Neonatal Catheter Lock for Infection Prevention
Ориентир для пациента и семьи
Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: Taurolidine 2% lock, Normal saline lock.
- Кому может быть актуально
- Состояния в реестре: CLABSI - Central Line Associated Bloodstream Infection, CRBSI - Catheter Related Bloodstream Infection, Neonatal Sepsis, Late-Onset. Базовые параметры: 1 Day — 120 Days · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Италия
- Следующий шаг
- Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
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Официальное название
Taurolidine Lock for Prevention of Central-Line Associated Bloodstream Infections in Neonates: A Triple-blind Randomized Controlled Trial
Обзор
For newborns admitted to Neonatal Intensive Care Units (NICUs), one of the main risk factors for late-onset sepsis is the presence of a central venous catheter (CVC), which is often essential for the administration of medications and parenteral nutrition in this patient population. From a nosological perspective, sepsis associated with the presence of a venous catheter is defined by two acronyms: CRBSI (Catheter-Related Bloodstream Infection - a microbiological definition) and CLABSI (Central Line-Associated Bloodstream Infection - an epidemiological definition). Among preventive strategies for CRBSI/CLABSI, antibiotic or antimicrobial catheter lock solutions - instilled in a volume equivalent to the catheter dead space and retained within the lumen until the next use - have demonstrated favorable efficacy in reducing infection risk. Taurolidine 2% is considered a preferred agent due to its broad-spectrum antibacterial and antifungal activity and its lack of association with the development of antimicrobial resistance. However, its prophylactic use in neonates remains largely investigational, with current evidence limited to small, retrospective observational studies involving catheters ≥3 Fr (e.g., femoral inserted central catheters - FICCs, centrally inserted central catheters - CICCs, and umbilical venous catheters). In NICUs, epicutaneo-caval catheters (ECCs) are the most commonly used central venous access devices and represent a major source of catheter-related infections. Despite this, the use of antimicrobial lock prophylaxis in ECCs has been limited by concerns regarding catheter occlusion, given their smaller diameter (≤2 Fr). Nevertheless, available evidence indicates that short-duration locks, when combined with meticulous infusion line management, can be safely implemented without increasing the risk of catheter occlusion. The aim of the study is to evaluate the efficacy of 2% taurolidine lock in the prevention of CLABSI/CRBSI in neonates with CVC (ECC, FICC, or CICC).
Подробное описание
BACKGROUND
The diagnosis of sepsis remains, to this day, one of the most unfavorable for infants admitted to Neonatal Intensive Care Units (NICUs). Neonatal sepsis is classified as: early onset, when it occurs within 48-72 hours of life - typically due to vertical transmission; and late onset, when it occurs beyond 72 hours of life - presumably due to horizontal transmission.
Late-onset sepsis currently affects a clinically significant proportion of neonates, with rates exceeding 10% even in high-income countries, and is characterized by mortality rates reaching up to 35% in the most vulnerable patients, thus representing a major public health concern.
In NICUs, one of the main risk factors for late-onset sepsis is the presence of a central venous catheter (CVC), which is often essential for the administration of medications and parenteral nutrition in this patient population.
From a nosological perspective, sepsis associated with the presence of a venous catheter is defined by two acronyms: CRBSI (Catheter-Related Bloodstream Infection) and CLABSI (Central Line-Associated Bloodstream Infection).
CRBSIs - a microbiological definition - refer to bloodstream infections in which it is possible to document the presence of microorganisms originating from the vascular catheter. To establish this, it is necessary to obtain, simultaneously, a blood culture drawn directly from the catheter and a blood culture obtained via peripheral venipuncture.
CLABSIs - an epidemiological definition - include all bloodstream infections in which it is not possible to determine the source in patients with a vascular catheter in place.
Bloodstream infections in patients with vascular access may originate from extraluminal migration of microorganisms through the catheter insertion site (i.e., disruption of the skin barrier), from intraluminal entry of microorganisms due to manipulation of the catheter and the connected vascular devices, or from contamination of the infused solutions. Both routes of entry (extraluminal and intraluminal) contribute to the formation of a biofilm along the catheter - a stable structure resistant to antibiotic penetration that begins to develop within the first hours after catheter insertion. The biofilm may remain stable and clinically silent for the entire duration of catheter dwell time or may act as a source of bacteremia.
Several strategies have been proposed to prevent CRBSI/CLABSI in both adults and children. These include measures aimed at reducing infection risk during catheter insertion, proper care of the insertion site, and appropriate management of the infusion line.
Among these, promising results have been obtained with the use of antimicrobial solutions for catheter lock (i.e., infusion of a volume equal to the dead space of the infusion line followed by "closure" of the line until its next scheduled use), with the aim of preventing microbial colonization of the venous catheter and reducing the risk of bacteremia. In this context, 2% taurolidine is considered the agent of choice, as it exhibits antimicrobial activity against both bacteria and fungi and, not being classified as an antibiotic, does not induce antibiotic resistance \[Sun Y, et al. PLoS One. 2020\] The use of prophylactic catheter lock with 2% taurolidine in the neonatal setting remains limited to experimental and research contexts.
Currently available studies on this procedure in NICUs are observational, retrospective, involve small sample sizes, and have been conducted on vascular catheters with a diameter of at least 3 Fr (femorally inserted central catheters - FICCs, centrally inserted central catheters - CICCs, or umbilical venous catheters) \[Savarese I, et al. J Hosp Infect. 2024\].
The most commonly used catheters in neonatal care are epicutaneo-caval catheters (ECCs). These represent the first-line option when short-term CVC placement is required or when insertion into large vessels of the cervical or femoral regions is not feasible.
ECCs are the leading cause of catheter-related infections in NICUs. However, the use of antimicrobial locks for prophylactic purposes has not become widespread due to concerns about an increased risk of catheter occlusion, which is higher compared to FICC or CICC because of their smaller diameter (≤ 2 Fr). Careful management of the infusion line may allow the use of short-duration prophylactic locks (≤ 60 minutes) without increasing the risk of catheter occlusion, as demonstrated in recent feasibility studies \[D'Andrea V, et al. J Hosp Infect. 2025\].
STUDY OBJECTIVE
To evaluate the efficacy of 2% taurolidine lock in preventing the occurrence of CLABSI and CRBSI in neonates with a central venous catheter.
STUDY DESIGN
The study consists of a multicenter, triple-blind, randomized controlled trial (RCT) conducted in a population of neonates admitted to NICUs and carrying a central venous access (ECC, FICC, or CICC).
Blinding will be ensured by masking the study arm to which the patient has been allocated, using a placebo solution indistinguishable from the 2% taurolidine solution in terms of visual characteristics, smell, consistency, packaging appearance, and method of administration in the control arm, as well as by centralized data collection with masking of group allocation also for the biostatisticians responsible for data analysis.
The placebo solution must also ensure pharmacological inactivity, absence of clinical risk for the patient, contain known, non-allergenic excipients already used in clinical practice, and guarantee physiological neutrality and chemical-physical stability.
Enrolled neonates will be assigned to the experimental arm (intervention) or the control arm through a block randomization system designed to ensure, within each center, balance between the two arms among patients with gestational age \< 28 weeks, between 28 and 32 weeks, and ≥ 32 weeks. Participation of centers in the study is contingent upon the presence of an internal protocol for surveillance, prevention, and treatment of infections, ensuring uniform management across both study arms.
Therefore, randomization will allow differentiation between the two arms solely on the basis of the intervention under study.
DATA COLLECTION
Patient participation in the study involves the collection of monitoring data at specific time points (enrollment: T-1; CVC lock: T-2, T-3, …; suspected catheter-related infection: T-event; CVC removal: T-CVC; discharge: T-end).
Specifically, enrollment (T-1) will coincide with the first prophylactic lock (with 2% taurolidine or placebo according to the randomization arm); T-2, T-3, … will correspond to subsequent locks; T-event will include all suspected episodes of catheter-related infection (catheter-related bloodstream infection - CRBSI, and central line-associated bloodstream infection - CLABSI) occurring more than 48 hours after catheter insertion or within 48 hours after its removal.
In the case of positive blood cultures, a diagnosis of CRBSI or CLABSI will be established according to the following definitions:
* CRBSI: clinically and microbiologically confirmed bacteremia, with isolation of the same microorganism from both the CVC and peripheral blood, together with at least one of the following criteria:
1. quantitative ratio (colony-forming units, CFU) of catheter culture vs peripheral blood culture ≥ 3:1. 2. differential time to positivity (DTP) between CVC culture and peripheral blood culture \> 2 hours. * CLABSI: symptomatic bacteremia occurring in a patient with a central venous catheter in the absence of another identifiable source of infection; therefore, CLABSI can be diagnosed even in the absence of a blood culture drawn from the CVC. Consequently, CRBSI may be considered a subgroup of CLABSI.
If systemic antibiotic prophylaxis or therapy is initiated, the prophylactic lock protocol will be resumed 48 hours after antibiotic discontinuation.
In the presence of multiple CVCs, systemic antibiotic administration will lead to interruption of the lock protocol for all CVCs in that patient and will be resumed at least 48 hours after discontinuation.
If a T-event (CRBSI/CLABSI) occurs within 48 hours of CVC insertion, it will not be attributed to that CVC; therefore, T-event data for that specific CVC will not be collected. Data collection for any T-event will include the 48 hours following removal of the CVC.
T-CVC corresponds to CVC removal (for any reason), and T-end corresponds to patient discharge.
Data collection and management will be performed using dedicated software with secure access credentials for each center, access control systems, audit trails, and procedures ensuring data quality, integrity, and protection throughout all study phases.
SAMPLE SIZE CALCULATION
Considering previous studies, such as the feasibility study by Savarese et al., in which none of the 16 patients treated with prophylactic lock developed CRBSI, and a meta-analysis on the use of taurolidine locks in pediatric patients, in which a 77% reduction in CRBSI events was demonstrated, for our study a reduction in the risk of CRBSI equal to or greater than 75% (IRR = 0.25) was assumed.
The contribution of CRBSI to the total number of CLABSI in neonates admitted to NICUs is not known, since obtaining a blood culture sample from ECC is not always feasible. Therefore, it was assumed that CRBSI accounts for 80% of the events of the primary outcome and considered as the minimum clinically relevant threshold a 60% reduction in the risk of CLABSI (80% of 75%), obtaining IRR = 0.40.
For the estimation of the sample size, an incidence of 8.25 CLABSI per 1000 catheter-days and a mean at-risk time of 14 days per patient (CVC days net of antibiotic therapy) were assumed, data derived from the Coordinating Center (unpublished data, extrapolated from the INCAS trial \[Cresi F, et al. Trials. 2024\]). Homogeneous exposure among subjects was assumed; therefore, the analysis was conducted by modeling the number of events per neonate during the observation period. An iterative simulation process (7500 replications) was used, assuming a Poisson distribution for the number of events per patient and using a Poisson regression model with log link for the comparison between arms. A one-sided test with a significance level α = 0.05 (one-sided p-value \< .05) and 1:1 allocation between the two arms were adopted; under these assumptions, the estimated power is approximately 80%, for a total sample size of 414 subjects. This value was increased by applying a correction factor of 1.25, in order to account for uncertainty in the parametric assumptions and potential heterogeneity among participating centers. An estimated 10% loss of neonates due to transfer or major protocol violations was also considered. The final planned sample size therefore results in 414 × 1.25 / 0.90 = 575, from which the total sample size is 576 neonates (288 per arm).
Simulations were performed using SAS 9.4 software (SAS Institute, Cary, NC, USA).
The sample size may be revised based on the characteristics of the Participating Centers and on the results obtained from the feasibility study (see below).
STATISTICAL ANALYSIS
Descriptive analysis will be performed by reporting categorical variables as absolute frequencies (percentages), and numerical variables as mean (standard deviation) or median (interquartile range), depending on their distribution.
Вмешательства
- Устройство Taurolidine 2% lock
Lock with a 2% taurolidine solution for a duration of 30 minutes every 48 hours, from CVC insertion until its removal, performed in newborns with epicutaneo-caval catheters (ECCs), femoral inserted central catheters (FICCs), or centrally inserted central catheters (CICCs). - Другое Normal saline lock
Lock with normal saline for a duration of 30 minutes every 48 hours, from CVC insertion until its removal, performed in newborns with epicutaneo-caval catheters (ECCs), femoral inserted central catheters (FICCs), or centrally inserted central catheters (CICCs).
Первичные конечные точки
- Incidence of CLABSI episodes expressed as events per 1000 catheter-days [Срок оценки: From first catheter lock intervention until removal of all central venous catheters (CVCs), an average of 14 days]
Вторичные конечные точки (11)
- CRBSI episodes (events/1000 catheter-days) [Срок оценки: From first catheter lock intervention until removal of all CVCs, an average of 14 days]
- Lock-related CVC complications (failed aspiration, CVC occlusion) (events/number of locks) [Срок оценки: Immediately after each intervention (catheter lock)]
- Technical failures in obtaining blood culture from CVC (events); percentage of successful CVC blood sampling [Срок оценки: Immediately after each attempt to obtain a blood culture from a CVC]
- Mortality (events) [Срок оценки: From enrollment until hospital discharge, up to 120 days]
- Length of hospital stay (days) [Срок оценки: From enrollment until hospital discharge, up to 120 days]
- CVC dwell time (days) [Срок оценки: From CVC insertion until CVC removal, up to 40 days]
- Exit-site complications (inflammation/infection) [Срок оценки: From first catheter lock intervention until removal of all CVCs, an average of 14 days]
- CVC-related complications (occlusion, phlebitis, thrombosis, rupture) [Срок оценки: From first catheter lock intervention until removal of all CVCs, an average of 14 days]
- Incidence of major neonatal morbidities [Срок оценки: From enrollment until hospital discharge, up to 120 days]
- Lock-related hypoglycemia episodes [Срок оценки: Immediately after each catheter lock intervention, from the first lock until achievement of half enteral feeding (75 mL/kg/day)]
- Weight gain (Δ z-score birth-discharge) [Срок оценки: From birth until hospital discharge, up to 120 days]
Критерии участия
Критерии включения
- presence of a CVC (ECC, CICC, or FICC) for at least 48 hours
- absence of systemic antibiotic therapy in the 48 hours preceding enrollment
Критерии исключения
- presence of an umbilical venous catheter
- suspected thrombophilic disorder
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Нет
Дизайн исследования
- Распределение
- Рандомизированное
- Модель
- Параллельные группы
- Маскирование
- Четверное слепое
- Основная цель
- Профилактика
Центры проведения
Италия · 1 центр
- Sant'Anna Hospital, University of Turin — Turin
Публикации
- D'Andrea V, Prontera G, Vento G. Feasibility of lock solutions for epicutaneo-caval catheters in neonates: the 'LOOSEN' pilot study. J Hosp Infect. 2025 Oct;164:91-95. doi: 10.1016/j.jhin.2025.07.014. Epub 2025 Aug 11. PMID 40803382
- Sun Y, Wan G, Liang L. Taurolidine lock solution for catheter-related bloodstream infections in pediatric patients: A meta-analysis. PLoS One. 2020 Apr 7;15(4):e0231110. doi: 10.1371/journal.pone.0231110. eCollection 2020. PMID 32255798
- Savarese I, Yazami S, De Rose DU, Carkeek K, Campi F, Auriti C, Danhaive O, Piersigilli F. Use of 2% taurolidine lock solution for treatment and prevention of catheter-related bloodstream infections in neonates: a feasibility study. J Hosp Infect. 2024 Jan;143:76-81. doi: 10.1016/j.jhin.2023.11.003. Epub 2023 Nov 14. PMID 37972710
Идентификаторы
NCT: NCT07585188 · Neo-CLIP