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CompletedNCT03309657Updated Sep 10, 2020Results posted

Pharmacokinetics of Ceftolozane/Tazobactam in Plasma and Cerebrospinal Fluid

A Phase 1/2 interventional study of Ceftolozane/tazobactam in Pharmacokinetics, sponsored by Royal Brisbane and Women's Hospital. Completed at 1 site in Australia. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2020-09-10.

Sponsored by Royal Brisbane and Women's Hospital · Phase 1/2, Interventional, and Basic science

Phase
Phase 1/2
Study type
Interventional
Enrollment
10
Allocation
Not applicable
Ages
18 Years and older
Sex
All
01

Study summary

Ceftolozane/tazobactam is an emerging newly available antibiotic that has a broad spectrum of activity, and could be potentially useful in the management of central nervous system infections. However, data relating to penetration of ceftolozane/ tazobactam into the central nervous system, where a barrier against drug distribution exists (i.e. blood brain barrier), is currently limited. In critically ill patients this is all the more challenging as achieving adequate antibiotic concentrations even in blood is difficult.

The aim of this study is to describe the concentrations achieved in the cerebrospinal fluid (i.e. bodily fluid found surrounding and inside of the brain) and blood after a single dose of ceftolozane/tazobactam administered in critically ill patients with an existing external ventricular drain (i.e. a device used in neurosurgery that relieves elevated intracranial pressure in the brain). It is planned that this information gained will help develop dosing strategies that will achieve target concentrations that will successfully treat central nervous system infections in the future.

Read the detailed description

Although relatively less frequent, Gram negative nosocomial meningitis and ventriculitis are observed in critical care settings, often associated with brain trauma, brain surgery, spinal fluid shunt after brain surgery, spinal abnormalities or severe urinary tract infections with bacteraemia. Gram negative meningitis is particularly challenging for treatment, when reduced susceptibility of some of the common etiologic bacteria is encountered (e.g. Acinetobacter baumannii, Pseudomonas aeruginosa, Enterobacter aerogenes). Furthermore, the presence of the blood brain barrier (BBB) has meant that the choice of systemic antibiotics is very restricted due to the limited ability of many antibiotics to achieve adequate concentrations in the cerebrospinal fluid (CSF). The poor CSF penetration may also contribute to an accelerated rate of the emergence of resistant pathogens in some patients/units. A significant proportion of Gram negative bacilli clinical isolates (from patients with meningitis) are resistant to broad spectrum antibiotics such as the third or later generation cephalosporins. With the wide spread use of these antibiotics, the incidence of resistant nosocomial infections has increased. Thus, there is an acute need for novel antibiotics that can achieve adequate concentrations in the CSF, while exhibiting an excellent spectrum of activity.

Ceftolozane/tazobactam is an emerging newly available antibiotic that has a broad spectrum of activity, and could be potentially useful in the management of Gram negative meningitis. As compared to other commonly used beta lactam antibiotics, it exhibits superior antibacterial activity against difficult to treat Gram negative organisms, such as Pseudomonas aeruginosa and Enterobacteriaceae spp. It is relatively stable against various resistance mechanisms encountered by other beta lactams, and may be useful in the treatment of multi-drug resistant (MDR) infections. However, data relating to CSF penetration is limited. In the critically ill, achieving adequate antibiotic exposure, especially against the high MIC of some Gram negatives (e.g. Pseudomonas), is difficult even in plasma, let alone in CSF for which a distribution barrier (i.e. BBB) exists. Thus, it is prudent to investigate the CSF pharmacokinetics of this new drug before it is used 'off label' by clinicians without supportive data.

This study will describe the plasma and CSF pharmacokinetics of a 3.0 g dose of ceftolozane/tazobactam in critically ill patients with an indwelling external ventricular drain (EVD). We will use a population pharmacokinetics approach to determine if altered dosing or alternative modes of administration, such as prolonged infusion, should be considered to improve plasma exposure. Given that direct administration into the CSF (e.g. intraventricular route) is not only invasive but also may risk neurotoxicity, pharmacokinetic studies should explore the extent of drug distribution into CSF with systemic administration. There is no clinical data on the CSF penetration of ceftolozane/tazobactam in critically ill patients at the moment, and as such, this is a highly valuable study.

Aim of the study is to describe the pharmacokinetics of a single dose of ceftolozane/tazobactam in the plasma and CSF of critically ill patients with an indwelling EVD.

The study investigators hypothesise:

The plasma PK of cefolozane/tazobactam may be altered in critically ill patients with an indwelling EVD.

The distribution of ceftolozane/tazobactam into the CSF may be impaired by the blood brain barrier.

02

Conditions studied

  • Pharmacokinetics
03

Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

Patients with any infection requiring treatment with ceftolozane/tazobactam and who have met the following criteria:

  • Age >18 years
  • The presence of an indwelling external ventricular drain (EVD) or requiring EVD insertion due to obstructive hydrocephalus/subarachnoid haemorrhage

Exclusion criteria

Exclusion Criteria:

  • Known or suspected allergy to penicillins and cephalosporins
  • Pregnancy
  • Receiving renal replacement therapy
  • Glomerular filtration rate less than 10 mL/min
  • Receiving piperacillin/tazobactam or having received piperacillin/tazobactam in the past 7 days before enrolment
04

Study design

Phase
Phase 1 / Phase 2
Primary purpose
Basic science
Allocation
Not applicable
Intervention model
Single group
Masking
None (open label)
Enrollment
10 participants (actual)

Study arms

  • Experimental
    Ceftolozane Tazobactam

    Infected patients with external intraventricular drain will receive a single dose of Ceftolozane/ tazobactam (3000mg) over 1 hour and will undergo blood , csf and urine sampling at specific times over an 8 hour period.

    Drug: Ceftolozane/tazobactam

Interventions

  • DrugCeftolozane/tazobactam

    This is an observational pharmacokinetic study whereby patients received a single dose of ceftolozane/tazobactam and plasma and cerebrospinal fluid samples were subsequently collected and analyzed to described the pharmacokinetics.

    Also known as: ZERBAXA

05

What researchers measure

Primary outcomes

  1. Unbound Ceftolozane Exposure in the Plasma

    Unbound Ceftolozane Exposure in the plasma given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

    Time frame: Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis

  2. Unbound Tazobactam Exposure in the Plasma

    Unbound Tazobactam Exposure in the plasma given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

    Time frame: Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis

  3. Unbound Ceftolozane Exposure in the CSF

    Unbound Ceftolozane Exposure in the CSF given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

    Time frame: Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis

  4. Unbound Tazobactam Exposure in the CSF

    Unbound Tazobactam Exposure in the CSF given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

    Time frame: Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis

06

Results

Posted Sep 10, 2020

Participant flow

Participant flow — Overall Study
MilestoneCeftolozane Tazobactam
Started10
Completed10
Not completed0

Outcome measures

PrimaryUnbound Ceftolozane Exposure in the Plasma

Unbound Ceftolozane Exposure in the plasma given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

Time frame:
Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis
Reported as:
Median · mg*h/L
Unbound Ceftolozane Exposure in the Plasma
mg*h/LCeftolozane Tazobactam
Unbound Ceftolozane Exposure in the Plasma322.6 (182.7 to 413.9)
PrimaryUnbound Tazobactam Exposure in the Plasma

Unbound Tazobactam Exposure in the plasma given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

Time frame:
Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis
Reported as:
Median · mg*h/L
Unbound Tazobactam Exposure in the Plasma
mg*h/LCeftolozane Tazobactam
Unbound Tazobactam Exposure in the Plasma52.1 (35.7 to 79.6)
PrimaryUnbound Ceftolozane Exposure in the CSF

Unbound Ceftolozane Exposure in the CSF given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

Time frame:
Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis
Reported as:
Median · mg*h/L
Unbound Ceftolozane Exposure in the CSF
mg*h/LCeftolozane Tazobactam
Unbound Ceftolozane Exposure in the CSF30.2 (18.8 to 128.3)
PrimaryUnbound Tazobactam Exposure in the CSF

Unbound Tazobactam Exposure in the CSF given by the area under the unbound concentration-time curve from time zero to infinity (AUC0-inf).

Time frame:
Samples collected from 0 to 8 hours post dose at "0, 1, 2,4,6, & 8 h post dose were use estimate area under the curve from time zero to infinity estimated by non-compartmental analysis
Reported as:
Median · mg*h/L
Unbound Tazobactam Exposure in the CSF
mg*h/LCeftolozane Tazobactam
Unbound Tazobactam Exposure in the CSF5.6 (1.6 to 24.4)

Adverse events

Collected over The duration of the study enrolment up to 24 hours.. Non-serious events are listed at a 0% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Ceftolozane Tazobactam0/10 (0%)0/10 (0%)0/10 (0%)

Baseline characteristics

Age, Continuous
Age, Continuous(years)Ceftolozane Tazobactam
Median60.5 (53.5 to 64.75)
Sex: Female, Male
Sex: Female, Male(Participants)Ceftolozane Tazobactam
Female7
Male3
Race and Ethnicity Not Collected
Race and Ethnicity Not Collected(Participants)Ceftolozane Tazobactam
Region of Enrollment
Region of Enrollment(participants)Ceftolozane Tazobactam
Australia10
Weight
Weight(kg)Ceftolozane Tazobactam
Median75 (65 to 87)
Serum Creatinine
Serum Creatinine(micro-mole/litre)Ceftolozane Tazobactam
Median48.5 (42.25 to 57.75)
Albumin
Albumin(g/L)Ceftolozane Tazobactam
Median24 (21.25 to 25.75)
Acute Physiology and Chronic Health Evaluation (APACHE) II
Acute Physiology and Chronic Health Evaluation (APACHE) II(units on a scale)Ceftolozane Tazobactam
Median17.5 (14 to 22.5)
07

Study locations

1 site
  • Royal Brisbane and Women's Hospital
    Brisbane, Queensland 4029, Australia
08

References and documents

Study documents

  • Protocol and statistical analysis plan · Mar 21, 2017

Documents are hosted by the registry — open the source record to download them.

Individual participant data

Plan to share: No — There is no plan to make individual participant data available to other researchers

09

Registry details

Key details

Study ID
NCT03309657
Lead sponsor
Royal Brisbane and Women's Hospital
Collaborators
The University of Queensland
Responsible party
Jason Roberts (Professor, Royal Brisbane and Women's Hospital) — Principal investigator
First posted
Oct 13, 2017
Start date
Feb 1, 2018
Primary completion
May 1, 2020
Completion
Jun 1, 2020
Results posted
Sep 10, 2020
Last update
Sep 10, 2020

Study contacts

Jason A Roberts, PhD BPharm
principal investigator · Royal Brisbane and Womens Hospital

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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