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Rapid Diagnosis of COVID-19 by Chemical Analysis of Exhaled Air

Rapid Diagnosis of COVID-19 by Chemical Analysis of Exhaled Air

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04706039
Acronym
COVIDAIR
Enrollment
4600
Registered
2021-01-12
Start date
2021-03-01
Completion date
2021-05-21
Last updated
2022-06-01

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Covid19

Keywords

covid19 diagnostic, Proton Transfer Mass Spectrometer, exhaled air, rapid and non-invasive diagnosis

Brief summary

Since the start of 2020, the new SARS-CoV-2 coronavirus is causing a real global health crisis. In France, nasopharyngeal swabs are used to obtain the sample needed for respiratory infection screening. There are three major difficulties with this type of sampling: I) It is really unpleasant for the patient because the device has to be pushed into the nostril to reach the nasopharynx. It causes some patients to bleed or even feel uncomfortable. II) It is not easily accepted by children. III) It is dependent on the availability of swabs. Faced with these difficulties linked to the initial sampling, new methods are being studied to enable a rapid and non-invasive diagnosis of COVID-19 based on the instantaneous identification of metabolites or volatile organic compounds (VOCs). Due to their sensitivity and the wealth of information that can be provided, the most promising techniques are based on mass spectrometry coupled with a soft ionisation system. For example, on-line exhaled air analysis is capable of detecting a very large number of VOCs. Various tests on metabolites in the exhaled air have already been carried out without being totally conclusive because the existing instruments suffer from various limitations: I) poor repeatability/accuracy in the chemical characterisation of exhaled air ; II) too high specificity (detection of only part of the emitted compounds); III) too limited sensitivity; IV) and poor adaptation to be deployed in a clinic. In order to overcome these various limitations, we propose the use of a new generation of mass spectrometer: Vocus PTR-TOF. The Vocus PTR-TOF is a Proton Transfer Mass Spectrometer (PTR-MS) developed for the detection, in real time, of trace VOCs in industrial environments, laboratories or directly in the environment. This new generation of instrument offers the following advantages: I) unequalled sensitivity : II) a robust ionisation system not affected by environmental conditions (relative humidity...) ; III) a high mass resolution allowing precise identification of compounds ; IV) a compact and durable architecture allowing deployment in a constrained environment such as hospital, airport… The sensitivity and speed of measurement allow the expiration process to be monitored in real time, bringing an additional dimension to the measurement and the chances of success.

Interventions

DIAGNOSTIC_TESTPerformance evaluation (sensitivity and specificity) for COVID-19 diagnosis of the Vocus PTR-TOF process

Each patient will be sampled to do a systematic respiratory virus infection screening (SARS-CoV-2 and Flu and RSV). Then each patient will be tested using the Vocus PTR-TOF process. A self-answering questionnaire will be used to collect symptomatology information and date of onset of symptoms.

Sponsors

Hospices Civils de Lyon
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
6 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Symptomatic and asymptomatic outpatient without hospitalisation criteria * No medical contraindications to nasopharyngeal swabbing (deviation of the nasal septum, epistaxis, anticoagulant treatment). * Patient able to blow into the test device * Patients or parents with parental authority who have been informed of the study and have not objected to participating in it

Exclusion criteria

* Major subject under guardianship or curatorship or unable to consent to study. * Subject under safeguard of justice * Minor patient (age \< 6 years).

Design outcomes

Primary

MeasureTime frameDescription
Sensitivity of the COVID-19 diagnostic using the Vocus PTR-TOF process.At the inclusion visitStudy of the sensitivity of the exhaled air test in comparison to the reference diagnostic RT-PCR on nasopharyngeal swab. We will use the results of the RT-PCR as reference to compare the results of the Vocus PTR-TOF process.

Countries

France

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026