Effect of N-acetylcysteine as Adjunct Therapy on the Clinical Outcome of Neonatal Sepsis

Trial statusNot yet recruiting
Trial phasePhase 3
Trial typeInterventional
Biological sexAll
Age1-28
SponsorAin Shams University

About this trial

Neonatal sepsis (NS) is a life-threatening condition characterized by systemic inflammation in response to infection during the first 28 days of life. Nowadays, it is generally acknowledged that one of the critical pathogenic mechanisms involved in neonatal sepsis is oxidative stress, which plays a critical role in amplifying inflammation and cellular injury. During sepsis, activated immune cells such as neutrophils and macrophages produce large amounts of ROS and RNS as part of the antimicrobial defense. Also, IL-6 and IL-8 are the main cytokines involved in the initiation of the sepsis cascade in the newborn, following that, several oxidative stress-related pathways are activated through different mechanisms, triggering the initiation of a self-maintaining "sepsis redox cycle" finally leading to cell oxidative damage and mitochondria dysfunction. One of the major consequences of oxidative stress is lipid peroxidation, in which ROS attack polyunsaturated fatty acids (PUFAs) in cellular membranes which leads to membrane dysfunction and cellular injury. One of the major consequences of oxidative stress is lipid peroxidation, in which ROS attack polyunsaturated fatty acids (PUFAs) in cellular membranes which leads to membrane dysfunction and cellular injury. Elevated levels of MDA in neonatal sepsis are associated with increased oxidative damage and worse clinical outcomes, making it a valuable marker for assessing the oxidative burden in sepsis. N-acetylcysteine (NAC) has the ability to replenish intracellular glutathione levels and neutralize ROS makes it promising as adjunct therapy in neonatal sepsis. administering NAC to neonates with sepsis could potentially improve clinical outcomes by reducing oxidative damage through replenishing glutathione and scavenging free radicals result in reduction of MDA level which is a biomarker for lipid peroxidation and oxidative damage, preserving organ function, and preventing the progression to severe complications like MODS. NAC efficacy in neonatal sepsis is not studied yet, and it is unknown whether NAC is beneficial as adjunct therapy for neonatal sepsis or not.

The aim of this study is to evaluate the efficacy of N-acetylcysteine as an adjunctive therapy in neonatal sepsis by assessing clinical improvement using the sepsis score and nSOFA score, reduction of oxidative stress through changes in malondialdehyde (MDA) levels, and its impact on the length of hospital stay and mortality.

Eligibility criteria

Qualifiers

Age at admission: Near-term and term (≥ 32 gestational weeks) neonates up to 28 days of life.

Neonates diagnosed with sepsis: diagnosis of sepsis based on high probable sepsis (HPS) and probable sepsis (PRS) according to the criteria employed for defining the sepsis score.

Disqualifiers

Critical major congenital anomalies that are incompatible with first 28 days vitality.

Hypersensitivity to NAC

Parents or guardians who decline consent.

Trial design

Treatments tested in this trial

  • N-Acetyl Cysteine (NAC)
  • Normal Saline

Treatment groups

50 Participants
are divided into 2 treatment groups

Locations

This trial has no locations

Sponsors and collaborators