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Biomedical subjects

P J Gaffney

Publications and source records attributed to P J Gaffney.

At least 19 recordsLinked to original sources

Development of an ELISA for the quantification of fibrin in canine tumours.

Fibrin is found in most solid tumours, and there is speculation regarding its role in tumour invasion and metastasis. An assay to quantitate fibrin levels in tissues would be a useful preliminary tool in assessing the above. Such an assay to quantitatively detect levels of fibrin in various types of canine tumour was developed. This procedure involved an ELISA using a monoclonal antibody (MAb 1H10) for canine fibrin as a capture antibody and a polyclonal antibody to human fibrinogen conjugated to horseradish peroxidase as the detection antibody. The ELISA is calibrated against known concentrations of freeze-fractured fibrin derived from clotted dog plasma. The assay takes 3.5 hours, and concentrations as low as 0.1 microg fibrin per milliliter of solubilised tumour can be readily detected. ELISA dilution curves for fibrin from various types of canine tumour were found to be parallel to the standard canine fibrin calibration curve. The intraassay and interassay variabilities of the assay gave coefficients of variation in the range of 2.4-4.5% and 7.2-7.8%, respectively, for the calibrator standard, in a concentration range of 0.1-10 microg/ml. Using this assay, we reported the levels of fibrin in three different types of malignant canine tissue.

Animals

The haemostatic balance -- Astrup revisited.

Prof. Tage Astrup first elaborated the notion that blood fluidity involved a balance between the tendency of blood to clot and for such clots to lyse. It would seem that, at that time, this haemostatic balance involved the notion that forming fibrin orchestrated its own destruction by stimulating fibrinolytic activity. In this review, we have clarified the detail of this balance and developed the thesis that Astrup's far-sighted balance notions involve a variety of control mechanisms. These involve the notion that thrombin, being at first sight a procoagulant, can also, in conjunction with thrombomodulin, act as a stimulus of anticoagulant activity by the generation of activated protein C. The thrombin-activatable fibrinolytic inhibitor (TAFI) is also involved in this balance since the generation of thrombin provokes the neutralisation of fibrinolysis by the TAFI pathway. The kallikrein/factor XII/urokinase pathway is discussed indicating yet another aspect of balance between the generation of coagulation and fibrinolysis. The overall theme of this review, apart from an insight into various aspects of the haemostatic balance, is that blood has a strong tendency to clot when tissue is damaged, and the intact vasculature requires major anticoagulant systems to prevent clots adhering to and stabilising in the vasculature.

Animals

The role of the monocyte in the generation and dissolution of arterial and venous thrombi.

Monocyte infiltration into forming thrombus has been demonstrated in experimental models of venous thrombosis developed in our laboratories. These cells produce and release plasminogen activators as the thrombus organises and resolves. Monocytes are also capable of assembling and releasing procoagulant factors and the evidence for their importance in thrombogenesis is reviewed. The ability of monocytes to maintain this fibrinolytic balance suggests that they may have a role in both thrombosis and thrombus resolution. Control of the mechanisms which regulate these activities may therefore be important in preventing thrombus formation or stimulating its resolution.

Animals

In vitro characterization of a novel, tissue-targeted ultrasonic contrast system with acoustic microscopy.

Targeted ultrasonic contrast systems are designed to enhance the reflectivity of selected tissues in vivo [Lanza et al., Circulation 94, 3334 (1996)]. In particular, these agents hold promise for the minimally invasive diagnosis and treatment of a wide array of pathologies, most notably tumors, thromboses, and inflamed tissues. In the present study, acoustic microscopy was used to assess the efficacy of a novel, perfluorocarbon based contrast agent to enhance the inherent acoustic reflectivity of biological and synthetic substrates. Data from these experiments were used to postulate a simple model describing the observed enhancements. Frequency averaged reflectivity (30-55 MHz) was shown to increase 7.0 +/- 1.1 dB for nitrocellulose membranes with targeted contrast. Enhancements of 36.0 +/- 2.3 dB and 8.5 +/- 0.9 dB for plasma and whole blood clots, respectively, were measured between 20 and 35 MHz. A proposed acoustic transmission line model predicted the targeted contrast system would increase the acoustic reflectivity of the nitrocellulose membrane, whole blood clot, and fibrin plasma clot by 2.6, 8.0, and 31.8 dB, respectively. These predictions were in reasonable agreement with the experimental results of this paper. In conclusion, acoustic microscopy provides a rapid and sensitive approach for in vitro chracterization, development, and testing of mathematical models of targeted contrast systems. Given the current demand for targeted contrast systems for medical diagnostic and therapeutic use, the use of acoustic microscopy may provide a useful tool in the development of these agents.

Acoustics

High and constant plasma levels of tissue plasminogen activator and PEG-hirudin can be achieved by subcutaneous delivery.

Intramural thrombosis is a consistent finding in the arteries of patients who die following coronary angioplasty. This thrombosis is thought to have a role in restenosis, which is a common complication of coronary angioplasty. It has been hypothesised that antithrombotics such as hirudin or tissue-type plasminogen activator (tPA), may be therapeutically useful following angioplasty. This report describes the bioavailability of both agents following subcutaneous (sc) injection in cholesterol-fed rabbits. Intravenously delivered tPA has a half-life of 3-5 minutes. The half-life of intravenously administered hirudin is less than one hour in many species. In order to prolong the duration of action recombinant hirudin was conjugated to polyethylene glycol (PEG). Polyethylene glycol conjugated recombinant hirudin (PEG-rH) (0.7 mg/kg) antigen and activity were measurable after just 1 hr, reaching a maximum (663 and 884 ng/ml respectively) at 12 hours. Significant levels were present in rabbit plasma 24 hours after injection. Subcutaneously delivered recombinant (r-tPA) (1 mg/kg) was present in significant amounts 1 hr after injection, reaching a maximum (92 IU/ml) at 2 hours. Levels of tPA at 9 hours were approximately 80x normal circulating levels. High and constant levels of functional activity of both PEG-rH and r-tPA in rabbit plasma are achieved by subcutaneous delivery.

Animals

High-frequency ultrasonic detection of thrombi with a targeted contrast system.

Site-targeted acoustic contrast agents used in conjunction with high-frequency intravascular ultrasound have the potential to localize and characterize intravascular pathology. The present study quantifies the utility of a novel, site-targeted ultrasonic contrast agent with high-frequency ultrasound (30 to 50 MHz) and demonstrates the feasibility of the new agent for augmenting detection of targeted pathology with intravascular ultrasonic catheters. High-frequency acoustic microscopy was used to image avidinconjugated nitrocellulose membranes after exposure to a control or biotinylated contrast agent. Increases (p < 0.05) in backscattered power of approximately 66 dB (4-fold) were found for the biotinylated, but not the control contrast agent. Intravascular ultrasonic images (30 MHz nominal center frequency) of plasma clots after exposure to the targeted contrast agent were brighter (p < 0.05) than in controls. These results demonstrate high-frequency acoustic enhancement with a novel targeted contrast agent and may extend the potential diagnostic spectrum of intravascular ultrasound.

Avidin

A novel site-targeted ultrasonic contrast agent with broad biomedical application.

BACKGROUND: In this work, we report a novel targetable ultrasonic contrast agent with the potential to noninvasively define and localize myriad pathological tissues for diagnosis or therapy. The agent is a biotinylated, lipid-coated, perfluorocarbon emulsion that has low inherent echogenicity unless bound to a surface or itself. METHODS AND RESULTS: In study 1, emulsions with and without biotin were suspended in buffered saline and imaged with a 7.5-MHz linear-array transducer. Neither emulsion manifested significant ultrasonic backscatter until avidin was added. Avidin-induced aggregation produced a marked enhancement in backscatter from the biotinylated but not from the control emulsion. In study 2, porcine fibrin clots in vitro were pretargeted with biotinylated antifibrin monoclonal antibodies and then exposed to avidin and then to biotinylated or control perfluorocarbon emulsions. The basal acoustic reflectivity of clots imaged with a 7.5-MHz linear-array transducer was uniformly low and was increased substantially by exposure to the targeted biotinylated emulsion. In study 3, partially occlusive arterial thrombi were created in dogs and then exposed to antifibrin antibodies and avidin in situ. Biotinylated or control emulsion was administered either in situ or systemically. At baseline, all thrombi were undetectable with a 7.5-MHz linear-array transducer. Thrombi exposed to antifibrin-targeted contrast exhibited increased echogenicity (P < .05); control thrombi remained acoustically undetectable. CONCLUSIONS: These data provide the first in vivo demonstration of a site-specific ultrasonic contrast agent and have potential for improved sensitivity and specificity for noninvasive diagnosis of thrombi and other pathological diseases.

Animals

Interaction of heparin with fibrinogen using surface plasmon resonance technology: investigation of heparin binding site on fibrinogen.

Heparin is widely used as an antithrombotic drug, having excellent anticoagulant properties. However in certain clinical situations heparin's efficacy seems to be somewhat limited. Despite the administration of heparin there is a high incidence of reocclusion of coronary arteries following thrombolytic therapy, and it has been observed that a significant number of patients receiving heparin treatment still exhibit thrombus extension. Although it is well established that the in vitro and in vivo anticoagulant activities of heparin is mediated via the potentiation of the major coagulation inhibitor, antithrombin III (ATIII), some in vivo antithrombotic mechanisms are not fully understood. There is poor correlation between the anticoagulant activity of heparin as measured by in vitro assays and their in vivo antithrombotic efficacy. This may be due to heparin being targeted to many blood constituents whose resultant activities on the coagulation system have not been measured as yet. The antithrombotic activity of heparin as well as the pathogenesis of bleeding complications during heparin treatment cannot be completely explained by the inhibition of blood coagulation factors. Platelet dysfunction and acceleration of fibrinolytic process have been implicated as additional factors involved. Recently a number of reports have suggested that the inhibition of the antithrombotic activity of heparin in these clinical situations may be due to the interaction of heparin with other plasma proteins specifically with fibrin(ogen) present in the thrombus. Despite the possible pathophysiological significance of heparin-fibrin(ogen) interaction, little is known about the physicochemical aspects of this reaction. In this study an attempt was made to locate where heparin binds to fibrin(ogen), using various isolated structural domains from the plasmin-mediated digests of fibrinogen and the individual chains of fibrinogen. The BIALITE system (Pharmacia Biosensor AB, Uppsala, Sweden) was employed for such a study. This utilises the Surface Plasmon Resonance (SPR) phenomenon and allows a direct quantitative analysis of the label-free molecular interaction, in real-time, from which association and dissociation rate constants can readily be obtained.

Animals

Effects of early plasmin digests of fibrinogen on isometric tension development in isolated rings of rat pulmonary artery.

The purpose of the study was to determine the effects of early plasmin-mediated digests of rat fibrinogen on the vascular tone of rat pulmonary artery in order to compare with reported vasoactive effects of high levels of isolated human peptides in various rat vascular beds. Isometric tension was monitored in isolated rings of rat pulmonary artery precontracted with phenylephrine (4 x 10(-8) mol). Fibrinogen degradation products (FgDPs) were produced by digestion of rat fibrinogen with plasmin to 1, 2, 3 and 60 minutes whereupon the digestion was stopped by addition of Trasylol. These FgDPs were added to the tissue bath to achieve final concentrations of 6.7, 13.3, 26.7 and 53.3 micrograms/mL i.e. values similar to those found in vivo during thrombolytic therapy for myocardial infarction. Results were expressed as a percentage of a maximal contraction elicited in each ring in response to phenylephrine (10(-5) M). The early FgDP fractions, at these pathophysiological concentrations, did not induce significant change in isometric tension in the isolated pulmonary arterial rings (P > 0.05, ANOVA).

Animals

Detection of fibrin in canine neoplasia.

A murine monoclonal antibody, designated 1H10, produced using a human fibrin-related immunogen, was shown to bind avidly to dog fibrin, but not to dog fibrinogen. Using immunofluorescence, fibrin was detected in canine gastric adenocarcinoma and in mixed tissue from a mammary tumour. No fibrin could be detected in bronchogenic carcinoma tissue.

Adenocarcinoma

A pig collagen peptide fraction. A unique material for maintaining biological activity during lyophilization and during storage in the liquid state.

There is frequent use of human and animal proteins as stabilizers during lyophilization of a variety of biological substances with a view to long term stable storage. This report describes the comparative excellent stabilizing effect of a porcine collagen peptide fraction (CPF) during the lyophilization and subsequent storage of three commonly used biological substances, alkaline phosphatase, tissue plasminogen activator and thrombin. The CPF was heated to 150 degrees C for one hour before use. The CPF was shown to have some advantage during lyophilized storage over human serum albumin. Solutions of thrombin stored in CPF at room temperature and at 37 degrees C for one week retained nearly all activity, while storage of thrombin in human serum albumin solution at 37 degrees C lost nearly all biological activity. These preliminary data suggest that porcine CPF is a safe and advantageous stabilizer for addition to biological products with a view to long-term lyophilized storage and short-term liquid storage.

Alkaline Phosphatase

Monoclonal antibodies to human fibrin: interaction with other animal fibrins.

Four monoclonal antibodies have previously been raised in our laboratory for possible use in thrombus imaging and the targeting of thrombolytic agents. These antibodies were raised to various human fibrin-related immunogens and each antibody had been selected for its specificity towards fibrin and not fibrinogen. To study further these antibodies in animal circulation models both in vivo and in vitro, their selectivity towards human fibrin as opposed to other animal fibrins was examined. In this study dissociation constants for each antibody with each of six species fibrins (human, baboon, pig, dog, sheep and rabbit) were estimated using both fibrin clots and monolayers. Some limited data were also obtained with Sepharose-fibrin. Of the antibodies two (denoted 12B3B10 and 12B3A11) are seen to bind almost exclusively to human fibrin with dissociation constants of about 8 x 10(-10) M using fibrin clots and monolayers. These same two mabs bound to baboon fibrin with a dissociation constant of 2 x 10(-9) M, while neither displayed significant levels of binding to the fibrins from dog, pig, sheep and rabbit. The other two antibodies investigated (1H10 and 5F3) were found to bind well to fibrins of human, baboon, pig and dog, with dissociation constants in the range of 1.4-4.2 x 10(-9) M. However neither 1H10 nor 5F3 displayed significant recognition of sheep and rabbit fibrins. Both 1H10 and 5F3 were also found by means of competitive ELISA's to retain their selectivity to baboon, dog and pig fibrins in the presence of their respective fibrinogens.

Animals

Evaluation of the fibrin binding profile of two anti-fibrin monoclonal antibodies.

Two anti-fibrin monoclonal antibodies, MAbs 1H10 and 5F3, raised to human freeze-fractured fibrin and thrombin-treated N-terminal disulphide knot (T-NDSK), respectively, were compared for epitope binding to various domains of the fibrinogen/fibrin moiety. Using plasmin-mediated fibrinogen digests, immunoblots showed that both MAbs crossreacted strongly with fragments X and Y, weakly with fragment-E and not at all with fragment D. Purified fragments D and E used in an ELISA confirmed that MAbs 1H10 and 5F3 cross-reacted in a dose-response fashion with the isolated fragment-E, while there was no reaction with fragment-D. The two MAbs were similarly shown to react with fibrin-derived fragment-E. Surface Plasmon Resonance (SPR) technology, employed to further evaluate the epitopes in fibrin, showed that MAb 1H10 had a higher affinity for fragment-E (KD = 8.04 x 10(-9) M) than MAb 5F3 (KD = 1.13 x 10(-8) M). Individual association and dissociation rate constants of 7.97 x 10(5) M-1s-1 and 3.97 x 10(-3)s-1, respectively, for MAb 1HAb 1H10, and 5.16 x 10(5) M-1s-1 and 3.62 x 10(-3)s-1, respectively, for MAb 5F3 were also obtained. A SPR inhibition assay confirmed that MAb 1H10 had a greater affinity for fragment-E than MAb 5F3. However individual isolated polypeptide chains of fibrinogen fragment E (E-A alpha, E-B beta, E-gamma) showed no reaction with the two antibodies in ELISA, immunoblot or SPR analysis procedures. Furthermore, SPR pair-wise epitope mapping analysis revealed that MAbs 1H10 and 5F3 have in fact distinct epitopes on fragment-E. These distinct epitopes appeared to be a conformational amalgam of linear sequences in two or three of the polypeptide chains of fragment-E, or distinct conformational epitopes on one of the three subunit chains alone.

Antibodies, Monoclonal

The international standard for plasminogen activator inhibitor-1 (PAI-1) activity.

Since the finding that plasminogen activator inhibitor-1 (PAI-1) may influence the initiation and progression of acute myocardial infarction, the assay of PAI-1 in plasma using a variety of commercial kits has become commonplace. The need for a standard to define the activity of PAI-1 prompted an international collaborative study (ICS) to calibrate the functional potency of a lyophilised plasma PAI-1 preparation (92/654). Since PAI-1 inhibits the 2 major plasminogen activators, tissue-type plasminogen activator (t-PA) and urinary-type plasminogen activator (u-PA) in an equimolar manner it was important to establish the potency of the PAI-1 inhibitor in terms of both t-PA and u-PA neutralisation. While the ICS indicated a wide spread of data between the laboratories the mean value of 27.5 t-PA neutralisation units and 7.0 u-PA neutralisation units was confirmed by numerous assays at NIBSC using a tedious but technically reliable titration assay procedure. The plasma PAI-1 proposed standard (92/654) was stable at 20 degrees C for 20 months. The Fibrinolysis Subcommittee of the Scientific and Standardization Committee (SSC) of the International Society on Thrombosis and Haemostasis (ISTH), (meeting in Leuven. Belgium in September 1994) has recommended that the plasma PAI-1 (92/654) should be accepted as the International Standard for PAI-1 and should define a unitage in terms of both t-PA and u-PA neutralisation. Subsequently the Expert Committee on Biological Standardization of the World Health Organization (ECBS-WHO) meeting in Geneva, Switzerland in October 1995 approved plasma PAI-1 (92/654) as the International Standard.

Humans

Characterisation of the chains of human fibrinogen isolated by perfusion chromatography using fibrin specific monoclonal antibodies.

In order to study the epitopes on fibrin to which monoclonal antibodies are directed, we required pure individual polypeptide chains of human fibrinogen in milligram quantities. High purity chains of human fibrinogen were rapidly obtained, in under 3 minutes, by the novel procedure of reversed-phase perfusion chromatography and these chains were subjected to immunological characterisation using monoclonal antibodies specific to the individual chains. Cross-reactivity against these antibodies in both immunoblotting and enzyme linked immunospecific assay (ELISA) procedures showed that these isolated fibrinogen chains were of high purity and retained high immunoreactivity. These chains were employed to initiate studies to define the epitopes in fibrin to which four fibrin specific monoclonal antibodies, B10, A11, 5F3 and 1H10 are targeted. Two of these antibodies, B10 and A11, were shown to be directed to a linear sequence on the A alpha chain, although the binding profiles for the two antibodies suggested that different epitopes may be involved for each of these two antibodies. MAbs, 1H10 and 5F3, however, did not bind to any of the three fibrinogen chains, suggesting that conformational epitopes in fibrin are likely to be involved in the binding of these two antibodies to fibrin.

Antibodies, Monoclonal

The tissue plasminogen activator and urokinase response in vivo during natural resolution of venous thrombus.

PURPOSE: The aim of this study was to measure the distribution of endogenous plasminogen activators during thrombolysis with an endothelial-conserving model of laminated thrombosis. METHODS: Thrombi were raised in the inferior vena cava of rats with thrombin and flow reduction. The thrombi, adjacent vein wall, and distant veins (the superior vena cava) were removed at intervals from 1 hour to 21 days from formation and then cryohomogenized and assayed with specific bioimmunoassays for tissue-type (t-PA) and urokinase-type plasminogen activators (u-PA). RESULTS: The measured t-PA activity of the vein wall around the thrombus was reduced compared with the control inferior vena cava at 4 days. Both the u-PA and t-PA content of the thrombus increased progressively during thrombolysis. The t-PA activity increased significantly in the distant vein walls in the animals with thrombi. Immunocytochemistry and in situ hybridization localized the t-PA to a mononuclear cell infiltrate and showed up-regulation of mRNA for rat t-PA in these monocytes. CONCLUSIONS: The local plasminogen activator response was predominantly within the thrombus itself. Increased t-PA activity was additionally found in distant veins but was reduced in the vessel wall adjacent to the thrombus. This is the first report to show that u-PA activity is increased within organizing thrombus in vivo and that most of the t-PA activity is localized to a monocyte infiltrate.

Animals