Lucile-Packard Children's Hospital at Stanford
Stanford, California, 94305, United States
NCT Number: NCT02691156
Most preterm newborns are managed by phototherapy to reverse hyperbilirubinemia with the intent to prevent bilirubin neurotoxicity. A threshold-based relationship between a specific total bilirubin level and need for intervention has been elusive. This is most likely due to other biomarkers such as hemolysis, developmental maturation, concurrent illnesses, or even interventions, may impede bilirubin/albumin binding. The over-prescription of phototherapy has impacted clinical and family-centered care, and in the extreme preterm infants, it may have augmented their risk of mortality. Thus, the opportunity to individualize phototherapy in in order to reduce its use is unique. The investigators have assembled a transdisciplinary team to examine critical unanswered questions including the role of bilirubin binding capacity (BBC) of an individual during the first week of life in the context of clinical modifiers and antecedents for a domain of bilirubin-induced neurologic disorders, that includes neuro-anatomical, hearing, visual and developmental processing impairments. In this study, the investigator will evaluate two new innovative nanotechniques to quantify bilirubin load for the first time in the context of a clinical decision algorithm to identify those most at risk for any bilirubin-related neurotoxicity. The investigators anticipate that knowledge gained from this study will lead to ethically testable hypotheses to individualize the prescription of phototherapy.
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Notify Me24 week–34 week
All sexes
Observational
Stanford, California, 94305, United States
The investigator intends to first collect simultaneous and comprehensive "acute phase" measurements of TB, BBC, ETCOc, and COHbc in MPT infants. The investigator will then seek to understand precisely the relationship between GA, TB, BBC, ETCOc, and COHbc levels and the domains of BIND. Third, The investigator will provide a comprehensive database that can be used to improve current neonatal BIND screening practices in the context of lowered and higher BBC. The investigator's working hypothesis is that exposures to modest TB levels in the presence of significantly diminished BBC in the developing neonate result in residual deficits of one or more neuroprocessing function (BIND) at TEA.
Clinical data collection: After receiving written informed consent, the research team will complete clinical data forms for infant demographics. The data forms will be consistent with and abstracted from the medical record. No additional information will be collected for this exploratory study.
Population: The entire cohort will compromise 60-80 patients. From this cohort, 12 at-risk infants with most impaired BBC and matched with those designated as low-risk will be re-recruited for the follow-up to identify any evidence of BIND in any or all 4 of the outcome variables.
Laboratory data: Once inclusion criteria are met, routine neonatal laboratory tests will be as clinically ordered. Each infant will tested for BBC and ETCOc at least 2 intervals (maximum 4 over 12h-7d) during rates-of-rise and -decrease in TB. Subsequent laboratory and clinical data will be paired with research data for statistical analysis.
The investigators will compare BIND outcomes at TEA to 3 mos-corrected age (<54 wks PMA) using a re-consented sample size: n=12 for those at high risk with decreased BBC versus a GA-matched controls at low risk (n=12).
Plasma for peroxidase UB assays will be stored and labeled without patient identifiers.
Frozen research samples will be transported to the Spectrum Child Health Research (SCHR) Lab for analyses. 1. BBC, TB, and UB will be measured directly: 1a. BBC, TB and UB in 50-μL whole blood using POC hematofluorometry; TB performed by the hospital-based clinical laboratory; and UB in plasma using the peroxidase method (Arrows device).
ETCOc will be determined for those breathing spontaneously.
c. Testing and techniques for outcome variables for select at-risk and matched control infants:
Evidence from other studies of CNS damage suggests that lower signal amplitudes and thresholds correlate with CNS damage. Support for this sample size is based on practical considerations an ad hoc sample size calculation.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Research laboratory assay of bilirubin binding capacity
Other names: BBC
Noninvasive bedside test to measure exhaled end-tidal carbon monoxide levels for the detection of hemolysis
Other names: ETCOc
Laboratory assay of carboxyhemoglobin levels for the detection of hemolysis
Other names: COHbc
Time frame: postnatal age 0-7 days
This aim addresses the hypothesis that there are functional degrees and extents of BBC that can be objectively graded to quantify insufficient BBC. These data will define BBC ranges to guide objective, accurate thresholds that identify what levels of TB compared to the BBC is "safe". Infants with insufficient (>45% saturation) and near-normal (<25% saturation) BBC will be identified as select cohorts and then further tested for BIND at term-equivalent age.
Time frame: postnatal age 0-7 days
This aim addresses the hypothesis that biochemical markers of bilirubin load, individually or collectively, related to excessive bilirubin production and insufficient BBC, define the mechanisms of bilirubin load for maturational age (both term PMA and GA). The studies are directed toward translating diverse components of bilirubin loads: serum albumin, BBC, and TB rate-of-rise and decrease. These data will integrate measurements of bilirubin load using established indices of bilirubin production that accurately characterize early signs of BIND at term equivalent age that may be associated with neuroanatomical changes, and NDI.
Time frame: >=55 weeks PMA
This aim addresses the hypothesis that acute phenotypic measures of BIND at TEA are identified most in preterm infants who have insufficient BBC. These data will detect perturbations in any or all domains of visuo-oculomotor, auditory, neuroanatomical (MRI) and neurodevelopmental functions.
Stanford University
Other
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