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J Hewson

Publications and source records attributed to J Hewson.

4 recordsLinked to original sources

Migration of acute lymphoblastic leukemia cells into human bone marrow stroma.

Most cases of acute lymphoblastic leukemia (ALL) arise from malignant transformation of B-cell precursors in the bone marrow. Recent studies have shown that normal and leukemic B-cell precursors bind to bone marrow stromal cells through the beta-1 integrins VLA-4 and VLA-5, thereby exposing early lymphoid cells to regulatory cytokines. It has been recently reported that the pre-B cell line NALM-6 is capable of migrating under layers of murine stromal cells in vitro (Miyake et al. J Cell Biol 1992;119:653-662). We have further analyzed leukemic cell motility using human bone marrow fibroblasts (BMF) as a stromal layer. The precursor-B ALL cell line NALM-6 rapidly adhered to BMF, and underwent migration or tunneling into BMF layers within 5 h, as demonstrated by light and electron microscopy, and confirmed by a chromium-labeling assay. Migration was also observed with the precursor-B ALL lines Reh and KM-3, with a T leukemia line RPMI-8402, the monocytic line U937, and the mature B line Daudi. In contrast, mature B (Raji), myeloid (K562, HL-60), and T lines (CCRF-CEM, MOLT-4) did not migrate. When cases of leukemia were analyzed, BMF migration was largely confined to precursor-B ALL, occurring in eight of 13 cases tested. Of other types of leukemia, migration was observed in one of four cases of T-ALL, but no evidence was seen in six acute myeloid leukemias and two patients with chronic lymphocytic leukemia. Only minimal migration into BMF was observed with purified sorted CD10+ CD19+ early B cells from normal adult marrow, while normal mature B lymphocytes from peripheral blood did not migrate. ALL migration was inhibited by monoclonal antibodies to the beta sub-unit of the VLA integrin family, and by a combination of antibodies to VLA-4 and VLA-5. Partial inhibition was also observed when leukemic cells were incubated with antibodies to VLA-4, VLA-5, or VLA-6 alone. In contrast, treatment of stromal cells with antibodies to vascular cell adhesion molecule or fibronectin (ligands of VLA-4 and VLA-5) did not prevent leukemic cell migration. These results indicate that ALL cells are highly motile and capable of rapid migration within marrow stroma, an effect largely mediated by VLA-4 and VLA-5. In the case of precursor-B ALL, this process may reflect a homing mechanism to areas of selective growth advantage within the bone marrow microenvironment.

Antigens, CD

Expression of terminal deoxynucleotidyl transferase in malignant myeloblasts.

Blast cells from untreated cases of acute leukemia were examined for expression of terminal transferase enzyme (TdT) by immunofluorescence and for myeloid lineage commitment as demonstrated by the presence of myeloperoxidase enzyme at the ultrastructural level. In three cases, an overlapping expression of the "lymphoid-specific" marker TdT was found on peroxidase-positive myeloblasts. These results indicate either the clonal expansion of a rare TdT-positive myeloid precursor or inappropriate expression of TdT by malignant myeloblasts, and further illustrate that TdT expression must be interpreted with caution when distinguishing between lymphoid and myeloid leukemias.

Adult

The effects of enteric coating of aspirin tablets on occult gastrointestinal blood loss.

The effect of enteric coating of aspirin tablets on the gastrointestinal blood loss associated with high dose aspirin therapy was investigated in 12 patients with rheumatoid arthritis. Occult blood loss was measured after labelling the patients' red blood cells with Cr51. Three salicylate preparations were used: enteric coated tablets of aspirin ("Rhusal", G.P. Laboratories, 7 x 650 mg per day), uncoated tablet cores of aspirin from the same batch (7 x 650 mg per day) and enteric coated tablets of sodium salicylate (7 x 600 mg and 1 x 300 mg per day). Daily blood loss during a salicylate-free period was (0.7 +/- 0.15 ml, mean +/- SE). Blood loss was significantly increased during dosage with all three salicylate preparations. Daily blood loss during dosage with the uncoated tablets of aspirin (5.3 +/- 0.3 ml) was significantly greater than during dosage with the enteric coated tablets of aspirin (2.3 +/- 0.3 ml) and enteric coated tablets of sodium salicylate (2.1 +/- 0.4 ml). The bioavailability of the salicylate preparations was studied in seven of the 12 patients. Mean plasma salicylate concentration two hours after the second daily dose during dosage with the enteric coated tablets of aspirin was 118 +/- 15 microgram/ml compared to 131 +/- 16 microgram/ml during dosage with the uncoated tablets. Urinary recoveries of the daily dosage of aspirin in the two formulations were also similar.

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