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Institution

Bharathiar University

EducationCoimbatore, Tamil Nadu, India
About: Bharathiar University is a education organization based out in Coimbatore, Tamil Nadu, India. It is known for research contribution in the topics: Thin film & Adsorption. The organization has 5812 authors who have published 8628 publications receiving 143934 citations. The organization is also known as: BU.


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Journal ArticleDOI
TL;DR: The results of the study demonstrate for the first time that quercetin prevents OTA-induced toxicity in HepG2 cells and modulated Ota-induced oxidative stress and redox-signaling in Hepg2 cells.

164 citations

Journal ArticleDOI
TL;DR: In this paper, solid polymer proton conductors comprising of polyvinyl alcohol, ammonium acetate and water have been prepared by solution cast method for different NH 4 + /OH − ratios.

164 citations

Journal ArticleDOI
TL;DR: A total of 319 strains of aeromonas hydrophila were isolated from 536 fish and 278 prawns for a 2-year period as mentioned in this paper, and all the strains were tested for resistance to 15 antibiotics and 100% of the strains was resistant to methicillin and rifampicin followed by bacitracin and novobiocin.

164 citations

Journal ArticleDOI
TL;DR: In this article, the authors focus on characterizing PVA: NH4X (X = Cl, Br, I) proton conducting polymer electrolyte prepared by solution casting technique using XRD, FTIR and ac impedance spectroscopic studies.
Abstract: The present study focuses on characterizing PVA: NH4X (X = Cl, Br, I) proton conducting polymer electrolyte prepared by solution casting technique using XRD, FTIR and ac impedance spectroscopic studies. The XRD patterns of all the prepared polymer electrolytes reveal the amorphous nature of the films. The FTIR spectroscopic study indicates the detailed interaction of PVA with proton. From ac impedance spectroscopic studies, it has been found that PVA doped with NH4I have high ionic conductivity (2.5 × 10−3S cm−1) than PVA doped with NH4Br (5.7 × 10−4S cm−1) and NH4Cl (1.0 × 10−5S cm−1) polymer electrolytes. This is due to the large anionic size and low lattice energy of NH4I (in comparison with NH4Br and NH4Cl).The temperature dependence of ionic conductivity for all the PVA: NH4X (X = Cl, Br, I) polymer films obey Arrhenius equation. Ionic transference number measured has been found to be in the range of 0.93–0.96 for all the polymer electrolytes proving that the total conductivity is mainly due to ions.

164 citations

Journal ArticleDOI
TL;DR: A dynamic and correlated expression of carrot AOX genes (DcAOX1 and D cAOX2a) during PCS lag phase and during exponential growth is reported, which point to DcA Ox 1 and DcOx2a as being reasonable candidates for functional marker development related to early cell reprogramming.
Abstract: Stress-adaptive cell plasticity in target tissues and cells for plant biomass growth is important for yield stability. In vitro systems with reproducible cell plasticity can help to identify relevant metabolic and molecular events during early cell reprogramming. In carrot, regulation of the central root meristem is a critical target for yield-determining secondary growth. Calorespirometry, a tool previously identified as promising for predictive growth phenotyping has been applied to measure the respiration rate in carrot meristem. In a carrot primary culture system (PCS), this tool allowed identifying an early peak related with structural biomass formation during lag phase of growth, around the 4th day of culture. In the present study, we report a dynamic and correlated expression of carrot AOX genes (DcAOX1 and DcAOX2a) during PCS lag phase and during exponential growth. Both genes showed an increase in transcript levels until 36 h after explant inoculation, and a subsequent down-regulation, before the initiation of exponential growth. In PCS growing at two different temperatures (21°C and 28°C), DcAOX1 was also found to be more expressed in the highest temperature. DcAOX genes' were further explored in a plant pot experiment in response to chilling, which confirmed the early AOX transcript increase prior to the induction of a specific anti-freezing gene. Our findings point to DcAOX1 and DcAOX2a as being reasonable candidates for functional marker development related to early cell reprogramming. While the genomic sequence of DcAOX2a was previously described, we characterize here the complete genomic sequence of DcAOX1.

161 citations


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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202321
2022113
2021807
2020694
2019792
2018813