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Murugan Veerapandian

Explore the profile of Murugan Veerapandian including associated specialties, affiliations and a list of published articles. Areas
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Articles 46
Citations 294
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Recent Articles
1.
Pakkiyam S, Marimuthu M, Kumar J, Ganesh V, Veerapandian M
Int J Biol Macromol . 2025 Jan; 293:139369. PMID: 39743089
According to global health metrics, clinical symptoms such as cellulitis and pyoderma associated with skin diseases are a significant burden worldwide, affecting 2.2 million disability-adjusted life years in 2020. There...
2.
Krishnan V, Sivakumar C, Babu K, Vigneswari S, Lakshminarayanan R, Natarajan S, et al.
Chem Commun (Camb) . 2024 Oct; 60(85):12405-12408. PMID: 39373031
Electrochemical grafting of gallic acid with chitosan (EgGC) voltammetrically deposited on a multitude of substrates exhibiting reversible oxidoreduction suitable for sensor construction is reported. A bioreceptor customized from the fragment...
3.
Kanagaraj R, Krishnan V, Senthil Kumar S, Veerapandian M
ACS Appl Bio Mater . 2024 Jun; 7(7):4602-4610. PMID: 38869946
Biocompatible, industrially scalable, and opto/electrochemically active biomaterials are promising for biosensor platform design and application. Herein, cyclic oligosaccharide, β-cyclodextrin (BCD), is conjugated with Butein, a chalcone-type polyphenol, via dehydration reaction...
4.
Krishnan V, Parandhaman M, Kanagaraj R, Veerapandian M
Nanoscale . 2023 Nov; 15(46):18727-18736. PMID: 37953667
Hybridizing biomolecules with metal oxide nanostructures possessing inherent optical emission and electrochemical functionality is advantageous for external mediator-free analytical applications. This work demonstrates the ultrasonochemical synthesis of hafnium oxide (HfO)...
5.
Kanagavalli P, Andrew C, Babu K, Jayakumar M, Veerapandian M
Int J Biol Macromol . 2023 Sep; 253(Pt 2):126746. PMID: 37689295
Constructing a label-free electrochemical transducer platform without compromising inherent biocompatibility against specific bioreceptor remains challenging, particularly probing nucleic acid hybridization at electrode interface without external redox-mediator. Here, we show that...
6.
Karuppaiah G, Vashist A, Nair M, Veerapandian M, Manickam P
Biosens Bioelectron X . 2023 Feb; 13:100324. PMID: 36844889
COVID-19, a highly contagious viral infection caused by the occurrence of severe acute respiratory syndrome coronavirus (SARS-CoV-2), has turned out to be a viral pandemic then ravaged many countries worldwide....
7.
Thulasinathan B, D S, Murugan S, Panda S, Veerapandian M, Manickam P
Biosens Bioelectron . 2023 Feb; 227:115156. PMID: 36842368
The electrochemical biosensing strategy for pyocyanin (PYO), a virulent quorum-sensing molecule responsible for Pseudomonas aeruginosa infections, was developed by mimicking its extracellular DNA interaction. Calf thymus DNA (ct-DNA) functionalized amine-containing...
8.
Kanagavalli P, Natchimuthu Karuppusamy M, Ganesan V, Saravanan H, Palanisamy T, Veerapandian M
Langmuir . 2023 Feb; 39(9):3512-3525. PMID: 36820624
Metal-free, cost-efficient, redox-active electrode materials, combining graphene derivatives with nitrogen-rich polymelamine (PM), are widely explored as an interface layer for electrocatalysis and an electrochemical sensor platform. However, conventional chemical routes...
9.
Krishnan V, Ananth V, Velayutham J, Manickam P, Veerapandian M
Biosensors (Basel) . 2023 Jan; 13(1). PMID: 36671841
With the ever-growing global wound care market, demand for robust redox-active healthcare material is obvious for the construction of wearable sensor platforms. Surface reactive functional group-rich material like chitosan holds...
10.
Kumar T, Srinivasan S, Krishnan V, Vaidyanathan R, Babu K, Natarajan S, et al.
Sens Actuators B Chem . 2022 Nov; 377:133052. PMID: 36438197
RNA isolation and amplification-free user-friendly detection of SARS-CoV-2 is the need of hour especially at resource limited settings. Herein, we devised the peptides of human angiotensin converting enzyme-2 (ACE-2) as...