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Biomedical subjects

G Tillotson

Publications and source records attributed to G Tillotson.

At least 19 recordsLinked to original sources

A new respiratory fluoroquinolone, oral gemifloxacin: a safety profile in context.

Gemifloxacin is a broad-spectrum quinolone antibacterial with enhanced potency against Gram-positive bacteria, including multi-drug resistant Streptococcus pneumoniae, and retained potency against Gram-negative bacilli and bacterial strains resistant to other antibiotics. It has proven particularly effective in respiratory and urinary tract infection. This review presents safety data from 6775 patients included in clinical trials, receiving either the recommended 320 mg once daily oral dose of gemifloxacin, or standard dose of other quinolones, macrolides or beta-lactams (n = 5248). Studies in healthy volunteer and special populations are also reported. Adverse experiences (AEs) were observed in 44.7% of gemifloxacin-treated patients and 47.5% of those who received comparator drugs. Mild gastro-intestinal adverse drug reactions (ADRs) (diarrhoea 5.1%, nausea 3.9%) predominated. Rash, usually maculo-papular and in no case proceeding to more severe eruptions, was observed in 3.6% of those receiving gemifloxacin. A higher incidence of rash (>20%) was observed in young women and was the subject of further study. Adverse drug reactions suspected or probably related to treatment occurred in 17.4% of patients receiving gemifloxacin and in 20% of those receiving comparator antibiotics. Diarrhoea and nausea were experienced by 3.6 and 2.7%, respectively, of gemifloxacin-treated patients (4.6 and 3.2% of comparators), rash by 2.8% (0.6% of comparators) and headache by 1.2% (1.5% of comparators). Gemifloxacin-related vomiting (0.9%), dizziness (0.8%) and taste perversion (0.3%) were uncommon. Treatment discontinuation followed one or more adverse drug reactions in 2.2% of gemifloxacin-treated patients (0.9% due to rash) and 2.1% of comparator-treated patients. A total of 63 deaths (33 receiving gemifloxacin) occurred in the trial population: none were considered related to treatment. A slight prolongation in QT interval (2.56 ms (S.D. +/-24.5)) was observed in gemifloxacin-treated patients: no cardiac arrhythmias were reported. There was a low incidence of liver function tests (LFTs) classified as of potential clinical concern: gemifloxacin (0.4-1.2%), comparators (0.2-1.3%). Serious adverse events (SAEs), occurring during but not necessarily related to therapy, occurred in 3.6% of gemifloxacin-treated patients (4.3% of comparators). SAEs related to treatment agents were rare (0.4% in each group) and included rash (0.1%) and elevated liver enzymes (<0.1%). Gemifloxacin was well tolerated by the elderly, those with renal or hepatic impairment and when co-administered with omeprazole, digoxin, theophylline, warfarin (with which there were no significant interactions) and Maalox. In conclusion, gemifloxacin 320 mg once daily demonstrated a favourable safety and tolerability profile similar to that of comparator antibiotics, including other quinolones.

Administration, Oral↗

Haemophilus parainfluenzae infection of respiratory mucosa.

The pathogenicity of Haemophilus parainfluenzae (Hpi) in the respiratory tract is unclear, in contrast to the accepted pathogenicity of its close relative non-typable H. influenzae. We have investigated the interaction of two Hpi isolates with the mucosa of adenoid and bronchial tissue organ cultures. The adherence of bacteria to the mucosa of organ cultures, the effect of broth culture filtrates on human nasal epithelium, and interleukin (IL)-8 production by A549 cell cultures was investigated. Hpi 4846 adhered infrequently in clusters of pleomorphic cocco-bacilli to areas of epithelial damage, mucus and unciliated cells in adenoid organ culture experiments at 24 h, but not bronchial mucosa. Hpi 3698 was seen in only one adenoid and no bronchial organ cultures at 24 h. In separate experiments, Hpi 3698 was cleared more rapidly from the centre of the adenoid organ culture and was not cultured at 24 h. Although not adhering to the mucosa at 24 h, Hpi 3698, but not Hpi 4846, caused an increase in the amount of epithelial damage in both types of organ culture. Broth culture filtrates of both strains caused immediate slowing of ciliary beat frequency that progressed, and disrupted epithelial integrity. Dialysed culture filtrates of both strains stimulated IL-8 production by A549 cells, with the culture filtrate of Hpi 3698 being most potent. We conclude that two strains of Hpi varied in their adherence to adenoid tissue, and neither adhered to bronchial tissue. These results lead us to speculate that Hpi is only likely to be a pathogen in the lower respiratory tract when impaired airway defences delay bacterial clearance.

Bronchi↗

Penicillin-resistant streptococcus pneumoniae: review of moxifloxacin activity.

Streptococcus pneumoniae is a significant pathogen of respiratory tract infections such as pneumonia, sinusitis, meningitis, and acute otitis media. Rising incidences of antimicrobial resistance among pneumococcal strains reported worldwide have led to research into and development of advanced antibacterials with improved gram-positive activity. Moxifloxacin, a new 8-methoxy quinolone, has been tested against a variety of S. pneumoniae strains, including penicillin-sensitive, intermediately resistant to penicillin, and penicillin-resistant strains. We review the preclinical data corroborated by the available clinical experience to demonstrate moxifloxacin's activity against S. pneumoniae strains, irrespective of penicillin susceptibility.

Animals↗

Evaluation of the clinical microbiology profile of moxifloxacin.

Moxifloxacin is a new broad-spectrum antibacterial agent for treatment of respiratory tract infection of pathogens, including the major pathogens isolated in respiratory tract infections. The pharmacokinetic and pharmacodynamic properties of moxifloxacin are: excellent bioavailability, long half-life, and superior tissue penetration. Consequently, the 90% minimum inhibitory concentration (MIC(90)) values exhibited by moxifloxacin are generally lower than the concentrations of moxifloxacin found in circulation and in pulmonary tissues after a standard 400-mg dose given for up to 30 h. The relationship between moxifloxacin MIC(90) values and clinical response was investigated. The results of 13 clinical trials, performed in 30 countries between 1997 and 1998 and comprising 2618 patients treated with moxifloxacin or a comparator drug, were reviewed. Overall, 94% clinical success and 95% bacterial eradication was observed with moxifloxacin. These results were equivalent or superior to results seen with the comparator drugs. Clinical response rates and bacterial eradication rates with moxifloxacin were not significantly affected by bacterial resistance to other antibiotics (i.e., penicillin, clarithromycin, or amoxicillin). The majority (89%-97%) of the different bacterial strains with MICs for moxifloxacin < or =2 mg/L were successfully eradicated. In conclusion, moxifloxacin has potent in vivo bactericidal activity, and pathogen sensitivity to moxifloxacin is in accordance with US Food and Drug Administration and European suggested breakpoint values.

Anti-Infective Agents↗

Antimicrobial safety and tolerability: differences and dilemmas.

The adverse drug reactions associated with antimicrobials have become a topic of major importance and concern in the last few years. Antimicrobial toxicity may take many forms, varying from mild, transient phenomena to dramatic, life-threatening events such as seizures or cardiac arrhythmias. We review the toxicity of antimicrobials in general and of the fluoroquinolones in particular and attempt to explain the adverse events by use of structure-adverse event relationships where possible. There are currently 5 main mechanisms that can be invoked to explain antimicrobial toxicity: direct effects, hypersensitivity, changes in microbial flora, drug interactions, and microbial lysis. The adverse drug reactions seen with fluoroquinolones are explained on the basis of these 5 mechanisms. The various organ systems affected by the fluoroquinolones are considered; then individual members of the fluoroquinolone class are reviewed. The unexpected and dramatic problems encountered with temafloxacin and trovafloxacin are discussed as well.

Anti-Infective Agents↗

The efficacy of moxifloxacin in acute exacerbations of chronic bronchitis: a Spanish physician and patient experience.

Chronic bronchitis is a debilitating disease affecting many millions of patients globally. They suffer multiple acute exacerbations each year, often requiring many courses of antimicrobials to enable them to return to normal. The impact of the condition on both the individual patient and society as a whole is considerable and growing; thus antimicrobial therapy should induce rapid and effective outcomes as soon as possible. This open, community-based study of 5737 patients enrolled by over 2000 primary care physicians from across Spain examined the clinical effect of oral moxifloxacin on patients' signs and symptoms of acute exacerbations of chronic bronchitis (AECB) over a 45-day period. The symptoms were assessed using daily diary cards in addition to physician evaluations. Clinical assessment at day 7 showed 93.0% of patients were cured. The patient diary card showed that two-thirds of patients felt better by day 3 or 4. Adverse events were reported in 3.5% of patients in this study, the most common being diarrhoea, nausea and dizziness, and epigastric pain. These reactions were mild to moderate in intensity. There were no patient deaths due to infection during the study. Physicians and patients reported that once-daily moxifloxacin gave fast relief of symptoms of acute exacerbations of chronic bronchitis.

Acute Disease↗

Comparative tolerability of the newer fluoroquinolone antibacterials.

The most common adverse effects of the fluoroquinolones involve the gastrointestinal tract, skin and CNS, and are mainly mild and reversible. Of the gastrointestinal events, nausea and vomiting are the most common. Mild hepatic reactions are a class effect, usually presenting as mild transaminase level increases without clinical symptoms. However, postmarketing surveillance has revealed significant hepatotoxicity with trovafloxacin. It is not currently known whether the severe reactions to trovafloxacin are specific to that agent or simply represent an extreme of an emerging class effect. The enormous worldwide usage of, and extensive published adverse effect data on the other fluoroquinolones and naphthyridones suggests the former. In perspective, rare but serious hepatotoxicity has been reported with other fluoroquinolones and the overall incidence of trovafloxacin hepatotoxicity is not dissimilar to that reported with flucloxacillin and amoxicillin-clavulanic acid. CNS reactions vary in severity and include dizziness, convulsions (notably with lomefloxacin) and psychoses. Fluoroquinolones differ in their pro-convulsive activity, relating to their differing potential as gamma-aminobutyric acid antagonists and binding to the N-methyl-D-aspartate receptor. The basis for the increased seizure potential following the coadministration of nonsteroidal anti-inflammatory drugs with certain fluoroquinolones is not fully understood. Fluoroquinolone phototoxicity, caused by the generation of toxic free oxygen species under exposure to UVA radiation, is significantly more common with 8-halogenated compounds. Certain patient groups, e.g. patients with cystic fibrosis, are predisposed to this adverse effect. Murine photocarcinogenicity has been demonstrated with lomefloxacin, but no such effects have been reported in humans. Prolongation of the QTc interval is also a class effect, although cardiac arrhythmias have only been linked with sparfloxacin. Among the newer fluoroquinolones, clinically significant cardiac events are rare or absent but possible interactions in patients receiving other drugs capable of causi ng QT prolongation should be anticipated. Tendinitis and rupture, usually of the Achilles tendon, are rare, class-effects of fluoroquinolones, most frequently reported with pefloxacin. Predisposing factors include aging, corticosteroid use, renal disease, haemodialysis and transplantation. Use of fluoroquinolones in paediatric patients remains contentious. However, accruing human data suggest that restrictions on paediatric use imposed because of fluoroquinolone-induced cartilage damage in juvenile animals, may soon be relaxed. Data from over 1700 children in the UK failed to disclose arthropathy and extensive paediatric use of norfloxacin in Japan and ciprofloxacin in developing countries has been free of articular effects.

Animals↗

Therapeutic advances of new fluoroquinolones.

Fluoroquinolone antimicrobials have been available for over 10 years. Recent modifications to nuclear side-chains have enhanced both the antimicrobial and pharmacokinetic profiles of this class. Rapidly increasing antimicrobial resistance among community and hospital bacterial pathogens has diminished therapeutic options. Infections caused by such pathogens, including drug-resistant Streptococcus pneumoniae and multi-resistant Enterobacteriaceae are now treatable by few classes of antibacterials, one of these being the fluoroquinolones. Ciprofloxacin was one of the first effective agents available in both iv. and oral formulations for the treatment of Gram-negative infection, resistant to other antibiotics. More recent developments, such as sparfloxacin and grepafloxacin, are more effective in vitro against Gram-positive pathogens, although their safety profile may be less promising. Fluoroquinolones not yet in widespread clinical use, including trovafloxacin, clinafloxacin and moxifloxacin, hold considerable promise as community 'respiratory antimicrobials' and the results of clinical trials are awaited with anticipation. In this review, the three generations of fluoroquinolone development are examined and the relative antimicrobial, pharmacokinetic, clinical and safety profiles of available and developmental quinolones are compared.

Journal Article↗

Use of ciprofloxacin in developing countries.

BACKGROUND: The demographic and subsequent economic pressures in developing nations have contributed to the increasing levels of antibiotic resistance among both commensal flora and pathogenic bacteria. As empirical options are diminishing daily, the role of ciprofloxacin in pediatric infections is becoming increasingly significant. OBJECTIVE: The levels of resistance among various enteric pathogens are described, and the efficacy and safety of ciprofloxacin in treating infections such as shigellosis, cholera and Escherichia coli gastroenteritis are discussed. The findings of a large study of invasive salmonellosis in children in rural Africa are briefly presented, including the role of ciprofloxacin in multiresistant invasive disease. In addition the role of ciprofloxacin as a chemoprophylactic agent in the control of meningococcal disease is discussed. RESULTS: The efficacy and safety of ciprofloxacin in children were found to be similar to those observed in adults for gastrointestinal infectious diseases. Overall the data presented confirm that ciprofloxacin is a safe and efficacious agent for use in children in the developing world. CONCLUSION: Ciprofloxacin has been shown to be safe and efficacious in children in developing countries. Subsequently a priority for both the pharmaceutical industry and regulatory authorities in developing nations is to prevent fluoroquinolone misuse and development of antibiotic resistance.

Anti-Infective Agents↗

Randomized controlled trial of a drug regimen that includes ciprofloxacin for the treatment of pulmonary tuberculosis.

The fluoroquinolones are promising new antituberculous agents. A randomized controlled trial of 200 adult patients with sputum smear-positive pulmonary tuberculosis was conducted in Tanzania. Patients received either a trial regimen (HRC) consisting of isoniazid (300 mg), rifampin (600 mg), and ciprofloxacin (750 mg) or a control regimen (HRZE) consisting of isoniazid (300 mg), rifampin (600 mg), pyrazinamide (25 mg/kg), and ethambutol (15 mg/kg). The 168 evaluable patients all had negative smears and cultures by month 6, but the time to conversion to negativity was longer for the HRC group than for the HRZE group because of the poor response of patients infected with human immunodeficiency virus (HIV) to the HRC regimen. Relapse was more frequent in the HRC group. The sterilizing activity of ciprofloxacin does not appear to be equal to that of the combination of pyrazinamide and ethambutol, but the difference in outcome was significant only among HIV-infected patients.

AIDS-Related Opportunistic Infections↗

Chemotherapy for chronic bronchitis. Controversies.

Chronic bronchitis is a common inflammatory disease of the airways characterised by cough, sputum production and associated features such as dyspnoea and respiratory obstruction. It has a poor prognosis once fully developed and imposes a heavy financial burden on affected societies. Chronic bronchitis is subject to periodic exacerbations in which the role of bacterial infection and the rightful place of antibiotic therapy is only slowly emerging, largely due to the non-homogeneity of the populations under study. Haemophilus influenzae is implicated as the pathogen in more than half of all bacterial exacerbations, Streptococcus pneumoniae and Moraxella catarrhalis accounting for a further third. Viruses and mycoplasmas are also involved. Some 18-25% of patients receiving domiciliary therapy may fail to respond to initial treatment, calling into question the efficacy of antibiotics in acute exacerbations. In part this may relate to sub-optimal respiratory pharmacokinetics as most antibiotics are quite effective against sensitive respiratory pathogens in vitro. However, bacterial resistance rates against traditional agents are rising rapidly in Europe and new agents are needed to counter this threat. Paradoxically few such agents have been shown to improve on the results of amoxycillin and other standard drugs, probably because most trials include patients with exacerbations of only mild-to-moderate severity due to sensitive pathogens. Since recent large scale studies have demonstrated the efficacy of antibiotic therapy compared with placebo in defined exacerbations, use of these definitions has allowed more realistic assessment of new agents which, in terms of improved antibacterial potency and respiratory pharmacokinetics, should offer superior efficacy. Regression analysis of a large scale general practice survey in the UK has now shown the frequency of exacerbations and the presence of co-morbid conditions to correlate significantly with a poor therapeutic outcome and thus, by implication, with severity. Future trials of antibacterial chemotherapy for acute bacterial exacerbations of chronic bronchitis should incorporate such criteria so that real differences between existing and improved compounds can be assessed.

Anti-Bacterial Agents↗

The effects of low concentrations of antibiotics on epithelial damage caused by non-typable Haemophilus influenzae and bacterial morphology.

Sterile culture filtrates from non-typable Haemophilus influenzae (NTHi) grown in medium containing no antibiotics or 0.25 MIC of amoxycillin, ciprofloxacin or loracarbef were examined for their effect on the ciliary beat frequency (CBF) and structure of human respiratory epithelium. CBF slowing was significantly (P < 0.05) less with 0.25 MIC of all three antibiotics. The epithelium was significantly (P < 0.05) less disrupted with ciprofloxacin. The morphology of NTHi infecting human adenoid organ cultures after 24 h with or without 0.25 MIC of the same antibiotics was measured by scanning electron microscopy. Only ciprofloxacin caused a significant (P < 0.05) change in morphology.

Anti-Bacterial Agents↗

Tolerability of fluoroquinolone antibiotics. Past, present and future.

New fluoroquinolones have been in clinical use for 10 years and have an excellent record of safety and tolerance. The main elements of their adverse reaction profile were predictable from human experience with precursor naphthyridines and quinolones, and from toxicological studies in animals. Thus gastrointestinal reactions (1 to 5%), skin disturbances (less than 2.5%) and central nervous system (CNS) effects (usually around 1 to 2%) were anticipated. Individual group members exhibit particular properties in relation to their chemical structures, for example the phototoxicity associated with 8-halogenation of the nucleus and found to be a particular problem with lomefloxacin and sparfloxacin. Other members, for example ofloxacin, are linked to a higher than usual incidence of CNS reactions and psychological disturbance. However, despite increasing usage, none of the present group have been implicated in joint damage in children, which had been a major concern following reports of this effect in juvenile animals in chronic toxicity studies. Furthermore, intravenous formulations appear to have no associated increase in toxicity. Crystalluria with associated renal damage, originally thought likely to limit intravenous dosage, has not proved to be a problem in humans. Clinically significant interactions may occur but, as with those involving various NSAIDs and potentially leading to convulsions, they have been defined and are thus avoidable. Postmarketing surveillance studies and prescription event monitoring have largely confirmed the limited adverse reaction profile defined during clinical trials. However, some unexpected reactions have appeared after launch, most notably the episodes of haemolysis, renal failure and hypoglycaemia which led to the withdrawal of temafloxacin. These effects have not been observed with other fluoroquinolones. However, severe tendinitis appears to be a group effect, albeit rare, and anaphylactoid reactions have been reported with several of the fluoroquinolone group, often in AIDS patients. The new fluoroquinolones are essentially a well tolerated group of antibacterials, the benefits of which clearly outweigh their disadvantages in a wide range of indications. Clinical efficacy has been a larger determinant of which members have succeeded in the marketplace than potential toxicity. However, the lesser potential for adverse effects of some of the class, e.g. norfloxacin, ofloxacin and ciprofloxacin, has undoubtedly led to their more widespread use. For others, e.g. enoxacin, limited clinical utility and a perception of increased toxicity have resulted in sidelining. There remains the potential for development of safer and yet more active fluoroquinolones via chemical manipulation both of the nucleus and the side chain substituents.

Anti-Infective Agents↗