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Biomedical subjects

E C Butcher

Publications and source records attributed to E C Butcher.

At least 73 records · Page 4Linked to original sources

Function of lymphocyte homing-associated adhesion molecules on human natural killer and lymphokine-activated killer cells.

We have analyzed the ability of fresh and rIL-2-activated human NK cells to interact with high endothelial venules (HEV) that are known to support physiologic lymphocyte extravasation, and examined the role of different adhesion molecules in this process. In in vitro HEV-binding assays, NK cells bound to both peripheral lymph node (pLN) and mucosal HEV. Activation by rIL-2 slightly decreased adherence to pLN HEV, but increased adherence to mucosal high endothelium. Markedly fewer NK cells than PBL expressed L-selectin, and the expression was diminished further upon treatment with rIL-2. Inhibition studies showed, however, that L-selectin was the most important single molecule to mediate adhesion to pLN HEV. Binding to mucosal HEV was mediated mainly by CD44 and alpha 4 integrin, and the expression level of these molecules was increased by rIL-2, paralleling the results in HEV-binding assays. Higher m.w. forms of CD44, representing differentially glycosylated/variant forms of CD44, were more abundant on large granular lymphocytes than on unseparated PBL. We conclude that, despite weak recirculatory capacity, NK cells or a subpopulation of NK cells with the correct adhesion molecules can interact with and bind to high endothelial cells. Lymphokines can modulate the expression of adhesion molecules that NK cells utilize for HEV binding. Our results suggest that activation of NK cells with IL-2 may facilitate the extravasation of lymphokine-activated killer cells, especially to mucosal sites, whereas homing to peripheral lymphoid tissues may be diminished. This should be taken into consideration when procedures for lymphokine-activated killer cell immunotherapy are planned.

Endothelium, Lymphatic↗

Homing potentials of circulating lymphocytes in humans depend on the site of activation: oral, but not parenteral, typhoid vaccination induces circulating antibody-secreting cells that all bear homing receptors directing them to the gut.

Specific Ab-secreting cells (ASC) appear in the human blood as a response to oral and parenteral vaccination. The actual contribution of these cells to the defense of the body depends on their final effector site. The homing potentials of mucosally and parenterally induced ASC were compared by examining the homing receptor (HR) expression of circulating specific ASC in the blood of volunteers vaccinated orally or parenterally with the same Ag, Salmonella typhi Ty21a. Circulating lymphocytes were separated into receptor-positive and -negative populations, and the numbers of specific ASC were assayed. The alpha4 beta7 integrin, which acts as a gut HR, was expressed on all (99%) of the mucosally activated ASC, but on only 58% of the parenterally induced ASC or 58% of all Ig-secreting cells of the unvaccinated controls. L-selectin, the peripheral lymph node HR, showed an inverse distribution; it was found on 42% of mucosally activated ASC and on 86% of parenterally induced ASC. These results reveal that all of the circulating ASC after oral vaccination are committed to migrate to the mucosal compartment of the immune system, strongly arguing for a recirculation of activated mucosal cells in humans. By contrast, ASC induced by parenteral vaccination with the same Ag are mostly directed to the systemic compartment, yet a part of them has mucosal homing attitudes as well. These differences indicate that the site of Ag encounter determines the homing potential of the cell.

Administration, Oral↗

Genetic defect in T lymphocyte-specific homing into peripheral lymph nodes.

Lymphocytes circulating in the bloodstream home into lymph nodes (LN). T cells predominate in peripheral LN (PLN) and B cells in spleen or mucosal tissue, e.g. Peyer's patches (PP). DDD/1 mice are unique in marked paucity of LN cells, especially T cells. T cell frequency in PLN was 20-40% in this strain, compared to 60-80% in others. Immunohistochemistry confirmed the low density of T cells in the subcortical area but normal colonization of B cells in cortical area in PLN of DDD/1. In contrast, the T cell content of peripheral blood and spleen was higher in DDD/1 but that in PP was not significantly different compared to other strains. It was thus concluded that this abnormality in DDD/1 results from a homing defect of T cells into PLN but not from lymphopenia. Genetical analysis showed that the defect in T cell-specific homing was regulated by a single autosomal recessive gene, tentatively designated plt (paucity of lymph node T cells). Reciprocal bone marrow transplantation indicated that the plt phenotype may arise from some defect in PLN stroma but not in lymphocytes. An in vivo homing assay using fluorescence-labeled lymphocytes demonstrated that the homing defect was specific for T cells but not for B cells. A Stamper-Woodruff assay revealed that the binding between lymphocytes and PLN high endothelial venules was normal and that L-selectin and its ligand, peripheral node vascular addressin (PNAd), were expressed and functioned normally in DDD/1. These results taken together indicate that the T cell-specific homing into PLN is disturbed at a post-adhesion stage in DDD/1. The product of the plt locus may play a pivotal role at this stage.

Animals↗

RANTES stimulation of T lymphocyte adhesion and activation: role for LFA-1 and ICAM-3.

The chemokine RANTES is a potent chemoattractant and activator of T lymphocytes. Mechanisms underlying the RANTES-induced activation of T lymphocytes leading to adhesion and migration have not been fully analyzed. We investigate here the function of RANTES in the regulation of T cell adhesion, specifically the induction of homotypic aggregation. RANTES induced the expression of many important cell surface adhesion and activation receptors in a normal human T cell clone and peripheral blood T lymphocytes, including members of the beta 1 and beta 2 integrin family, CD44, CD50, and CD28. Up-regulation of these markers correlated with RANTES-stimulated homotypic adhesion of T cells. This homotypic aggregation event was RANTES dose-dependent, prolonged, and pertussis toxin-independent, but herbimycin A-sensitive, suggesting that it involves signaling through alternative (G alpha i protein-independent) pathways. Using specific monoclonal antibodies, the homotypic aggregation event was shown to be lymphocyte function-associated antigen-1 (LFA-1)-dependent, with no observable interaction through alpha 4 or beta 1 integrins. Intercellular adhesion molecule-3 (ICAM-3) and possibly ICAM-1 participate as LFA-1 ligands. Additionally, RANTES phosphorylated the beta chain of LFA-1 1-2 min following stimulation. These results imply a specific role for the chemokine RANTES in T cell activation and intercellular adhesion.

Antibodies, Monoclonal↗

Chemoattractant receptor cross talk as a regulatory mechanism in leukocyte adhesion and migration.

Leukocytes express multiple chemoattractant receptors that can trigger adhesion and direct their migration. Regulation of such proadhesive and migratory responses must often occur in a complex cytokine milieu in vivo, in which multiple receptors may be engaged simultaneously or sequentially, Here we have examined the interplay between interleukin-8 (IL-8) receptor and formyl peptide receptor (fPR)-stimulation and its consequences for leukocyte adhesion and chemotactic responses. IL-8 has no significant effect on fMLP-stimulated adhesion and migration of human neutrophils, indicating that leukocytes have the potential to respond to sequential proadhesive and chemoattractant stimuli during homing and targeted migration. In contrast, fMLP at > or = 10 nM totally abrogated proadhesive and chemoattractant responses to IL-8, a trnas effect to which the fPR itself is relatively resistant. N-formyl peptides are released by invasive bacteria and lysed cells, and the dominance of the fPR may ensure that signals from these terminal phagocyte targets can override host-derived recruitment signaling through IL-8 and other chemokine receptors. Asymmetric inhibition of adhesion-triggering responses is also observed in lymphoid cells transfected with IL-8 receptor A and fPR, but in this cellular context chemotactic responses are bidirectionally abrogated, suggesting the potential for downstream desensitization of motility programs as well. Cross talk between chemoattractant receptors and their signaling pathways may help target leukocyte migration in the context of complex chemoattractant arrays in vivo.

Antigens, CD↗

Alpha 4 beta 7 integrin expression is associated with the leukemic evolution of human and murine T-cell lymphoblastic lymphomas.

We have previously shown that the in vivo coordinated expression of individual alpha 4 and beta 7 integrin chains correlated with the leukemic potential displayed by cell lines derived from murine lymphoblastic T-cell lymphomas (T-LBLs) when transplanted subcutaneously into syngeneic AKR mice. In the present study, by using immunofluorescence and immunocytochemical analyses, we have confirmed that the in vivo up-regulation of the alpha 4 beta 7 heterodimeric complex is associated with the leukemic behavior of AKR T-LBLs. In addition, when compared with the parental, highly leukemic NQ22 cells, the variant cell line NQ22V exhibited a reduced leukemic potential that was invariably associated with a delayed alpha 4 beta 7 up-regulation in vivo Moreover, the leukemic cell line SJ-1, derived from a spontaneous T-LBL of the SJL strain, also displayed high levels of alpha 4 beta 7 expression with a pattern of tissue distribution similar to that of NQ22 cells from leukemic AKR animals. Of note, in most of the tissues involved by murine T-LBL dissemination, and particularly in liver, kidney, and lung, alpha 4 beta 7-positive leukemic cells were always located around strongly VCAM-1-positive vascular spaces. These findings are consistent with a possible role of alpha 4 beta 7/VCAM-1 interactions in the extravasation and, consequently, in the leukemic dissemination of murine T-LBL cells. Immunocytochemical analysis carried out in 11 human T-LBLs showed that pathological lymph nodes from all 7 cases with bone marrow infiltration at presentation carried alpha 4 beta 7-positive cells, whereas all 4 aleukemic T-LBLs were repeatedly alpha 4 beta 7 negative, also in metachronous lesions. These findings suggest that alpha 4 beta 7-positive human T-LBLs may represent a distinct clinicopathological entity. In addition, alpha 4 beta 7 expression was significantly more prevalent in younger patients (< 11 years; P = 0.02), further supporting such a hypothesis. Moreover, as in murine T-LBLs, the pattern of alpha 4 beta 7 positivity in involved lymph nodes was mainly focal, whereas nearly all neoplastic cells infiltrating bone marrow expressed this integrin, suggesting a possible role for alpha 4 beta 7 in the leukemic dissemination also of human T-LBLs.

Adolescent↗

Human mucosal addressin cell adhesion molecule-1 is preferentially expressed in intestinal tract and associated lymphoid tissue.

Lymphocyte homing to normal tissues and recruitment to inflammatory tissue sites are controlled, in part, by the selective expression of chemokines, pro-inflammatory cytokines and mediators, and various adhesion proteins and molecules. In the mouse, mucosal addressin cell adhesion molecule-1 (MAdCAM-1) is selectively expressed on endothelium of high endothelial venules in gut and gut-associated lymphoid tissue. By interaction with its integrin ligand, alpha 4 beta 7, lymphocytes presumed to be involved in mucosal immunity are selectively recruited to these intestinal sites. After generating monoclonal antibodies against a murine cell line expressing recombinant human MAdCAM-1, we qualitatively and semiquantitatively assessed MAdCAM-1 expression in human tissue sections from various normal and inflammatory disorders. We found that human MAdCAM-1, as in the mouse, is expressed in a tissue-selective manner. In normal tissues, MAdCAM-1 is constitutively expressed to endothelium of venules of intestinal lamina propria. Interestingly, using computer-assisted morphometric analysis, the proportion of venular endothelium within lamina propria that expresses MAdCAM-1 is increased, compared with normal tissues, at inflammatory foci associated with ulcerative colitis and Crohn's disease. Moreover, for the most part, MAdCAM-1 is not detected in the majority of normal or inflamed extra-intestinal tissues, including those with mucosal surfaces. These results are consistent with a role, as originally defined in the mouse, for human MAdCAM-1 in the localization of alpha 4 beta 7+ lymphocytes in the gastrointestinal tract and associated lymphoid tissue. As such, the pathway defined by MAdCAM-1/alpha 4 beta 7 may be a relevant tissue-specific therapeutic target for the modulation of inflammatory bowel disease activity.

Animals↗

A developmental switch in lymphocyte homing receptor and endothelial vascular addressin expression regulates lymphocyte homing and permits CD4+ CD3- cells to colonize lymph nodes.

IN adult mice, the dominant adhesion molecules involved in homing to lymph nodes are L-selectin homing receptors on lymphocytes and the peripheral lymph node addressins on specialized high endothelial venules. Here we show that, from fetal life through the first 24 hr of life, the dominant adhesion molecules are the mucosal addressin MAdCAM-1 on lymph node high endothelial venules and its counterreceptor, the Peyer's patch homing receptor, integrin alpha 4 beta 7 on circulating cells. Before birth, 40-70% of peripheral blood leukocytes are L-selectin-positive, while only 1-2% expresses alpha 4 beta 7. However, the fetal lymph nodes preferentially attract alpha 4 beta 7-expressing cells, and this can be blocked by fetal administration of anti-MAdCAM-1 antibodies. During fetal and early neonatal life, when only MAdCAM-1 is expressed on high endothelial venules, an unusual subset of CD4 + CD3- cells, exclusively expressing alpha 4 beta 7 as homing receptors, enters the lymph nodes. Beginning 24 hr after birth a developmental switch occurs, and the peripheral node addressins are upregulated on high endothelial venules in peripheral and mesenteric lymph nodes. This switch in addressin expression facilitates tissue-selective lymphocyte migration and mediates a sequential entry of different cell populations into the lymph nodes.

Animals↗

Functional cloning of the cDNA for a human hyaluronan synthase.

Hyaluronan is a constituent of the extracellular matrix of connective tissue and is actively synthesized during wound healing and tissue repair to provide a framework for ingrowth of blood vessels and fibroblasts. Changes in the serum concentration of hyaluronan are associated with inflammatory and degenerative arthropathies such as rheumatoid arthritis. In addition, hyaluronan has been implicated as an important substrate for migration of adhesion of leukocytes during inflammation. A human hyaluronan synthase (HuHAS1) cDNA was isolated by a functional expression cloning approach. Transfection of CHO cells conferred hyaluronidase-sensitive adhesiveness of a mucosal T cell line via the lymphocyte hyaluronan receptor, CD44, as well as increased hyaluronan levels in the cultures of transfected cells. The HuHAS1 amino acid sequence shows considerable homology to the hasA gene product of Streptococcus pyogenes, a glycosaminoglycan synthetase from Xenopus laevis (DG42), and is the human homolog of a recently described murine hyaluronan synthase.

Amino Acid Sequence↗

A fundamental subdivision of circulating lymphocytes defined by adhesion to mucosal addressin cell adhesion molecule-1. Comparison with vascular cell adhesion molecule-1 and correlation with beta 7 integrins and memory differentiation.

The leukocyte integrin alpha 4 beta 7 is a receptor for the vascular mucosal addressin cell adhesion molecule-1 (MAdCAM-1). Most circulating B and T lymphocytes in man are alpha 4+, and on these cells the regulated display of the beta 7 integrin chain determines the expression of alpha 4 beta 7 and, in large part, binding to MAdCAM-1. Among CD4+ T cells, beta 7 high memory cells (including the L-selectin+ subset) bind MAdCAM-1 better than beta 7int naive cells; whereas beta 7- memory cells,including skin homing lymphocytes, interact poorly if at all. Circulating alpha E beta 7+ T cells are alpha 4 beta 7high and also bind MAdCAM-1 well. B cells are also subdivided by beta 7 expression, and beta 7+ B cells bind MAdCAM-1 better than the beta 7low/- subset. The related vascular ligand vascular cell adhesion molecule-1 (VCAM-1), expressed on endothelium primarily in nonmucosal sites of inflammation, interacts with blood lymphocytes (including beta 7high T cells) almost exclusively via alpha 4 beta 1 and binds beta 7low/-(beta 1high) better than beta 7+ B cells and memory cells better than naive CD4+ cells. beta 7-(beta 1high) memory T cells are somewhat enriched over beta 7high memory cells at low (but not at high) VCAM-1 densities. Interestingly, CD56+ NK cells, which express both alpha 4 beta 7 and alpha 4 beta 1, bind well to VCAM-1 but poorly to MAdCAM-1. The findings indicate that the display and function of alpha 4 beta 7 determine integrin-dependent blood lymphocyte interactions with MAdCAM-1, thus delineating discrete mucosal vs nonmucosal lymphocyte populations in vivo; that alpha 4 beta 1 dominates blood lymphocyte interactions with VCAM-1; and that quantitative and qualitative regulation of MAdCAM-1 vs VCAM-1 can critically control the recruitment of specialized lymphocyte subsets during inflammation.

Adult↗

CD34-deficient mice have reduced eosinophil accumulation after allergen exposure and show a novel crossreactive 90-kD protein.

CD34 is expressed on the surface of hematopoietic stem/progenitor cells, stromal cells, and on the surface of high-endothelial venules (HEV). CD34 binds L-selectin, an adhesion molecule important for leukocyte rolling on venules and lymphocyte homing to peripheral lymph nodes (PLN). We generated CD34-deficient mutant animals through the use of homologous recombination. Wild-type and mutant animals showed no differences in lymphocyte binding to PLN HEV, in leukocyte rolling on venules or homing to PLN, in neutrophil extravasation into peritoneum in response to inflammatory stimulus, nor in delayed type hypersensitivity. Anti-L-selectin monoclonal antibody (MEL-14) also inhibited these immune responses similarly in both CD34-deficient and wild-type mice. However, eosinophil accumulation in the lung after inhalation of a model allergen, ovalbumin, is several-fold lower in mutant mice. We found no abnormalities in hematopoiesis in adult mice and interactions between mutant progenitor cells and a stromal cell line in vitro were normal. No differences existed in the recovery of progenitor cells after 5-fluorouracil treatment, nor in the mobilization of progenitor cells after granulocyte colony-stimulating factor treatment compared with wild-type animals. Surprisingly, although CD34 was not expressed in these mice, a portion of its 90-kD band crossreactive with MECA79 remained after Western blot. Thus, we have identified an additional molecule(s) that might be involved in leukocyte trafficking. These results indicate that CD34 plays an important role in eosinophil trafficking into the lung.

Allergens↗

Differential expression of homing molecules on recirculating lymphocytes from sheep gut, peripheral, and lung lymph.

The adhesion molecules integrin alpha 4 beta 7 and L-selectin have been hypothesized to help direct selective migration (homing) of lymphocytes to the gut and peripheral lymph nodes, respectively. An important prediction of current models is that lymphocytes selectively recirculating through an organ will preferentially express adhesion receptors for organ-specific endothelial ligands. To test this prediction, we directly examined the expression of cell adhesion molecules on lymphocytes recirculating through the gut, the periphery, and the lung. Integrin beta 7 was highly expressed on CD4+CD45R- "memory/effector" T cells recirculating through the gut (mesenteric efferent and lower thoracic duct lymph). In contrast, cells recirculating through the periphery (prescapular efferent lymph) and the lung (caudal mediastinal efferent lymph) had much less beta 7 expression. A similar pattern of organ-specific beta 7 expression was seen on B cells. Beta 7 expression corresponded with adhesion to the gut mucosal addressin, MAdCAM-1, in vitro. The peripheral lymph node homing receptor, L-selectin, was expressed at higher levels on CD4+CD45R- T cells from peripheral lymph than on cells from gut or lung lymph. These results provide additional strong support for alpha 4 beta 7 and L-selectin involvement in lymphocyte homing to the gut and to peripheral lymph nodes, respectively. Lymphocytes emigrating from the lung expressed low levels of both homing receptors and likely utilize molecules other than alpha 4 beta 7 and L-selectin for migration to the lung and associated lymphoid tissue.

Animals↗

Lymphocyte homing and homeostasis.

The integration and control of systemic immune responses depends on the regulated trafficking of lymphocytes. This lymphocyte "homing" process disperses the immunologic repertoire, directs lymphocyte subsets to the specialized microenvironments that control their differentiation and regulate their survival, and targets immune effector cells to sites of antigenic or microbial invasion. Recent advances reveal that the exquisite specificity of lymphocyte homing is determined by combinatorial "decision processes" involving multistep sequential engagement of adhesion and signaling receptors. These homing-related interactions are seamlessly integrated into the overall interaction of the lymphocyte with its environment and participate directly in the control of lymphocyte function, life-span, and population dynamics. In this article a review of the molecular basis of lymphocyte homing is presented, and mechanisms by which homing physiology regulated the homeostasis of immunologic resources are proposed.

Animals↗

Role of Rho in chemoattractant-activated leukocyte adhesion through integrins.

Heterotrimeric guanine nucleotide binding protein (G protein)-linked receptors of the chemoattractant subfamily can trigger adhesion through leukocyte integrins, and in this role they are thought to regulate immune cell-cell interactions and trafficking. In lymphoid cells transfected with formyl peptide or interleukin-8 receptors, agonist stimulation activated nucleotide exchange on the small guanosine triphosphate-binding protein RhoA in seconds. Inactivation of Rho by C3 transferase exoenzyme blocked agonist-induced lymphocyte alpha4beta1 adhesion to vascular cell adhesion molecule-1 and neutrophil beta2 integrin adhesion to fibrinogen. These findings suggest that Rho participates in signaling from chemoattractant receptors to trigger rapid adhesion in leukocytes.

Amino Acid Sequence↗

Structural requirements for mucosal vascular addressin binding to its lymphocyte receptor alpha 4 beta 7. Common themes among integrin-Ig family interactions.

The mucosal vascular addressin, MAdCAM-1, is an Ig family adhesion receptor preferentially expressed by venular endothelial cells at sites of lymphocyte extravasation in mucosal lymphoid tissues and lamina propria. MAdCAM-1 binds the lymphocyte homing receptor for Peyer's patches, the integrin alpha 4 beta 7. We describe a point mutation within the first Ig domain of MAdCAM-1 that abolishes activation-independent alpha 4 beta 7 binding. This point mutation resides within an eight-amino acid motif with homology to sequences important for the integrin binding ability of the related vascular Ig family members, ICAM-1 and VCAM-1. To understand the contributions of the individual MAdCAM-1 domains, chimeric exchanges with the beta 1 integrin ligand, ICAM-1, were made. The two N-terminal domains of MAdCAM-1 are sufficient to confer alpha 4 beta 7 binding comparable to that of native MAdCAM-1. A chimera containing only the N-terminal Ig domain (domain 1) of MAdCAM-1 can also bind (to a lesser extent) alpha 4 beta 7, but only after integrin (to a lesser extent) alpha 4 beta 7, but only after integrin activation. Conversely, the first domain of ICAM-1 appears sufficient to bind activated LFA-1. These data suggest that the first domain of MAdCAM-1 is sufficient for interaction with alpha 4 beta 7, but that sequences within the second domain support this interaction, either by providing additional contact points for integrin binding or by contributing to the conformation or presentation of the N-terminal domain. The second domain of MAdCAM-1 can also support activation-dependent LFA-1 binding to domain 1 of ICAM-1. The findings parallel studies of VCAM-1 binding to alpha 4 beta 1 and suggest that structural differences exist between vascular Ig-like ligands for alpha 4 vs beta 2 integrins.

Amino Acid Sequence↗

Distribution of alpha 4 beta 7 and alpha E beta 7 integrins on thymocytes, intestinal epithelial lymphocytes and peripheral lymphocytes.

Beta 7 is expressed on subsets of thymocytes, while T and B lymphocytes show heterogeneous expression of beta 7. Here, we examine the phenotype of the thymocyte and lymphocyte subsets which express alpha 4 beta 7 and alpha E beta 7 using mAb against alpha E, beta 7 and mAb DATK32 which recognizes a combinatiorial epitope on alpha 4 beta 7+ thymocytes have a mature phenotype: TcR+, CD11a(hi)CD44(hi)HSA(dull). Small subsets of double-negative CD4-CD8-, single-positive CD4+ and CD8+ thymocytes express beta 7, while double-positive CD4+CD8+ thymocytes are beta 7-. However, two integrins alpha E beta 7 and alpha 4 beta 7 recognized by anti-beta 7 are not expressed on an identical subpopulation of thymocytes, as alpha E beta 7+ alpha 4 beta 7-, alpha E beta 7 + alpha 4 beta 7+ and alpha E beta 7- alpha 4 beta 7+ thymocyte subsets are evident. Similarly, intraepithelial lymphocytes express high levels of alpha E beta 7 but little alpha 4 beta 7. In the spleen, Peyer's patches and lymph nodes, alpha 4 beta 7 is expressed at higher levels on most B lymphocytes than on the majority of T lymphocytes, while a small subset of T lymphocytes, which includes both CD4+ and CD8+ lymphocytes, express high levels of beta 7 in the form of alpha 4 beta 7 and alpha E beta 7, although, as observed with lymphocytes, not all alpha 4 beta 7 hi CD4+ lymphocytes expressed alpha 4 beta 7. The population of alpha 4 beta 7 hi CD4 lymphocytes are enriched in Peyer's patches and form subsets of the memory CD4+ lymphocyte population, which can be further subdivided on the basis of alpha E beta 7, L-selectin and alpha 4 expression. Therefore, memory CD4+ lymphocytes are highly heterogeneous in their expression of adhesion receptors, and presumably these subpopulations will exhibit very different trafficking properties.

Animals↗

Phenotype, and migration properties of three major subsets of tissue homing T cells in sheep.

T cells show a bias in their migration pathways: some T cells preferentially migrate to peripheral lymph nodes (LN), some to mucosal tissues, and some to peripheral tissues such as skin. These recirculation pathways were examined in sheep by collecting lymph draining into and out of peripheral and intestinal LN, and using fluorescent dyes to trace the recirculation of the lymph cells. Monoclonal antibodies (mAb) to alpha 4, beta 1, and beta 7 integrins, and L-selectin, were used to define three major populations of recirculating T cells. Naive-type T cells (L-selectin+, alpha 4 beta 1lo beta 7lo) migrated preferentially through peripheral LN. Two memory populations could be defined: alpha 4 beta 1hi beta 7- and alpha 4 beta 7hi beta 1lo. alpha 4 beta 1hi beta 7- T cells were present in lymph draining from the skin. T cells migrating preferentially through intestinal LN were alpha 4 beta 7hi beta 1lo. Consistent with this migration pattern, the endothelial receptor for alpha 4 beta 7, mucosal addressin cell adhesion molecule-1 (MAdCAM-1) was detected on high endothelial venules within intestinal LN and Peyer's patches, but only weakly on high endothelial venules within peripheral LN. Thus, there are at least three easily definable subsets of T cells, based on integrin expression, which show distinct migration preferences.

Animals↗

Peripheral lymphoid tissue-like adhesion molecule expression in nodular infiltrates in inflammatory myopathies.

Non-granulomatous nodular accumulations of inflammatory cells in inflammatory myopathies were studied to characterize adhesion mechanisms used for leukocyte recruitment. The nodules had a B-cell-rich center surrounded by a helper T-cell-rich peripheral zone, resembling lymph nodes. The T-cell-rich zones harbored high-walled venules resembling high endothelial venules (HEV), whose endothelia frequently expressed ICAM-1, VCAM-1, and less constantly E-selectin. This endothelial adhesion molecule profile differs from that found in polymyositis, inclusion body myositis, or dermatomyositis, but resembles that in lymphoid tissues. Also, the peripheral lymph node addressin, a vascular addressin specific for peripheral lymphoid tissue HEV, was present on many HEV. This adhesion system is probably responsible for the excessive lymphocyte recruitment. The similar cellular organization and lymphocyte recirculation mechanisms of the nodular infiltrates in muscle and of lymph nodes suggest that the former may also produce antibodies.

Adult↗