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Biomedical subjects

R K Shadduck

Publications and source records attributed to R K Shadduck.

At least 19 recordsLinked to original sources

Primary listerial infections are exacerbated in mice administered neutralizing antibody to macrophage colony-stimulating factor.

The serum and tissue levels of macrophage colony-stimulating factor (M-CSF) are elevated in mice during a primary immunologic response to infection by Listeria monocytogenes. Experiments were performed to determine the specific role of M-CSF in the resolution of listerial infections. The bulk of Listeria injected into a mouse i.v. is deposited in the liver. The expression of M-CSF mRNA in the liver increased markedly within 2 h postinfection. Maximum expression was dependent upon the dose of Listeria inoculated. The administration of anti-M-CSF mAb reduced the percentage of Mac-1+ mononuclear phagocytes subsequently found in the livers of infected animals. This reduction correlated inversely with an increase in the number of Listeria associated with both the parenchymal and NPC populations. These results suggest that M-CSF may play an important role in the primary immunologic response to Listeria in the liver by stimulating the production, mobilization, and/or biologic activity of Mac-1+ mononuclear phagocytes.

Animals

A controlled trial of fluconazole to prevent fungal infections in patients undergoing bone marrow transplantation.

BACKGROUND AND METHODS: Superficial and systemic fungal infections are a major problem among severely immunocompromised patients who undergo bone marrow transplantation. We performed a double-blind, randomized, multicenter trial in which patients receiving bone marrow transplants were randomly assigned to receive placebo or fluconazole (400 mg daily). Fluconazole or placebo was administered prophylactically from the start of the conditioning regimen until the neutrophil count returned to 1000 per microliter, toxicity was suspected, or a systemic fungal infection was suspected or proved. RESULTS: By the end of the treatment period, 67.2 percent of the 177 patients assigned to placebo had a positive fungal culture of specimens from any site, as compared with 29.6 percent of the 179 patients assigned to fluconazole. Among these, superficial infections were diagnosed in 33.3 percent of the patients receiving placebo and in 8.4 percent of the patients receiving fluconazole (P less than 0.001). Systemic fungal infections occurred in 28 patients who received placebo as compared with 5 who received fluconazole (15.8 percent vs. 2.8 percent, P less than 0.001). Fluconazole prevented infection with all strains of candida except Candida krusei. Fluconazole was well tolerated, although patients who received it had a higher mean increase in alanine aminotransferase levels than patients who received placebo. Although there was no significant difference in overall mortality between the groups, fewer deaths were ascribed to acute systemic fungal infections in the group receiving fluconazole than in the group receiving placebo (1 of 179 vs. 10 of 177, P less than 0.001). CONCLUSIONS: Prophylactic administration of fluconazole to recipients of bone marrow transplants reduces the incidence of both systemic and superficial fungal infections.

Bone Marrow Transplantation

Successful treatment of T-gamma lymphoproliferative disease with human-recombinant granulocyte colony stimulating factor.

A trial of recombinant human granulocyte colony-stimulating factor (rhG-CSF) was attempted in a male with agranulocytosis, infection, and T-gamma lymphoproliferative disease (T-gamma-LPD). During five days of rhG-CSF (960 micrograms/day), the absolute neutrophil count (ANC) increased from 0.0 to 4.5 K/microliters. There were no changes in eosinophil or lymphocyte counts. In addition, there was no toxicity. Bone marrow cytotoxic/suppressor cells (CD57+/CD8+) were elevated (21.9%) before and decreased to 10.6% (normal less than 12%) following rhG-CSF. By contrast, there was no change in activated T cells (CD3+DR+) or T cell gene rearrangements. These findings suggest rhG-CSF can improve granulopoiesis in T-gamma-LPD, possibly by altering T-cell mediated marrow suppression.

Adult

Multipotent marrow stromal cell line is able to induce hematopoiesis in vivo.

Several murine marrow stromal cells were established from murine bone marrow cultures. Stromal cell lines transfected with a tumor-inducing polyoma virus middle T antigen (MTAg) were inoculated into nude mice subcutaneously. KUSA-MTAg cells, one of these cell lines, led to the rapid local development of bone marrow consisting of trilineage hematopoietic cells and bone; other cell lines produced spindle cell sarcoma or hemangiosarcoma. These results suggested that a single stromal cell line, KUSA-MTAg cells, may induce hematopoietic stem cells or early progenitors of three lineages of hematopoietic cells in vivo. Interestingly, untransfected KUSA cells expressed three new mesenchymal phenotypes, osteocytes, adipocytes, and myotubes, after treatment with 5-azacytidine.

Adipose Tissue

Expression of M-CSF and its receptor (C-FMS) during factor-independent cell line evolution from hematopoietic progenitor cells cocultivated with gamma irradiated marrow stromal cell lines.

Gamma irradiation of plateau-phase clonal bone marrow stromal cell lines produces factor-independent growth of cocultivated clonal interleukin-3/granulocyte-macrophage colony-stimulating factor-dependent hematopoietic progenitor cell lines. The process is associated with three biologic changes including: (i) adherence of hematopoietic cells to stromal cells forming 'cobblestone islands'; (ii) an intermediate stage [during which the cells show proliferation in suspension in the presence in leukemogenic stromal factor (LSF), a factor similar to macrophage colony-stimulating factor (M-CSF) released by irradiated stromal cells, and transient hematopoietic cell surface expression of MAC-1, and c-fms (M-CSF receptor)]; and (iii) a third stage of factor-independence. A monoclonal antibody to M-CSF receptor inhibited proliferation of intermediate stage but not all factor-independent cell subclones. In the present studies, a subclonal factor-independent malignant subline of FDC-P1JL26 derived by cocultivation with gamma-irradiated stromal cells as well as the parent clone and intermediate stage cells were shown to express significant levels of M-CSF polyA+ mRNA and M-CSF of at least two sizes (23 and 15 kDa) as detected by 35S-methionine labelling and immunoprecipitation with polyclonal anti-M-CSF antiserum. There was no significant difference in intracellular M-CSF protein size between cells at each of the three stages of biologic change. This M-CSF was not detected on the cell surface by fluorescence-activated cell sorting (FACS). In contrast, c-fms expression at the cell surface was detected by FACS analysis and c-fms polyA+ mRNA was only detected during the intermediate stage of induction of factor-independence. FDC-P1JL26 parent cells, the subclone stimulated by LSF, and the factor-independent subclone, showed little or no detectable autophosphorylation of the c-fms receptor at tyrosine. There was no detectable rearrangement of the M-CSF or c-fms genes by Southern analysis between clonal lines during the three stages. While we cannot rule out an autocrine mechanism or mutated c-fms receptor mechanism, the data also suggest that evolution of hemopoietic cell factor-independence during cocultivation with irradiated stromal cells may involve a mechanism distal to the c-fms receptor/M-CSF interaction.

Animals

Intravenous gamma globulin decreases platelet-associated IgG and improves transfusion responses in platelet refractory states.

In an attempt to improve platelet transfusion responses, intravenous immunoglobulin (IV-IgG) was administered to 19 patients who were refractory to random and best available HLA-matched platelets. A response to IV-IgG was defined as two or more successive transfusions of HLA-matched products that provided recoveries greater than 30%. Thirteen of 19 (68%) patients responded to therapy at a median time of 7 days after initiation of IV-IgG (range = 2-17). Baseline platelet associated IgG levels (PalgG) were elevated in both the responders (61.6 +/- 76.2) (mean +/- SD) and the non-responders (47.0 +/- 46.3 fg/plt). Post-therapy, PalgG levels remained unchanged in the nonresponders but were decreased significantly (p = 0.05) to 11.1 +/- 6.2 fg/plt in the responders. The latter levels were similar to those (11.6 +/- 8.2 fg/plt) measured in a series of 36 transfusion responsive patients. This apparent decline in PalgG was not explained by differences in lymphocytotoxic antibodies (LCT-Ab) after therapy. Moreover, a high degree of alloimmunization was associated with a poorer response to IgG. Only two of eight patients with LCT panel-reactive antibody (PRA) of greater than 85% were responders. By contrast, improved transfusion outcomes were seen uniformly in patients with PRA greater than or equal to 85%. Improved recoveries were obtained using LCT-Ab compatible but not incompatible platelets. The median increment (% predicted) with compatible platelets before therapy was 6.0 +/- 9.9 (SD). Post-IgG, median recoveries were 37.0 +/- 31.2 percent, P less than 0.001. These findings suggest that IV-IgG may alter destructive mechanisms that affect the survival of compatible platelets in refractory patients.

Antibodies

Autologous bone marrow transplantation with 4-hydroperoxycyclophosphamide-purged marrow for acute lymphoblastic leukemia.

Ten patients age 13-52 years with acute lymphoblastic leukemia (ALL) in first complete remission (CR) (1), second CR (6), or relapse (3) were treated with cyclophosphamide 50 mg/kg daily x 4 and total body irradiation 3 Gy daily x 4 followed by infusion of autologous marrow purged with 4-hydroperoxycyclophosphamide (4-HC) at 100-120 micrograms/ml. The patients transplanted in relapse also received 2 mg vincristine and corticosteroids. All marrows were harvested while patients were in CR. The nucleated marrow cell dose was 3.5 +/- 0.7 x 10(8)/kg, and the CFU-GM content of the transplant was 0.4 +/- 0.5 x 10(3)/kg after purging with 4-HC. Median time from transplantation is 48 months. The neutrophil count (ANC) exceeded 1.0 x 10(9)/L at a median of 26 days and platelets exceeded 50 x 10(9)/L at 34 days. All patients were in remission after transplantation (ABMT). Five patients relapsed 2-9 months after ABMT (actuarial rate 60%). Three patients are alive and in CR at 17+, 43+, and 54+ months after ABMT. Purging marrow with 4-HC did not adversely affect engraftment, but it is not clear if the high relapse rate was due to incomplete ex vivo purging or inadequacy of the conditioning regimen.

Adolescent

Failure to alter the course of acute myelogenous leukemia in the rat with subcutaneous deferoxamine.

Deferoxamine (DFO) is an iron chelator that is known to inhibit acute non-lymphocytic leukemia cells in vitro. To explore the possibility that this drug has cytotoxic activity in vivo, rats were inoculated with a small lethal dose (10(2] of tumor cells from the transplantable BN acute myelogenous leukemia model. Animals were then treated with one of several regimens of bolus subcutaneous DFO: 10 mg/day x 5; 20 mg/day x 5; 10 mg/day x approximately 5 weeks; or no DFO. There were no consistently significant differences in survival between any of the DFO and untreated groups. Because the short plasma half-life of DFO was thought to be a potential reason for this lack of protection, a high molecular weight polymeric conjugate of DFO that is known to provide sustained intravascular drug levels was also studied. However, hydroxyethyl starch conjugated with DFO in amounts equivalent to 100 mg free drug (intraperitoneally for 5 days) also failed to have major impact on survival. These findings suggest that it may not be possible to achieve levels of this chelating agent in vivo that are cytotoxic for this disease.

Animals

The kinetics of cyclosporine and its metabolites in bone marrow transplant patients.

1. The pharmacokinetics of cyclosporine (CsA) and the time course of CsA metabolites were studied in five bone marrow transplant patients after intravenous (i.v.) administration on two separate occasions and once after oral CsA administration. 2. Cyclosporine and cyclosporine metabolites were measured in whole blood by h.p.l.c. 3. Cyclosporine clearance after i.v. administration decreased from 3.9 +/- 1.7 ml min-1 kg-1 to 2.0 +/- 0.6 ml min-1 kg-1 after 14 days of treatment. The mean +/- s.d. absolute oral bioavailability of cyclosporine was 17 +/- 11%. 4. Hydroxylated CsA (M-17) was the major metabolite in blood. There were no significant differences in the mean metabolite/CsA AUC ratios between the first and second i.v. studies. 5. After oral administration, the metabolite to CsA AUC ratios were higher for most metabolites compared to those observed in the second i.v. study, suggesting a contribution of intestinal metabolism to the clearance of CsA.

Adolescent

Cyclosporine and methylprednisolone after allogeneic marrow transplantation: association between low cyclosporine concentration and risk of acute graft-versus-host disease.

A combination of cyclosporine (CSA) and methylprednisolone (MP) was used as graft-versus-host disease (GVHD) prophylaxis in 25 patients age 11-47 years (median 27 years) who received HLA-compatible sibling marrow transplants after myeloablative therapy for leukemia, myelodysplasia or lymphoma. CSA was initiated at 3 mg/kg/day in two divided doses, and the dose was adjusted to maintain a trough whole blood h.p.l.c. concentration between 200 and 800 ng/ml. While on i.v. CSA, the dose of CSA was increased for 10 of the 25 patients. The actuarial rate of grades II-IV acute GVHD was 37%. Those patients who developed moderate to severe GVHD had a significantly higher early mortality than those who did not (56% vs 12%, p = 0.02). There was a significant association between the development of acute GVHD and a mean week 2 CSA trough concentration less than 250 ng/ml. Life threatening regimen-related toxicities in the first 100 days included capillary leak syndrome, acute pancreatitis and small bowel perforation. Although the combination of CSA and MP in this dosing schedule was active in preventing acute GVHD, nephrotoxicity remained a problem, and outcome was limited by the inability to achieve the target CSA trough concentration in a substantial proportion of patients.

Acute Disease

Complications of indwelling central venous catheters in bone marrow transplant recipients.

Complications associated with indwelling central venous catheters in patients undergoing bone marrow transplantation are presented. The study group was comprised of 123 patients who underwent transplantation from 1982 to 1988 in whom 139 catheters were placed. One hundred and fifteen of 139 catheters placed had a triple lumen, while 24 had a dual lumen. Percutaneous placement through the subclavian vein was used in 127 of 139 catheters with a low complication rate. Catheters remained in place for 65.0 +/- 55.5 days (mean +/- standard deviation). One hundred and eight catheters remained functional during the course of treatment for these patients and lasted until elective removal or until the patient died. Thirty-one catheters were removed because of a complication. Infection was the most common complication, occurring in 22 catheters. Seven infected catheters were salvaged with antibiotic therapy. Coagulase negative staphylococcus was the most frequent organism identified. Mechanical problems causing catheter malfunction, migration, thrombosis and cuff erosion occurred in 19 catheters; 15 were removed. We concluded that double and triple lumen Silastic (silicone rubber) catheters provide relatively safe and effective access for bone marrow transplant recipients. The triple lumen catheter provides an additional venous access port that facilitates intensive care. The duration of catheter function is sufficient in most patients for therapy during and after bone marrow transplantation. Infection is the most common complication; our results indicate that catheters can be maintained and salvaged in some patients with septicemia. Noninfectious complications are less frequent, although catheters with persistent mechanical problems are less likely to be salvaged.

Bone Marrow Transplantation

Autologous bone marrow transplantation following high-dose busulfan and VP-16 for advanced non-Hodgkin's lymphoma and Hodgkin's disease.

Ten patients with non-Hodgkin's lymphoma (NHL) and nine with Hodgkin's Disease (HD) received high-dose busulfan and etoposide (VP-16) prior to autologous bone marrow transplantation (ABMT). All patients with NHL and eight with HD had poor prognostic factors. Marrows from patients with NHL were purged with 4-hydroperoxy-cyclophosphamide. Busulfan (16 mg/kg body weight) was given orally over 4 days; VP-16 was administered as a single 4-h infusion. VP-16 was initiated at a dose of 60 mg/kg but reduced to 50 mg/kg after three of the first seven patients developed fatal toxicity. The 100-day regimen-related mortality was 21% (95% confidence interval 14%-46%). An absolute neutrophil count of 500/microliters was achieved at a median of 18 days in NHL and 23 days in HD. The median time to achieve a platelet count of 50,000/microliters was slower in HD (100 days) than in NHL (31 days) (p less than 0.05). Complete remissions were documented in four of nine evaluable patients with NHL and two of eight evaluable patients with HD. Actuarial survival at 18 months was 21% (95% confidence interval 3%-39%). The combination of high-dose VP-16 and busulfan as used in this study, although comparable to other regimens in efficacy, is associated with several toxicities.

Administration, Oral

Comparison of intravenous versus subcutaneous recombinant human granulocyte-macrophage colony-stimulating factor in patients with primary myelodysplasia.

The primary objective of this study was to compare the toxicity and hemopoietic effects of s.c. and i.v. recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) in patients with primary myelodysplasia. Twenty patients were treated in this phase I crossover-designed study. In three groups of patients, the dose of rhGM-CSF was escalated from 60 to 250 micrograms/m2/day. Each patient was to receive 2 weeks of i.v. (daily 2-h infusion) and s.c. (twice daily) rhGM-CSF separated by a 2-week rest period. The decision to start with i.v. or s.c. administration was by random selection. Toxicity was comparable between i.v. and s.c. administration. At the highest dose level, 63% (five of eight) of the patients developed moderate to severe toxicity. Increases in the absolute neutrophil count showed a dose-response relationship and were more pronounced with s.c. than i.v. administration. Failure to grow in vitro granulocyte-macrophage colonies or a hypocellular marrow (less than or equal to 30%) predicted for a poor response to therapy. No patient had a platelet or a reticulocyte response. No patient progressed to acute leukemia. Compared to a 2-h infusion of i.v. rhGM-CSF, s.c. administration is more myelostimulatory without an increase in toxicity.

Adolescent