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W Newman

Publications and source records attributed to W Newman.

At least 55 records · Page 3Linked to original sources

Recruitment of lymphocytes during cutaneous delayed hypersensitivity in nonhuman primates is dependent on E-selectin and vascular cell adhesion molecule 1.

Previous investigations of cutaneous delayed hypersensitivity (DHR) in humans and animals have demonstrated that lymphocyte recruitment from blood is temporally and spatially associated with the de novo, asynchronous expression of both vascular cell adhesion molecule 1 (VCAM-1) and E-selectin on dermal endothelium. In this study, DHR was induced in rhesus monkeys sensitized against tuberculin in order to investigate the contribution of E-selectin and VCAM-1 in lymphocyte recruitment to skin. Intravenous infusions of neutralizing doses of F(ab')2 fragments of murine antibodies to either E-selectin or VCAM-1 during the early inductive phases of DHR showed that murine IgG localized to dermal endothelium at the site of DHR in a pattern kinetically similar to the expression of each endothelial adhesion protein. Most importantly, the relative numbers of lymphocytes localized to the inflammatory site were significantly reduced in DHR modified with infusions of antibodies to either VCAM-1 or E-selectin, while the numbers of lymphocytes recruited to skin in the animal given F(ab')2 fragments of an irrelevant murine monoclonal antibody of the same isotype and at the same dose were not changed. Moreover, in individual animals, the relative inhibition achieved with a particular antibody was proportional to the magnitude of expression of the targeted adhesion protein. Therefore, both VCAM-1 and E-selectin are functionally relevant in the genesis of cutaneous DHR, and each appears to contribute to lymphocyte recruitment in relation to its relative degree of expression in any one particular animal.

Animals↗

Monocyte adhesion to endothelium in simian immunodeficiency virus-induced AIDS encephalitis is mediated by vascular cell adhesion molecule-1/alpha 4 beta 1 integrin interactions.

Because the mechanisms associated with recruitment of monocytes to brain in AIDS encephalitis are unknown, we used tissues from rhesus monkeys infected with simian immunodeficiency virus (SIV) to examine the relative contributions of various adhesion pathways in mediating monocyte adhesion to endothelium from encephalitic brain. Using a modified Stamper and Woodruff tissue adhesion assay, we found that the human monocytic cell lines, THP-1 and U937, and the B cell line, Ramos, preferentially bound to brain vessels from monkeys with AIDS encephalitis. Using a combined tissue adhesion/immunohistochemistry approach, these cells only bound to vessels expressing vascular cell adhesion molecule-1 (VCAM-1). Furthermore, pretreatment of tissues with antibodies to VCAM-1 or cell lines with antibodies to VLA-4 (CD49d) inhibited adhesion by more than 70%. Intercellular adhesion molecule-1 (ICAM-1)/beta 2 integrin interactions were not significant in mediating cell adhesion to the vasculature in encephalitic simian brain using a cell line (JY) capable of binding rhesus monkey ICAM-1. In addition, selectin-mediated interactions did not significantly contribute to cell binding to encephalitic brain as there was no immunohistochemical expression of E-selectin and P-selectin in either normal or encephalitic brain, nor was there a demonstrable adhesive effect from L-selectin using L-selectin-transfected 300.19 cells on simian encephalitic brain. These results demonstrate that using the tissue adhesion assay, THP-1, U937, and Ramos cells bind to vessels in brain from animals with AIDS encephalitis using VCAM-1/alpha 4 beta 1 integrin interactions and suggest that VCAM-1 and VLA-4 may be integral for monocyte recruitment to the central nervous system during the development of AIDS encephalitis.

Animals↗

Soluble E-selectin is increased in inflammatory synovial fluid.

OBJECTIVE: To investigate the hypothesis that soluble E-selectin (sE-selectin) may be detected in synovial fluid (SF) and play a role in inflammatory arthritis. METHODS: We used a sandwich ELISA to measure sE-selectin in the SF of 58 patients with rheumatoid arthritis (RA), 9 with psoriatic arthritis (PsA), 30 with osteoarthritis (OA), 13 with gout, and 9 with calcium pyrophosphate dihydrate crystal deposition disease (CPPD). RESULTS: SF sE-selectin values in RA (mean 1.49 ng/ml, 0.18-3.90) and PsA (mean 1.36 ng/ml, 0.88-2.31) were significantly higher than those with OA (mean 0.83 ng/ml, 0.00-1.83), gout (mean 1.04 ng/ml, 0.11-3.42), or CPPD (mean 0.80 ng/ml, 0.20-1.47). Elevated SF sE-selectin was associated with elevated serum sE-selectin, erythrocyte sedimentation rate, and SF white blood cell count. CONCLUSION: Our findings suggest that endothelial cell activation and E-selectin may contribute to the development of inflammatory processes.

Adult↗

Recurrent cutaneous necrotizing eosinophilic vasculitis. A novel eosinophil-mediated syndrome.

BACKGROUND AND DESIGN: Review of skin biopsy specimens showing necrotizing vasculitis revealed three patients with small dermal vessel eosinophilic vasculitis and common clinical features characterized by glucocorticoid responsive pruritic erythematous, purpuric papules and angioedema associated with peripheral blood eosinophilia. Indirect immunofluorescent localization of eosinophil granule proteins, neutrophil granule proteins, and mast cell tryptase, electron-microscopic evaluation and immunoperoxidase staining for vascular cell adhesion molecule type 1, intercellular adhesion molecule type I, endothelial-leukocyte adhesion molecule type 1, and very-late activation antigen type 4 were performed. Eosinophil-active cytokines in serum were evaluated by an eosinophil survival assay. OBSERVATIONS: Eight skin biopsy specimens from the three patients all showed small-vessel necrotizing vasculitis with exclusive eosinophil infiltration. Ultrastructural study demonstrated degenerating eosinophils and eosinophil granules in proximity to damaged endothelium. The affected small vessels showed marked deposition of the toxic eosinophil granule major basic protein in the vessel walls and expression of vascular cell adhesion molecule type 1 and intercellular adhesion molecule type 1 on the endothelium with adherence of very-late activation antigen type 4-positive eosinophils; E-selectin staining was negative. The presence of interleukin 5 in serum available from one patient was detected by an eosinophil survival assay. CONCLUSIONS: We studied three patients whose cutaneous lesions showed small-vessel eosinophilic vasculitis and who presented with recurrent glucocorticoid-responsive pruritic purpuric papules and angioedema. The presence of eosinophil-active cytokines in serum and the expression of vascular cell adhesion molecule type 1 on the endothelium of affected vessels may contribute to the selective adherence and localization of activate eosinophils. Subsequent release of cytotoxic proteins such as major basic protein may result in destruction of the endothelium in this unique syndrome.

Adolescent↗

Kinetic expression of endothelial adhesion molecules and relationship to leukocyte recruitment in two cutaneous models of inflammation.

BACKGROUND: Adhesive interactions between circulating leukocytes and endothelium is requisite for subsequent leukocyte extravasation at inflammatory sites. These adhesive events are mediated by a repertoire of proteins and carbohydrate moieties on both leukocyte and endothelial membranes. Understanding the kinetic expression of these adhesion molecules during an inflammatory cascade in vivo is important for the design and testing of rational therapeutic approaches directed at the blockade of adhesion molecule function in inflammatory disease. EXPERIMENTAL DESIGN: Two cutaneous inflammatory models were examined using healthy rhesus monkeys. Acute cutaneous injury was studied during a 72-hour period by intradermal injection of endotoxin (lipopolysaccharide) and subsequent biopsy. These tissues were then compared with those obtained from a cutaneous delayed-type hypersensitivity reaction (DHR), elicited by intradermal injections of mammalian tuberculin in sensitized animals and followed for up to 11 days. Expression of E-selectin, P-selectin, VCAM-1, and ICAM-1 was assessed using immunohistochemistry and compared with leukocyte localization and immunohistochemical expression of interleukin (IL) 1, IL-8 and tumor necrosis factor-alpha (TNF-alpha). Finally, relevant adhesion ligands on leukocytes were assessed using flow cytometry. RESULTS: The lipopolysaccharide model was characterized by early (0.5 hours) and sustained (up to 72 hours) expression of E-selectin on the superficial dermal vasculature, with maximal expression by 8 hours. The expression of VCAM-1 was either not detected or minimal. Neutrophil localization, as detected by elastase immunoreactivity, paralleled E-selectin expression with a 4- to 12-hour lag phase, being maximal by 24 hours. In contrast, DHR was characterized by the dual asynchronous expression of both E-selectin and VCAM-1. Localization of CD2+ lymphocytes, representing the predominant cell type recruited, kinetically followed the expression of E-selectin and VCAM-1, being maximal in number at approximately 48 hours after peak expression of both of these endothelial proteins. Neutrophil recruitment in lipopolysaccharide-induced injury was associated with immunohistochemical localization of TNF-alpha, IL-1, and IL-8, whereas only TNF-alpha was consistently detected in DHR. During DHR, blood lymphocyte expression of L-selectin, VLA-4 (CD49d; alpha chain), and lymphocyte function-associated antigen 1 (both CD11a (alpha chain) and CD18 (beta chain)) did not change. CONCLUSIONS: The results from this study demonstrate that cutaneous inflammatory infiltrates of varying cellular compositions are associated temporally and spatially with unique patterns of endothelial adhesion molecule and cytokine expression.

Animals↗

Soluble E-selectin is found in supernatants of activated endothelial cells and is elevated in the serum of patients with septic shock.

A quantitative sandwich ELISA for E-selectin in the fluid phase (soluble E-selectin, sEs) has been developed that is sensitive to 100 pg/ml. The assay shows no reactivity with either L- or P-selectins. We have used this to determine the fate of E-selectin after cell-surface expression and to test whether levels measured in vivo may represent the state of endothelial activation. E-selectin was first detectable in supernatants of IL-1-stimulated endothelial cells at 24 h, and increased slowly up until 72 h. However, over this time period the total E-selectin detectable in the system (cells plus supernatants) declined dramatically. 125I-surface-labeled endothelial cells cultured for 24 h show an E-selectin of reduced m.w. in the supernatant, indicating that the molecule is shed from the surface. The shed form also appears to be slightly smaller than the intact membrane form as determined from immunoprecipitation and molecular sieving studies. In addition, the cytoplasmic domain of the molecule found in supernatants of activated endothelial cells and in serum is not intact as determined by loss of reactivity with an antipeptide antibody specific for the cytoplasmic domain. We have examined the sera of 71 normal individuals. Without exception, sEs was found in serum in the range of 0.13 to 2.8 ng/ml, suggesting that even in the absence of overt inflammatory processes E-selectin is being synthesized and released into the bloodstream. In addition, bacteremic patients with hypotension, but not those without, showed markedly elevated sEs values. As determined by cell-binding studies, the blood-derived form of E-selectin is biologically active.

Adult↗

Identical expression of ELAM-1, VCAM-1, and ICAM-1 in sarcoidosis and usual interstitial pneumonitis.

Extravasation of leucocytes in tissues is mediated by leucocyte-endothelial cell interactions in which adhesion molecules play an important role. Until now, two pathways have been unravelled, i.e., the LFA-1/ICAM-1 and the VLA-4/VCAM-1 pathways. ELAM-1 has been shown to be involved in granulocyte accumulation and recently also in lymphocyte migration. The role of HECA-452 is under investigation. In this study we have investigated the expression of the above-mentioned adhesion molecules in lung tissue of patients with pulmonary sarcoidosis and usual interstitial pneumonitis (UIP), and in mediastinal lymph nodes of patients with sarcoidosis. ICAM-1 (CD54) was broadly distributed on the endothelium of all the vessels found in sarcoidosis and UIP. VCAM-1 was present on the endothelium of the venules, capillaries, and arterioles in both sarcoidosis and UIP. ELAM-1 reacted with endothelial cells lining venules and capillaries in chronic progressive sarcoidosis and in the active phase of UIP but not in the stationary phases of both diseases. HECA-452 activity could be detected only on high endothelial venules within sarcoid lymph nodes. In lung tissues, macrophages bearing the ICAM-1 antigen were present in sarcoid tissue but not in the interstitium and alveolar space of UIP. LFA-1 (CD11a/CD18) and VLA-4 (CD49d/CD29) were present on all leucocytes found but seemed to be more highly expressed on lymphocytes in sarcoidosis. These findings suggest that the LFA-1/ICAM-1 and VLA-4/VCAM-1 pathways are involved in leucocyte migration in both types of lung disease, while in the active phases of sarcoidosis and UIP, ELAM-1 is also involved.

Adult↗

Circulating adhesion molecules in disease.

The demonstration of soluble isoforms of adhesion molecules has added a layer of complexity of our understanding of lymphoid-endothelial cell interactions. This is especially true in the light of observations which show levels of these isoforms to be raised during disease processes. Here, Andrew Gearing and Walter Newman review the evidence that increased levels of circulating, soluble adhesion molecules may be a key to understanding the prognosis and pathology of certain diseases.

Cell Adhesion Molecules↗

Serum ELAM-1 is increased in vasculitis, scleroderma, and systemic lupus erythematosus.

OBJECTIVE: To investigate the state of endothelial cell activation in vasculitis, scleroderma, and systemic lupus erythematosus (SLE). METHODS: We used a sandwich ELISA to quantitate a soluble form of endothelial leukocyte adhesion molecule-1 (sELAM) in serum. RESULTS: sELAM was detected in serum from healthy individuals (mean 0.92 ng/ml). Levels were significantly higher in patients with giant cell arteritis (mean 2.04 ng/ml), polyarteritis nodosa (mean 2.08 ng/ml), scleroderma (mean 2.27 ng/ml), and SLE (mean 3.93 ng/ml). Elevated values were present in patients with both active and inactive disease. sELAM levels of > 3 ng/ml identified most patients with recent onset or active disease. CONCLUSION: Our findings may reflect a low degree of endothelial cell activation in healthy persons that is increased in inflammatory diseases involving blood vessels. Elevated serum sELAM levels may reflect ongoing inflammatory processes in these diseases.

Adolescent↗

Expression of VCAM-1 and E-selectin in an in vivo model of endothelial activation.

Vascular cell adhesion molecule 1 (VCAM-1) and E-selectin (or endothelial-leukocyte adhesion molecule 1) are inducible endothelial cell adhesion molecules that play a role in the recruitment of leukocytes into sites of inflammation. Information about the spatial and temporal pattern of induced expression of these leukocyte adhesion molecules in vivo is limited. This study reports the expression profile of VCAM-1 and E-selectin in various mouse tissues after lipopolysaccharide administration. Using rat complementary DNA probes for VCAM-1 and E-selectin, Northern blot analysis showed a marked increase in transcript levels for both adhesion molecules in lung, heart, and kidney. Maximal transcript levels for both VCAM-1 and E-selectin were observed at 3-6 hours and declined to low, constitutive levels of expression at 48 hours. Consistent with the Northern blot results, immunoperoxidase analysis revealed focal endothelial cell expression of VCAM-1 in control animals. Following lipopolysaccharide administration, VCAM-1 expression increased dramatically in all vascular beds examined, although the response was heterogeneous. Widespread induced expression of VCAM-1 on cells other than vascular endothelium was not seen. Neither basal nor induced expression correlated with leukocyte adhesion. Signals other than the expression of endothelial leukocyte adhesion molecules are required in vivo for leukocyte infiltration in this murine model of systemic endothelial activation.

Amino Acid Sequence↗

Multi-recognition capability of E-selectin in a dynamic flow system, as evidenced by differential effects of sialidases and anti-carbohydrate antibodies on selectin-mediated cell adhesion at low vs. high wall shear stress: a preliminary note.

E-selectin has a "multi-recognition" capability in terms of epitope binding specificity, depending on adhesion conditions (static vs. low- or high-shear stress dynamic systems). Specifically, (i) adhesion based on expression of alpha 2-->3 sialylated Le(x) (SLe(x)) is prominent under static or low shear stress dynamic conditions; (ii) adhesion under high shear stress dynamic conditions does not depend on the known SLe(x) species, but rather on Lex with an adjacent unidentified sialosyl substitution, which shows different susceptibility to sialidases and antibodies compared to known SLe(x).

Antibodies, Monoclonal↗

CD31 expressed on distinctive T cell subsets is a preferential amplifier of beta 1 integrin-mediated adhesion.

The CD31 (platelet endothelial cell adhesion molecule-1 [PECAM-1]/endothelial cell adhesion molecule [endoCAM]) molecule expressed on leukocytes, platelets, and endothelial cells is postulated to mediate adhesion to endothelial cells and thereby function in immunity, inflammation, and wound healing. We report the following novel features of CD31 which suggests a role for it in adhesion amplification of unique T cell subsets: (a) engagement of CD31 induces the adhesive function of beta 1 and beta 2 integrins; (b) adhesion induction by CD31 immunoglobulin G (IgG) monoclonal antibodies (mAbs) is sensitive, requiring only bivalent mAb; (c) CD31 mAb induces adhesion rapidly, but it is transient; (d) unique subsets of CD4+ and CD8+ T cells express CD31, including all naive (CD45RA+) CD8 T cells; and (e) CD31 induction is selective, inducing adhesive function of beta 1 integrins, particularly very late antigen-4, more efficiently than the beta 2 integrin lymphocyte function-associated antigen-1. Conversely, CD3 is more effective in inducing beta 2-mediated adhesion. Taken together, these findings indicate that unique T cell subsets express CD31, and CD31 has the capacity to induce integrin-mediated adhesion of T cells in a sensitive and selective fashion. We propose that, in collaboration with other receptors/ligands, CD31 functions in an "adhesion cascade" by amplifying integrin-mediated adhesion of CD31+ T cells to other cells, particularly endothelial cells.

Antibodies, Monoclonal↗

IL-4 induces adherence of human eosinophils and basophils but not neutrophils to endothelium. Association with expression of VCAM-1.

The present studies were performed to explore potentially selective mechanisms of leukocyte adhesion in an attempt to understand how preferential recruitment of eosinophils and basophils might occur during allergic and other inflammatory reactions. Stimulation of human vascular endothelial cells for 24 h with IL-4 (30 to 1,000 U/ml) induced adhesion for eosinophils (up to approximately four-fold of control) and basophils (up to approximately twofold of control) but not neutrophils (less than 125% of control). Analysis of endothelial expression of adhesion molecules by flow cytometry revealed that IL-4 treatment induced vascular cell adhesion molecule-1 (VCAM-1) expression without significantly affecting the expression of other adhesion molecules, namely endothelial-leukocyte adhesion molecule-1 (ELAM-1) or intercellular adhesion molecule-1 (ICAM-1). The concentration-response curve for IL-4-induced VCAM-1 expression paralleled that for adhesion. Endothelial cells stimulated with IL-4 expressed adhesive properties for eosinophils by 3 h; the response increased steadily during a 24-h time course study. Eosinophils and basophils adhered to plates coated with a recombinant form of VCAM-1. This adhesion was blocked with antibodies to VCAM-1 but not ELAM-1. mAb directed against either VCAM-1 or VLA-4 inhibited (by approximately 75%) the binding of eosinophils and basophils to IL-4-stimulated endothelial cells. Because VLA-4 and VCAM-1 have been demonstrated to bind to each other in other adhesion systems, these results suggest that IL-4 stimulates eosinophil and basophil adhesion by inducing endothelial cell expression of VCAM-1 which binds to eosinophil and basophil VLA-4. The lack of expression of VLA-4 on neutrophils and the failure of IL-4 to stimulate neutrophil adherence support this conclusion. It is proposed that local release of IL-4 in vivo in allergic diseases or after experimental allergen challenge may partly explain the enrichment of eosinophils and basophils (vs neutrophils) observed in these situations.

Antibodies, Monoclonal↗

Inhibition of selectin-dependent tumor cell adhesion to endothelial cells and platelets by blocking O-glycosylation of these cells.

Expression of sialosyl-Le(x) (SLe(x)) and sialosyl-Le(a) (SLe(a)) on tumor cell lines HL60, Colo205, and U937 was greatly suppressed by application of benzyl-alpha-GalNAc for inhibition of O-linked carbohydrate chain extension, which resulted in reduced adhesion of tumor cells to activated endothelial cells or platelets mediated by ELAM-1 (E-selectin) or GMP-140 (P-selectin). Inhibitors or modifiers of N-glycosylation had no effect on expression of SLe(x) or SLe(a) in these tumor cells. These findings suggest the possibility that targeting of O-glycosylation inhibitors or modifiers to tumor cells may effectively suppress metastatic potential.

Acetylgalactosamine↗

Crosslinking of the T cell-specific accessory molecules CD7 and CD28 modulates T cell adhesion.

Regulated adhesion enables T cells to migrate through tissue and transiently interact with an endless succession of cells. Monoclonal antibody (mAb) engagement of the CD3/T cell receptor (TCR) complex results in a rapid and transient augmentation of the adhesion function of LFA-1 and VLA integrin molecules on human T cells. We show in this study that mAb crosslinking of the T cell-specific accessory molecules CD7 and CD28, or treatment with the Ca2+ ionophore A23187, results in the rapid induction of integrin-mediated adhesion to three distinct ligands: the extracellular matrix protein fibronectin, and the cell surface molecules ICAM-1 and VCAM-1. Like CD3 crosslinking, increased adhesion via CD7 and CD28 crosslinking appears to involve both protein kinase C (PKC) and cAMP-dependent protein kinases. In contrast, A23187 induction of adhesion is unaffected by PKC inhibitors. CD7 is preferentially expressed on naive T cells and is unique in being a potent inducer of naive T cell adhesion. Enhanced expression/function of adhesion-inducing molecules thus overcomes relative deficits in adhesion receptor expression.

Antibodies, Monoclonal↗

Lymphocyte interactions with endothelial cells.

Adhesion of lymphocytes to endothelium is vital to lymphocyte migration into lymphoid tissue and into inflammatory sites. In this review, Yoji Shimizu and colleagues identify the molecules that mediate lymphocyte-endothelial cell adhesion, describe the underlying principles of lymphocyte migration, and discuss a model of the sequence of events that allow a lymphocyte to successfully attach to endothelium and migrate into the surrounding tissue.

Cell Adhesion Molecules↗

Identification of anti-CD3 antibodies that do not modulate antigen but induce mitogenesis and block the mixed lymphocyte reaction.

Using a panel of anti-CD3-TCR monoclonal antibodies (OKT3 A-E), it appears possible to separate the ability to cause surface antigen modulation from inhibition of MLR or induction of mitosis. OKT3D, an antibody that recognizes the CD3 antigen at a site that can be differentiated from the epitopes recognized by other members of this panel by competition binding, does not cause antigen modulation when incubated with human T cells for up to 3 days. Despite this, OKT3D is mitogenic and is capable of blocking MLR. Two different isotypes were produced from the OKT3D clone, IgG1 and IgG2b. The IgG2b isotype of OKT3D blocked MLR even in individuals unable to respond mitogenically to this antibody. Use of members of this panel may now permit dissection of the types of signals delivered by the CD3-TCR complex inducing mitosis, receptor modulation, and other T-cell responses.

Animals↗