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Biomedical subjects

Dene Simpson

Publications and source records attributed to Dene Simpson.

6 recordsLinked to original sources

Ertapenem: a review of its use in the management of bacterial infections.

UNLABELLED: Ertapenem, a carbapenem antibacterial, has in vitro activity against many Gram- negative (including Enterobacteriaceae) and Gram-positive aerobic and anaerobic bacteria that are commonly associated with various infections.Once-daily parenteral (intravenous or intramuscular) ertapenem 1g was as effective as comparator antimicrobial agents (piperacillin/tazobactam or ceftriaxone +/- metronidazole) in patients with bacterial infections in randomised, double-blind, multicentre clinical trials. Response rates with ertapenem were 84% and 87% (combined microbiological and clinical) in patients with complicated intra-abdominal infections (CIAI), 82% (clinical) in patients with complicated skin and skin structure infections (CSSSI), 86% and 92% (microbiological) in patients with complicated urinary tract infections (CUTI), 92% (clinical) in patients with community-acquired pneumonia (CAP) associated with typical pathogens and 94% (clinical) in patients with acute pelvic infection. Respective response rates were statistically equivalent to those with comparators (81-94%). The efficacy of ertapenem was equivalent to that of piperacillin/tazobactam in patients infected with Enterobacteriaceae or anaerobes and to ceftriaxone in patients infected with Enterobacteriaceae. Ertapenem was generally well tolerated by patients with bacterial infections, with most adverse events being mild to moderate in severity. The most common ertapenem-associated adverse events were diarrhoea, infused vein complication, nausea, headache, vaginitis in females, phlebitis and/or thrombophlebitis and vomiting. CONCLUSION: Ertapenem is a broad-spectrum parenteral antibiotic with activity against many Gram-negative (including Enterobacteriaceae) and Gram-positive aerobic and anaerobic bacteria and is suitable for once-daily administration. Ertapenem has a role in the treatment of CAP associated with typical respiratory pathogens and is of particular value in the treatment of polymicrobial infections (such as CIAI, CSSSI, CUTI and acute pelvic infections), especially where Enterobacteriaceae and anaerobic bacteria are involved.

Animals↗

Oxaliplatin: a review of its use in combination therapy for advanced metastatic colorectal cancer.

UNLABELLED: Oxaliplatin (Eloxatin) is the only platinum compound to show clinical activity in colorectal cancer. The efficacy of a combination of oxaliplatin with various schedules of fluorouracil (5-FU)/folinic acid (FA) as first- or second-line treatment for advanced metastatic colorectal cancer has been investigated in large phase III trials. FOLFOX4 (an oxaliplatin/5-FU/FA regimen) as first-line therapy (n = 795) was superior to irinotecan/5-FU/FA (IFL). Response rates were 45% vs 31%, and median progression-free survival duration was 8.7 vs 6.9 months. The survival advantage shown by FOLFOX4 over the irinotecan combination (median survival duration 19.5 vs 14.8 months) may be confounded by differences in post-study treatment but equivalent efficacy is supported by another phase III trial of oxaliplatin and irinotecan combinations. As first-line therapy, oxaliplatin added to various 5-FU/FA regimens more than doubled the response rates from 16-22.6% to 48.3-53% and the median duration of progression-free survival was significantly longer with oxaliplatin/5-FU/FA than 5-FU/FA alone (7.9-9 versus 5.3-6.2 months, respectively). In disease resistant to irinotecan-based therapies, the oxaliplatin (FOLFOX4) regimen had superior efficacy to 5-FU/FA alone in a pivotal phase III trial (n = 816). Response rates and median durations of progression-free survival were 9.6% vs 0.7% and 5.6 vs 2.6 months, respectively. An oxaliplatin-induced cumulative peripheral sensory neuropathy (evident when total dose reaches approximate, equals 800 mg/m(2)) is dose limiting. The most frequently occurring grade 3 or 4 toxicities in oxaliplatin/5-FU/FA-recipients were neutropenia (up to 48%) and neurological toxicities (up to 18%). Gastrointestinal effects (diarrhoea [ approximate, equals 12%], nausea, vomiting, or mucositis/stomatitis [up to 6%]) are manageable. Withdrawals from oxaliplatin treatment were due to neuropathy (up to 10%), diarrhoea and/or vomiting (1%) or cutaneous toxicity (1%). CONCLUSION: As first-line therapy for metastatic colorectal cancer, oxaliplatin with 5-FU/FA consistently improves response rates and progression-free survival compared with various regimens of 5-FU/FA alone. The significant survival advantage shown by oxaliplatin/5-FU/FA (FOLFOX4) compared with first-line therapy with irinotecan/5-FU/FA (IFL) is encouraging but may require further confirmation. Oxaliplatin/5-FU/FA produces a significantly higher response rate and longer progression-free survival than 5-FU/FA in patients failing irinotecan-based therapies, and as such is also a useful second-line treatment. Although cumulative neurotoxicity is dose limiting, oxaliplatin has a manageable tolerability profile. Oxaliplatin as first- or second-line therapy is a valuable addition to the limited, but expanding, armamentarium of cytotoxic agents useful in advanced metastatic colorectal cancer.

Antineoplastic Combined Chemotherapy Protocols↗

Spotlight on glatiramer acetate in relapsing-remitting multiple sclerosis.

Glatiramer acetate (Copaxone) is a synthetic copolymer composed of a random mixture of four amino acids that modifies the immune response that results in the CNS inflammation, demyelination and axonal loss characteristic of relapsing-remitting multiple sclerosis (RRMS). In three randomised, double-blind trials in patients with RRMS, subcutaneous glatiramer acetate 20 mg/day was significantly more effective than placebo for the primary outcome measure of each trial (mean relapse rate, proportion of relapse-free patients and number of gadolinium-enhancing lesions on magnetic resonance imaging [MRI] scans). The mean relapse rate was significantly reduced at endpoint (approximately one-third less) in the two larger trials (the US pivotal trial [primary endpoint] and the European/Canadian study [tertiary endpoint]) in patients receiving glatiramer acetate compared with those receiving placebo. The rate was 78% less for glatiramer acetate than placebo patients in the pilot trial that investigated a slightly different patient population. Glatiramer acetate significantly decreased disease activity and burden of disease, as assessed in the European/Canadian study using a range of MRI measures. Patients with RRMS treated with glatiramer acetate in the US trial were significantly more likely to experience improved disability (whereas placebo recipients were more likely to experience worsening disability) and their overall disability status was significantly improved compared with placebo recipients. Data from the active-treatment extension of the US trial suggest that glatiramer acetate has sustained clinical benefits up to 8 years. Glatiramer acetate was generally well tolerated; the most commonly reported treatment-related adverse events were localised injection-site reactions and transient post-injection systemic reactions. Both reactions were generally mild and self limiting but were responsible for the majority of withdrawals from treatment (up to 6.5% and 3.5%, respectively). Glatiramer acetate is not associated with the influenza-like syndrome or neutralising antibodies that are reported in patients treated with interferon-beta for RRMS. The cost effectiveness of glatiramer acetate has yet to be definitively determined as assessment of available data is confounded by very different models, data sources and assumptions. In conclusion, glatiramer acetate has shown efficacy in well controlled clinical trials in patients with RRMS; it reduces relapse rate and decreases MRI-assessed disease activity and burden. It is generally well tolerated and is not associated with the influenza-like symptoms and formation of neutralising antibodies seen with the interferons-beta. Based on available data and current management guidelines, glatiramer acetate is a valuable first-line treatment option for patients with RRMS.

Adjuvants, Immunologic↗

Atomoxetine.

Atomoxetine, formerly tomoxetine, is a selective norepinephrine reuptake inhibitor and a new, nonstimulant treatment for attention deficit hyperactivity disorder (ADHD). In vitro, ex vivo and in vivo studies have shown that atomoxetine is a highly selective antagonist of the presynaptic norepinephrine transporter with little or no affinity for other noradrenergic receptors or other neurotransmitter transporters or receptors. In four randomized, placebo-controlled clinical trials conducted over 6-9 weeks in children and adolescents with ADHD, atomoxetine (total daily dose 1-1.8 mg/kg administered in one or two doses daily) reduced symptoms (hyperactivity, impulsiveness and inattention) as determined by the reduction in ADHD total score (34-38% with atomoxetine versus 13-15.7% with placebo [p < 0.05]). Atomoxetine also significantly improved ADHD subscale rating scores (p < 0.05 and p < 0.001), psychosocial well-being (p < 0.05) and ADHD-related problem behavior according to parent and teacher ratings (p < 0.05). Atomoxetine was well tolerated in clinical trials and discontinuation rates due to adverse events were low (<5%). The most common treatment-related adverse event was decreased appetite. Atomoxetine shows no abuse potential and is not a controlled substance in the US.

Adolescent↗

Perindopril: in congestive heart failure.

Perindopril is a long-acting ACE inhibitor, acting through its only active metabolite perindoprilat. It inhibits the renin-angiotensin system by preventing both the conversion of angiotensin I to angiotensin II and the degradation of bradykinin, thereby reducing the vasoconstriction and left ventricular remodelling characteristic of heart failure. Perindopril 4mg significantly improved a range of haemodynamic parameters in single-dose and long-term (8 weeks and 3 months) studies involving patients with congestive heart failure (CHF), with little or no effect on blood pressure or heart rate. In randomised, double-blind, placebo-controlled clinical trials conducted over 3 months and a large noncomparative study (up to 30 months), perindopril 4mg once daily significantly increased exercise tolerance and reduced symptoms of heart failure in patients with mild to moderate CHF. Perindopril 4mg once daily is generally well tolerated in patients with mild to moderate CHF. In a large noncomparative study the most commonly reported adverse clinical event was cough, which led to 2.8% of patients discontinuing treatment. In short-term comparative trials there was a significantly lower incidence of first-dose hypotension following the recommended starting dose of perindopril 2mg than after the equivalent starting doses of captopril, enalapril and lisinopril.

Angiotensin-Converting Enzyme Inhibitors↗

Glatiramer acetate: a review of its use in relapsing-remitting multiple sclerosis.

UNLABELLED: Glatiramer acetate is a synthetic copolymer composed of a random mixture of four amino acids that modifies the immune response that results in the CNS inflammation, demyelination and axonal loss characteristic of relapsing-remitting multiple sclerosis (RRMS). In three randomised, double-blind trials in patients with RRMS, subcutaneous glatiramer acetate 20 mg/day was significantly more effective than placebo for the primary outcome measure of each trial (mean relapse rate, proportion of relapse-free patients and number of gadolinium-enhancing lesions on magnetic resonance imaging [MRI] scans). The mean relapse rate was significantly reduced at endpoint (approximately one-third less) in the two larger trials (the US pivotal trial [primary endpoint] and the European/Canadian study [tertiary endpoint]) in patients receiving glatiramer acetate compared with those receiving placebo. The rate was 78% less for glatiramer acetate than placebo patients in the pilot trial that investigated a slightly different patient population. Glatiramer acetate significantly decreased disease activity and burden of disease, as assessed in the European/Canadian study using a range of MRI measures. Patients with RRMS treated with glatiramer acetate in the US trial were significantly more likely to experience improved disability (whereas placebo recipients were more likely to experience worsening disability) and their overall disability status was significantly improved compared with placebo recipients. Data from the active-treatment extension of the US trial suggest that glatiramer acetate has sustained clinical benefits up to 8 years. Glatiramer acetate was generally well tolerated; the most commonly reported treatment-related adverse events were localised injection-site reactions and transient post-injection systemic reactions. Both reactions were generally mild and self limiting but were responsible for the majority of withdrawals from treatment (up to 6.5 and 3.5%, respectively). Glatiramer acetate is not associated with the influenza-like syndrome or neutralising antibodies that are reported in patients treated with interferon-beta for RRMS. The cost effectiveness of glatiramer acetate has yet to be definitively determined as assessment of available data is confounded by very different models, data sources and assumptions. CONCLUSION: Glatiramer acetate has shown efficacy in well controlled clinical trials in patients with RRMS; it reduces relapse rate and decreases MRI-assessed disease activity and burden. It is generally well tolerated and is not associated with the influenza-like symptoms and formation of neutralising antibodies seen with the interferons-beta. Based on available data and current management guidelines, glatiramer acetate is a valuable first-line treatment option for patients with RRMS.

Adjuvants, Immunologic↗