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J Coon

Publications and source records attributed to J Coon.

6 recordsLinked to original sources

Safety and efficacy of a continuous infusion, patient controlled anti-emetic pump to facilitate outpatient administration of high-dose chemotherapy.

We evaluated the combination of diphenhydramine, lorazepam, and dexamethasone delivered as a continuous i.v. infusion via an ambulatory infusion pump with patient-activated intermittent dosing (BAD pump) for prevention of acute and delayed nausea/vomiting in patients receiving high-dose chemotherapy (HDC) for peripheral blood progenitor cell (PBPC) mobilization (MOB) or prior to autologous PBPC rescue. The BAD pump was titrated to patient response and tolerance, and continued until the patient could tolerate oral anti-emetics. Forty-four patients utilized the BAD pump during 66 chemotherapy courses, 34 (52%) for MOB and 32 (48%) for HDC with autologous PBPC rescue. The median number of days on the BAD pump during MOB and HDC was 3 (1-6) and 9 (2-19) days, respectively. Complete overall or complete emesis control occurred on 94% of MOB and 89% of HDC treatment days during chemotherapy administration and 72% and 43%, respectively, following chemotherapy administration. Eighty-three percent of MOB and 55% of HDC treatment days were associated with no nausea. While on the BAD pump, no patient experienced severe toxicity or required hospitalization for management of nausea/vomiting. The BAD pump was safe and effective in minimizing nausea and vomiting associated with HDC, and thus, eliminated the need for hospitalization for management of chemotherapy-induced nausea and vomiting.

Adult↗

Correlation of colony-forming cells, long-term culture initiating cells and CD34+ cells in apheresis products from patients mobilized for peripheral blood progenitors with different regimens.

Peripheral blood progenitor cell (PBPC) populations used for transplantation were analyzed for the presence of CD34+ cells, colony-forming cells (initial CFC), and long-term culture initiating cells (LTC-IC) cultured on irradiated stroma for 5 weeks. Thirty-eight leukapheresis products were studied from 11 patients with breast cancer, 2 with non-Hodgkin's lymphoma and 1 with ovarian cancer harvested during recovery from either cyclophosphamide (CY) chemotherapy or cyclophosphamide-VP16 with G-CSF (CY-VP-G). CY-VP-G products had a threefold higher median number of mononuclear cells collected, a fivefold higher median concentration of CD34 and LTC-IC and a threefold higher concentration of initial-CFC when compared with CY products. CY-VP-G products had a significantly higher ratio of CFU-GM to BFU-E than the CY-mobilized products. Significant correlations of r = 0.89 and r = 0.68 were observed when comparing CD34 and CFC in products from CY or CY-VP-G patients, respectively. Analysis of the regression lines indicated that slopes of these regression lines were significantly different with a ratio of CD34 to initial CFC of 15:1 in the CY-VP-G products versus 5.2:1 with the CY products. These data indicate a higher cloning efficiency of the CD34+ population in the products from CY-mobilized patients. Significant correlations of r = 0.9 (CY) and r = 0.53 (CY-VP-G) were observed when the initial CD34 concentration and the LTC-IC were compared. Comparison of initial CFC with LTC-IC also showed significant correlations (r = 0.94, CY; r = 0.58, CY-VP-G) in samples from both patient groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Expression of a C-reactive protein neoantigen (neo-CRP) in inflamed rabbit liver and muscle.

We have reported that human C-reactive protein (huCRP) can exist in two antigenically distinct forms which are observed as the native, pentameric, phosphorylcholine (PC)-binding CRP ("native-huCRP antigen"), and as a conformationally and physicochemically distinct free huCRP subunit ("neo-huCRP antigen"), respectively. We have demonstrated that forms of huCRP which preferentially express neo-huCRP antigenicity are naturally present on the surface of both normal human peripheral blood B lymphocytes and lymphocytes with natural killer cell activity. We have also reported that forms of huCRP expressing the neo-huCRP antigen have potent in vitro activities in platelet, polymorphonuclear leukocyte, and monocyte assays. In this study, we demonstrate a rabbit-CRP (raCRP) neoantigen can be expressed when isolated PC-binding raCRP is modified in analogy to huCRP. This "neo-raCRP" is cross-reactive with the neo-huCRP antigen and occurs naturally in acute phase but not normal rabbit liver and muscle. The relative distribution and localization of both antigens were comparable in tissue sections taken at 24 and 48 hr postinflammation elicited with typhoid vaccine. These data support the concept that CRP molecules expressing a structure and antigenicity which are distinct from native, pentagonal CRP do occur in vivo, and that such molecules accumulate at tissue sites of inflammation and necrosis.

Acute-Phase Reaction↗

Properties of conjugated protein immunogens which selectively stimulate delayed-type hypersensitivity.

If bovine serum albumin (BSA) is covalently conjugated with dodecanoic acid, its ability to stimulate delayed-type hypersensitivity (DTH) is enhanced whereas its ability to stimulate antibody production is suppressed. Conjugates of BSA prepared with negatively charged succinyl groups and positively charged amidine groups were unable to stimulate any detectable DTH to BSA even though their ability to bind anti-BSA antibody in a radioimmunoassay was similar to that of dodecanoyl-BSA which stimulated strong, sustained DTH. By analyzing a series of conjugates of BSA with fatty acids of varying chain length, we found that enhancement of the ability of a preparation to stimulate DTH to BSA could be separated from the suppression of its ability to stimulate antibody formation. The ability of a preparation to stimulate DTH correlated with the covalent conjugation of a large number of hydrophobic groups whereas the suppression of the ability to stimulate antibody formation correlated with covering of antibody-combining sites as measured in a radioimmunoassay.

Amidines↗