Research outputs
2025
Injectable hybrid hydrogel-mediated calcium-sensing receptor (CaSR) activation for enhanced osteogenesis and bone remodeling
Jeyakumar, G. F. S., Velswamy, P., Gunasekaran, D., Paulraj, A. V., Manimegalai, N. P., & Sivagnanam, U. T. (2025). Injectable hybrid hydrogel-mediated calcium-sensing receptor (CaSR) activation for enhanced osteogenesis and bone remodeling. BIOMATERIALS SCIENCE, 13(17), 4770-4785. doi:10.1039/d5bm00349k
TRIPOD Template
2024
Enhancing chemical signal transformation in lateral flow assays using aptamer-architectured plasmonic nanozymes and para-phenylenediamine
Sarathkumar, E., Jibin, K., Sivaselvam, S., Sharma, A. S., Alexandar, V., Resmi, A. N., . . . Jayasree, R. S. (2025). Enhancing chemical signal transformation in lateral flow assays using aptamer-architectured plasmonic nanozymes and para-phenylenediamine. NANOSCALE, 17(5), 2469-2479. doi:10.1039/d4nr04130e
2021
Sequential Association Rule Mining Revisited: A Study Directed at Relational Pattern Mining for Multi-morbidity
Vincent-Paulraj, A., Burnside, G., Coenen, F., Pirmohamed, M., & Walker, L. (2021). Sequential Association Rule Mining Revisited: A Study Directed at Relational Pattern Mining for Multi-morbidity. In ARTIFICIAL INTELLIGENCE XXXVIII Vol. 13101 (pp. 241-253). doi:10.1007/978-3-030-91100-3_20
2018
Digital image based simple scanometric device for the express detection of aqueous contamination of Hg<SUP>2+</SUP>
Poornima, V., Alexandar, V., Iswariya, S., Parameshwari, A. D., Muthukumar, R., & Uma, T. S. (2018). Digital image based simple scanometric device for the express detection of aqueous contamination of Hg<SUP>2+</SUP>. SENSORS AND ACTUATORS B-CHEMICAL, 274, 472-480. doi:10.1016/j.snb.2018.07.120
Interactome based biomarker discovery for irritable bowel syndrome-A systems biology approach
Kalva, S., Bindusree, G., Alexander, V., & Madasamy, P. (2018). Interactome based biomarker discovery for irritable bowel syndrome-A systems biology approach. COMPUTATIONAL BIOLOGY AND CHEMISTRY, 76, 218-224. doi:10.1016/j.compbiolchem.2018.07.007
2016
A systems biology and proteomics-based approach identifies <i>SRC</i> and <i>VEGFA</i> as biomarkers in risk factor mediated coronary heart disease
Alexandar, V., Nayar, P. G., Murugesan, R., Shajahan, S., Krishnan, J., & Ahmed, S. S. S. J. (2016). A systems biology and proteomics-based approach identifies <i>SRC</i> and <i>VEGFA</i> as biomarkers in risk factor mediated coronary heart disease. MOLECULAR BIOSYSTEMS, 12(8), 2594-2604. doi:10.1039/c6mb00264a
Adjuvant effect of cranberry proanthocyanidin active fraction on antivirulent property of ciprofloxacin against <i>Pseudomonas aeruginosa</i>
Vadekeetil, A., Alexandar, V., Chhibber, S., & Harjai, K. (2016). Adjuvant effect of cranberry proanthocyanidin active fraction on antivirulent property of ciprofloxacin against <i>Pseudomonas aeruginosa</i>. MICROBIAL PATHOGENESIS, 90, 98-103. doi:10.1016/j.micpath.2015.11.024
Gold nanoparticle-based nanosystems for the colorimetric detection of Hg<SUP>2+</SUP> ion contamination in the environment
Poornima, V., Alexandar, V., Iswariya, S., Perumal, P. T., & Uma, T. S. (2016). Gold nanoparticle-based nanosystems for the colorimetric detection of Hg<SUP>2+</SUP> ion contamination in the environment. RSC ADVANCES, 6(52), 46711-46722. doi:10.1039/c6ra04433f
2015
CardioGenBase: A Literature Based Multi-Omics Database for Major Cardiovascular Diseases
Alexandar, V., Nayar, P. G., Murugesan, R., Mary, B., Darshana, P., & Ahmed, S. S. S. J. (2015). CardioGenBase: A Literature Based Multi-Omics Database for Major Cardiovascular Diseases. PLOS ONE, 10(12). doi:10.1371/journal.pone.0143188
2014
A Systems Biological Approach Reveals Multiple Crosstalk Mechanism between Gram-Positive and Negative Bacterial Infections: An Insight into Core Mechanism and Unique Molecular Signatures
Muthukumar, R., Alexandar, V., Thangam, B., & Ahmed, S. S. S. J. (2014). A Systems Biological Approach Reveals Multiple Crosstalk Mechanism between Gram-Positive and Negative Bacterial Infections: An Insight into Core Mechanism and Unique Molecular Signatures. PLOS ONE, 9(2). doi:10.1371/journal.pone.0089993