroughly their role in synovial inflammation and their potential as therapeutic targets in the treatment of rheumatoid arthritis and related inflammatory arthritic conditions.

Animals↗

Three-dimensional migration of human adult dermal fibroblasts from collagen lattices into fibrin/fibronectin gels requires syndecan-4 proteoglycan.

Fibroblast migration from the peri-wound collagenous stroma into the fibrin-laden wound is critical for granulation tissue formation and subsequent healing. Previously we found that fibroblast transmigration from a collagen matrix into a fibrin matrix required fibronectin (FN). Integrins alpha4beta1, alpha5beta1, and alphavbeta3 and dermatan sulfate CD44 were required for this invasive migration. Here we demonstrated that syndecan-4, a transmembrane heparan sulfate (HS) proteoglycan, known to bind FN, is also required for fibroblast invasive migration of a fibrin/FN gel. This conclusion was based on fibroblast migration using two independent means of disrupting syndecan-4: heparinase degradation of HS glycosaminoglycans or suppression of syndecan-4 core protein with antisense oligodeoxynucleotides. Isolated syndecan-4 from these fibroblasts bound Hep II recombinant constructs FN III12-V15>FN III12-15>FN III12-14 but did not bind the IIICS (V) domain. Furthermore, platelet-derived growth factor (PDGF), which is required to stimulate fibroblast migration, markedly increased cell levels of syndecan-4 core protein in a time and concentration-dependent fashion. PDGF also induced upregulation of syndecan-4 at transcriptional level as determined by RT-PCR. These results demonstrate that syndecan-4 is essential for fibroblast invasive migration into fibrin clot and that PDGF, the stimulus for migration, induces increased syndecan-4 core protein expression.

Adult↗