Ceftazidime-Avibactam Therapy for Ceftazidime-Resistant Enterobacteriaceae and Pseudomonas Infections
Introduction
Carbapenemase-producing pathogens pose a threat to the effectiveness of carbapenems in treating multidrug-resistant Gram-negative bacterial infections, new agents such as ceftazidime-avibactam is needed. While traditional clinical trials can provide valuable information about safety, tolerability, and efficacy, they may not be sufficient in assessing efficacy against resistant pathogens. Therefore, pathogen-directed studies are conducted to evaluate the effectiveness of ceftazidime-avibactam in treating drug-resistant infections.
Aim
To compare Ceftazidime-Avibactam with the best available therapy for the treatment of complicated urinary tract and intra-abdominal infections caused by ceftazidime-resistant Gram-negative pathogens.
Method
Study Design
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Open-label, randomized phase 3 trial
Patient Profile
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Age: 18-90 years old; both male and female
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Diagnosis: Confirmed complicated urinary tract infection or complicated intra-abdominal infection caused by ceftazidime-resistant Enterobacteriaceae or Pseudomonas aeruginosa
Treatment Strategy
Ceftazidime-avibactam treatment group:
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Patients received 5-21 days of treatment with ceftazidime-avibactam (combination of 2000 mg ceftazidime + 500 mg avibactam).
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Administered as 2-hour intravenous (IV) infusion every 8 hours.
Best available therapy:
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Preferred therapy options for complicated urinary tract infection and complicated intra-abdominal infection were meropenem, imipenem, doripenem, colistin, and (for complicated intra-abdominal infection) tigecycline, administered intravenously
Endpoints
Primary Endpoints
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Clinical response (cure, failure, or indeterminate) at the test-of-cure visit which was 7-10 days after last infusion of study therapy.
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Clinical cure was defined as complete resolution of signs and symptoms of index infection
Secondary Endpoints
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Clinical response at end of treatment and at follow-up visits 1 and 2
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Clinical response at the test-of-cure visit by baseline gram-negative pathogen and entry diagnosis
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Per-patient favorable microbiological response at end of treatment, test-of-cure visit and follow-up visits 1 and 2
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Favorable microbiological response was defined as absence of causative pathogen from the site of infection
Safety Endpoints
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Adverse events (AEs)
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Serious AEs (SAEs)
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Laboratory parameters including liver function tests
Results
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333 patients were randomly assigned to two groups:
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165 to ceftazidime-avibactam; 168 to best available therapy
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Primary outcome was analyzed for:
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154 patients in the ceftazidime-avibactam group; 148 patients in the best available therapy group
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The proportion of patients with a clinical cure at the test-of-cure visit was similar between ceftazidime-avibactam and best available therapy groups. (Table 1)
Table 1. % of patients with a clinical cure
|
Patient Group / Condition |
Clinical Cure at Test-of-Cure Visit (%)- Ceftazidime-Avibactam |
Clinical Cure at Test-of-Cure Visit (%) - Best Available Therapy |
|
Complicated Urinary Tract Infection |
92% (132/144) |
94% (129/137) |
|
Acute Pyelonephritis |
91% (52/57) |
90% (63/70) |
|
Complicated Intra-Abdominal Infection |
80% (8/10) |
55% (6/11) |
Table 2. % of patients with favorable microbiological response at test-of-cure visit
|
Patient Group / Condition |
Ceftazidime-Avibactam |
Best Available Therapy |
|
Complicated Urinary Tract Infection |
82% (118/144) |
64% (88/137) |
|
Acute Pyelonephritis |
88% (50/57) |
70% (49/70) |
|
Complicated Intra-Abdominal Infection |
80% (8/10) |
55% (6/11) |
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Adverse events occurred in 31% of patients in the ceftazidime-avibactam group and 39% of patients in the best available therapy group; most were mild or moderate in intensity.
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Gastrointestinal disorders was the most commonly reported treatment-emergent adverse events in both groups.
Conclusions
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The findings offer substantiation for the effectiveness of ceftazidime-avibactam as a viable substitution for carbapenems in treating patients diagnosed with ceftazidime-resistant Enterobacteriaceae and Pseudomonas aeruginosa infections.
Lancet Infect Dis. 2016; 16:661-73.






