Due to their short lifespan, rapid division, and ease of genetic manipulation, yeasts are popular model organisms for studying aging in actively dividing cells. To study replicative aging over many cell divisions, individual cells must be continuously separated from their progeny via a laborious manual microdissection procedure. Microfluidics-based soft-lithography devices have recently been used to automate microdissection of the budding yeast <i>Saccharomyces cerevisiae</i>. However, little is known about replicative aging in <i>Schizosaccharomyces pombe</i>, a rod-shaped yeast that divides by binary fission and shares many conserved biological functions with higher eukaryotes. In this report, we develop a versatile multiphoton lithograph...
Budding yeast has served as an important model organism for aging research, and previous genetic stu...
The budding yeast Saccharomyces cerevisiae divides asymmetrically, with a smaller daughter cell emer...
This thesis presents the design, characterization and optimization of microfluidic devices and fluor...
Due to their short lifespan, rapid division, and ease of genetic manipulation, yeasts are popular mo...
Important insights into aging have been generated with the genetically tractable and short-lived bud...
Important insights into aging have been generated with the budding yeast. However, a major challenge...
We demonstrate the use of a simple microfluidic setup, in which single budding yeast cells can be tr...
Budding yeast Saccharomyces cerevisiae is an important model organism in aging research. Genetic stu...
<div><p>A major limitation to yeast aging study has been the inability to track mother cells and obs...
A major limitation to yeast aging study has been the inability to track mother cells and observe mol...
This protocol describes the production and operation of a microfluidic dissection platform for long-...
The mechanisms and causes of aging, the greatest risk factor of disease, are poorly understood. This...
SummaryThe yeast Saccharomyces cerevisiae is a model organism for replicative aging studies; however...
<p>(a) a schematic of the replicative aging of a yeast cell. The replicative lifespan (RLS) of a mot...
The yeast Saccharomyces cerevisiae is a model organism for replicative aging studies; however, conve...
Budding yeast has served as an important model organism for aging research, and previous genetic stu...
The budding yeast Saccharomyces cerevisiae divides asymmetrically, with a smaller daughter cell emer...
This thesis presents the design, characterization and optimization of microfluidic devices and fluor...
Due to their short lifespan, rapid division, and ease of genetic manipulation, yeasts are popular mo...
Important insights into aging have been generated with the genetically tractable and short-lived bud...
Important insights into aging have been generated with the budding yeast. However, a major challenge...
We demonstrate the use of a simple microfluidic setup, in which single budding yeast cells can be tr...
Budding yeast Saccharomyces cerevisiae is an important model organism in aging research. Genetic stu...
<div><p>A major limitation to yeast aging study has been the inability to track mother cells and obs...
A major limitation to yeast aging study has been the inability to track mother cells and observe mol...
This protocol describes the production and operation of a microfluidic dissection platform for long-...
The mechanisms and causes of aging, the greatest risk factor of disease, are poorly understood. This...
SummaryThe yeast Saccharomyces cerevisiae is a model organism for replicative aging studies; however...
<p>(a) a schematic of the replicative aging of a yeast cell. The replicative lifespan (RLS) of a mot...
The yeast Saccharomyces cerevisiae is a model organism for replicative aging studies; however, conve...
Budding yeast has served as an important model organism for aging research, and previous genetic stu...
The budding yeast Saccharomyces cerevisiae divides asymmetrically, with a smaller daughter cell emer...
This thesis presents the design, characterization and optimization of microfluidic devices and fluor...