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Biomedical subjects

F H Valone

Publications and source records attributed to F H Valone.

At least 55 records · Page 3Linked to original sources

Mechanisms of platelet aggregation by viridans group streptococci.

The direct aggregation of platelets is thought to be an important event in the pathogenesis of viridans streptococcal endocarditis, but the mechanisms for platelet activation are unknown. We evaluated the processes by which two endocarditis-producing strains of viridans group streptococci activated human platelets in vitro, as measured by platelet cyclooxygenase activity, secretion, and aggregation. Addition of either streptococcal strain to platelets suspended in whole plasma resulted in a mean lag phase of 15.3 min, followed by platelet secretion and brisk aggregation. The lag phase duration was dependent on the platelet donor and appeared to be a function of direct platelet-bacterial interaction. Aggregation was partially inhibited by 20 muM [corrected] indomethacin and blocked completely by 1 mg of apyrase, an extracellular ADP hydrolase, per ml. Neither strain aggregated washed platelets suspended in Tyrode solution alone. However, both strains produced maximal aggregation when the platelet suspension was supplemented with 10% (final concentration) normal plasma. Studies with factor-deficient plasmas demonstrated that exogenous fibrinogen was required for aggregation. One or more additional plasma components were needed, which eluted with a molecular weight of 67,000 to 130,000 on gel permeation chromatography. These cofactors have not been described for other platelet agonists, which suggests that viridans streptococci may aggregate human platelets by a novel mechanism.

Adenosine Diphosphate↗

A Northern California Oncology Group randomized trial of leucovorin plus 5-fluorouracil versus sequential methotrexate, 5-fluorouracil, and leucovorin in patients with advanced colorectal cancer who failed treatment with 5-fluorouracil or 5-fluorodeoxyuridine alone.

The current study was initiated to confirm preliminary reports that 20% or more of patients with colorectal cancer who fail treatment with 5-fluorouracil (FUra) will respond to treatment with either leucovorin plus FUra or with sequential methotrexate, FUra, leucovorin. One hundred two patients with advanced, measureable colorectal cancer who failed treatment with FUra and/or 5-fluorodeoxyuridine (FUdR) were randomized to treatment with either high-dose leucovorin plus FUra (Arm B) or sequential methotrexate, FUra, leucovorin (Arm C). In this interim report, 92 patients were evaluable for toxicity and 89 patients were evaluable for response. Grade 3 or 4 nonhematologic toxicity which was primarily gastrointestinal was experienced by 25% of patients on both treatment arms during at least 1 treatment cycle. Hematologic toxicity was minimal. Among 43 evaluable patients on Arm B, there were 2 complete responses (5%) and 1 minor response (3%). Among 46 evaluable patients on Arm C, there was 1 complete response (2%), 1 partial response (2%), and 6 minor responses (14%). The median time to treatment failure was 2.2 months on Arm B and 3.5 months on Arm C. The median survival was 8.3 months on Arm B and 8.7 months on Arm C. Colorectal cancers that are resistant to FUra are cross-resistant to both experimental combinations.

Antineoplastic Combined Chemotherapy Protocols↗

Synergistic platelet activation by aggregates of IgG and the phospholipid platelet-activating factor 1-O-alkyl-2-acetyl-SN-glycero-3-phosphorylcholine.

Immune complexes and 1-O-alkyl-2-acetyl-SN-glycero-3-phosphorylcholine (AGEPC) are potent platelet-activating factors which interact with distinct receptors on human platelets. The mechanisms of platelet activation by these two stimuli were investigated by examining the effects of AGEPC on human platelets which had been preexposed to IgG aggregates (IgG-Agg). AGEPC and IgG-Agg in combination activated platelet aggregation synergistically, whereas release of the granular constituent serotonin was not increased. Synergy was maximal within 1 min of exposure of platelets to IgG-Agg and persisted for 5 to 10 min after exposure to IgG-Agg. Synergy was observed at concentrations of IgG-Agg which release platelet granular constituents with minimal aggregation. Monomeric IgG, which did not activate platelets, did not augment the platelet response to AGEPC. Platelet activation by AGEPC is enhanced by both the granular constituent adenosine diphosphate (ADP) and by arachidonic acid, suggesting that one or both agents may contribute to synergy between AGEPC and IgG-Agg. Indomethacin inhibited granule release by IgG-Agg and enhancement of AGEPC-induced platelet aggregation by IgG-Agg. The ADP scavengers creatine phosphate/creatine phosphokinase also blocked synergistic platelet activation. These data suggest that IgG-Agg releases platelet granule ADP by a cyclooxygenase-dependent mechanism and the released ADP, in combination with AGEPC, activates platelets synergistically.

Adenosine Diphosphate↗

Alterations in human leukocyte function induced by ingestion of eicosapentaenoic acid.

Two groups of six adults with persistent asthma, who were identical clinically, received 0.1 or 4 g of purified eicosapentaenoic acid ethyl ester (EPA) daily for 8 weeks. Both doses increased significantly the generation of leukotriene B5 (LTB5) from EPA by polymorphonuclear (PMN) and mononuclear leukocytes, while only the high dose decreased leukocyte arachidonic acid (AA) and the generation of LTB4 and prostaglandin E2 from AA. Only the high dose led to inhibition of PMN leukocyte chemotaxis to multiple stimuli by a mean of 57-70% (P less than 0.01), without altering monocyte chemotaxis, the production of platelet-activating factor by mononuclear leukocytes, or the IgE-dependent release of histamine from basophils. Both doses of EPA increased the responses of T lymphocytes to phytohemagglutinin by a mean of 73% or more (P less than 0.01) without modifying the numbers of helper and suppressor T lymphocytes. EPA affects the functions of several types of leukocytes critical to inflammation and immunity.

Administration, Oral↗

Platelet-activating factor binding to human platelet membranes.

Previously reported methods for quantifying platelet-activating factor (PAF) binding to rabbit platelet membranes were modified for studies of PAF binding to human platelet membranes. The membranes were prepared by the "glycerol lysis" method and PAF binding was quantified by using polyethylene glycol precipitation to recover membrane-bound PAF. Optimal PAF binding required buffers containing 3 to 10 mm KCl and either 5 to 10 mM MgCl2 or 5 to 10 mM CaCl2. NaCl was not as effective as KCl and concentrations of NaCl greater than 3 mM strongly inhibited PAF binding. Maximal binding occurred after incubation for 60 min at 0 degree C and was reversed by the addition of excess unlabeled PAF. PAF binding was saturable. Scatchard analysis of PAF binding to 50 micrograms of membrane protein revealed 10.3 +/- 1.7 x 10(11) receptors per milligram of membrane protein and the receptors had a Kd of 7.6 +/- 1.9 nM. The calculated receptor number, binding affinity, and specificity of binding are similar to those previously calculated for PAF binding to intact human platelets, suggesting that the membrane binding site for PAF is the PAF receptor.

Animals↗

Decay of the activating signal after platelet stimulation with 1-0-alkyl-2-acetyl-SN-glycero-3-phosphorylcholine: changes in calcium permeability.

The decay of the platelet-activating signal after platelet stimulation with the platelet-activating factor 1-0-alkyl-2-acetyl-SN-glycero-3-phosphorylcholine (AGEPC) was examined. Washed human platelets in calcium-poor buffer were stimulated with AGEPC followed 0.25 to 10 min later by reconstitution with 1.8 mM calcium. AGEPC did not induce platelet aggregation in calcium-poor buffer but aggregation occurred upon addition of calcium. The capacity of calcium-reconstitution to elicit platelet aggregation decayed rapidly after platelet exposure to AGEPC (T 1/2 = 1 min). A parallel decay of AGEPC-induced increased calcium permeability (R = 0.93) was demonstrated using the fluorescent probe Quin 2. Studies with calcium channel blockers suggest that AGEPC opens a calcium channel which is distinct from those present in unstimulated platelets.

Adult↗

Inhibition of binding of the platelet-activating factor AGEPC to platelets by the AGEPC analog rac-3-(N-n-octadecylcarbamoyloxy)-2-methoxypropyl 2-thiazolioethyl phosphate (CV-3988).

CV-3988, rac-3-(N-n-octadecylcarbamoyloxy)-2-methoxypropyl 2-thiazolioethyl phosphate, is a specific inhibitor of the platelet-activating activity of 1-O-alkyl-2-acetyl-sn-glycero-3-phosphorylcholine (AGEPC or PAFacether). Concentrations of CV-3988 between 10(-8) and 10(-7) M inhibited AGEPC-induced aggregation of washed human platelets in a dose-related manner (IC50 = 2.9 +/- 1.1 X 10(-8) M CV-3988) whereas concentrations of CV-3988 as high as 4 X 10(-6) M did not diminish platelet aggregation by thrombin or adenosine diphosphate. The binding of [3H] AGEPC to platelets was inhibited by CV-3988 in a concentration-dependent manner (IC50 = 6.7 +/- 1.8 X 10(-8) M). Compared to AGEPC, CV-3988 has a 1000-fold lower affinity for the AGEPC receptor. CV-3988 did not stimulate platelet metabolism of AGEPC as assessed by thin-layer chromatographic analysis of [3H] AGEPC extracted from platelet suspensions after four hours of incubation. Thus these studies indicate that CV-3988 inhibits platelet activation by AGEPC by inhibiting binding of AGEPC to its specific platelet receptor.

Blood Platelets↗

Modulation of cytoplasmic calcium in human platelets by the phospholipid platelet-activating factor 1-O-alkyl-2-acetyl-SN-glycero-3-phosphorylcholine.

The calcium-sensitive, fluorescent dye Quin 2 was used to quantitate changes in free intracellular calcium [( Ca2+]i) induced in platelets by the phospholipid platelet-activating factor 1-O-alkyl-2-acetyl-SN-glycero-3-phosphorylcholine (AGEPC). The Ca2+]i of unstimulated platelets was 91 +/- 18 nM (mean +/- SD, n = 8), and treatment with 1 to 16 nM AGEPC increased [Ca2+]i in a dose-related manner, with 16 nM AGEPC increasing [Ca2+]i by 102 +/- 20 nM. [Ca2+]i was not increased by analogs of AGEPC which do not activate platelets including the lysophospholipid precursor of AGEPC, the optical isomer, and a C-2 benzoyl analog. The capacity of AGEPC to increase [Ca2+]i exceeded that required to induce maximal platelet aggregation. In four experiments, 100% platelet aggregation was induced by 4.5 +/- 2.4 nM AGEPC (mean +/- SD) and was associated with a submaximal increase in [Ca2+]i of 56 +/- 22 nM. Pretreatment of platelets with AGEPC rendered the platelets specifically unresponsive to repeat stimulation with AGEPC in terms of both platelet aggregation and increased [Ca2+]i, whereas the platelet response to thrombin was undiminished by pretreatment with AGEPC. In contrast, the platelet response to 0.5 microM calcium ionophore A23187 was undiminished by pretreatment with the same concentration of ionophore, suggesting that AGEPC does not activate platelets by an ionophore-like mechanism. IgG aggregates and AGEPC in combination activate platelets synergistically, as shown by the observation that a 1-min exposure of platelets to 60 micrograms/ml of IgG aggregates increased the platelet aggregation response to 2 nM AGEPC from 44 to 100%. In contrast, sequential exposure of platelets to IgG aggregates and AGEPC increased [Ca2+]i additively, suggesting that increased [Ca2+]i contributes to but does not fully mediate synergistic platelet activation by IgG aggregates and AGEPC. Quantitation of free intracellular calcium with the fluorescent dye Quin 2 is a highly sensitive technique for delineating the role of calcium in mediating platelet activation.

Adult↗

Potentiation of mitogen-induced human T-lymphocyte activation by retinoic acid.

The capacity of retinoic acid to modulate human T-lymphocyte and B-lymphocyte activation by mitogens was examined. T-lymphocyte proliferation stimulated by 12-O-tetradecanoylphorbol-13-acetate (TPA) or phytohemagglutinin was enhanced by 5 nM to 5 microM retinoic acid in a dose-dependent manner with a 65 +/- 35% (SD) increase (n = 6, P less than 0.01) in TPA-stimulated proliferation induced by 5 microM retinoic acid. Retinoic acid enhanced T-lymphocyte proliferation over a wide range of background proliferation induced by different TPA concentrations. Retinoic acid alone did not stimulate T-lymphocyte proliferation. In contrast retinoic acid inhibited B-lymphocyte proliferation stimulated by TPA or phytohemagglutinin with 26.7 +/- 23.4% inhibition of TPA-stimulated proliferation induced by 5 microM retinoic acid (P less than 0.02). Retinoic acid had intermediate effects on the proliferation of different mixtures of T- and B-lymphocytes stimulated by TPA or phytohemagglutinin. The recognition that retinoic acid has opposing effects on human T- and B-lymphocyte activation by mitogens may account for the conflicting reports of the effects of retinoids on the immune response of unpurified human lymphocyte preparations.

Dose-Response Relationship, Drug↗

Regulation of human leukocyte function by lipoxygenase products of arachidonic acid.

Oxygenation of arachidonic acid via the 5- and 15-lipoxygenase pathways yields a variety of products, including monohydroxyeicosatetraenoic acids (HETEs) and more complex products termed leukotrienes. Of these products leukotriene B4 (LTB4) is the most potent modulator of PMN function. Nanomolar concentrations of LTB4 elicit PMN chemotaxis both in vitro and in vivo, and 3- to 10-fold higher concentrations of LTB4 promote lysosomal degranulation, PMN leukocyte aggregation, and adherence, in addition to enhancing the expression of neutrophil and eosinophil C3b receptors. The PMN-directed effects of LTB4 are mediated by binding to a distinct subset of PMN receptors. LTB4 is bound stereospecifically by 26,000-40,000 receptors per PMN, and the receptors have a KD of 10.8-13.9 nM. The receptor for LTB4 may also mediate PMN activation by other 5-lipoxygenase products, as the capacity of these products to activate PMN leukocyte function correlates with their capacity to compete with LTB4 for binding by the receptor. Several observations suggest that LTB4 may function both as an extracellular mediator of PMN function and as a critical intracellular intermediate in cellular activation by other agents. These observations include the localization of the LTB4 receptor in neutrophil granules, the dependence of PMN activation by different stimuli on the lipoxygenation of arachidonic acid, and the capacity of LTB4 to promote calcium flux in liposomes. Arachidonic acid oxygenation products have complex effects on T-lymphocyte function. LTB4 enhances T-lymphocyte chemokinesis and inhibits the generation of lymphokines and cellular transformation. LTC4 inhibits the generation of lymphokines without affecting transformation or chemokinesis. 5-HETE enhances and 15-HETE inhibits chemokinesis, whereas these products have no effects on the other lymphocyte functions. Thus, the lipoxygenase products of arachidonic acid are potent modulators of T-lymphocyte and PMN-function; these products may function both as extracellular mediators and as intracellular intermediates in cellular activation.

Animals↗

Indomethacin enhances the proliferation of mitogen-stimulated T lymphocytes of homosexual males with persistent generalized lymphadenopathy.

The possibility that cyclooxygenase products of arachidonic acid might contribute to the defective T lymphocyte function of homosexual men with the reactive lymph node syndrome was examined in vitro. T lymphocyte proliferation, assessed by the uptake of [3H]thymidine after the addition of phytohemagglutin, was 72,870 +/- 66,816 counts per minute (mean +/- SD) for eight patients and 119,589 +/- 64,913 counts per minute for 30 controls (P less than 0.05, Student's t test). Treatment with the cyclooxygenase inhibitor indomethacin increased the phytohemagglutin-induced proliferation of the T lymphocytes from five of eight patients, but none of 12 healthy homosexual and heterosexual control subjects. The production of prostaglandin E2 by T lymphocytes from six patients was 16.1 +/- 10.5 pg/5 X 10(6) cells/hr, as contrasted with that of 4.9 +/- 1.3 and 4.3 +/- 2.1 pg/5 X 10(6) cells for four healthy homosexual and six healthy heterosexual control subjects, respectively (P less than 0.01, Student's t test). The production of prostaglandin E2 by the patients' monocytes was normal. Abnormalities of the cyclooxygenase pathway of T lymphocytes of patients with the reactive lymph node syndrome may reflect an immunoregulatory defect, which predisposes to infections and may evolve into the more severe abnormalities of the acquired immune deficiency syndrome.

Acquired Immunodeficiency Syndrome↗

Defective polymorphonuclear leukocyte chemotaxis in homosexual men with persistent lymph node syndrome.

Persistent lymph node syndrome, epidemiologically related to acquired immune deficiency syndrome, is characterized by reactive lymphadenopathy and an increased incidence of localized bacterial, viral, and fungal infections. Seven typical patients were found to have a localized infection every 4.5 +/- 2.0 months (mean +/- SD) since onset of adenopathy. Because recurrent bacterial infections may be associated with defective polymorphonuclear leukocyte (PMNL) function, studies of PMNL function in these patients were undertaken. The patients' PMNLs had diminished chemotactic responses to high concentrations of two structurally distinct chemotactic factors, leukotriene B4 and N-formylmethionylleucylphenylalanine. The patients' PMNLs also had deficient degranulating responses to the former but not to the latter. Diminished PMNL function may contribute to the observed increased incidence of localized infections, which are a major source of morbidity, in these patients.

Adult↗

Isolation of a platelet membrane protein which binds the platelet-activating factor 1-0-hexadecyl-2-acetyl-SN-glycero-3-phosphorylcholine.

The phospholipid platelet-activating factor 1-0-hexadecyl-2-acetyl-SN-glycero-3-phosphorylcholine (AGEPC) initiates platelet function by interacting specifically with 1399 +/- 498 (mean +/- SD) high-affinity membrane receptors per platelet. In studies designated to characterize the high affinity binding site, AGEPC-human serum albumin-Sepharose was employed to isolate a 180,000 mol. wt. protein from human platelet plasma membranes. Platelet plasma membranes were isolated by adsorption of sonicated human platelets to a column of wheat germ agglutinin-Sepharose and elution with N-acetyl-glucosamine. The plasma membranes were solubilized in 5% sodium dodecyl sulphate and applied to a column of AGEPC-human serum albumin-Sepharose. After washing the column extensively, the specifically bound material was eluted with a five-fold molar excess of AGEPC. Sodium dodecyl sulphate polyacrylamide gel electrophoresis of the eluted material revealed a single protein with an apparent molecular weight of 180,000. This protein was not recovered from solubilized platelet membranes when chromatography was performed with a column of human serum albumin-Sepharose lacking AGEPC. The capacity of this protein to bind AGEPC suggests that it represents a constituent of the human platelet receptor for AGEPC.

Adult↗

Enhanced arachidonic acid lipoxygenation by K562 cells stimulated with 12-O-tetradecanoylphorbol-13-acetate.

The arachidonic acid lipoxygenase products released into culture supernatants by the human myeloid cell line K562 were quantitated by high-performance liquid chromatography. During 2 hr of incubation, K562 cells spontaneously released a mean of 9 ng of 15-monohydroxyeicosatetraenoic acid, 35 ng of 5-monohydroxyeicosatetraenoic acid, and 87 ng of a partially resolved mixture of 11- and 12-monohydroxyeicosatetraenoic acid per 10(7) cells. The addition of 50 micrograms of arachidonic acid per ml to the cell cultures increased the quantities of monohydroxyeicosatetraenoic acids generated after 2 hr of incubation by 10- to 100-fold; changes in the ratios of these lipoxygenase products occurred over 24 hr of incubation. The tumor promoter 12-O-tetradecanoylphorbol-13-acetate, at concentrations of 5 to 25 ng/ml increased arachidonic acid lipoxygenation 1- to 2-fold in cultures containing 50 micrograms of arachidonic acid per ml, and up to 20-fold in cultures not supplemented with arachidonic acid. The lipoxygenation of arachidonic acid was enhanced 2- to 9-fold for up to 24 hr after a 2-hr exposure of K562 cells to 12-O-tetradecanoylphorbol-13-acetate. Nordihydroguaiaretic acid, a lipoxygenase inhibitor, blocked the effects of 12-O-tetradecanoylphorbol-13-acetate, suggesting that the monohydroxyeicosatetraenoic acids are the products of specific lipoxygenases rather than of nonenzymatic oxidative reactions. The capacities of phorbol esters to promote tumors in the mouse skin model corresponded to their respective capacities to enhance the lipoxygenation of arachidonic acid to 15- and 5-monohydroxyeico-satetraenoic acid but not to 11- and 12-monohydroxyeico-satetraenoic acid.

Arachidonate Lipoxygenases↗

Quantitation of arachidonic acid lipoxygenase products in malignant and nonmalignant effusions.

The arachidonic acid lipoxygenase products 15-hydroxyeicosatetraenoic acid, 12-hydroxyeicosatetraenoic acid, and 5-hydroxyeicosatetraenoic acid and the arachidonic acid cyclooxygenase product prostaglandin E2 were quantitated in 11 malignant and 10 nonmalignant peritoneal and pleural effusions. The mean quantities of 15-hydroxyeicosatetraenoic acid in malignant and nonmalignant effusions were 10 and 46 ng/ml, respectively (p less than 0.05), and the mean quantities of 5-hydroxyeicosatetraenoic acid in malignant and nonmalignant effusions were less than 1 ng/ml and 12 ng/ml, respectively (p less than 0.05). The quantities of 12-hydroxyeicosatetraenoic acid and prostaglandin E2 were also reduced in malignant effusions but the reduction was not statistically significant. Both the protein content and the total number of leukocytes correlated with the quantity of prostaglandin E2 in the effusions, whereas no consistent correlation was found with the quantity of lipoxygenase products in the effusions. Lipoxygenase products are critical mediators of neutrophil, lymphocyte, and macrophage function. Thus, the reduced capacity to lipoxygenate arachidonic acid associated with malignant conditions may contribute to the impaired immune responsiveness of patients with cancers.

Adenocarcinoma↗

Enhancement of human polymorphonuclear leukocyte adherence by the phospholipid mediator 1-O-hexadecyl-2-acetyl-sn-glycero-3-phosphorylcholine (AGEPC).

The phospholipid mediator 1-O-hexadecyl-2-acetyl-sn-glycero-3-phosphorylcholine (AGEPC) increases human polymorphonuclear leukocyte (PMN) adherence to Sephadex G-25 in manner directly proportional to the concentration of AGEPC from 2 to 650 nM. The maximal enhancement of PMN adherence of 85% +/- 23% (mean +/- SD) evoked by 650 nM AGEPC was indistinguishable in magnitude from that elicited by an optimal concentration of the chemotactic peptide N-f-Met-Leu-Phe. The results of analyses of the relative PMN adherence-enhancing activities of analogs of AGEPC suggest distinct molecular requirements for the enhancement of adherence. PMN adherence increases within 1 minute after exposure of the leukocytes to AGEPC, and the augmented adherence persists for over 30 minutes in spite of extensive washing of the leukocytes. Indomethacin partially blocked enhancement of adherence by AGEPC, suggesting that thromboxane A2 mediates in part the enhancement of adherence by AGEPC.

Adult↗

Specific binding by human polymorphonuclear leucocytes of the immunological mediator 1-O-hexadecyl/octadecyl-2-acetyl-sn-glycero-3-phosphorylcholine.

The binding of the platelet-activating factor 1-O-hexadecyl-2-acetyl-sn-glycero-3-phosphorylcholine (AGEPC) by human polymorphonuclear (PMN) leucocytes was complete within 20-30 min and optimal at 37 degrees. Scatchard plot analyses of the total binding of [3H]AGEPC by PMN leucocytes without and with an excess of unlabelled AGEPC revealed two distinct types of binding sites. One type of binding site exhibited a high affinity (KD = 0.11 +/- 0.02 nM, mean +/- SD), was saturable and had a maximal capacity of 5.2 +/- 2.1 x 10(6) (mean +/- SD) molecules of AGEPC per PMN leucocyte. The other binding site demonstrated a substantially lower binding affinity and a greater binding capacity consistent with nonreceptor uptake of AGEPC into cellular structures. The high affinity binding site of PMN leucocytes in suspension was saturated at 196 +/- 90 pmol (mean +/- SD) of AGEPC per ml, while 600 pmol of AGEPC per ml evoked maximal PMN leucocyte chemotaxis in modified Boyden chambers. The specificity of binding of AGEPC by PMN leucocytes was established by the capacity of analogues of AGEPC, but not structurally distinct chemotactic factors, to inhibit the binding of [3H]AGEPC. The high affinity PMN leucocyte binding site for AGEPC was specific for a phospholipid with an alpha-ether linkage and a beta-short chain fatty acid, but the binding site lacked stereospecificity. Similar structural requirements were stereospecificity. Similar structural requirements were observed for the elicitation of PMN leucocyte chemotaxis and the enhancement of the expression of PMN leucocyte C3b receptors by AGEPC.

Binding Sites↗