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Dive into the research topics where Subra Muralidharan is active.

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Featured researches published by Subra Muralidharan.


Journal of Physical Chemistry B | 2008

Determination of the Line Tension of Giant Vesicles from Pore-Closing Dynamics

Narayanan Srividya; Subra Muralidharan; Wilson Okumu; Brian C. Tripp

Giant vesicles generated from synthetic and natural lipids such as phosphatidylcholines are useful models for understanding mechanical properties of cell membranes. Line tension is the one-dimensional force enabling the closing of transient pores on cell membranes. Transient pores were repeatedly and reproducibly formed on the membrane edge of giant vesicles generated from synthetic and natural phosphatidylcholines employing a nitrogen-pumped coumarin dye laser (440 nm). Line tension was determined at room temperature from closing of these pores that occurred over several seconds when the radius of the vesicle could be considered to be constant. The value of line tension depends on the nature of the lipid for single lipid systems, which, at room temperature, yielded a vesicle bilayer region in the gel, fluid, or mixed gel and fluid phases. The line tension for vesicles generated from phosphatidylcholines with saturated acyl chains of lengths of 12-18 carbon atoms ranges from 1 to 12 pN, exhibiting an increase with chain length. Vesicles generated from the natural Egg-PC, which is a mixture of lipids, are devoid of phase transition and exhibited the largest value of line tension (32 pN). This value is much larger than that estimated from the line tensions of vesicles obtained from lipids with homologous acyl chains. This study, to our knowledge, is the first to employ laser ablation to generate transient pores and determine line tension from the rate of pore closure and demonstrate a relationship between line tension and acyl chain length.


Chemistry of Materials | 2007

Self-assembly of metal nanoparticles and nanotubes on bioengineered flagella scaffolds

Mudalige Thilak Kumara; Brian C. Tripp; Subra Muralidharan


Chemistry of Materials | 2004

EPR Spectra of Mn2+-Doped ZnS Quantum Dots

Pedro A. Gonzalez Beermann; Bruce R. McGarvey; Subra Muralidharan; Raymond C. W. Sung


Nano Letters | 2006

Bioengineered flagella protein nanotubes with cysteine loops: self-assembly and manipulation in an optical trap.

Mudalige Thilak Kumara; Narayanan Srividya; Subra Muralidharan; Brian C. Tripp


Journal of Nanoscience and Nanotechnology | 2007

Generation and characterization of inorganic and organic nanotubes on bioengineered flagella of mesophilic bacteria

Mudalige Thilak Kumara; Subra Muralidharan; Brian C. Tripp


Journal of Nanoparticle Research | 2006

Cationic Substitution Sites in Mn2+-doped ZnS Nanoparticles

Pedro A. Gonzalez Beermann; Bruce R. McGarvey; Boris O. Skadtchenko; Subra Muralidharan; Raymond C.W. Sung


Journal of Physical Chemistry C | 2007

Exciton Energy Transfer in Self-Assembled Quantum Dots on Bioengineered Bacterial Flagella Nanotubes

Mudalige Thilak Kumara; Brian C. Tripp; Subra Muralidharan


Biomacromolecules | 2007

Layer-by-Layer Assembly of Bioengineered Flagella Protein Nanotubes

Mudalige Thilak Kumara; Brian C. Tripp; Subra Muralidharan


American Laboratory | 2005

Synthesis of Mn2+-doped PbS quantum dots and their spectroscopic properties

Curtis Deer; Raymond C. W. Sung; Pedro Gonzalez Beerman; Subra Muralidharan


Journal of Physical Chemistry B | 2009

Erratum: Determination of the line tension of giant vesicles from pore-closing dynamics (Journal of Physical Chemistry B (2008) 112B (7147))

Narayanan Srividya; Subra Muralidharan; Wilson Okumu; Brian C. Tripp

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Brian C. Tripp

Pennsylvania State University

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Narayanan Srividya

Washington State University

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Raymond C.W. Sung

Western Michigan University

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Bong-Jae Park

Washington State University

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Hengli Ma

Western Michigan University

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