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The Effects of I Quit Ordinary Smoking on the Arterial Wall and Endothelial Glycocalyx Properties of Smokers

The Effects of I Quit Ordinary Smoking on the Arterial Wall and Endothelial Glycocalyx Properties of Smokers

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03452124
Enrollment
90
Registered
2018-03-02
Start date
2018-03-30
Completion date
2021-06-30
Last updated
2020-04-24

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

Conditions

Smoking Cessation

Brief summary

I quit ordinary smoking (IQOS) is proposed as a bridge to smoking cessation. In this study the investigators will examine its effects on aortic elasticity, glycocalyx integrity, and exhaled carbon monoxide (CO) concentration, both acutely and after 1 month of use.

Detailed description

Two smokers groups matched for age and sex will be assessed: 1. a group of 30 current smokers with no diagnosed cardiovascular disease as the control group for chronic phase 2. a group of 30 current smokers with no diagnosed cardiovascular disease who will be using the I quit ordinary smoking (IQOS) for 1 month. In the acute phase all 60 smokers will undergo a sham smoking for 7 minutes. Afterwards all 60 smokers will be randomized to smoke either a normal cigarette or IQOS and the after 60 minute washout period these subjects will be crossed over to the altenate mode of smoking (IQOS or normal cigarette respectively). After the completion of the acute phase all 60 smokers will start the use of IQOS for one month. In the acute phase, measurements will be performed at baseline, after sham smoking and after smoking of the normal cigarette or IQOS. The chronic phase measurements will be performed 1 month after use IQOS. Thirty current smokers of similar age and sex will serve as controls and will have measurements at baseline and 1 month after baseline assessment. In both phases the investigators will assess: a) the aortic pulse wave velocity (PWV) and augmentation index (AIx) by Arteriograph and Complior; b) the perfusion boundary region of the sublingual arterial microvessels using Sideview, Darkfield imaging (Microscan, Glycocheck); c) the exhaled carbon monoxide (CO) level (parts per million -ppm) as a smoking status marker; d) the vital signs; e) an electrocardiogram; and f) plasma levels of C- reactive protein (CRP), transforming growth factor-b (TGF-b), lipoprotein associated phospholipase A2 (LP- LPA2), tumor necrosis factor- α (TNF-α), interleukins 6 and 10 (IL-6 and -10), procollagen propeptide type III (PIIINP), matrix metalloproteinase 2 and 9 (MMP-2 and -9), and macrophage-colony stimulating factor (MCSF), malondialdehyde (MDA) and protein carbonyls (PCs).

Interventions

DEVICEI quit ordinary smoking (IQOS)

I quit ordinary smoking (IQOS) assisted cessation program

Conventional cigarette smoking continuation

Sponsors

University of Athens
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 60 Years
Healthy volunteers
Yes

Inclusion criteria

* Active conventional cigarette smoker

Exclusion criteria

* Health condition adversely affected by smoking * History or presence of cardiovascular disease

Design outcomes

Primary

MeasureTime frameDescription
Chronic I quit ordinary smoking (IQOS) effects on Exhaled Carbon monoxide (CO)1 monthCO concentration was measured the exhaled carbon as parts per million-ppm by the device Smokerlyzer, Covita, Bedfont, CA, USA). Participants were instructed not to smoke the night before and the morning before the CO measurements and to hold their breath for 10 sec before exhaling to the mouthpiece.
Chronic I quit ordinary smoking (IQOS) effects on pulse wave velocity1 monthChronic I quit ordinary smoking (IQOS) effects on pulse wave velocity (PWV, m/s) using tonometry
Chronic I quit ordinary smoking (IQOS) effects on endothelial glycocalyx thickness1 monthChronic I quit ordinary smoking (IQOS) effects on endothelial glycocalyx thickness as assessed by perfused boundary region (PBR, micrometers) of the sublinqual arterial microvessels
Chronic I quit ordinary smoking (IQOS) effects in left ventricular function1 monthLeft Ventricular function is assessed by Global Longitudinal Strain by speckle tracking echocardiography
Chronic I quit ordinary smoking (IQOS) effects on endothelial function1 monthEndothelial function was assessed by measuring coronary flow reserve of Left anterior descending artery. Coronary flow reserve was estimated by Doppler echocardiography as the ratio of coranary flow velocity after bolus intravenous adenosine infusion to coronary flow velocity at rest.
Acute I quit ordinary smoking (IQOS) effects on pulse wave velocity7 minutesAcute I quit ordinary smoking (IQOS) effects on pulse wave velocity (PWV, m/s) using tonometry
Acute I quit ordinary smoking (IQOS) effects on Exhaled Carbon monoxide (CO)7 minutesCO concentration was measured the exhaled carbon as parts per million-ppm by the device Smokerlyzer, Covita, Bedfont, CA, USA). Participants were instructed not to smoke the night before and the morning before the CO measurements and to hold their breath for 10 sec before exhaling to the mouthpiece.
Acute I quit ordinary smoking (IQOS) effects on endothelial glycocalyx thickness7 minutesAcute I quit ordinary smoking (IQOS) effects on endothelial glycocalyx thickness as assessed by perfused boundary region (PBR, micrometers) of the sublinqual arterial microvessels

Secondary

MeasureTime frameDescription
Chronic I quit ordinary smoking (IQOS) effects on myocardial work.1 monthMyocardial work (MW) was estimated by combining echo-derived left ventricular (LV) strain with brachial blood pressure to construct LV strain-pressure curves non-invasively. Brachial cuff systolic pressure measurements provide the peak systolic LV pressure value, which is combined with the input of valvular timing events that define isovolumetric and ejection phases, allowing the construction of an LV-pressure curve. This is combined with LV strain data into a pressure-strain loop (PSL), the area within which represents MW. Global MW index (GWI) is defined as the work within the LV PSL from mitral valve closure to mitral valve opening, while constructive MW (GCW) is the component of MW that contributes to LV ejection. On the contrary, wasted MW (GWW) is the work wasted as myocyte lengthening during systole, which does not contribute to LV ejection. MW efficiency (GWE) is defined as the ratio of GCW to the sum of GCW and GWW \[GWE= GCW/ (GCW+GWW)\].
Chronic I quit ordinary smoking (IQOS) effects on arterial stiffness.1 monthArterial stiffness was estimated by calculating Total arterial compliance (TAC). TAC was evaluated utilising the stroke volume (SV) to pulse pressure (PP) ratio (SV/PP), based on the two-element Windkessel model; SV measurements were derived from two-dimensional echocardiography.
Chronic I quit ordinary smoking (IQOS) effects on platelet activation.1 monthPlatelet activation was estimated by measuring blood levels of Thromboxane B2 (Thromboxane B2 EIA Kit Cayman Ann Arbor MI USA) A commercially available ELISA kit was used with an assay range 1.6-1000 pg/ml.
Acute I quit ordinary smoking (IQOS) effects on platelet activation.7 minutesPlatelet activation was estimated by measuring blood levels of Thromboxane B2 (Thromboxane B2 EIA Kit Cayman Ann Arbor MI USA) A commercially available ELISA kit was used with an assay range 1.6-1000 pg/ml.

Countries

Greece

Contacts

Primary ContactIgnatios Ikonomidis, MD
ignoik@otenet.gr00302105832187
Backup ContactGeorge Pavlidis, MD
geo_pavlidis@yahoo.gr00302105832187

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 15, 2026