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Biomedical subjects

M K Pugsley

Publications and source records attributed to M K Pugsley.

At least 19 recordsLinked to original sources

Inhibitors of the complement system currently in development for cardiovascular disease.

Controlled activation of the complement system is critical to the host-defense response of the immune system. Activated complement is responsible for the stimulation of a localized protective inflammatory response to either invading microorganisms or foreign molecules (toxins). However, the autologous activation of the complement system can have devastating consequences on many organ systems. This review discusses the various pathways involved in the activation of the complement system and the multiple levels of control established within the body to regulate activation. It also focuses on the role of complement activation in cardiovascular disease, especially myocardial ischemia and reperfusion injury as well as in cardiopulmonary bypass procedures. Lastly, this review also provides a comprehensive overview of both biologically derived proteins and chemically developed inhibitors of the complement system that range from those that are currently in the discovery stage to those that are in clinical development as novel therapeutic agents.

Animals↗

Commercial development considerations for biotechnology-derived therapeutics.

Although it seems unlikely, it has only been 20 years since the US Food and Drug Administration (FDA) approved the first recombinant protein as a therapeutic modality. Unbelievably, an average of slightly more than two approvals per year of monoclonal antibodies (MAbs) and other human protein therapeutics has been achieved by this burgeoning industry 43 recombinant protein therapeutics in the two decades since 1982 (see Table 1), and the pace is increasing.

Antibodies, Monoclonal↗

Etanercept. Immunex.

Immunex has developed and launched etanercept, a soluble TNF receptor (TNFR) fusion protein, for the treatment of rheumatoid arthritis (RA). It has also been developed for various TNF-mediated conditions such as congestive heart failure, endometriosis and multiple sclerosis. Etanercept has been launched as a second-line agent in the US for the treatment of moderate-to-severe RA and can be used in conjunction with methotrexate in patients unresponsive to methotrexate alone. It is also available in the EU. In 2000, it was in phase III trials for psoriatic arthritis and an NDA filing for this indication was expected for the first half of 2001. In July 2001, the sBLA was filed, and in September 2001, the FDA granted the sBLA Priority Review status. As of January 2001, etanercept was in phase III trials for congestive heart failure, with sNDA filing expected in 2002; however, by March 2001, these had been halted, as it did not appear that statistical significance would be reached for the efficacy endpoints. Further data analysis was being undertaken at this time, before a final decision was taken. In April 2001, Merrill Lynch reported that development for this indication was to be halted. Sales for the drugs first full quarter on the market in 1999 were US $59.7 million. By November 1999 the drug had made sales of US $500 million; Immunex expected the drug to generate over US $2 billion in annual sales by 2004. In September 2000, Merrill Lynch reported that if sales of the drug continued at the present rate then it is likely that demand would temporarily outstrip supply in 2001. Resolution of the supply issue was expected by 2002. Also in September 2000, Merrill Lynch lowered their estimate of sales in 2001 from US $1 billion to $927 million. In the long-term, Merrill Lynch believed that the drug has the potential to exceed US $5 billion in sales in the US. In April 2001, Merrill Lynch predicted that etanercept prescribed for RA would generate sales of US $71 in 2002 rising to US $600 million in 2005. In October 2001, Morgani Stanley reported that Enbrel continues to be the primary source of revenue of Immunex (US $198.1 million). It was also reported that if launched for CHF, an estimated peak year revenue was likely to be US $500 million. The company maintains a website containing additional information about etanercept at http://www.enbrelinfo.com.

Animals↗

Spiradoline, a kappa opioid receptor agonist, produces tonic- and use-dependent block of sodium channels expressed in Xenopus oocytes.

Spiradoline, an arylacetamide kappa (kappa) opioid receptor agonist, produced a potent tonic block of rat neuronal (EC(50)= 34+/-5 microM) and heart (EC(50)= 183+/-13 microM) sodium channels and also blocked IFMQ3 mutant neuronal sodium channels (EC(50)= 130+/-34 microM) that lack fast inactivation when expressed in Xenopus oocytes. Spiradoline produced a hyperpolarizing shift in the voltage-dependence of sodium channel inactivation and exhibited a marked frequency-dependent component to blockade of sodium channels. The onset of open channel block of the IFMQ3 channel by spiradoline was best fit with a first-order blocking scheme, yielding an affinity constant of 116 +/- 33 microM. Thus, spiradoline blocks sodium channels by interacting with the major states of the channel which could result in local anesthetic action in nerves and antiarrhythmic action in the heart.

Animals↗

Cardiac transplantation does not effect ischaemia-induced arrhythmias in rats.

OBJECTIVE: In many species arrhythmias induced by myocardial ischaemia appear to be in part dependent upon cardiac sympathetic nerves. However, previous experiments in rats did not suggest that myocardial or other catecholamines are involved in ischaemic arrhythmogenesis in this species. The aim of this study was to investigate this further using transplanted hearts. METHODS: We transplanted 'donated' hearts onto the abdominal aorta of recipient rats and, at varying periods after transplantation, subjected donated and recipient hearts to occlusion of the left anterior descending (LAD) coronary artery. Donated and recipient hearts were tested at various times after transplantation for responsiveness to drugs acting upon aspects of the autonomic nervous system. The intention of this latter study was to assess the status of innervation and receptors simultaneously in both donated and recipient hearts. RESULTS: Donated (transplanted) hearts showed responses consistent with denervation and receptor supersensitivity. Changes varied with the duration of the transplant. Over the same period recipient hearts did not change in responsiveness to drugs. When subjected to coronary artery occlusion, transplanted hearts responded to occlusion with the same frequency and severity of arrhythmias as recipient and other control hearts, regardless of the duration of transplant, or sensitivity to drugs. CONCLUSIONS: The results of these experiments suggest that cardiac innervation is not an important factor in the genesis of ischaemia-induced arrhythmias in rats.

Acetylcholine↗

Molecular analysis of the Na+ channel blocking actions of the novel class I anti-arrhythmic agent RSD 921.

RSD 921 is a novel, structurally unique, class I Na+ channel blocking drug under development as a local anaesthetic agent and possibly for the treatment of cardiac arrhythmias. The effects of RSD 921 on wild-type heart, skeletal muscle, neuronal and non-inactivating IFMQ3 mutant neuronal Na+ channels expressed in Xenopus laevis oocytes were examined using a two-electrode voltage clamp. RSD 921 produced similarly potent tonic block of all three wild-type channel isoforms, with EC50 values between 35 and 47 microM, whereas the EC50 for block of the IFMQ3 mutant channel was 110+5.5 microM. Block of Na+ channels by RSD 921 was concentration and use-dependent, with marked frequency-dependent block of heart channels and mild frequency-dependent block of skeletal muscle, wild-type neuronal and IFMQ3 mutant channels. RSD 921 produced a minimal hyperpolarizing shift in the steady-state voltage-dependence of inactivation of all three wild-type channel isoforms. Open channel block of the IFMQ3 mutant channel was best fit with a first order blocking scheme with k(on) equal to 0.11+/-0.012x10(6) M(-1) s(-1) and k(off) equal to 12.5+/-2.5 s(-1), resulting in KD of 117+/-31 microM. Recovery from open channel block occurred with a time constant of 14+/-2.7 s(-1). These results suggest that RSD 921 preferentially interacts with the open state of the Na+ channel, and that the drug may produce potent local anaesthetic or anti-arrhythmic action under conditions of shortened action potentials, such as during anoxia or ischaemia.

Animals↗

Effects of bisaramil, a novel class I antiarrhythmic agent, on heart, skeletal muscle and brain Na+ channels.

The effects of bisaramil, a novel diazabicyclononane antiarrhythmic agent, were compared to those of lidocaine, a clinically used class Ib antiarrhythmic agent, on heart, skeletal muscle and brain Na+ channels expressed in Xenopus laevis oocytes using a two-electrode voltage clamp. Both bisaramil and lidocaine produced a concentration-dependent tonic block of Na+ current that was most effective on cardiac channels, but bisaramil was more potent than lidocaine. Both drugs produced a concentration-dependent shift in the voltage-dependence of inactivation and delayed recovery from inactivation. Bisaramil produced marked frequency-dependent block of heart channels and mild frequency-dependent block of skeletal muscle and brain channels, whereas lidocaine produced marked frequency-dependent block of all three channel types. Therefore, bisaramil shows tonic and frequency-dependent blockade that is most potent against the heart Na+ channel, which may account for its potent antiarrhythmic efficacy in vivo, and may result in reduced central nervous system toxicity compared to clinically used agents such as lidocaine.

Anesthetics, Local↗

Sodium channel-blocking properties of spiradoline, a kappa receptor agonist, are responsible for its antiarrhythmic action in the rat.

Spiradoline (U-62,066E), a selective kappa (kappa) receptor agonist, was examined for actions on the cardiovascular system and on myocardial ionic currents in rats. We initially characterized cardiac, hemodynamic, and antiarrhythmic actions of spiradoline in isolated perfused rat hearts and pentobarbital-anesthetized rats. Electrophysiologic studies in isolated myocytes were used to elucidate the mechanism for changes observed in vivo in the ECG, as well as for antiarrhythmic actions against electrical and ischemia-induced arrhythmias. In isolated rat hearts, spiradoline reduced heart rate and cardiac contractility and increased the PR interval and QRS width of the ECG in a concentration-dependent manner. In anesthetized rats, spiradoline dose-dependently reduced blood pressure and heart rate and prolonged the PR interval and QRS width. At slightly higher doses, it increased the QaT interval of the ECG. RSh, an index of sodium channel blockade in the rat, also was dose-dependently increased. Electrical stimulation of the left ventricle suggested that spiradoline may exert its antiarrhythmic action by blockade of myocardial sodium currents. The electrophysiologic actions of spiradoline on sodium currents, the transient outward (i(to)) and sustained plateau potassium (ik(sus)) currents were studied in isolated cardiac rat myocytes by whole-cell patch-clamp techniques. Spiradoline (15-500 microM) reduced peak sodium current in a rapid, reversible, and concentration-dependent manner; it also increased the rate of decay of I(to) and reduced the amplitude of Ik(sus). At a concentration of 150 microM, spiradoline produced a 24 +/- 2 mV hyperpolarizing shift in sodium current inactivation kinetics but did not alter activation processes. Spiradoline showed both tonic and frequency-dependent components of sodium current block. Thus spiradoline produced its antiarrhythmic actions via sodium channel blockade in myocardial tissue, although higher doses also block potassium currents. This combined ion channel-blocking property may be of added clinical benefit in the setting of myocardial ischemia.

Animals↗

The cardiac electrophysiological effects of sparteine and its analogue BRB-I-28 in the rat.

This study compares the cardiovascular and antiarrhythmic effects of sparteine and a 3,7-diheterobicyclo[3.3.1]nonane analogue of sparteine, BRB-I-28, in pentobarbitone-anaesthetized rats subjected to left-ventricle electrical stimulation and occlusion of the left anterior descending coronary artery. Sparteine and BRB-I-28 produced a dose-dependent reduction in heart rate and blood pressure over the dose range 1-64 mumol/kg/min. As well, the P-R and Q-aT intervals of the electrocardiogram (ECG) were prolonged. The thresholds for induction of premature beats and ventricular fibrillation were dose-dependently increased and both drugs increased refractoriness. While sparteine and BRB-I-28 (at 16 and 64 mumol/kg/min, respectively) did not change the incidence of premature beats or ventricular tachycardia with coronary occlusion, both drugs equally reduced the incidence of ventricular fibrillation. We characterized the actions of sparteine and BRB-I-28 on cardiac Na+, transient outward and sustained outward plateau K+ currents of rat myocytes using the whole-cell patch-clamp. Sparteine and BRB-I-28 produced a concentration-dependent reduction in Na+ current with EC50 values of 110 and 230 microM, respectively. Both drugs produced hyperpolarizing shifts of 8 and 11 mV, respectively, for Na+ channel inactivation while neither produced a change in channel activation. Both drugs produced a concentration-dependent block of the sustained plateau K+ current and increased the rate of decay of the transient outward K+ current. Thus, sparteine and BRB-I-28 possess Na+ and K+ channel blocking properties which may account for their antiarrhythmic actions against electrical and ischaemic arrhythmias.

Animals↗

Effects of anipamil, a long acting analog of verapamil, in pigs subjected to myocardial ischemia.

In this study we examined the cardiovascular and possible antiarrhythmic actions of anipamil, a long acting analog of verapamil. Initial dose-response studies for anipamil (0.25-6.0 mg/kg, i.v.) in pentobarbitone-anesthetized pigs (n = 4) were conducted to determine the effects of the drug on EKG and hemodynamic measures. In this initial study anipamil was found to produce a dose-dependent reduction in blood pressure, left-ventricular pressure and its derivative (dP/dtmax), cardiac output, and increase in heart rate. These results were used as a basis from which to choose doses for a second study to assess antiarrhythmic actions of anipamil against arrhythmias induced by regional myocardial ischemia. The antiarrhythmic effects of the two doses were compared with verapamil when the latter was given at a dose producing cardiovascular effects mid-way between those produced by the two doses of anipamil. Anesthetized pigs were randomly assigned to receive one of three drug treatments, or vehicle control, prior to occlusion of the left-anterior descending coronary artery. Antiarrhythmic effectiveness of low (1.0 mg/kg + 0.10 mg/kg/min infusion, n = 8) and high (5.0 mg/kg + 0.50 mg/kg/min infusion, n = 12) dose anipamil was compared to that of verapamil (0.5 mg/kg + 0.60 mg/kg/min infusion, n = 8) in a vehicle controlled study (n = 15). Arrhythmic events (VPB, VT and VF incidence) were monitored and grouped according to their time of occurrence after occlusion. Thus phase 1a arrhythmias occurred 0-5 min after initiation of occlusion, phase 1b, 5-30 min, and phase 2, 0.5-4 hr after occlusion. This study showed that during phase 1a there was a low incidence of arrhythmias in all groups except the one receiving 5 mg/kg anipamil where the group incidence of VT was 58% as compared to 20% in controls (n = 15). Most ventricular arrhythmias occurred in all groups during phase 1b. In this phase verapamil abolished VF and reduced VT, as compared with controls. Anipamil (high and low doses) tended to reduce VT but not VF. In the period 0.5 to 4 hours post occlusion (phase 2) all three drug treatments were associated with fewer arrhythmias but this only reached statistical significance with verapamil. Thus verapamil was more efficacious than anipamil at providing antiarrhythmic protection against both early and late onset arrhythmias. Anipamil may have been proarrhythmic in the early phase of arrhythmias and only moderately antiarrhythmic, if at all, in the later phase.(ABSTRACT TRUNCATED AT 400 WORDS)

Analysis of Variance↗

Tonic and use-dependent block of sodium currents in isolated cardiac myocytes by bisaramil.

1. The effects of bisaramil on sodium currents in rat isolated cardiac myocytes were examined by use of tight-seal, whole-cell patch clamp techniques. Bisaramil produced a concentration-dependent, readily reversible reduction in peak transient sodium current. When the sodium current was evoked at 3 s intervals the estimated ED50 for bisaramil was about 11 microM. 2. Bisaramil (16 microM) produced a shift in the inactivation curve to hyperpolarized potentials of about 10 mV, but produced no change in the voltage-dependence of activation. 3. The block of the sodium current by bisaramil showed a profound use-dependence. A concentration of 10 microM produced a considerable block of the current with repeated stimulation. The recovery from block was biphasic, showing fast and slow components which had time constants of about 40 ms and 5 s respectively. 4. Bisaramil produced little tonic block of the sodium current at concentrations of 100 microM; at 300 microM it produced tonic block of around 50%, with extreme use-dependence. 5. Bisaramil appeared not to interact primarily with the inactivated form of the channel, since lengthening the depolarizing pulses did not affect the degree of block produced.

Animals↗