RouzéA, JailletteE, PoissyJ, PréauS, NseirS. Tracheal tube design and ventilator-associated pneumonia. Respir Care, 2017; 62(10):1316–1323.
2.
Martin-LoechesI, PovoaP, RodríguezA, CurcioD, SuarezD, MiraPJ, et al. Incidence and prognosis of ventilator-associated tracheobronchitis (TAVeM): a multicentre, prospective, observational study. Lancet Respir Med, 2015; 3(11):859–868.
3.
NairGB, NiedermanMS. Ventilator-associated pneumonia: present understanding and ongoing debates. Intensive Care Med, 2014; 41(3):34–48.
4.
NseirS, ZerimechF, JailletteE, ArtruF, BalduyckM. Microaspiration in intubated critically ill patients: diagnosis and prevention. Infect Disord Drug Targets, 2011; 11(4):413–423.
5.
PinciroliR, MiettoC, PiriyapatsomA, ChenelleCT, ThomasJG, PirroneM, et al. Endotracheal tubes cleaned with a novel mechanism for secretion removal: a randomized controlled clinical study. Respir Care, 2016; 61(11):1431–1439.
6.
Fernández-BaratL, TorresA. Biofilms in ventilator-associated pneumonia. Future Microbiology, 2016; 12(11):1599–1610.
7.
AdairCG, GormanSP, FeronBM, ByersLM, JonesDS, GoldsmithCE, et al. Implications of endotracheal tube biofilm for ventilator-associated pneumonia. Intensive Care Med, 1999; 25(10):1072–1076.
8.
ChenelleCT, ItagakiT, FisherDF, BerraL, KacmarekRM. Performance of the PneuX system: a bench study comparison with 4 other endotracheal tube cuffs. Respir Care, 2017; 62(1):102–112.
9.
MaoZ, GaoL, WangG, LiuC, ZhaoY, GuW, et al. Subglottic secretion suction for preventing ventilator-associated pneumonia: an updated meta-analysis and trial sequential analysis. Crit Care, 2016; 28:20(1):353.
10.
NseirS, RodriguezA, SaludesP, De JonckheereJ, VallesJ, ArtigasA, et al. Efficiency of a mechanical device in controlling tracheal cuff pressure in intubated critically ill patients: a randomized controlled study. Ann Intensive Care, 2015; 5(1):54.
11.
JailletteE, GiraultC, BruninG, ZerimechF, BehalH, ChicheA, et al. Impact of tapered-cuff tracheal tube on microaspiration of gastric contents in intubated critically ill patients: a multicenter cluster-randomized cross-over controlled trial. Intensive Care Med, 2017; 43(11):1562–1571.
12.
BlotSI, RelloJ, KoulentiD. The value of polyurethane-cuffed endotracheal tubes to reduce microaspiration and intubation-related pneumonia: a systematic review of laboratory and clinical studies. Crit Care, 2016; 24:20(1):203.
13.
KollefMH, AfessaB, AnzuetoA, VeremakisC, KerrKM, MargolisBD, et al. Silver-coated endotracheal tubes and incidence of ventilator-associated pneumonia: the NASCENT randomized trial. JAMA, 2008; 300(7):805–813.
14.
TokmajiG, VermeulenH, MüllerMC, KwakmanPH, SchultzMJ, ZaatSA. Silver-coated endotracheal tubes for prevention of ventilator-associated pneumonia in critically ill patients. Cochrane Database Syst Rev, 2015:CD009201.
15.
BerraL, CoppadoroA, BittnerEA, KolobowT, LaquerriereP, PohlmannJR, et al. A clinical assessment of the Mucus Shaver: a device to keep the endotracheal tube free from secretions. Crit Care Med, 2012; 40(1):119–124.
16.
PirroneM, Imber DA MarrazoF, PinciroliR, ZhangC, BryL, et al. Silver-coated endotracheal tubes cleaned with a mechanism for secretion removal: a randomized controlled clinical study. Respir Care, 2019; 64(1):1–9.
17.
BransonRD, HessDR. Lost in translation: failure of tracheal tube modifications to impact ventilator-associated pneumonia. Am J Respir Crit Care Med, 2015; 191(6):606–608.
18.
BlasiF, PageC, RossoliniGM, PallecchiL, MateraMG, RoglianiP, et al. The effect of N-acetylcysteine on biofilms: Implications for the treatment of respiratory tract infections. Respir Med, 2016; 117(2):190–197.
19.
MauriceNM, BediB, SadikotRT. Pseudomonas aeruginosa biofilms: host response and clinical implications in lung infections. Am J Respir Cell Mol Biol, 2018; 58(4):428–439.
20.
GuillonA, FouquenetD, MorelloE, HenryC, GeorgeaultS, Si-TaharM, HervéV. Treatment of Pseudomonas aeruginosa biofilm present in endotracheal tubes by poly-L-lysine. Antimicrob Agents Chemother, 2018; 62(11):e00564.