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B Holzmann

Publications and source records attributed to B Holzmann.

At least 37 records · Page 2Linked to original sources

Impact of experimental peritonitis on bone marrow cell function.

BACKGROUND: The effects of abdominal sepsis on the regulation of cell turnover in bone marrow and on the function of hematopoietic stem cells were investigated. METHODS: In a new mouse model of abdominal sepsis (colon ascendens stent peritonitis [CASP]) the proliferation, apoptosis, and colony-forming capacity of bone marrow cells were determined. RESULTS: Both experimental peritonitis and sham surgery increased proliferation of bone marrow cells significantly (P < .01). Incubation with granulocyte-macrophage colony-stimulating factor but not granulocyte colony-stimulating factor further augmented proliferation of bone marrow cells from septic mice. In contrast to cell proliferation, bone marrow cell apoptosis was significantly (P < .001) increased in response to CASP but not to sham surgery. CASP surgery and treatment of normal bone marrow cells with lipopolysaccharide, tumor necrosis factor-alpha, interleukin 1 beta, and interferon gamma increased the number of apoptotic cells to a similar extent. Stem cell assays revealed that during the late phase of peritonitis the colony formation by granulocytic-monocytic precursors was increased, whereas mature erythroid colony-forming cells were suppressed. Incubation of normal bone marrow cells with lipopolysaccharide and cytokines showed similar effects. CONCLUSIONS: These results reveal differential effects of experimental peritonitis on various hematopoietic lineages and suggest a potential role of inflammatory mediators for the dysregulation of bone marrow cell function during abdominal sepsis.

Animals↗

Mechanisms of acute inflammatory lung injury induced by abdominal sepsis.

Sequestration of neutrophils and release of histotoxic mediators are considered important for the development of pathologic alterations of the lung defined as adult respiratory distress syndrome. Mechanisms of inflammatory lung injury caused by abdominal sepsis were investigated using the colon ascendens stent peritonitis (CASP) model that closely mimics the human disease. In the CASP model, a continuous leakage of intraluminal bacteria into the peritoneal cavity is induced by implantation of a stent in the ascending colon, generating a septic focus. In contrast to the cecal ligation and puncture model of peritonitis, survival of mice following CASP surgery is dependent on IFN-gamma, but independent of tumor necrosis factor (TNF). Here we show that the systemic inflammation induced by CASP surgery results in a rapid and profound increase of lung vascular permeability that was associated with the activation and recruitment of neutrophils to the lung. Activation of circulating granulocytes was characterized by increased production of serine proteinases and reactive oxygen metabolites, as well as elevated expression of cell surface Mac-1. Expression of MIP-2, KC, MIP-1alpha and E-selectin mRNA in lung was strongly increased within 3 h following CASP surgery, whereas up-regulation of IP-10, MCP-1 and P-selectin was delayed. In contrast, induction of RANTES, LIX, ICAM-1 and VCAM-1 mRNA was weak or not detectable after CASP surgery. Importantly, recruitment of leukocytes to the lung was normal in lipopolysaccharide-resistant mice, and was not affected by antibody neutralization of TNF or the chemokines MIP-2 and KC.

Abdomen↗

Sequence motifs in the integrin alpha 4 cytoplasmic tail required for regulation of in vivo expansion of murine lymphoma cells.

The binding of integrins to cognate ligands is tightly controlled by intracellular signals. Conversely, integrin occupancy generates biochemical signals inside the cell. The present study examined whether concepts of integrin function established by in vitro analysis apply to regulation of receptor function in complex biologic settings in vivo using a mouse model of tumor metastasis. Integrin alpha 4 subunits were truncated at amino acid Gln1014 (A4-1014), preserving the conserved GFFKR motif, and at position Glu1021 (A4-1021). In vitro adhesion assays revealed that cytoplasmic tail truncations did not affect constitutive ligand binding of alpha 4 integrins, while agonist-induced adhesion was abolished by the alpha 4-1014, but not by the alpha 4-1021, mutation. Inducible ligand binding of alpha 4 integrins was dependent on cytoskeletal function, whereas constitutive adhesion was not. In vivo metastasis formation assays demonstrated that expansion of murine T lymphoma cells in spleen is strongly inhibited by the wild-type alpha 4 subunit and the alpha 4-1021 mutant. In contrast, the in vivo phenotype of alpha 4 integrin expression in lymphoma cells was completely abrogated by the alpha 4-1014 mutation. Cross-linking of alpha 4 integrins in vitro inhibited proliferation and induced apoptosis of LB cells expressing wild-type alpha 4 subunits or the alpha 4-1021 mutant, but not of LB-A4-1014 cells. In summary, these results demonstrate that sequence motifs regulating cytoskeleton-dependent alpha 4 integrin activation in vitro are essential for the control of LB lymphoma cell expansion both in vitro and in vivo.

Amino Acid Sequence↗

The human WD repeat protein WAIT-1 specifically interacts with the cytoplasmic tails of beta7-integrins.

Integrins of the beta7 subfamily, alpha4 beta7 and alphaE beta7, contribute to lymphocyte homing and to the development of protective or autoreactive immune responses at mucosal sites. The beta subunits of integrins are considered important for regulation of stimulated cell adhesion and adhesion-dependent signal transduction. Using a yeast interaction trap screen, a human WD repeat protein, termed WAIT-1, was isolated that interacts with the integrin beta7 cytoplasmic tail and is homologous to mouse EED and Drosophila ESC proteins. WAIT-1 also binds to the cytoplasmic domains of alpha4 and alphaE but not to those of integrin beta1, beta2, and alphaL subunits. Association of WAIT-1 and beta7-integrin was confirmed by coprecipitation from transiently transfected 293 cells. The binding site for WAIT-1 was mapped to a short membrane-proximal region of the beta7 cytoplasmic tail with Tyr-735 being of critical importance. Northern blot analysis revealed multiple WAIT-1-related transcripts with differential expression in circulating leukocytes, tissue-resident cells of diverse origin, and lymphoid malignancies. These results suggest that WAIT-1, together with the recently identified RACK1, may define a novel subfamily of WD repeat proteins that interact with distinct subsets of integrin cytoplasmic tails and may act as specific regulators of integrin function.

Amino Acid Sequence↗

Increased susceptibility to postoperative sepsis in patients with impaired monocyte IL-12 production.

IL-12 is a potent immunoregulatory cytokine that is essential for the development of protective immunity, as demonstrated by numerous animal models of infection. Here, we provide evidence for a critical role of IL-12 in human sepsis. The results of a prospective study of 184 patients undergoing major elective surgery of the upper and lower gastrointestinal tract revealed that, in contrast to patients showing uneventful recovery, monocyte IL-12 production was severely and selectively impaired in patients developing postoperative sepsis. Moreover, the extent of monocyte IL-12 suppression correlated with the severity of postoperative sepsis. Monocyte IL-12 secretion was suppressed before surgery and remained low until the onset of sepsis. Therefore, the suppression of IL-12 secretion preceded the onset of postoperative sepsis but did not occur as a consequence of major surgery. In contrast, IL-1beta production was only reduced during the late postoperative course in patients developing postoperative sepsis, and TNF-alpha release was even increased at different time intervals before the onset of sepsis. Thus, reduced IL-12 release does not reflect a general defect in monocyte cytokine production. Consequently, these results establish a critical role for IL-12 in early resistance to postoperative infection and may allow for the development of novel therapeutic strategies designed to stimulate host defense mechanisms and to reduce the incidence and severity of septic complications.

Aged↗

Dissemination capacity of murine lymphoma cells is not dependent on efficient homing.

The extravasation of normal lymphocytes from blood into tissues is controlled by adhesion molecules ("homing receptors") that mediate their interaction with endothelial cells. It is an intriguing question whether malignant cells use the same pathways for hematogenous dissemination and whether these molecules are involved in the organ-specific formation of metastasis. To analyze the migration behavior of lymphoma cells in vivo, we here used several lines and sublines which exhibit differential expression of the lymph node homing receptor L-selectin and the mucosa-specific integrin alpha4beta7. We demonstrate that the ability of the various types of cells tested to accumulate in lymph nodes within the first 24 hr after intravenous (i.v.) injection is negligible, independent of their homing receptor expression profile. Our data indicate that lymphoma cells have, in comparison with naive lymphocytes, an impaired capacity to extravasate via high endothelial venules (HEV). Instead they predominantly accumulate in lung and liver, similar to activated lymphocyte populations. Nevertheless, most of the lymphoma lines tested readily form lymph node metastases in vivo. In addition, blockade of L-selectin by continual treatment with an anti-L-selectin antibody did not prevent metastatic growth of TK-1 cells in peripheral lymph nodes. We conclude that the expression of homing receptors and a high extravasation efficiency of neoplastic cells is not a prerequisite for their dissemination into lymphatic tissue.

Animals↗

alpha 4 integrins and tumor metastasis.

Taken together, alpha 4 integrins may influence metastatic process at various stages (Fig. 1). The detachment of tumor cells from the primary tumor and the invasion of the surrounding tissue represent the onset of tumor metastasis. There is good experimental evidence that at the primary tumor site expression of alpha 4 integrins inhibits the ability of melanoma cells to break loose. This could be achieved either by strengthening of homotypic adhesion to adjacent tumor cells or by down regulation of matrix metalloproteases that are required for tumor cell migration through the extracellular matrix. After entering the blood circulation, alpha 4 integrins on tumor cells derived from melanomas, sarcomas or lymphomas rather promote than inhibit accumulation of disseminated cells in distant organs. The positive effects of alpha 4 integrins at this stage of metastasis formation appear to depend on alpha 4 integrin interactions with ligands expressed on the surface of endothelial cells. While VCAM-1 is expressed on endothelial cells exposed to inflammatory cytokines, MAdCAM-1 is constitutively expressed on mucosal endothelium. In addition, it is conceivable that tumor cell aggregates trapped in the microcirculation may trigger local inflammatory reactions that result in VCAM-1 up-regulation. Tumor cell-bound alpha 4 integrins may strengthen adhesion to endothelium and promote trans-endothelial migration (HAUZENBERGER et al. 1997; MEERSCHAERT and FURIE 1994). Successful formation of new tumor colonies in distant organs is the final step in the metastatic cascade. Interestingly, alpha 4 integrin dependent mechanisms may either promote or inhibit this process. Thus, it was observed that alpha 4 integrins may direct cancer cells like CHO and lymphoma cells to organ compartments, where ligands for alpha 4 integrins are expressed (e.g., bone marrow). Depending on the tumor type this event may result in enhanced metastasis formation. However, as was documented for murine lymphoma cells alpha 4 integrins may also inhibit tumor cell growth either by inducing apoptosis or by reducing the proliferation rate. Based on numerous studies on human cancers and experimental tumor models, alpha 4 integrins may represent attractive target molecules for therapeutic manipulation of tumor cell behavior. To this end, however, it will be of great importance to precisely define the molecular basis for the adverse effects of alpha 4 integrins on metastasis formation.

Animals↗

Normal T lymphocyte and monocyte function after minimally invasive surgery.

BACKGROUND: The aim of this study was to evaluate immune defense mechanisms after laparoscopic (LCHE) and open cholecystectomy (CHE), particularly with regard to monocyte and T-lymphocyte function. METHODS: In a prospective study, we evaluated the following immunological data from 27 patients (21 women, six men; mean age, 47.2 years) submitted to elective LCHE and 14 patients (seven women, seven men; mean age, 60.8 years) undergoing elective CHE: T-lymphocyte proliferation (stimulated by SEA, SEB, TSST-1 with antigen presentation by patient monocytes), expression of cell surface molecules on monocytes (HLA-DR, CD80, L-Selectin), CD4+ T lymphocytes (HLA-DR, CD25, ICAM-1, L-Selectin), and granulocytes (L-Selectin). Blood samples were collected preoperatively and on postoperative days 1 and 6-7. Statistical analysis was performed using the Mann-Whitney U test for paired samples. RESULTS: HLA-DR on monocytes significantly decreased after LCHE during the early postoperative course but returned to preoperative levels within 1 week. After CHE, significant downregulation of HLA-DR expression persisted throughout the whole observation period. This decrease, however, did not alter the antigen-presenting capacity of monocytes in both groups. Moreover, the APC-independent proliferative capacity of T lymphocytes was unimpaired. CD25 expression was significantly increased on postoperative day 1 after CHE but not after LCHE. Expression of HLA-DR, ICAM1, and L-Selection on CD4+ T cells was not altered in either group. CD80 on monocytes and L-Selection on monocytes and granulocytes remained unchanged after both procedures. CONCLUSIONS: HLA-DR surface molecules on monocytes that are required for antigen presentation were significantly decreased in both groups; they returned to normal within 1 week after LCHE but not after CHE. However, the antigen-presenting capacity for monocytes remained normal in both groups. T-cell stimulation, reflected by an increase of CD25 expression, was observed only after CHE, not after LCHE. We therefore conclude that LCHE interferes less with immune defense than CHE; however, the clinical relevance of the changes noted after the open operation remains to be determined.

Adult↗

Distinct functions of interferon-gamma for chemokine expression in models of acute lung inflammation.

Challenge of the immune system with bacterial superantigens or endotoxin induces the systemic release of cytokines followed by lethal septic shock. The lung is particularly susceptible to systemic toxin exposure resulting in acute leucocyte infiltration and vascular damage. In the present study, the functions of interferon-gamma (IFN-gamma) and tumour necrosis factor (TNF) for chemokine regulation during acute lung inflammation were examined. Following administration of the superantigen, staphylococcal enterotoxin B (SEB), lung mRNA levels of the chemokines cytokine-induced neutrophil chemo-attractant (KC), lipopolysaccharide-induced CXC chemokine (LIX), macrophage chemotactic protein-1 (MCP-1), macrophage inflammatory protein (MIP)-1alpha and MIP-2 were increased to a similar extent both in controls and in mice deficient for the IFN-gamma or 55 000 MW TNF receptors. In contrast, interferon-inducible protein-10 (IP-10) and monokine induced by IFN-gamma (Mig) mRNA expression was markedly reduced in mice deficient for IFN-gamma or IFN-gamma receptor, but not in 55 000 MW TNF receptor knockout mice. In situ hybridization experiments demonstrated that IP-10 was highly expressed in lung interstitial macrophages of C57BL/6, but not of IFN-gamma receptor-deficient mice. In contrast to SEB administration, treatment with lipopolysaccharide resulted in a strong induction of IP-10 and Mig in IFN-gamma receptor-deficient mice. Together, these results establish a critical function of IFN-gamma for chemokine induction in acute lung inflammation that is dependent on the nature of the inflammatory stimulus.

Acute Disease↗

Essential role of gamma interferon in survival of colon ascendens stent peritonitis, a novel murine model of abdominal sepsis.

Despite considerable progress, peritonitis and sepsis remain life-threatening conditions. To improve the understanding of the pathophysiology encountered in sepsis, a new standardized and highly reproducible murine model of abdominal sepsis termed colon ascendens stent peritonitis (CASP) was developed. In CASP, a stent is inserted into the ascending colon, which generates a septic focus. CASP employing a stent of 14-gauge diameter (14G stent) results in a mortality of 100% within 18 to 48 h after surgery. By inserting stents of small diameters, mortality can be exactly controlled. Thus, CASP surgery with insertion of a 22G or 18G stent (22G or 18G CASP surgery) results in 38 or 68% mortality, respectively. 14G CASP surgery leads to a rapid invasion of bacteria into the peritoneum and the blood. As a consequence, endotoxemia occurs, inflammatory cells are recruited, and a systemic inflammatory response syndrome develops. Interestingly, the most pronounced upregulation of inflammatory cytokines (gamma interferon [IFN-gamma], tumor necrosis factor alpha [TNF-alpha] and interleukin-12) is observed in spleen and lungs. CASP surgery followed by stent removal at specific time intervals revealed that all animals survived if intervention was performed after 3 h, whereas removal of the septic focus after 9 h did not prevent death, suggesting induction of autonomous mechanisms of a lethal inflammatory response syndrome. 18G CASP surgery in IFN-gamma receptor-deficient (IFNgammaR-/-) mice revealed an essential role of IFN-gamma in survival of sepsis, whereas TNF receptor p55-deficient (TNFRp55-/-) mice did not show altered survival rates. In summary, this study describes a novel animal model that closely mimics human sepsis and appears to be highly suitable for the study of the pathophysiology of abdominal sepsis. Importantly, this model demonstrates a protective role of IFN-gamma in survival of bacterial sepsis.

Abdomen↗

[Respiratory burst and phagocytosis activity in patients with infection after surgical abdominal interventions].

Phagocyte functions such as respiratory burst or phagocytic activity allow the determination of septic courses. Already in case of surgical stress a reduced constitutive generation of reactive oxygen metabolites could be shown, which is assumed to influence the outcome of following septic courses. The results of septic patients suggest that in spite of a functioning uptake of particles and germs (phagocytosis) a defect of intracellular killing (respiratory burst) exists.

Abdomen↗

[Special therapeutic approaches for interrupting the cascade--from systemic inflammatory response syndrome to multiple organ failure].

SIRS, sepsis and MOF are clinical sequelae related to persistent, uncontrolled inflammation. Therefore, different strategies for treatment were designed to block the cascade from SIRS to MOF (anti-inflammatory therapies). However, clinical trials using these agents have failed to demonstrate any benefit. In sepsis the body also mounts an anti-inflammatory response, which has been largely ignored. If the anti-inflammatory reaction is sufficiently severe, we might increase the susceptibility to infection or even exacerbate immunosuppression by using anti-inflammatory agents. In contrast, agents to stimulate the immune system--like IFN-gamma or G-SCF--may prove beneficial.

Adjuvants, Immunologic↗

Induction of acute inflammatory lung injury by staphylococcal enterotoxin B.

Superantigens stimulate T lymphocytes at high frequency by interacting with appropriate Vbeta segments of the TCR. Challenge of mice with bacterial superantigens such as staphylococcal enterotoxin B (SEB) induces the systemic release of cytokines resulting in septic shock and death of sensitized animals. Analysis of putative pathogenic mechanisms of T cell-dependent septic shock revealed that administration of SEB results in acute inflammatory lung injury characterized by a profound increase in vascular permeability. Injury was associated with marked leukocyte infiltration of the lung and induction of cell adhesion molecules including VCAM-1, ICAM-1, and P-selectin, but not E-selectin. Lung infiltrating leukocytes consisted of granulocytes, mononuclear phagocytes and NK cells with granulocytes representing the major fraction. Consistent with a role of neutrophils as cellular mediators of inflammatory organ injury, we demonstrate activation of circulating granulocytes in mice treated with SEB. When compared with granulocytes of control mice, peripheral blood granulocytes of SEB-treated mice were found to express increased levels of cell surface Mac-1, to down-regulate expression of L-selectin, and to respond with an increased production of toxic oxygen metabolites upon exposure to FMLP. Interestingly, TNF-alpha further enhanced FMLP-induced oxidant production by granulocytes from SEB-treated but not control mice, suggesting that the systemic response to SEB increases granulocyte sensitivity to TNF-alpha-mediated signals. Together, these results suggest that acute inflammatory lung injury may contribute to the pathogenesis of T cell-dependent lethal shock in mice challenged with bacterial superantigens and indicate common pathogenic mechanisms of lung injury induced by a large number of distinct inflammatory stimuli.

Acute Disease↗

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↗

Distinct mechanisms of immunosuppression as a consequence of major surgery.

Altered host defense mechanisms after major surgery or trauma are considered important for the development of infectious complications and sepsis. In the present study, we demonstrate that major surgery results in a severe defect of T-lymphocyte proliferation and cytokine secretion in response to coligation of the antigen receptor complex and CD28. During the early postoperative course, reduced cytokine secretion was observed for interleukin-2 (IL-2), gamma interferon, and tumor necrosis factor alpha, which are associated with the Th1 phenotype of helper T lymphocytes, and for IL-4, the index cytokine of Th2 cells. During the late postoperative course, T-cell cytokine secretion increased to normal levels. Production of the anti-inflammatory cytokine IL-10 was altered, with different kinetics being selectively elevated during the late postoperative course. In contrast, the capacity of peripheral blood monocytes to present bacterial superantigens and to stimulate T-cell proliferation was normal or enhanced after surgery despite a significant loss of cell surface HLA-DR molecules. Thus, the level of major histocompatibility complex class II protein expression does not appear to predict the antigen-presenting capacity of monocytes obtained from surgical patients with uneventful postoperative recovery. Secretion of IL-1beta and IL-10 by endotoxin-stimulated peripheral blood monocytes was increased at different time points after surgery. Major surgery therefore results in a distinct pattern of immune defects with a predominant defect in the T-cell response to T-cell receptor- and CD28 coreceptor-mediated signals rather than an impaired monocyte antigen-presenting capacity. Suppression of T-cell effector functions during the early phase of the postoperative course may define a state of impaired defense against pathogens and increased susceptibility to infection and septic complications.

Aged↗

Defective Peyer's patch organogenesis in mice lacking the 55-kD receptor for tumor necrosis factor.

Lymphotoxin alpha (LT-alpha) may form secreted homotrimers binding to p55 and p75 tumor necrosis factor (TNF) receptors or cell surface-bound heterotrimers with LT-beta that interact with the LT-beta receptor. Genetic ablation of LT-alpha revealed that mutant mice have no detectable lymph nodes or Peyer's patches and that the organization of the splenic white pulp in T and B cell areas is disturbed. In this report we describe a novel function for the p55 TNF receptor during ontogeny and demonstrate that mice deficient for p55 completely lack organized Peyer's patches. In contrast, lymph nodes and spleen are present in p55-deficient mice and lymphocytes segregate normally into B and T cell areas in these organs. Lamina propria and intraepithelial lymphocytes of the small intestine were detected in normal number and distribution in p55 mutant mice. Lymphocytes and endothelial cells from p55-deficient mice express normal levels of adhesion molecules considered important for lymphocyte migration to mucosal organs; this indicates that the lack of Peyer's patches does not result from a defect in lymphocyte homing. In summary, the p55 receptor for TNF selectively mediates organogenesis of Peyer's patches throughout ontogeny, suggesting that the effects of LT-alpha on the development of lymphoid organs may be mediated by distinct receptors, each functioning in an organ-specific context.

Animals↗

Predominant role of alpha 4-integrins for distinct steps of lymphoma metastasis.

To analyze the role of alpha4-integrins in lymphoma metastasis, sublines of the T-cell lymphoma LB were generated by retrovirus-mediated gene transfer that differ exclusively in the expression of alpha4-integrins. Using LB-alpha4 and control LB-NTK cells, we demonstrate that expression of alpha4-integrins strongly suppresses metastasis formation of LB lymphoma cells in secondary lymphoid organs such as spleen, mesenteric and peripheral lymph nodes, or Peyer's patches after i.v. injection into syngeneic BALB/c mice. Moreover, alpha4-integrin expression inhibited development of metastatic tumors in liver, lung, and kidney. Expansion of LB lymphoma cells in bone marrow was not affected by alpha4-integrin expression. In vivo migration assays using 51Cr-labeled lymphoma cells demonstrated that low-metastatic LB-alpha4 cells accumulated with the same efficiency as high-metastatic LB-NTK cells in all target organs examined and were even enriched in mucosal lymphoid organs. Collectively, these results indicate that alpha4-integrins inhibit metastasis formation of lymphoma cells at a stage subsequent to the invasion of target organs.

Animals↗