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Dive into the research topics where Syed Barizuddin is active.

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Featured researches published by Syed Barizuddin.


Biophysical Journal | 2009

Patterning Single Cell-Electrode Pairs for Electrochemical Measurement of Quantal Exocytosis on Microchips

Xin Liu; Syed Barizuddin; Cherian J. Mathai; Shubhra Gangopadhyay; Kevin D. Gillis

We are developing transparent multi- electrochemical electrode arrays on microchips in order to automate measurement of quantal exocytosis. Design goals are that one and only one cell be positioned directly over each electrode and working electrodes have μm-scale dimensions in order to resolve pA-level currents. Patterning of cell-adhesion molecules in register with electrodes using conventional photolithographic approaches is problematic because organic solvents can disable sensitive biomolecule films. We report the parylene “dry liftoff” approach pioneered by Ilic and Craighead (Biomed Microdev 2: 317, 2000) can be used to pattern single cell-electrode pairs on the chip. A 1 μm-thick parylene C film is deposited on the multi-electrode array and S1813 photoresist is spin coated onto the device and patterned. The unprotected parylene over the electrodes is then removed using Reactive Ion Etch. Poly-l-lysine (PLL) is then added to promote cell attachment. Chromaffin cells are loaded on the chip in standard culture media and left in an incubator overnight. Finally, the parylene film is peeled off to remove excess cells and PLL, leaving tightly adhered chromaffin cells at the desired locations. Importantly, we find that promoting cell attachment with PLL films does not passivate the electrochemical electrodes. Experiments are in process to explore an alternative approach whereby PLL is patterned using the dry liftoff approach but cells are added after peel off of the parylene. With this approach, cell attachment to inactive areas of the chip is blocked by using “cytophobic” materials such as Teflon AF. This alternative approach may allow efficient targeting of cells at lower cell densities as cells migrate from cytophobic areas to the electrode binding sites (Supported by NIH BRP grant RO1 NS048826).


Analytical Chemistry | 2011

Microwell Device for Targeting Single Cells to Electrochemical Microelectrodes for High-Throughput Amperometric Detection of Quantal Exocytosis

Xin Liu; Syed Barizuddin; Wonchul Shin; Cherian J. Mathai; Shubhra Gangopadhyay; Kevin D. Gillis


Lab on a Chip | 2009

A microfluidic cell trap device for automated measurement of quantal catecholamine release from cells

Yuanfang Gao; Shantanu Bhattacharya; Xiaohui Chen; Syed Barizuddin; Shubhra Gangopadhyay; Kevin D. Gillis


ACS Chemical Neuroscience | 2010

Automated targeting of cells to electrochemical electrodes using a surface chemistry approach for the measurement of quantal exocytosis.

Syed Barizuddin; Xin Liu; Joseph Mathai; Maruf Hossain; D. Gillis Kevin; Shubhra Gangopadhyay


Propellants, Explosives, Pyrotechnics | 2010

Modified Nanoenergetic Composites with Tunable Combustion Characteristics for Propellant Applications

Andrey Bezmelnitsyn; Rajagopalan Thiruvengadathan; Syed Barizuddin; Daniel Tappmeyer; Steven Apperson; Keshab Gangopadhyay; Shubhra Gangopadhyay; Paul Redner; Mike Donadio; Deepak Kapoor; Steven Nicolich


Biomaterials | 2009

Preferential cell attachment to nitrogen-doped diamond-like carbon (DLC:N) for the measurement of quantal exocytosis

Atanu Sen; Syed Barizuddin; Maruf Hossain; Luis Polo-Parada; Kevin D. Gillis; Shubhra Gangopadhyay


Archive | 2007

Homogeneous mesoporous nanoenergetic metal oxide composites and fabrication thereof

Shubhra Gangopadhyay; Daniel Tappmeyer; Andrey Bezmelnytsin; Rajagopalan Thiruvengadathan; Rajesh Shende; Bhusban Mehendale; Steven Apperson; Syed Barizuddin; Keshab Gangopadhyay


ieee sensors | 2017

Extending lipoarabinomannan detection limitations with plasmonic gratings

Aaron Wood; Syed Barizuddin; Sangho Bok; C. Joseph Mathai; Sheila A. Grant; Keshab Gangopadhyay; Shubhra Gangopadhyay


Sensors | 2017

Super Resolution Fluorescent Imaging and Biosensing Applications of Plasmonic Gratings with Nanoprotrusions

Aaron Wood; Syed Barizuddin; Biyan Chen; Cherian J. Mathai; Keshab Gangopadhyay; Sheila A. Grant; Shubhra Gangopadhyay


Archive | 2012

Homogeneous mesoporous nanoenergetic metal oxide composite fabrication methods

Shubhra Gangopadhyay; Daniel Tappmeyer; Andrey Bezmelnystin; Rajagopalan Thiruvengadathan; Rajesh Shende; Bhushan Mehendale; Steven Apperson; Syed Barizuddin; Keshab Gangopadhyay

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Xin Liu

University of Missouri

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Aaron Wood

University of Missouri

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