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Vij, R.

Publications and source records attributed to Vij, R..

2 recordsLinked to original sources

The buoyant cell density of Cryptococcus neoformans is affected by capsule size

Cryptococcus neoformans is an environmental pathogenic fungus with a worldwide geographical distribution that is responsible for hundreds of thousands human cryptococcosis cases each year. During infection, the yeast undergoes a morphological transformation involving capsular enlargement that increases microbial volume. To understand the factors that play a role in environmental dispersal of C. neoformans and C. gatii we evaluated the buoyant cell density of Cryptococcus using Percoll isopycnic gradients. We found differences in the buoyant cell density of strains belonging to C. neoformans and C. gatti species complexes. The buoyant cell density of C. neoformans strains varied depending on growth medium conditions. In minimal medium, the cryptococcal capsule made a major contribution to the buoyant cell density such that cells with larger capsules had lower density than those with smaller capsules. Removing the capsule, both by chemical or mechanical methods, decreased the C. neoformans cell density. Melanization of the C. neoformans cell wall, which also contributes to virulence, produced a small but consistent increase in cell density. C. neoformans sedimented much slower in seawater as its density approached the density of water. Our results suggest a new function for the capsule whereby it can function as a flotation device to facilitate transport and dispersion in aqueous fluids.

microbiology

Astrocytes Regulate the Development and Maturation of Retinal Ganglion Cells Derived from Human Pluripotent Stem Cells

Retinal ganglion cells (RGCs) form the connection between the eye and the brain, with this connectivity disrupted in numerous blinding disorders. Previous studies have demonstrated the ability to derive RGCs from hPSCs; however these cells exhibited some characteristics that indicated a limited state of maturation. Among the many factors known to influence RGC development in the retina, astrocytes are known to play a significant role in their functional maturation. Thus, efforts of the current study examined the functional maturation of hPSC-derived RGCs, including the ability of astrocytes to modulate this developmental timeline. Morphological and functional properties of RGCs were found to increase over time, with astrocytes significantly accelerating the functional maturation of hPSC-derived RGCs. The results of this study are the first of its kind to extensively study the functional and morphological maturation of RGCs in vitro, including the effects of astrocytes upon the maturation of hPSC-derived RGCs.

neuroscience