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Impact of Continuous Isotonic Saline Nebulisation Combined With Heated Humidification on the Rheology of Bronchial Secretions. (PHYSIORHEO)

This study aims to evaluate whether adding a continuous mist of saltwater (saline nebulization) to warmed, humidified air can improve the properties of mucus in the lungs compared to humidified air alone.

Some patients with chronic lung diseases produce large amounts of thick mucus, which can be difficult to clear and may worsen breathing. Making this mucus easier to move and remove could help improve comfort and breathing.

In this study, 35 adult patients hospitalized for lung conditions with excessive mucus production will participate. Each patient will receive both treatments on two different days, in a random order:

Heated humidified air alone Heated humidified air combined with continuous saline nebulization This design allows each patient to serve as their own comparison. At the beginning and end of each session, a physiotherapist will help patients clear their airways, and mucus samples will be collected. Each treatment session will last 4 hours.

The collected mucus will be analyzed in a laboratory to measure how thick, sticky, or elastic it is, and how much force is needed to move it. The main goal is to determine whether the combined treatment makes mucus easier to clear.

The study will also assess patient comfort, breathing difficulty, ease of clearing mucus, and sleep quality after treatment.

The results of this study may help improve airway care for patients with chronic lung diseases by identifying more effective ways to manage excessive mucus.

Studieoversigt

Status

Ikke rekrutterer endnu

Detaljeret beskrivelse

Aim- The objective of this study is to determine the effect of continuous isotonic saline nebulization combined with heated humidification on mucus rheology characteristics compared with heated humidification alone.

Design study- This experimental study will follow a cross-over design. As mucus rheology characteristics vary among individuals, this design will enable each subject to be his own control.

Population- 35 patients with excessive airway secretions will be included in this study (sample size calculated with a 95% confidence level and 80% power). Patients will undergo screening for eligibility upon admission to the pulmonology unit. Individuals with chronic pulmonary conditions leading to excessive airway secretions (> 20 mL of expectoration per day) and meeting the inclusion criteria will be invited to participate in the study. The study will take place on two days, after inclusion, randomization will determine the sequence of administration for the two treatments being compared.

Intervention- A continuous isotonic saline nebulization will be delivered combined with a heated humidification.

The continuous nebulization will be performed using the Aerogen continuous nebulization set to assure the continuous supply of isotonic saline solution into the aerogen solo mesh nebulizer.

The heated humidification will be delivered by Airvo 3 (Fisher & Paykel, Auckland, New Zeeland). Air flow will be set at 25L/min, temperature at 37°C and FiO2 will be set to obtain the SpO2 targeted by the physician.

The nebulizer will be installed on the airvo, thus saline particles will be delivered through the nasal prong.

Control- The heated humidification will be delivered by Airvo 3 (Fisher & Paykel, Auckland, New Zeeland). Air flow will be set at 25L/min, temperature at 37°C and FiO2 21%.

Experimental setting- The study will take place on two days. Subject will experience the intervention and the control treatment on a randomized order.

At the beginning of each experimental session manuals airway clearance maneuvers will be performed by a trained physiotherapist and mucus expectorated will be sampled. After secretion samples subject will undergo treatment, according to the randomization treatment order, for a 4-hour period. A new airway clearance session will be performed at the end pf the 4-hour period with secretion sampling. No Positive Expiratory Pressure or Oscillatory Positive Expiratory Pressure devices will be used to prevent from viscosity modification

Rheological measurements- Rheological measurement will be conducted using the rheometer MCR102 (Anton-Paar,Graz, Austria). Prior to analysis, the sputum will be incubated at 37°C for 30 min before analysis to allow relaxation of the sample. The rheometer comprises two parallels plates which will gently compress the secretion. The lower plate will perform oscillations with controlled angular displacement while the rheometer will measure the torque exerted on the opposite plate during these oscillations. Data will be captured using RheoCompassTM software (Anton-Paar) and various data will be extracted from this analysis.

During the linear phase of the analysis, the investigator will register the elastic modulus (G'), the viscous modulus (G''), the viscoelastic modulus (G*), the damping coefficient (tan δ ratio of G'' and G'). These data will provide insights into the secretion's propensity toward elasticity (solid-like) or viscosity (liquid-like).

During the non-linear phase of the analysis, the investigator will register the critical strain (γc) which represent the secretion's deformability capacity, the critical stress (τc) indicating the force required to initiate sputum flow, and the elastic force (G*p x τc) reflecting the elastic energy of the secretion that must be overcome to induce flow. These data will provide insights into the force required for patient airway clearance.

Outcomes- The primary outcomes will be the difference of the force required to evacuate the secretions between the two treatments (τc).

The secondary outcomes will include:

  • Others rheological properties: elastic modulus, viscous modulus, viscoelastic modulus, damping coefficient, critical strain and elastic force.
  • Comfort level evaluated using the Likert scale
  • Dyspnea intensity assessed using the Modified Borg scale
  • Airway clearance difficulty measured using a Visual Analogic Scale (VAS) before and after interventions. Airway clearance difficulty will also be monitored during the twelve hours after interventions.
  • Sleep quality after interventions will be assessed using Likert

Undersøgelsestype

Interventionel

Tilmelding (Anslået)

35

Fase

  • Ikke anvendelig

Kontakter og lokationer

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Studiekontakt

Studiesteder

Deltagelseskriterier

Forskere leder efter personer, der passer til en bestemt beskrivelse, kaldet berettigelseskriterier. Nogle eksempler på disse kriterier er en persons generelle helbredstilstand eller tidligere behandlinger.

Berettigelseskriterier

Aldre berettiget til at studere

  • Voksen
  • Ældre voksen

Tager imod sunde frivillige

Ingen

Beskrivelse

Inclusion Criteria:

  • Age > 18 years old
  • Hospitalized in pulmonology unit
  • Excessive airways secretions disease: COPD, Bronchiectassies, Cystic Fibrosis, Primary Ciliary Diskynesia

Exclusion Criteria:

  • Age < 18 years old
  • Under invasive or non invasive ventilation
  • >15L/min of oxygen
  • Mucoactive treatment
  • Artificial Upper Airway
  • Respiratory Distress

Studieplan

Dette afsnit indeholder detaljer om studieplanen, herunder hvordan undersøgelsen er designet, og hvad undersøgelsen måler.

Hvordan er undersøgelsen tilrettelagt?

Design detaljer

  • Primært formål: Behandling
  • Tildeling: Randomiseret
  • Interventionel model: Crossover opgave
  • Maskning: Enkelt

Våben og indgreb

Deltagergruppe / Arm
Intervention / Behandling
Aktiv komparator: Befugtning
Heated humidification through HFNC
Eksperimentel: Saline + Humidification
Continuous saline nebulization through HFNC
Heated humidification through HFNC

Hvad måler undersøgelsen?

Primære resultatmål

Resultatmål
Foranstaltningsbeskrivelse
Tidsramme
Critical strain
Tidsramme: On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Rheological property
On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.

Sekundære resultatmål

Resultatmål
Foranstaltningsbeskrivelse
Tidsramme
Elastic and viscous modulus
Tidsramme: On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Comfort
Tidsramme: On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Lickert scale 0 - 6, higher score is a better outcome
On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Dyspnea
Tidsramme: On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Borge modified scale 0 - 10, higher score is a worse outcome
On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Sleep Quality
Tidsramme: 1 day Follow up
Lickert scale 0 - 6, higher score is a better outcome
1 day Follow up
Airway clearance difficulty
Tidsramme: On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Lickert Scale 0 - 6; higher score is a better outcome
On each experimental session (4hours) the outcome will be measured at the onset on the experiment, which mean prior to the application of the treatment / control and at the end of the experiment which mean 4 hours after the onset.
Pulsed oxygen saturation
Tidsramme: Through study completion, 2 days
Through study completion, 2 days
Cardiac Frequency
Tidsramme: Through study completion, 2 days
Through study completion, 2 days

Samarbejdspartnere og efterforskere

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Datoer for undersøgelser

Disse datoer sporer fremskridtene for indsendelser af undersøgelsesrekord og resumeresultater til ClinicalTrials.gov. Studieregistreringer og rapporterede resultater gennemgås af National Library of Medicine (NLM) for at sikre, at de opfylder specifikke kvalitetskontrolstandarder, før de offentliggøres på den offentlige hjemmeside.

Studer store datoer

Studiestart (Anslået)

1. maj 2026

Primær færdiggørelse (Anslået)

30. juni 2027

Studieafslutning (Anslået)

30. juni 2027

Datoer for studieregistrering

Først indsendt

14. april 2026

Først indsendt, der opfyldte QC-kriterier

29. maj 2026

Først opslået (Faktiske)

1. juni 2026

Opdateringer af undersøgelsesjournaler

Sidste opdatering sendt (Faktiske)

1. juni 2026

Sidste opdatering indsendt, der opfyldte kvalitetskontrolkriterier

29. maj 2026

Sidst verificeret

1. maj 2026

Mere information

Begreber relateret til denne undersøgelse

Andre undersøgelses-id-numre

  • 2026/10FEV/076

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Kliniske forsøg med Excessive Airway Secretions

Kliniske forsøg med Saline Nebulization

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