| Literature DB >> 31238915 |
Yang Du1, Yue He1, Yue-Lin Wang2, Jian-Guo Zhou1, Chao Chen3.
Abstract
BACKGROUND: Inositol supplementation has been linked to beneficial effects on reducing the incidence of retinopathy of prematurity (ROP); however, it's controversial. The meta-analysis aimed to check out the efficacy and safety of inositol supplementation in preterm infants for preventing ROP.Entities:
Keywords: Inositol supplementation; Meta-analysis; Mortality; Retinopathy of prematurity
Mesh:
Substances:
Year: 2019 PMID: 31238915 PMCID: PMC6593579 DOI: 10.1186/s12886-019-1140-z
Source DB: PubMed Journal: BMC Ophthalmol ISSN: 1471-2415 Impact factor: 2.209
Fig. 1Flow of Study Selection. RCT indicates randomized controlled trial
Characteristics of Included Studies
| Study | Country | Study Design | Participants | Intervention | Outcomes | Surfactant Administration | ||
|---|---|---|---|---|---|---|---|---|
| Inositol | Control | Primary | Secondary | |||||
| Hallman 1986 | US | Single-center randomized double blind placebo-controlled trial | Preterm infants ( | IV or po supplemental inositol given daily for ten days | Placebo (5% glucose) | Number of neonatal deaths and infant deaths | Number of infants with BPD, IVH, ROP, NEC, and sepsis | No |
| Hallman 1992 | US | Single-center randomized double blind placebo-controlled trial | Preterm infants ( | IV inositol daily for five days, with repeated courses at day 10 and day 20 if necessary (infant continued to require ventilation, required supplemental O2 or did not tolerate enteral feeds) | Placebo (5% glucose) | Number of neonatal deaths and BPD | Number of infant death, ROP, IVH (all grades, grade > 2), NEC, and sepsis | Yesa |
| Friedman 1995 | US | Double-center randomized placebo-controlled trial | Preterm infants ( | Feed high-inositol formula (2500 μmol/L inositol) eternally. Duration of supplemental inositol was not reported. | Feed low-inositol formula (242 μmol/L inositol) eternally | Number of infants with ROP | Number of deaths, infants with bacteremia, NEC, IVH (> grade 2), BPD, duration of mechanical ventilation | Yes |
| Phelps 2013 | US | Multi-center randomized double-blind placebo-controlled PK trial | Preterm infants ( | IV 5% inositol with a single low (60 mg/kg) ( | Placebo (5% glucose) | Pharmacokinetic data for inositol | Number of adverse events in the first 7 days as well as neonatal morbidities from birth through hospital discharge (or 120 days if sooner) | Yes |
| Phelps 2016 | US | Multi-center randomized double-blind phase II clinical trial | Preterm infants ( | IV 10, 40 or 80 mg/kg/day inositol (divided every 12 h) from enrolment on day 1 to 3 to 10 weeks of age, to 34 weeks PMA or to discharge. Once feedings were established the same dose of study drug was given eternally. | Placebo (5% glucose) | Population pharmacokinetics data for inositol | Number of type 1 ROP and other adverse events | Yes |
| Phelps 2018 | US | Multi-center randomized double-blind placebo-controlled phase III clinical trial | Extremely preterm infants ( | IV 40 mg/kg/day inositol (divided every 12 h) from enrolment on day 1 to 3 to 10 weeks of age. Once feedings were established the same dose of study drug was given eternally. | Placebo (5% glucose) | Number of participants with unfavorable outcome, defined as severe retinopathy of prematurity (ROP) or death prior to reaching acute/final ROP status | Number of any type of ROP, type 2 ROP or greater, all-cause mortality, BPD, IVH and other adverse events | Yes |
GA indicates gestational age; BW birthweight, PMA postmenstrual age, IV Intravenous injection, po peros, ROP retinopathy of prematurity, BPD bronchopulmonary dysplasia, NEC necrotizing enterocolitis, IVH intraventricular hemorrhage
aPart of participants received surfactant for another trial
Risk of Bias
| Study | Selection Bias | Performance Bias | Detection Bias | Attrition Bias | Reporting Bias | Other | |
|---|---|---|---|---|---|---|---|
| Random sequence generation | Allocation concealment | Blinding of participants and personnel | Blinding of outcome assessment | Incomplete outcome data addressed | Selective reporting | Other bias | |
| Hallman 1986 | Unclear | Low | Low | Low | Low | Unclear | High |
| Hallman 1992 | Unclear | Unclear | Low | Unclear | Low | Unclear | High |
| Friedman 1995 | Unclear | Low | Unclear | Unclear | Low | Unclear | High |
| Phelps 2013 | Low | Low | Low | Low | Low | Low | Low |
| Phelps 2016 | Low | Low | Low | Low | Low | Low | Low |
| Phelps 2018 | Low | Low | Low | Low | Low | Low | Low |
Fig. 2Forest Plot Showing Risk Ratio (RR) in Severe ROP. RR indicates risk ratio; CI, confidence interval; ROP, retinopathy of prematurity
Risk ratios were calculated using the DerSimonian-Laird method to combine summary statistics, and data were pooled using a random-effects model.
GRADE Summary of Findings of Supplemental Inositol Compared to Placebo for Retinopathy of Prematurity
| Outcomes | No. of Cases per 1000 Infants | RR (95% CI) | Participants, No. | Studies No. | Quality of Evidenceb | |
|---|---|---|---|---|---|---|
| Assumed Risk of Placeboa | Corresponding Risk of Supplemental Inositol (95% CI) | |||||
| Severe ROP | 110 | 54 (19–145) | 0.49 (0.18–1.32) | 898 | 5 | Low c, d |
| Mortality | 155 | 194 (127–294) | 1.25 (0.82–1.90) | 1177 | 6 | Low c, e |
| All stage of ROP | 472 | 463 (411–524) | 0.98 (0.87–1.11) | 889 | 4 | Moderate e |
| BPD | 436 | 414 (314–545) | 0.95 (0.72–1.25) | 1099 | 6 | Low c, e |
| Suspected or proven NEC | 88 | 75 (51–109) | 0.85 (0.58–1.24) | 1189 | 6 | Moderate e |
| Surgical NEC | 37 | 28 (9–88) | 0.76 (0.24–2.38) | 834 | 3 | Moderate c |
| All stage of IVH | 392 | 302 (231–392) | 0.77 (0.59–1.00) | 429 | 3 | Moderate f |
| Severe IVH (grade III/IV) | 174 | 118 (78.3–180) | 0.68 (0.45–1.03) | 1179 | 6 | Low c, e |
| Late-onset sepsis | 194 | 236 (188–299) | 1.22 (0.97–1.54) | 1141 | 5 | Low c, f |
| Seizure | 26 | 27 (11–66) | 1.02 (0.41–2.56) | 833 | 3 | High |
| Hearing impairment | 107 | 146 (93–247) | 1.36 (0.87–2.31) | 605 | 3 | High |
aThe basis for the assumed risk (e.g. the median control group risk across studies) is provided. The corresponding risk (and its 95% CI) is based on the assumed risk in the comparison group and the relative effect of the intervention (and its 95% CI)
bThe GRADE Working Group grades of evidence are as follows: high quality (further research is very unlikely to change our confidence in the estimate of effect), moderate quality (further research is likely to have an important impact on our confidence in the estimate of effect and may change the estimate), low quality (further research is very likely to have an important impact on our confidence in the estimate of effect and is likely to change the estimate), and very low quality (we are very uncertain about the estimate)
cHeterogeneity is highly significant between included trials and hard to be explained
dOne trial has high risk of bias and one has unclear risk of bias
eTwo trials have high risk of bias and one has unclear risk of bias
fTwo trials have high risk of bias
Fig. 3Forest Plot Showing Risk Ratio (RR) in Mortality. RR indicates risk ratio; CI, confidence interval. Risk ratios were calculated using the DerSimonian-Laird method to combine summary statistics, and data were pooled using a random-effects model
Fig. 4Forest Plot Showing Risk Ratio (RR) in Any Stage of ROP. RR indicates risk ratio; CI, confidence interval; ROP, retinopathy of prematurity. Risk ratios were calculated using the DerSimonian-Laird method to combine summary statistics, and data were pooled using a random-effects model
Fig. 5Bubble Diagram Examining Relationship Between Publication Year and Efficacy of Inositol Compared with Placebo. RR indicates risk ratio