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Biomedical subjects

D Delia

Publications and source records attributed to D Delia.

At least 55 records · Page 3Linked to original sources

IL-12 inhibits apoptosis induced in a human Th1 clone by gp120/CD4 cross-linking and CD3/TCR activation or by IL-2 deprivation.

The aim of our work was to study apoptosis as a possible mechanism of CD4+ lymphocyte depletion in AIDS patients and to test whether IL-12 could limit this phenomenon. As an in vitro model, we used a human IL-2-dependent Th1 clone from an uninfected individual. We found that CD4 cross-linking, obtained either by mouse anti-CD4 mAb plus goat anti-mouse or by recombinant gp120 plus anti-gp120 mAb, followed by activation with immobilized anti-CD3 or anti-TCR mAb, induced apoptosis at early times (15-25% apoptotic cells at 4 hr), whereas IL-2 deprivation required longer times (20-40 hr) to induce apoptosis. Both CD4 cross-linking and IL-2 deprivation-induced apoptosis appeared to be PTK-dependent and were inhibited by either IL-2 or IL-12. Our data suggest that in vivo CD4/gp120 interactions could directly prime the apoptosis of Th1 lymphocytes and that IL-2 and IL-12 could be used to prevent this phenomenon.

Acquired Immunodeficiency Syndrome↗

Antibody for detecting p53 protein by immunohistochemistry in normal tissues.

AIMS: To establish whether PAb248 recognises human p53 as well as murine p53 and if so, to determine its distribution in normal tissues. METHODS: The ability of PAb248 to recognise human p53 was established by analysis of the human osteosarcoma derived Saos-2 cell line, which lacks the p53 gene, before and after transfection with p53 cDNA, using western blotting and immunoprecipitation. Immunostaining on normal tissues and cell lines was carried out using an immunoperoxidase technique. The two anti-p53 antibodies PAb 240 and DO-7 were used as controls. RESULTS: The anti-p53 PAb248 monoclonal antibody stained the Saos-2 cell line after, but not before, transfection with p53 cDNA. Both western blots and immunoprecipitations performed with this antibody revealed a 53,000 molecular weight band. With immunostaining, this antibody detects p53 protein in most lymphoid and human epithelial cells in a cytoplasmic-perinuclear localisation that has not been described before. In the same tissues nuclear staining could be seen in a few scattered cells using the PAb240 antibody. The topographical distribution of wild type p53 was not related to proliferating areas but, rather, to short-lived populations of cells. CONCLUSIONS: Immunostaining of wild type p53 is demonstrable not only in its nuclear form using antibody PAb240 but also in it common cytoplasmic-perinuclear localisation in normal tissues using the PAb248 monoclonal antibody. This opens up new possibilities for its study in both physiological and pathological conditions.

Antibodies, Monoclonal↗

N-(4-hydroxyphenyl)retinamide induces apoptosis of malignant hemopoietic cell lines including those unresponsive to retinoic acid.

N-(4-Hydroxyphenyl)retinamide (HPR) is a synthetic retinoid of particular clinical interest in cancer chemoprevention. We have examined the in vitro effects of HPR on lymphoid and myeloid malignant cell lines and found that at concentrations between 10(-5) and 3 x 10(-7) M it induces a dose-dependent growth inhibition (the peak plasma concentration in patients treated with HPR is 1 to 2 x 10(-6) M). The antiproliferative effect of HPR was, in all cell lines except K422, more potent than that induced by an equimolar dose of all-trans retinoic acid (RA). Also, this effect was irreversible on HL60 and DoHH2 cells that had been exposed to HPR (3 x 10(-6) M) for 24 h, but reversible on Raji and DHL4 exposed to the retinoid for 48 and 72 h, respectively. Time-course growth analysis showed that HPR at 3 x 10(-6) M or below induces a rapid fall of thymidine uptake and viability (> 90%), whereas between 10(-6) and 3 x 10(-7) M exhibits cytostatic effects. Interestingly, the RA-resistant HL-60R and NB306 cells, characterized by a point mutation in the retinoic acid receptor (RAR) and by the loss of the pml/RAR protein, respectively, were, like the parental RA-inducible HL-60 and NB4 cell lines, fully responsive to HPR, thereby suggesting that HPR and RA could act through different receptors or pathways. DNA flow-cytofluorimetric analysis revealed that HPR does not block cells in a specific phase of the cell cycle but triggers programmed cell death or apoptosis. This phenomenon was evidenced both by the visualization, on gel electrophoresis, of fragmented DNA, and by the "in cell" enzymatic labeling of DNA breaks with fluorescent dUTP. With the latter method, apoptotic cells become detectable by 6 h following exposure to 3 x 10(-6) M HPR. Ultrastructural examination of HPR-treated samples showed cells with chromatin compaction and cytoplasm condensation, characteristic of apoptotic cells. In conclusion, our study demonstrates that HPR suppresses malignant cell growth and induces apoptosis at pharmacologically relevant doses. The differential responsiveness by a number of cell lines, especially HL-60R and NB306, to HPR and RA indicates that these compounds may act through different receptors. The clinical use of HPR, particularly in retinoic acid-unresponsive acute promyelocytic leukemia patients, is suggested.

Apoptosis↗

bcl-2 gene hypomethylation and high-level expression in B-cell chronic lymphocytic leukemia.

The bcl-2 gene becomes transcriptionally deregulated in the majority of low-grade non-Hodgkin lymphomas as a result of t(14;18) translocations that place the bcl-2 gene at 18q21 into juxtaposition with the Ig heavy-chain locus at 14q32. This chromosomal translocation or similar bcl-2 gene rearrangements involving the Ig light-chain genes have been reported to occur in some cases of B-cell chronic lymphocytic leukemia (B-CLL). We analyzed the structure, methylation, and expression of the bcl-2 gene in 20 cases of B-CLL or closely related variants of this lymphoproliferative disorder, including at least 16 typical examples of CD5+ B-CLL. None of the 20 specimens had evidence of bcl-2 gene rearrangements, based on Southern blot analysis using three different bcl-2 probes. However, immunoblot analysis using antibodies specific for the Bcl-2 protein showed that 14 of 20 cases (70%) contained levels of p26-Bcl-2 that were equal to or greater than those found in a t(14;18)-bearing lymphoma cell line. Furthermore, in 19 of 20 cases (95%), the Bcl-2 protein was present at levels that were 1.7- to 25-fold higher than in normal peripheral blood lymphocytes. These differences in the relative levels of Bcl-2 protein among cases of B-CLL appeared to be functionally significant, in that a preliminary analysis of 3 representative cases showed that CLL cells with higher levels of Bcl-2 protein survived longer in culture and were delayed in their onset of DNA degradation relative to CLL cells with lower Bcl-2 protein levels. Evaluation of the methylation status of the bcl-2 gene using the isoschizomers Msp I and Hpa II, and a probe corresponding to the first major exon of the gene showed complete demethylation of both copies of the bcl-2 gene in a region corresponding to a 2.4-kb Msp I fragment in all 20 cases of B-CLL. In contrast, analysis of 6 of 6 B-cell lines that harbor a t(14;18) was consistent with hypomethylation of only one of the two bcl-2 alleles. Neither copy of the bcl-2 gene was demethylated in this region in 5 of 5 lymphoid cell lines that lack this translocation. However, hypomethylation of the bcl-2 gene did not necessarily correlate with the relative levels of Bcl-2 protein present in the B-CLL cells, suggesting that additional mechanisms for regulating bcl-2 expression are involved.(ABSTRACT TRUNCATED AT 400 WORDS)

Biomarkers, Tumor↗

CD34 expression is regulated reciprocally with adhesion molecules in vascular endothelial cells in vitro.

Freshly cultured vascular endothelial cells express the CD34 antigen in a diffuse cell surface pattern with some concentration on microvilli. Expression is downregulated with proliferation in continuous culture and undetectable after nine population doublings but can be maintained by restraining cell proliferation and promoting cell contact. Expression of CD34 at the antigen and mRNA levels on early passage cells is rapidly downregulated by interleukin-1 beta (IL-1 beta), interferon-gamma (INF-gamma), and tumor necrosis factor-alpha (TNF-alpha) under conditions in which these ligands upregulate the adhesion molecules: endothelial leukocyte adhesion molecule 1 (ELAM-1) and intracellular adhesion molecule 1 (ICAM-1). This reciprocal pattern of expression and the topographic distribution of CD34 molecules on the lumenal interdigitated microprocesses of adjacent endothelial cells in vivo suggest that CD34 might have a negative modulating role on adhesion functions of endothelia.

Antigens, CD↗

Reciprocal expression of CD34 and cell adhesion molecule ELAM-1 on vascular endothelium in acute cutaneous graft-versus-host disease.

The expression of CD34 and endothelial leucocyte adhesion molecule-1 (ELAM-1) on endothelial cells was studied in skin biopsies from normal human donors and recipients of allogeneic bone marrow. Both molecules were demonstrable on a variable number of cells in normals with no significant change after marrow transplantation in patients with no clinical evidence of skin disease. In patients with graft-versus-host disease (GvHD), however, there was a striking decrease in CD34-positive cells with a corresponding increase in ELAM-1 positivity. These changes were similar to those occurring in cultured endothelial cells after the addition of certain cytokines. They were seen only in the presence of a lymphocytic infiltrate and were not observed in the early stages of GvHD before lymphocytic infiltration was discernible. The reciprocal expression of these molecules may thus be important in the adhesion of lymphocytes to endothelium and their entry into the skin in GvHD and may be modulated by local cytokine release.

Acute Disease↗

bcl-2 proto-oncogene expression in normal and neoplastic human myeloid cells.

The present study provides immunobiochemical and molecular data on the differentiation-linked expression of the bcl-2 proto-oncogene in normal and neoplastic myeloid cells. Using a recently developed monoclonal antibody (MoAb) to the bcl-2 molecule, staining of normal bone marrow myeloblasts, promyelocytes, and myelocytes, but neither monocytes nor most polymorphonuclear cells, was demonstrated. By two-color flow cytometric analysis, bcl-2 was evidenced in CD33+ and CD33+/CD34+ myeloid cells as well as in the more primitive CD33-/CD34+ population. The leukemic cell lines HL-60, KG1, GM-1, and K562 were bcl-2 positive together with 11 of 14 acute myeloid leukemias (AML) and three of three chronic myeloid leukemias (CML) in blast crises; six of seven CML were negative. Among myelodysplastic cases, augmentation of the bcl-2 positive myeloblastic compartment was found in refractory anemia with excess of blasts (RAEB) and in transformation (RAEB-t). Western blots of myeloid leukemias and control lymphocytes extracts evidenced an anti-bcl-2 immunoreactive band of the expected size (26 Kd). Moreover, the HL-60 and KG1 cell lines, both positive for the bcl-2 protein, exhibited the appropriate size bcl-2 mRNA (7.5 Kb). These findings clearly indicate that the bcl-2 gene is operative in myeloid cells and that the anti-bcl-2 MoAb identifies its product and not a cross-reactive epitope. Induction of HL-60 differentiation toward the monocytic and granulocytic pathways was accompanied by a marked decrease in bcl-2 mRNA and protein levels; bivariate flow cytometric analysis showed that the fraction becoming bcl-2 negative was in the G1 phase of the cell cycle. These data establish that the bcl-2 proto-oncogene is expressed on myeloid cells and their progenitors and is regulated in a differentiation-linked manner.

Anemia, Refractory, with Excess of Blasts↗

Flow cytometric detection of the mitochondrial BCL-2 protein in normal and neoplastic human lymphoid cells.

The bcl-2 proto-oncogene, rearranged and deregulated in B-cell lymphomas bearing the t(14;18) translocation, encodes an inner mitochondrial membrane protein that blocks apoptotic cell death. We have developed a sensitive immunofluorescence assay for the single- and multicolor flow cytometric analysis of bcl-2 protein in relation to other markers and cell cycle, based on a fixation-permeation step of cells with paraformaldehyde and Triton X100 and the use of a bcl-2 specific monoclonal antibody (MoAb). As an application of this method, we have examined the expression of bcl-2 in normal and neoplastic lymphoid cells. We have found that greater than 80% of normal T-and B-cells are bcl-2 positive; following in vitro mitogen activation, the bcl-2 reactivity decreased slightly in the former but markedly in latter cells. In both cases the bcl-2 expression was not restricted to a specific phase of the cell cycle, as evidenced by two-color analysis. On lymphoblastoid cell lines, the bcl-2 staining intensity was variable and not necessarily correlated to molecular rearrangements of the bcl-2 gene. Among fresh B-cell non-Hodgkin's lymphomas (B-NHL), most sporadic Burkitt's cases were bcl-2 negative. Of four centroblastic-centrocytic cases with rearrangements of the bcl-2 gene, only two presented elevated amounts of bcl-2 protein, indicating that the levels of bcl-2 are not diagnostic of the translocation.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

Analysis of tumor-specific immunoglobulin gene rearrangement in peripheral blood B-cells of multiple myeloma patients.

The search for bone marrow clone neoplastic precursors in the peripheral blood of multiple myeloma (MM) patients has been the subject of a number of studies which, using different methodological approaches, have led to conflicting results. With the aim of contributing toward resolving this controversy, immunoglobulin (Ig) gene rearrangement in the bone marrow mononuclear cells (BMMC) and B-lymphocyte enriched peripheral cells (BePBC) of 11 appropriately selected advanced MM patients was studied by means of Southern blotting. Peripheral mononuclear cells (PBMC) and BePBC were studied immunophenotypically by evaluating the presence of cytoplasmic Ig positive cells (CyIg+) and CD19/PCA-1 reactivity. A pattern of Ig gene rearrangement identical to that observed in the respective BMMC was found in only two patients who, moreover, had a significant number of CyIg+ cells. Ig gene rearrangement was not found in any of the remaining patients who showed no evidence of the presence of CyIg+ cells, although there were CD19/PCA-1 positive cells. Consequently, the significance of the presence of malignant pre-plasma cell peripheral B-lymphocytes needs to be reconsidered and, in any case, these cells should be looked for in cell populations greatly enriched in B-lymphocytes and, above all, completely lacking in plasma cells or CyIg+ cells.

Aged↗

Two- and three-color immunofluorescence using aminocoumarin, fluorescein, and phycoerythrin-labelled antibodies and single laser flow cytometry.

Antibodies coupled to 7-aminocoumarin (AMCA) emit a bright blue fluorescence under ultraviolet (UV) excitation and are therefore ideal for three-color immunofluorescence (IF) with fluorescein (FITC) and phycoerythrin (PE) labeled reagents; however, due to the different absorption spectra, the use of these fluorophores for multicolor flow-cytometric analysis requires a double light excitation source (e.g., two-laser system). We report a strategy which uses a single argon-ion laser to simultaneously excite AMCA, FITC, and PE, thus allowing the flow cytometric analysis of three immunological parameters. When the UV-visible argon-ion laser is fitted with an appropriate set of mirrors, the 35.1-363.8 nm (UV) and 488 nm wavelengths (accounting for 80 mW and 520 mW, respectively) are simultaneously generated; these lines can then be exactly focused on the same observation point by an achromatic cylindrical lens. A number of comparative analysis were performed with this instrumental set up to verify the sensitivity of AMCA IF and its possible application for multicolor immunophenotypic evaluation of blood cell subsets. When AMCA- and FITC-labeled antimouse Ig antibodies were assessed for their ability to detect limiting amounts of mouse monoclonal antibody bound to cells, the former was less sensitive than the latter. A number of factors, including differences in excitation energy (80 mW for AMCA and 520 mw for FITC) and extinction coefficients (1.9 x 10(4) for AMCA and 6 x 10(4) for FITC) could explain this result.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Anti-Idiotypic↗

GM-1, a clone of the monoblastic phagocyte U937 that expresses a large respiratory burst capacity upon activation with interferon-gamma.

The human cell line U937 was cloned and screened for the responsiveness to interferon-gamma (INF-gamma). The selected subclone, named GM-1, expressed a high density of IFN-gamma receptors and showed HLA typing similar to that of the parental line but was devoid of the Y chromosome. GM-1 cells display a promyeloid phenotype as revealed by flow cytometry using a panel of murine antibodies. Following treatment with IFN-gamma GM-1 cells differentiated to a more mature monocyte stage and acquired the capacity to mount a respiratory burst. After treatment with differentiation promotors, such as phorbol 12-myristate 13-acetate (PMA), dimethyl sulfoxide (DMSO), and retinoic acid, GM-1 showed a more limited respiratory burst capacity. Superoxide release in IFN-gamma-activated cells was stimulated with f-Met-Leu-Phe, C5a, or PMA. The development of the respiratory burst capacity was accompanied with the expression of cytochrome b558, a component of the phagocyte NADPH-oxidase. GM-1 cells are useful for the study of the effects of IFN-gamma on the respiratory burst. They are more sensitive and yield a more homogenous response to IFN-gamma than U937 cells. The phenotype of GM-1 cells was stable for more than 5 years.

Antigens, CD↗

A6--a new 45RO monoclonal antibody for immunostaining of paraffin-embedded tissues.

The authors report on the extensive characterization, on normal and pathologic tissues, of the T-cell-specific monoclonal antibody (MoAb) A6, which the authors previously found to identify a fixation- and paraffin-embedding-resistant epitope. A6 reacted with most T lymphocytes, macrophages, and Langerhans' cells of normal tissues and with peripheral T-cell lymphomas (31 of 34), Ki-1+ lymphomas (12 of 18), and T-cell leukemias (1 of 5). All cases of X and non-X histiocytosis examined and monocytic leukemias with mature phenotype only were A6 positive. Three of 47 cases of B-cell lymphoma and leukemia were labeled. Hairy cell leukemias, multiple myelomas, and Hodgkin's and Reed-Sternberg cells were negative. The A6 reactivity was preserved with different fixatives (formalin, Bouin's fluid, Carnoy's fixative, and B5) and decalcification procedures and was slightly enhanced by trypsin digestion. The pattern of reactivity of A6 was similar to that obtained with MoAb UCHL-1, recognizing the CD45RO determinant of leukocyte common antigen; however, in pathologic tissues, A6 labeled a higher percentage of cells than UCHL-1. Cross-blocking and enzyme digestion studies (Pronase E [Sigma Chemical, St. Louis, MO] and neuraminidase [Sigma Chemical]) indicated that the two MoAbs may identify close epitopes on the same molecule. In conclusion, the authors' study indicates that A6 is an excellent reagent for detection of the CD45RO molecule on paraffin-embedded normal and pathologic tissues.

Antibodies, Monoclonal↗

Primary cutaneous gamma/delta T-cell lymphoma presenting as disseminated pagetoid reticulosis.

The first case of primary gamma/delta cutaneous T-cell lymphoma (CTCL) with a fatal outcome is reported. The patient had the clinical and histopathologic features of disseminated pagetoid reticulosis, a rare form of CTCL characterized by a strong epidermotropic lymphoid infiltrate. Extensive immuno-cytochemical studies showed that the neoplastic cells were almost exclusively localized in the epidermis, expressed the gamma/delta variant of the T-cell receptor (CD3+, TCR-delta-1+) and were CD5+, CD7+, CD27+, CD29+, CD43+, CD44+, CD45+, CD45RA+, CD54+, CD69+, but beta F1-, Ti gamma a-, BB3-, A13-, CD2-, CD4-, CD8-, CD11a-, CD49d-, CD25-, CD30-, and HLA-DR-. A comparison of our results with those of the literature, which have not included gamma/delta T-cell receptor analysis, suggests that some reported cases of pagetoid reticulosis may have phenotypes similar to our case. Electron microscopy studies demonstrated that the gamma/delta T lymphocytes were villous, containing dense and multivesicular bodies, and formed close contacts with the surrounding keratinocytes, suggesting that these cells should have a role in the skin-associated lymphoid tissue. The proliferating cells in our case might represent the neoplastic counterpart of the recently reported CD2- subset of normal human peripheral blood gamma/delta T lymphocytes.

Aged↗

Distinct morphophenotypic features of chronic B-cell leukaemias identified with CD1c and CD23 antibodies.

Morphological criteria usually applied to diagnose various subtypes of B-cell chronic lymphoid leukaemia are largely subjective. Immunophenotyping of 61 relevant cases using a selected panel of monoclonal antibodies (mAb), showed that CD1c and CD23 mAb were able to separate B-cell chronic lymphocytic leukaemia (B-CLL) from other chronic B-cell lymphoproliferative diseases. Lymphocytes of B-CLL were CD1c-, CD23+, whereas those of other types of chronic B-cell leukaemia were CD1c+/-, CD23-, and CD38/-. Non-B-CLL cases had a significantly higher amount of large peroxidase-negative (unstained) cells analyzed with an automated blood cell counter (Technicon H6000). This type of volumetric assessment allowed a separation between typical and "atypical" B-CLL, which otherwise were both CD1c-, and CD23+. These combinations of phenotypic markers corresponded to well-defined haematopathologic entities, conventionally diagnosed on peripheral blood (PB) and bone marrow smears, and on histologic sections of lymph nodes and spleen.

Antibodies, Monoclonal↗

Identification of CD34+ cells in normal and pathological bone marrow biopsies by QBEND10 monoclonal antibody.

Monoclonal antibody QBEND10 is reactive with the CD34 antigen in aldehyde-fixed, decalcified, paraffin-embedded bone marrow biopsies. In normal bone marrow it stained endothelial cells lining arterioles and capillaries, sinusoidal (littoral) cells and 0.89% of all haemopoietic cells. QBEND10+ mononuclear cells were seen as isolated, randomly distributed mononuclear cells in normal and regenerating bone marrows. Conversely, QBEND10+ cells were increased and present in aggregates of three or more cells in 6/8 cases of acute leukemia; in two cases of CD34-negative leukemia and in two patients after complete remission no aggregates were seen. QBEND10 immunohistochemistry may therefore be useful for diagnosis and follow-up of myeloid leukemias. In addition, increased numbers of CD34+ cells arranged in clusters were seen in 4/9 cases of refractory anemia with excess blasts (RAEB), 1 case of chronic myelomonocytic leukemia, 3/3 cases of RAEB in transformation, and in 3/7 cases of chronic myelogenous leukemia: in all these cases, CD34 staining of the bone biopsy may have prognostic value. QBEND10+ endothelial cells were significantly increased in all the pathological conditions examined (1.43% of all nucleated cells versus 0.80% in normal bone marrow; p = 0.0063), but especially in myeloid leukemias and in two fibrotic syndromes examined.

Anemia, Refractory, with Excess of Blasts↗

Involvement of the multilineage CD38 molecule in a unique pathway of cell activation and proliferation.

We report clear evidence that the interaction of the CD38 molecule with the specific mAb A10 on normal human cells and lines modulates the expression of surface activation markers relevant to T, NK, and plasma cell biology and functions. Moreover A10 mAb binding is followed by proliferation effects on all the target cells analyzed, and the phenomenon is accessory cell and IL-2 dependent. The effects of A10 mAb synergizing both CD2 and CD3 activation pathways indicate that CD38 signal transduction mechanism(s) are apparently different from the aforementioned. Nevertheless the decreased A10-driven proliferation after CD3-Ti modulation suggests a possible functional interdependence between these activation pathways. Taken together, the results indicate that the CD38 molecule might play a physiologic role in T, NK, and plasma cell regulation.

ADP-ribosyl Cyclase↗

Expression of the CD34 gene in vascular endothelial cells.

All seven of a set of CD34 monoclonal antibodies that recognize epitopes on an approximately 110 Kd glycoprotein on human hemopoietic progenitor cells also bind to vascular endothelium. Capillaries of most tissues are CD34 positive, as are umbilical artery and, to a lesser extent, vein, but the endothelium of most large vessels and the endothelium of placental sinuses are not. Angioblastoma cells and parafollicular mesenchymal cells in fetal skin are also CD34 positive, as are some stromal elements. An approximately 110 Kd protein can be identified by Western blot analysis with CD34 antibodies in detergent extracts of freshly isolated umbilical vessel endothelial cells, and CD34 mRNA is present in cultured umbilical vein cells as well as other tissues rich in vascular endothelium (breast, placenta). These data indicate that the binding of CD34 antibodies to vascular endothelium is to the CD34 gene product, and not to crossreactive epitopes. Despite the presence of CD34 mRNA in cultured, proliferating endothelial cells, the latter do not bind CD34 antibodies. In addition, CD34 antigen cannot be upregulated by growth factors. We conclude that under these conditions, CD34 protein is downregulated or processed into another form that is unreactive with CD34 antibodies. Electron microscopy of umbilical artery, breast, and kidney capillary vessels reveals that in all three sites, CD34 molecules are concentrated on membrane processes, many of which interdigitate between adjacent endothelial cells. However, well-established endothelial cell contacts with tight junctions are CD34 negative. CD34 may function as an adhesion molecule on both endothelial cells and hematopoietic progenitors.

Antibodies, Monoclonal↗