The pathogenesis of neonatal hyperbilirubinemia has not yet been completely defined in normal and glucose-6-phosphate-dehydrogenase (G6PD)-deficient newborns. The recent identification of a variant promoter in the gene encoding for the bilirubin uridine-diphosphoglucuronosyl-transferase (UGT-1 A) associated with Gilbert's syndrome, allowed us to explore whether the presence of this variant promoter is a risk factor for the development of neonatal hyperbilirubinemia in normal newborns and in association with G6PD deficiency. We found that the variant (TA)7/(TA)7 promoter shows no statistically significant difference in normal or G6PD-deficient newborns developing severe hyperbilirubinemia and in control subjects from the same population. This finding indicates that the variant promoter of UGT-1 A does not contribute to the development of hyperbilirubinemia in the newborn.
We report on the short-term test-retest baseline variability in macular function tests in ZEASTRESS-Pilot participants (n = 18), on their cross-sectional correlation with macular pigment optical density (MPOD), and on the effects of four months (FUV4) of 20 mg/day zeaxanthin (ZX), followed by a four-month washout (FUV8; n = 24, age 50–81 years old). Outcomes included: MPOD at 0.5 and 2.0 deg eccentricity (MPOD-0.5 and -2.0); contrast sensitivity (CS); pattern-reversal electroretinogram (PERG) amplitude; dark-adapted 650 nm foveal cone sensitivity (DA650-FCS); and 500 mn parafoveal rod sensitivity (DA500-PFRS). All measures of macular function showed close test-retest correlation (Pearson’s r range: 0.744–0.946) and low coefficients of variation (CV range: 1.13%–4.00%). MPOD correlated in a complex fashion with macular function. Following supplementation, MPOD-0.5 and MPOD-2.0 increased at both FUV4 and FUV8 (p ≤ 0.0001 for all measures). Continued, delayed MPOD increase and a small, but significant (p = 0.012), CS increase was seen at FUV8 only in females. PERGs increased significantly at FUV4 (p = 0.0006), followed by a partial decline at FUV8. In conclusion, following ZX supplementation, MPOD increased significantly. There was no effect on DA-650 FCS or DA-500 PFRS. Both CS and PERG amplitudes increased following supplementation, but the effect varied between males and females. Additional studies appear warranted to confirm and characterize further these inter-gender differences.
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