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Biomedical subjects

Nigel S Key

Publications and source records attributed to Nigel S Key.

At least 19 recordsLinked to original sources

Platelet microparticles are heterogeneous and highly dependent on the activation mechanism: studies using a new digital flow cytometer.

BACKGROUND: Platelet-derived microparticles (MPs) are believed to play an important role in coagulation and inflammatory disorders. Unfortunately, MP size renders them difficult to study and analyze by conventional flow cytometry. METHODS: We analyzed and characterized platelet-derived MPs, using antibodies against the major surface glycoproteins (GP), the platelet activation antigen P-selectin (CD62P), and a marker of procoagulant activity (phosphatidylserine exposure). MPs were generated by exposure of platelets to thrombin receptor activating peptide (TRAP) or ionophore. Both agonists induced significant microvesiculation of platelets, and the resulting MPs were analyzed by a new digital flow cytometer: Becton-Dickinson FACSAria. RESULTS: Membrane GPs were equally well represented in MPs generated by either reagent. In contrast, P-selectin was more intensely expressed in TRAP-MPs, while phosphatidylserine (PS) expression was markedly increased in ionophore-MPs. Two distinct populations of TRAP-MPs (one PS-positive and another PS-negative) were apparent. The latter characteristic facilitated sorting of MPs according to their PS exposure. CONCLUSIONS: The data presented herein show a significant improvement in the methodology applied until now to the characterization of MPs. The ability to characterize and sort MP subpopulations may help to resolve their contributions to normal and pathological functions.

Acid Phosphatase↗

The principal eosinophil peroxidase product, HOSCN, is a uniquely potent phagocyte oxidant inducer of endothelial cell tissue factor activity: a potential mechanism for thrombosis in eosinophilic inflammatory states.

In vivo, bromide (Br(-)), nitrite (NO(2)(-)), and thiocyanate (SCN(-)) compete for oxidation by eosinophil peroxidase (EPO) and H(2)O(2), yielding, respectively, HOBr, NO(2)., and HOSCN. We have recently shown that SCN(-) is the strongly preferred substrate for EPO in vivo and that HOSCN, in contrast with other EPO-generated oxidants and HOCl, is a relatively weak, cell-permeant, sulfhydryl (SH)-reactive oxidant. We here show that HOSCN is a uniquely potent (up to 100-fold) phagocyte oxidant inducer of tissue factor (TF) activity in human umbilical vein endothelial cells (HUVECs). This induction is attributable to transcriptional up-regulation of TF gene expression dependent upon both activation of the p65/c-Rel TF-kappaB transcription factor and activity of the ERK1/2 kinase pathway upstream of Egr-1 and was markedly further enhanced in the presence of wortmannin, an inhibitor of the PI3 kinase/Akt pathway. HOSCN also markedly activates the proinflammatory p65/p50 NF-kappaB pathway. Based on these findings we hypothesize that HOSCN generated by adherent and infiltrating eosinophils may provoke the development of a prothrombotic and proinflammatory endothelial/endocardial phenotype that promotes the pronounced thrombotic diathesis characteristic of the hypereosinophilic syndrome.

Early Growth Response Protein 1↗

Plasma protein profiling: unique and stable features of individuals.

Carefully controlled ZipTip extraction of diluted human plasma or serum was combined with MALDI-TOF-MS to produce highly reproducible protein profiles. Components detected included apolipoproteins CI, CII and CIII as well as transthyretin and several isoforms of each protein that are created by glycosylation or other modification and by proteolytic processing. Profiles of healthy individuals all contained the same 15 components. Others were found in plasma from individuals with disease. Profiles were analyzed by peak ratios within the same spectrum. Reproducibility for multiple assays was generally 4 to 10%. Within the healthy population, a given peak ratio occurred with a range of about fourfold. However, peak ratios of multiple samples from the same individual showed a much lower range, typically +/-10%. In fact, each individual displayed a personal protein profile that changed very little over time. Because of the stability of protein profiles over time within individuals, these results suggest further studies may discover that certain profile characteristics or changes in an individual's profile may be a sign of current or future disease, even when the altered profile remains within the range for healthy individuals.

Adult↗

A 'touch' of the White platelet syndrome.

Investigations into structural defects in platelets from a large family with the White platelet syndrome (WPS) separated the members into three groups. The first group of 22 members was the subject of our first report (White JG, Key NS, King RA, Vercellotti GM. The white platelet syndrome: A new autosomal dominant platelet disorder. Platelets 2004;15:173-184). A third group of 13 members had no abnormalities of platelet ultrastructure. The second group of 17 members, the focus of the present study, had a 'touch' of the WPS. Platelet counts, mean platelet volumes (MPVs) and platelet responses to aggregating agents were normal in 'touch' patients in contrast to platelets of those with the full WPS in whom these parameters were abnormal. Up to 13% of the full WPS platelets contained large, fully developed Golgi complexes, up to seven in number, extruding innumerable vesicles from the trans-Golgi face and filling the cytoplasm of many platelets. Many Golgi complexes had centrioles associated with them. 'Touch' platelets had one or two Golgi complexes of intermediate size in 3-5% of their platelets. Golgi vesicles were uncommon and centrioles absent. Gray platelets and hypogranular cells were infrequent in patients with a 'touch' of the WPS, whereas up to 44% of the platelets from those with the WPS were gray or hypogranular. Elements of the dense tubular system were prominent in full WPS platelets, together with their formation into areas of cytoplasmic sequestration and autodigestion. These features were absent in 'touch' platelets. As commonly observed in full WPS platelets, mitochondria were larger and more numerous than alpha granules in some 'touch' cells. Both 'touch' and full WPS platelets frequently contained giant and rod-shaped granules. Dense bodies, however, were normal in size and number in 'touch' platelets, and half normal size in full WPS platelets. The separation of ultrastructural abnormalities in the two varieties of the WPS suggests that genetic defects involve more than a single gene and the genes are variable in their penetrance. Genetic studies to determine if this is the case are currently in progress.

Blood Coagulation Disorders, Inherited↗

Activated recombinant factor VII in cardiac surgery.

PURPOSE OF REVIEW: Severe bleeding after cardiac surgery is a potential problem that poses major risks and challenges. Severe bleeding after cardiac surgery still occurs despite many pharmacological approaches to decrease bleeding and reduce transfusion requirements. Activated recombinant factor VII may be a therapy that is potentially useful in the management of refractory bleeding after cardiac surgery and in other postoperative bleeding states. RECENT FINDINGS: Several small, uncontrolled case series have suggested that activated recombinant factor VII may be useful in the management of some patients with intractable bleeding after cardiopulmonary bypass in both pediatric and adult populations. Blood loss or transfusion requirements have been reported to be substantially reduced in some patients who receive activated recombinant factor VII perioperatively. However, these reports have not established the optimal dosing or ideal timing of the administration of activated recombinant factor VII, or determined the frequency of serious adverse events related to its use. SUMMARY: Current reports summarized in this review suggest that activated recombinant factor VII may be a promising agent in the management of uncontrolled bleeding after cardiopulmonary bypass, but additional randomized, placebo-controlled trials are needed to support this use.

Journal Article↗

Stored platelets contain residual amounts of tissue factor: evidence from studies on platelet concentrates stored for prolonged periods.

BACKGROUND: The advent of new strategies for pathogen reduction has raised the question of whether platelet (PLT) concentrates (PCs) exposed to longer periods of storage retain adequate hemostatic function. STUDY DESIGN AND METHODS: The effects of prolonged storage on adhesive and procoagulant functions of PLTs in PCs have been analyzed. The ability of PLTs to interact with surfaces was assessed by en face electron microscopy. Exposure of anionic phospholipids or tissue factor (TF) antigen on PLTs was assessed by flow cytometry and by immunocytochemical methods at the ultrastructural level. Studies were performed in six different PCs followed 0, 3, 5, 7, and 11 days of storage. RESULTS: A progressive impairment of PLT-adhesive functions was observed after 5 days of storage. A progressive increase in expression of anionic phospholipids and development of procoagulant activity (PCA) measured by a modified prothrombin time (mPT) was observed along the storage. Incubation of PLTs with a specific anti-TF resulted in prolongation of the mPT by approximately 10 to 15 percent. Flow cytometry revealed minimal TF expression at later storage times. Immunocytochemical studies showed minimal TF labeling when studies were performed on PLT whole mounts. Labeling was markedly improved when PLTs were previously exposed to sonication. CONCLUSION: Prolonged storage of PCs was associated with decreased PLT-adhesive capacities and enhanced PCA. Current preparation procedures and storage media have important limitations for preserving PCs for longer than 1 week. PLTs in PCs retain residual amounts of TF as assessed by immunocytochemical and functional assays. The origin and hemostatic significance of this TF should be investigated further.

Anions↗

Phenotypic correction and long-term expression of factor VIII in hemophilic mice by immunotolerization and nonviral gene transfer using the Sleeping Beauty transposon system.

Hemophilia A is a lead candidate for treatment by gene therapy because small increments in the missing secreted protein product, coagulation factor VIII (FVIII), would result in substantial clinical amelioration. Clinically relevant therapy might be achieved by stably delivering a human FVIII cDNA to correct the bleeding disorder. We used the Sleeping Beauty (SB) transposon, delivered as naked plasmid DNA by tail-vein injection, to integrate B-domain-deleted FVIII genes into the chromosomes of hemophilia A mice and correct the phenotype. Since FVIII protein is a neoantigen to these mice, sustaining therapeutic plasma FVIII levels was problematic due to inhibitory antibody production. We circumvented this problem by tolerizing 82% of neonates by a single facial-vein injection of recombinant FVIII within 24 hours of birth (the remaining 18% formed inhibitors). Achievement of high-level (10%-100% of normal) FVIII expression and phenotypic correction required co-injection of an SB transposase-expressing plasmid to facilitate transgene integration in immunotolerized animals. Linker-mediated polymerase chain reaction was used to clone FVIII transposon insertion sites from liver genomic DNA, providing molecular evidence of transposition. Thus, SB provides a nonviral means for sustained FVIII gene delivery in a mouse model of hemophilia A if the immune response is prevented.

Animals↗

Andrographolide attenuates inflammation by inhibition of NF-kappa B activation through covalent modification of reduced cysteine 62 of p50.

NF-kappaB is a central transcriptional factor and a pleiotropic regulator of many genes involved in immunological responses. During the screening of a plant extract library of traditional Chinese herbal medicines, we found that NF-kappaB activity was potently inhibited by andrographolide (Andro), an abundant component of the plant Andrographis that has been commonly used as a folk remedy for alleviation of inflammatory disorders in Asia for millennia. Mechanistically, it formed a covalent adduct with reduced cysteine (62) of p50, thus blocking the binding of NF-kappaB oligonucleotide to nuclear proteins. Andro suppressed the activation of NF-kappaB in stimulated endothelial cells, which reduced the expression of cell adhesion molecule E-selectin and prevented E-selectin-mediated leukocyte adhesion under flow. It also abrogated the cytokine- and endotoxin-induced peritoneal deposition of neutrophils, attenuated septic shock, and prevented allergic lung inflammation in vivo. Notably, it had no suppressive effect on IkappaBalpha degradation, p50 and p65 nuclear translocation, or cell growth rates. Our results thus reveal a unique pharmacological mechanism of Andro's protective anti-inflammatory actions.

Active Transport, Cell Nucleus↗

Induction of microparticle- and cell-associated intravascular tissue factor in human endotoxemia.

The precise role of intravascular tissue factor (TF) remains poorly defined, due to the limited availability of assays capable of measuring circulating TF procoagulant activity (PCA). As a model of inflammation-associated intravascular thrombin generation, we studied 18 volunteers receiving an infusion of endotoxin. A novel assay that measures microparticle (MP)-associated TF PCA from a number of cellular sources (but not platelets) demonstrated an 8-fold increase in activity at 3 to 4 hours after endotoxin administration (P <.001), with a return to baseline by 8 hours. TF antigen-positive MPs isolated from plasma were visualized by electron microscopy. Interindividual MP-associated TF response to lipopolysaccharide (LPS) was highly variable. In contrast, a previously described assay that measures total (cell and MP-borne) whole-blood TF PCA demonstrated a more modest increase, with a peak in activity (1.3-fold over baseline; P <.000 01) at 3 to 4 hours, and persistence for more than 24 hours. This surprisingly modest increase in whole-blood TF activity is likely explained by a profound although transient LPS-induced monocytopenia. MP-associated TF PCA was highly correlated with whole-blood TF PCA and total number of circulating MPs, and whole-blood TF PCA was highly correlated with TF mRNA levels.

Adult↗

Views on methods for monitoring recombinant factor VIIa in inhibitor patients.

The development of recombinant factor VIIa (rFVIIa) has greatly augmented the range of treatment options available for hemophilia patients with inhibitors. However, there still remains a lack of consensus regarding several aspects of treatment with bypassing agents such as rFVIIa, prothrombin complex concentrates (PCC), and activated PCC (aPCC). Such unresolved issues may be clarified by the identification of a suitable laboratory monitoring method with which to correlate clinical outcomes. This paper will review the need for an effective and informative monitoring strategy, and will discuss several candidate methods that have been employed for the measurement of hemostatic efficacy following therapy with bypassing agents. To date, however, no assay endpoint has been developed that can correlate accurately with clinical outcomes in a sufficiently large patient sample.

Blood Coagulation Factor Inhibitors↗

Hematologic changes in sepsis and their therapeutic implications.

The blood and bone marrow constitute the hematologic organ system. Unlike other organ systems, hematologic organs are distributed in space and provide for a variety of seemingly unrelated functions. The hematologic system has both cellular and fluid-phase elements. Cellular elements include erythrocytes, leukocytes, and platelets; fluid phase elements include coagulation factors, natural antithrombotics, and proteins of the fibrinolytic system. The most common abnormalities of the hematologic system in patients with sepsis are anemia, leukocytosis, thrombocytopenia, and activation of the hemostatic system. Dysfunction of the hematologic organ system is an early manifestation of severe sepsis and is seen in virtually all patients with this disease. In concert with alterations in the endothelium, hematologic changes reflect both the body's reaction to an infectious insult as well as attempts to restore homeostasis. Dysfunction of the hematologic organ system can contribute to multiple organ dysfunctions and death. Recognizing these sepsis-associated changes and understanding the underlying pathophysiology are key to improving outcomes in patients with this deadly disease.

Journal Article↗

The White platelet syndrome: a new autosomal dominant platelet disorder.

The present study has evaluated 46 members from four generations of a large family with mild to moderate bleeding symptoms, prolonged bleeding times and poor responses to all aggregating agents. Twenty-one members of the family had all of the abnormal structural features of the disorder brought to Minnesota in 1870 by Esther White and, therefore, referred to as the White platelet syndrome (WPS). Their platelet counts were decreased and mean platelet volumes increased. Four to 13% of their platelets contained large, fully developed Golgi complexes actively budding smooth and coated vesicles and frequently associated with centrioles. Such structures are usually present in megakaryocytes only during the major phase of granulopoiesis. As many as seven Golgi complexes and five centrioles were present in single platelets. Alpha granule formation appeared incomplete in patient platelets. The organelles were often immature in appearance and markedly decreased in number in many of their cells. As a result 30% or more of WPS platelets were "gray platelets" similar to, yet very different from the cells in patients with the gray platelet syndrome. Other abnormal features included cytoplasmic sequestration by residual dense tubular system membranes, autodigestion, larger than normal mitochondria and half normal-sized dense bodies. Thirteen of the 46 family members had a "touch" of WPS. Three to 5% of their platelets contained Golgi complexes. However, gray platelets were not present among their circulating cells. The WPS is a unique autosomal dominant condition that can be classified among the platelet granule deficiency disorders.

Blood Coagulation Disorders, Inherited↗

Inhibitors in congenital coagulation disorders.

The development of inhibitory 'allo' antibodies to a deficient coagulation factor is arguably now the most severe and important complication of clotting factor concentrate exposure in haemophilia and other congenital coagulation disorders. Furthermore, development of an inhibitor to the factor VIII or factor IX transgene product remains a significant concern in gene therapy protocols for haemophilia. Although the development of an inhibitor does not usually change the rate, initial severity or pattern of bleeding, it does compromise the ability to manage haemorrhage in affected individuals, resulting in a greater rate of complications, cost and disability. The purpose of this review is to summarize current understanding of the epidemiology, immunobiology, laboratory evaluation and management of inhibitors arising in patients with congenital coagulation disorders. An attempt has been made to focus on recent advances in the immunology of inhibitors, and to speculate on their potential clinical application.

Factor IX↗

Elevated whole-blood tissue factor procoagulant activity as a marker of restenosis after percutaneous transluminal coronary angioplasty and stent implantation.

BACKGROUND: Experimental data suggest that tissue factor (TF) may induce neointimal hyperplasia after arterial injury. In this study, we investigated the hypothesis that elevated levels of TF in the circulation contribute to the development of restenosis after percutaneous transluminal coronary angioplasty (PTCA) or stent implantation. METHODS AND RESULTS: Whole-blood TF procoagulant activity (TF-PCA) was measured using a previously described assay before, at 3 hours after, and at 24 hours after the intervention in 61 patients with stable angina undergoing PTCA (n=20) or stent implantation (n=41). Coronary angiography was performed 4 to 6 months after the intervention, and luminal narrowing > or =50% was defined as restenosis. Whole-blood TF-PCA levels did not correlate with intracellular monocyte tumor necrosis factor-alpha expression, a marker of activation of these cells. Baseline levels and time course of whole-blood TF-PCA after the intervention were compared in patients who did or did not subsequently develop restenosis. Whole-blood TF-PCA levels did not change significantly in the 24 hours after either intervention. However, in both the PTCA and stent groups, initial TF-PCA was significantly higher in patients who subsequently developed restenosis (P=0.018 and 0.039 compared with those who did not develop restenosis for PTCA and stent groups, respectively). CONCLUSIONS: Higher baseline values of whole-blood TF-PCA may be a predictor of restenosis after PTCA and stent implantation.

Angina Pectoris↗

Sickle blood contains tissue factor-positive microparticles derived from endothelial cells and monocytes.

Blood microparticles (MPs) in sickle cell disease (SCD) are reportedly derived only from erythrocytes and platelets. Yet in SCD, endothelial cells and monocytes are activated and abnormally express tissue factor (TF). Thus, sickle blood might contain TF-positive MPs derived from these cells. With the use of flow cytometry to enumerate and characterize MPs, we found total MPs to be elevated in crisis (P =.0001) and steady state (P =.02) in subjects with sickle cell disease versus control subjects. These MPs were derived from erythrocytes, platelets, monocytes, and endothelial cells. Erythrocyte-derived MPs were elevated in sickle crisis (P =.0001) and steady state (P =.02) versus control subjects, as were monocyte-derived MPs (P =.0004 and P =.009, respectively). Endothelial and platelet-derived MPs were elevated in sickle crisis versus control subjects. Total TF-positive MPs were elevated in sickle crisis versus steady state (P =.004) and control subjects (P <.0001) and were derived from both monocytes and endothelial cells. Sickle MPs shortened plasma-clotting time compared with control MPs, and a TF antibody partially inhibited this procoagulant activity. Markers of coagulation were elevated in patients with sickle cell disease versus control subjects and correlated with total MPs and TF-positive MPs (P <.01 for both). These data support the concept that SCD is an inflammatory state with monocyte and endothelial activation and abnormal TF activity.

Adult↗