Green chemistry of industrially important
zein protein was explored
in aqueous phase toward the synthesis of bioconjugated gold (Au) nanoparticles
(NPs), which allowed us to simultaneously understand the unfolding
behavior of zein with respect to temperature and time. Synthesis of
Au NPs was monitored with simultaneous measurements of UV–visible
absorbance due to the surface plasmon resonance (SPR) of Au NPs that
triggered the adsorption of zein on the NP surface and thus resulted
in its unfolding. Surface adsorption of zein further controlled the
crystal growth of Au NPs, which relied on the degree of unfolding
and fusogenic behavior of zein due to its predominant hydrophobic
nature. The latter property induced a marked blue shift in the SPR
rarely observed in the growing NPs during the nucleation process.
A greater unfolding of zein in fact was instrumental in generating
zein-coated faceted NPs that were subjected to their hemolytic response
for their possible use as drug release vehicles. Zein coating significantly
reduced the hemolysis and made bioconjugated Au NPs the best models
for biomedical applications in nanotechnology.
The aim of this study was to determine the evolving trends of retinopathy of prematurity (ROP) at a tertiary neonatal intensive care unit. In an ongoing screening programme for ROP, we estimated the incidence of ROP among at-risk neonates in a tertiary care unit. We compared our data over the last 12 months (1999-2000; period II) to the previously published data (1993-94; period I) to study changes in the spectrum of the disease. The overall incidence of ROP in period II was not significantly different from the incidence in period I (32 vs. 20 per cent, p > 0.05). However, a decreasing trend in the proportion of severe ROP (stage III) from 46 to 21 per cent in the later period was noted. The need for cryotherapy also dropped significantly compared with the earlier period (8 vs. 46 per cent respectively, p < 0.05). On multivariate analysis, apnea (p < 0.001; RR = 12.5; 95 per cent CI, 3.03-50.9; clinical sepsis (p < 0.001; RR = 5.7; 95 per cent CI, 1.6-20.7); and male sex (p < 0.001; RR = 6.3; 95 per cent CI 1.6-25.5) emerged as significant risk factors. Although the incidence of ROP is static, the more severe form of the disease (stage III) is showing a decline. Our data suggests that efficient management of apnea and sepsis may be crucial in further minimizing the risk of ROP.
Self-assembled gold (Au) nanoparticles (NPs) were synthesized in micelle surface cavities of a L121 block polymer in the presence of zwitterionic (viz. DPS, TPS, and HPS) and sugar surfactants (OG and DDM) in aqueous phase at 70 °C by using the surface cavities of L121 as reducing sites for converting Au(III) into Au(0). All reactions were monitored simultaneously by UV-visible spectroscopy to determine the growth kinetics in gold nucleating centers on the basis of surface plasmon resonance that also helped in tracing the structure micelle transitions over a wide temperature range of 10-70 °C. The surfactant/L121 mole ratio was changed systematically from 0.5 to 2.5 by keeping L121 and HAuCl4 concentrations constant at 10 and 0.25 mM, respectively, to determine the shape and size of the micelles and their relation to the self-assembled behavior of Au NPs. TEM studies were used to have a direct insight into the morphology of micelle templates and their shape and size for self-assembled NPs. L121 along with DPS (C12 carbon chain) produced well-defined micelles loaded with tiny NPs of 3-6 nm in the L121-rich region of the mixture, while large flower-like compound micelles with a clear core-shell morphology were produced in the DPS-rich region. TPS and HPS (C14 and C16 hydrocarbon chains, respectively) with stronger hydrophobicity than DPS also produced almost similar micelles loaded with tiny NPs in the L121-rich region, but they disappear in the surfactant-rich region. Replacement of zwitterionic with ionic surfactants did not yield micelle templates for self-assembled NPs. Results conclude that well-defined micelles of L121 are the fine templates for self-assembled NPs that can only be achieved in the presence of a neutral surfactant with low concentration and low hydrophobicity.
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